Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloys, stainless steel, carbon steel, copper alloys, alloy steel, and other engineering materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Anodizing, plating, sandblasting, black oxide treatment, heat treatment, precision grinding, and custom surface finishing

Key Features

From Drawings to Product Manufacturing

Support 2D drawings, 3D models, or samples provided by customers. Our engineering team performs process analysis and completes production.

Flexible Custom Manufacturing Capability

Support prototype production, low-volume manufacturing, and long-term mass production to meet different project requirements.

Engineering Technical Support

Provide professional manufacturing recommendations including material selection, machining process optimization, and design improvement.

One-stop Machining Services

Provide complete manufacturing solutions covering CNC machining, surface finishing, quality inspection, and final delivery.

Machining Challenges

Drawing Process Analysis

Different product structures and precision requirements require early evaluation of machining feasibility and manufacturing solutions.

Complex Structure Optimization

Complex parts require optimized machining sequences, proper tool selection, and suitable fixture planning.

Multi-process Coordination

Some parts require multiple processes including turning, milling, drilling, and surface finishing.

정밀도 안정 관리

양산 과정에서는 치수 일관성을 유지하여 모든 제품이 품질 요구사항을 충족하도록 관리합니다.

Material and Process Matching

Different materials have different machining characteristics, requiring suitable machining parameters.

Confidentiality and Project Management

Strictly protect customer design data to ensure secure and reliable product development.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloys, stainless steel, titanium alloys, copper alloys, alloy steel, and other industrial materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Anodizing, plating, sand blasting, black oxide coating, heat treatment, protective coatings, and other finishing processes

Key Features

Custom Non-Standard Automation Parts Manufacturing

Based on customer equipment drawings, we manufacture customized automation components including structural parts, mounting parts, and functional components.

High-Precision Assembly Interface Machining

Critical areas such as locating surfaces, mounting holes, and connection structures are precision machined to ensure assembly accuracy.

Fast Response for Various Components

We support prototype development, low-volume production, and mass production to meet the fast-changing requirements of the automation industry.

Complex Structure Machining Capability

Combining 3-axis, 4-axis, and 5-axis CNC machining equipment, we manufacture complex geometries and multi-sided precision components.

Machining Challenges

Multi-Part Assembly Precision Control

Automation equipment consists of multiple components, requiring accurate dimensional matching between different parts.

Complex Mounting Structure Machining

Support parts, connecting components, and linear guide bases often include multiple machining surfaces and positioning structures.

Fast Delivery Requirements

Automation projects usually have short development cycles, requiring optimized machining processes and efficient production management.

Low-Volume High-Mix Production Management

Different projects involve small quantities and various specifications, requiring stable process management capabilities.

Multi-Material Machining Capability

Different equipment components may use different materials, requiring optimized machining parameters for each material.

Surface Quality Control

Appearance and functional components require both dimensional accuracy and excellent surface quality.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Stainless steel, titanium alloys, aluminum alloys, copper alloys, medical-grade metals, and other high-performance materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Electropolishing, passivation, anodizing, precision grinding, sand blasting, and special surface finishing processes

Key Features

High-Precision Medical Component Machining

We support machining of precision medical components including structural parts, connectors, and support components for medical equipment.

Strict Dimensional Control

Through high-precision CNC equipment and inspection processes, we ensure critical dimensions and assembly requirements.

Low-Volume Custom Manufacturing Capability

We support prototype development, low-volume production, and customized medical component manufacturing requirements.

Medical Material Machining Experience

We have machining experience with commonly used medical materials including stainless steel and titanium alloys.

Machining Challenges

Micro-Feature Machining

Medical components often contain fine and complex features, requiring optimized tooling selection and stable machining processes.

High-Precision Dimensional Requirements

Some medical components require strict tolerance control and consistent quality during long-term production.

Surface Quality Control

Contact areas and functional surfaces require excellent surface finish and integrity.

Difficult Material Machining

Materials such as titanium alloys and stainless steel require optimized cutting parameters based on material characteristics.

Cleaning and Protection Requirements

After machining, components must be protected from contamination, scratches, and surface damage.

Batch Consistency Control

Medical components require stable repeatability to ensure consistent quality across different production batches.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloy, stainless steel, carbon steel, copper alloy, alloy steel and other metal materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum diameter up to 800mm

Surface Treatment

Anodizing, electroplating, black oxide coating, sandblasting, heat treatment, precision grinding, and more

Key Features

Precision Machining for Rotating Components

Using CNC turning and mill-turn machining technology, we provide precision machining for rotating components such as discs and end covers.

Excellent Flatness Control

Precision machining of mounting surfaces and reference faces ensures reliable assembly performance.

Integrated Machining for Complex Structures

Supports integrated machining of complex features including holes, grooves, threads and locating structures.

Consistent Production Quality

Standardized machining processes and quality control ensure stable dimensions and repeatable precision in production.

Machining Challenges

End-face Flatness Control

Disc components require high flatness on mounting surfaces, making deformation control and precision machining essential.

Roundness and Runout Control

Rotary components require strict control of roundness and end face runout to ensure stable operation.

Thin-wall Structure Deformation Control

Lightweight disc components are prone to deformation during machining and require optimized fixturing methods.

Multi-Hole Machining Accuracy

The positional relationship between mounting holes and locating holes requires strict control.

Surface Quality Requirements

Mating surfaces and functional areas require excellent surface finish and controlled roughness.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Tool steel, stainless steel, alloy steel, aluminum alloys, copper alloys, carbide, and other engineering materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Heat treatment, hardening, nitriding, precision grinding, polishing, coating treatment, and other finishing processes

Key Features

High-Precision Tooling Component Machining

We support precision machining of tooling components including mold inserts, locating parts, slides, and core components to meet complex tooling assembly requirements.

Complex Micro-Feature Machining

With high-precision small-feature machining capability, we manufacture complex contours, grooves, and precision mating areas.

Machining High Hardness Materials

We machine tool steels and special alloy materials with optimized processes to ensure machining quality and tool life.

High Surface Finish Control

Critical tooling working areas are precision machined to improve surface finish and component service life.

Machining Challenges

High Precision Dimensional Control

Tooling components require strict tolerance control to ensure critical dimensions meet design specifications.

Complex Geometry Machining

Complex curved surfaces and precision contours require optimized tool paths to achieve high machining accuracy.

Machining High Hardness Materials

Heat-treated materials require suitable tooling and optimized machining parameters.

Micro-Feature Machining

Small grooves, holes, and sharp-edge features require highly stable machining processes.

Surface Quality Requirements

Tooling working areas require low surface roughness to ensure final product performance.

Machining Deformation Control

Precision small components require optimized cutting forces and machining sequences to minimize dimensional changes.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloys, stainless steel, carbon steel, copper alloys, alloy steel, and other metal materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Anodizing, plating, sand blasting, black oxide coating, heat treatment, protective coatings, and other finishing processes

Key Features

Multi-Functional Structure Machining

We manufacture various mechanical connection structures including connection plates, adapter parts, mounting bases, and support parts.

Precision Interface Machining

Critical areas such as mounting holes, locating holes, and mating surfaces are precision machined to ensure assembly accuracy.

Complex Hole Machining

We support one-time machining of complex structures including multiple holes, threaded holes, counterbores, and locating slots.

High Production Consistency

Standardized manufacturing processes and inspection controls ensure stable dimensions across different production batches.

Machining Challenges

Multi-hole Position Accuracy

Connection parts often contain multiple mounting holes, requiring precise control of hole-to-hole positioning for proper assembly.

Multi-Surface Machining Accuracy Control

Dimensional relationships between different machining surfaces require optimized machining sequences.

Thin-Wall Structure Deformation Control

Lightweight connection parts require effective vibration and deformation control during machining.

Complex Profile Machining

Irregular connection structures require optimized tool paths to improve machining efficiency and surface quality.

Assembly Interface Accuracy

Connection surfaces, locating surfaces, and mounting holes must meet downstream equipment assembly requirements.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Stainless steel, alloy steel, carbon steel, aluminum alloys, copper alloys, titanium alloys, and other metal materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Zinc plating, electroplating, black oxide coating, nickel plating, anodizing, heat treatment, anti-corrosion coating, and other finishing processes

Key Features

Custom Machining Capability

We manufacture special threaded parts including custom bolts, nuts, pins, and fastening parts according to customer drawings.

High-precision Thread Machining

Using CNC turning and precision machining processes, we produce internal threads, external threads, fine-pitch threads, and complex thread structures.

Reliable Fastening Performance

Strict control of dimensional tolerances and surface quality ensures stable assembly and long-term reliability.

Multi-Material Machining Capability

We support machining of various metal materials to meet different strength, corrosion resistance, and application requirements.

Machining Challenges

Thread Accuracy Control

Threaded parts require precise control of thread profile, dimensions, and fit accuracy to prevent assembly issues.

Small Structure Machining

Small threaded parts often have complex structures requiring high tool accuracy and stable machining processes.

Material Strength Control

High-strength steel and stainless steel require optimized cutting parameters due to higher machining difficulty.

Concentricity Requirements

Proper concentricity between threads, heads, and locating structures is essential for reliable assembly.

Surface Treatment Consistency

Special surface treatments require controlled corrosion resistance and dimensional changes.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Stainless steel, copper alloys, aluminum alloys, alloy steel, carbon steel, and other metal materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Chrome plating, electroplating, black oxide coating, anodizing, heat treatment, precision grinding, and other finishing processes

Key Features

High-Precision Internal Bore Machining

We support precision bore machining, internal diameter processing, and diameter control to meet shaft fitting and guiding requirements.

Excellent Assembly Performance

Strict control of inner and outer diameter tolerances ensures precise assembly with shafts, pins, and other matching parts.

Wear-Resistant Structure Machining

We manufacture functional parts such as wear-resistant bushings, guide bushings, and shaft sleeves according to application requirements.

Stable Batch Manufacturing Capability

Through standardized processes and inspection procedures, we ensure consistent dimensions during long-term production.

Machining Challenges

Precision Control of Bore Dimensions

Sleeve parts usually require high internal bore accuracy, requiring strict control of machining errors and tool wear.

Roundness and Concentricity Control

The relationship between the internal bore and outer diameter must be accurately controlled to ensure stable assembly.

Thin-Wall Sleeve Deformation Control

Thin-wall sleeve parts are prone to deformation during machining and require optimized clamping methods.

Surface Roughness Requirements

Sliding contact areas require excellent surface quality to reduce friction and wear.

Long Sleeve Part Machining Stability

Long sleeve parts require proper vibration control and optimized machining parameters.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Stainless steel, aluminum alloys, copper alloys, carbon steel, alloy steel, and other metal materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum outer diameter up to 800mm

Surface Treatment

Anodizing, electroplating, black oxide coating, sandblasting, heat treatment, precision grinding, and more

Key Features

High-Precision Internal and External Diameter Machining

CNC turning and mill-turn technologies are used to achieve high-precision machining of inner diameters, outer diameters, and end faces.

우수한 동심도 관리

Precision fixturing and optimized machining processes ensure positional accuracy between inner and outer circular features.

Stable Dimensional Consistency

Suitable for prototypes, low-volume production, and mass production with consistent dimensions across batches.

Multi-Structure Machining Capability

Supports machining of complex ring structures including grooves, steps, chamfers, and threads.

Machining Challenges

Inner and Outer Diameter Accuracy Control

Ring parts often require precision fits, requiring strict control of inner and outer diameter tolerances.

Roundness and Concentricity Requirements

Circular geometry stability must be maintained to prevent assembly deviations.

Thin-Wall Ring Deformation Control

Thin-wall ring structures are prone to deformation during machining, requiring optimized cutting parameters and fixturing methods.

Surface Roughness Control

Sealing and mating areas require high surface quality to ensure functional performance.

Groove and Complex Structure Machining

Some ring parts include retaining grooves and sealing grooves requiring precise machining.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloys, stainless steel, titanium alloys, copper alloys, and other high-performance materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Anodizing, hard anodizing, electropolishing, passivation, precision grinding, special coatings, and other surface finishing processes

Key Features

High-Precision Complex Structure Machining

We support machining of complex semiconductor equipment components including chambers, support parts, and mounting structures to meet high-precision assembly requirements.

Clean Manufacturing Capability

We focus on process control and surface quality management during machining to meet cleanliness requirements for semiconductor equipment components.

High-Stability Dimensional Control

Through precision machining equipment and inspection processes, we ensure long-term stability of critical dimensions.

Multi-Material Machining Experience

With machining experience in aluminum alloys, stainless steel, titanium alloys, and other materials, we support various semiconductor equipment applications.

Machining Challenges

High Precision Dimensional Control

Semiconductor equipment components typically require micron-level dimensional control with strict machining tolerance management.

Complex Cavity Machining

Internal cavities, deep grooves, and special structures require optimized tool paths and machining processes.

High Surface Quality Requirements

Component surfaces require low roughness levels to prevent impact on equipment performance and service life.

Material Machining Challenges

Materials such as aluminum alloys, stainless steel, and titanium alloys require optimized cutting parameters according to material characteristics.

Thermal Deformation and Residual Stress Control

Precision machining requires minimizing material deformation to ensure final dimensional stability.

Cleaning and Protection Requirements

After machining, components must be protected from contamination and surface damage to ensure delivery quality.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Stainless steel, alloy steel, carbon steel, aluminum alloys, copper alloys, titanium alloys, and other metal materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Heat treatment, black oxide coating, electroplating, chrome plating, anodizing, precision grinding, and more

Key Features

High-Precision Turning Machining

CNC turning centers and mill-turn machines are used to manufacture shaft parts, ensuring accuracy of outer diameter, end faces, and mating dimensions.

Integrated Complex Structure Machining

Supports single-operation or multi-process machining of shoulders, grooves, threads, holes, keyways, and other complex features.

Excellent Concentricity Control

Precision fixturing and optimized machining processes ensure concentricity accuracy between multiple rotating features.

Multi-Material Machining Capability

Supports stainless steel, alloy steel, aluminum alloys, copper, and other materials for different mechanical applications.

Machining Challenges

Concentricity Accuracy Control

Shaft parts usually contain multiple diameter sections, requiring precise concentricity control between different machining areas.

Long Shaft Machining Stability

Long shaft machining is prone to vibration and deformation, requiring optimized cutting parameters and fixturing methods.

Surface Roughness Control

Shaft mating surfaces typically require low surface roughness to ensure assembly accuracy and stable operation.

Thread and Precision Fit Machining

Internal/external threads and shaft-hole fitting areas require strict dimensional tolerance control.

Post-Heat Treatment Dimensional Control

Some shaft parts require heat treatment, requiring deformation compensation and subsequent precision machining.

Multi-Process Consistency Control

Combined processes such as turning, milling, and drilling require consistent dimensional relationships between different operations.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloys, stainless steel, carbon steel, copper alloys, alloy steel, and other metal materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Anodizing, electroplating, black oxide coating, sandblasting, heat treatment, protective coating, and more

Key Features

High Precision Datum Surface Machining

Precision CNC machining centers are used to manufacture critical datum surfaces, ensuring dimensional accuracy and assembly stability.

Multi-Hole Precision Machining

Supports drilling, tapping, counterboring, reaming, and other hole machining processes for complex hole patterns.

Multi-Surface Integrated Machining

Multi-axis machining reduces repeated setups and improves positional accuracy between multiple machined surfaces.

Stable Batch Production Capability

Standardized manufacturing processes ensure consistent dimensions and reliable delivery across different production batches.

Machining Challenges

Flatness Control

Block Parts often contain multiple precision surfaces requiring strict control of flatness and surface quality.

Six-Side Dimensional Relationship Control

Strict dimensional relationships between multiple surfaces are required to maintain overall geometric accuracy.

Hole Position Accuracy

Precise positioning machining is required to maintain accuracy between mounting holes and locating holes.

Material Deformation Control

Some aluminum alloys and stainless steel materials may experience stress deformation during machining, requiring optimized cutting parameters.

Large Block Part Machining Stability

Large block structures require optimized machining sequences to maintain stable processing quality.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloys, stainless steel, copper, carbon steel, and more

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Polishing, electroplating, passivation, black oxide coating, heat treatment, corrosion-resistant coating, and more

Key Features

High-Precision Sealing Structure Machining

Precision machining of sealing surfaces, mounting interfaces, and critical fitting areas ensures reliable sealing performance.

Complex Internal Bore and Flow Channel Machining

Supports machining of internal bores, stepped holes, and complex flow channel structures.

High-Reliability Material Machining

Experienced in machining stainless steel, alloy steel, and other difficult materials for demanding industrial applications.

Strict Dimensional Control

CNC precision machining and inspection equipment ensure critical dimensions meet assembly requirements.

Machining Challenges

Sealing Surface Precision Control

Valve sealing surfaces require high flatness, roundness, and surface quality to prevent leakage.

Internal Flow Channel Machining

Limited machining space in complex internal structures requires optimized tool paths and machining sequences.

Small and Deep Hole Machining

Some Valve Parts contain deep holes and small-diameter holes requiring machining stability and tool wear control.

Difficult Material Machining

Materials such as stainless steel and alloy steel require optimized cutting parameters to maintain machining quality.

Multi-Process Dimensional Control

Valve Parts often include multiple fitting areas requiring accurate positional control between machining processes.

Surface Quality Requirements

Critical sealing areas require high surface finish to meet functional performance requirements.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloys, stainless steel, carbon steel, copper alloys, and other materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Anodizing, electroplating, sandblasting, passivation, heat treatment, precision grinding, and more

Key Features

Integrated Complex Structure Machining

Supports integrated machining of internal cavities, external contours, and mounting interfaces to reduce assembly errors.

High Precision Dimensional Control

Precision CNC machining and quality inspection ensure accuracy of critical dimensions, hole positions, and assembly surfaces.

Multi-Surface Machining Capability

Combines 3-axis, 4-axis, and 5-axis machining equipment to manufacture complex angles and multi-directional features.

Lightweight Structure Machining

Optimized machining processes for lightweight housing parts achieve high strength with reduced weight.

Machining Challenges

Deep Cavity Structure Machining

Housing Parts often contain deep cavities, deep holes, and complex internal structures requiring optimized tool lengths and machining paths.

Thin-wall Structure Deformation Control

Lightweight housing parts with thin walls are prone to vibration and deformation, requiring optimized fixturing methods.

Multi-Surface Positioning Machining

Strict positional relationships between multiple machining surfaces require high repeat positioning accuracy.

Internal and External Profile Accuracy Control

Complex external profiles and internal structures require both dimensional accuracy and surface quality.

Heat Dissipation Structure Machining

Some equipment housings include cooling fins and ventilation structures requiring controlled machining efficiency and accuracy.

Assembly Interface Accuracy Requirements

Mounting holes, locating surfaces, and connection structures must meet assembly requirements.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete product images cannot be publicly displayed.
We use industrial representative images to demonstrate our machining capabilities and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloys, stainless steel, carbon steel, alloy steel, copper, and other metal materials

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum diameter up to 800mm

Surface Treatment

Black oxide coating, zinc plating, electroplating, sandblasting, polishing, heat treatment, and more

Key Features

High-Precision Connection Structure Machining

Flange parts are commonly used for equipment connections and sealing structures, requiring accurate mounting hole positions, end-face flatness, and concentricity.

Multi-Hole Precision Machining

Supports through holes, threaded holes, positioning holes, and other complex hole machining for precise assembly.

Stable Batch Production

Standardized manufacturing processes and strict quality control ensure reliable delivery from small batches to mass production.

Wide Material Compatibility

Capable of machining stainless steel, carbon steel, aluminum alloys, copper, and special alloy materials.

Machining Challenges

End-face Flatness Control

Flange sealing surfaces require high flatness to ensure assembly accuracy and sealing performance.

High Hole Position Accuracy Requirements

Strict positional relationships between mounting holes require precise positioning and inspection.

Concentricity Control

The center hole, outer diameter, and connection structures require precise concentric alignment.

Thin-wall Structure Deformation Control

Some lightweight flange parts have thin walls and require optimized fixturing methods to prevent deformation.

Large Flange Machining Stability

Large-diameter parts require optimized machining paths and cutting parameters to maintain stable processing quality.

Precision plate parts manufactured by CNC machining

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Precision plate parts manufactured by CNC machining

Due to NDA confidentiality agreements with some customers, complete part images cannot be publicly disclosed. We use industrial simulation images to demonstrate our Plate Parts CNC machining capability and technical expertise while strictly protecting customer design data and intellectual property.

Materials

Aluminum alloys, stainless steel, copper, carbon steel, and more

Machining Accuracy

Up to ±0.005mm tolerance

Maximum Machining Size

Maximum machining size up to 3000mm

Surface Treatment

Anodizing, plating, sandblasting, heat treatment, and more

Key Features

High-Precision Flat Machining

Ensures excellent flatness, hole position accuracy, and dimensional stability.

Complex Structure Machining

Supports multi-hole machining, complex structures, and precision fitting.

Wide Material Compatibility

Compatible with aluminum, stainless steel, copper, and other metals.

From Small Batch to Mass Production

Meets prototype development and mass production requirements.

Machining Challenges

Thin Plate Deformation Control

Optimized fixturing methods and machining sequences reduce deformation risks during processing.

Flatness Control

Precision machining and inspection processes ensure dimensional stability of large Plate Parts.

Complex Hole Machining

Supports multi-hole machining and high-precision positioning for assembly requirements.

Batch Consistency

Standardized manufacturing processes ensure consistent quality during batch production.

Precision plate parts manufactured by CNC machining

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Quality Inspection Methods in Precision CNC Machining: CMM, Vision Measurement, and Hardness Testing

In precision CNC machining, inspection is a critical process for ensuring part dimensional accuracy and product consistency.

Advanced machining equipment enables manufacturers to produce complex components, while a complete inspection system verifies whether the final parts meet engineering specifications.

This article introduces CMM coordinate measurement, 2D vision inspection, hardness testing, and common quality control methods to help customers understand the quality assurance process in precision component manufacturing.

Why Does CNC Machining Require Precision Inspection?

Engineer using inspection equipment for CNC part quality control

CNC machining uses computer-controlled programs to precisely control tool movement and manufacture high-precision components.

However, during actual production, part quality can still be affected by various factors, including:

  • Material variation
  • Tool wear
  • Machine condition
  • Manufacturing environment
  • Process parameters

Therefore, relying only on machining equipment is not enough to fully guarantee product quality.

Professional CNC manufacturers use advanced inspection equipment to verify machining results and maintain consistent quality.

Precision inspection helps confirm:

  • Whether dimensions meet requirements
  • Whether geometric tolerances are within specifications
  • Whether surface quality meets standards
  • Whether material properties comply with requirements

1.CMM Coordinate Measuring Machine (CMM Inspection)

What Is a CMM?

A CMM (Coordinate Measuring Machine) is a high-precision inspection device that measures the geometric dimensions of components by moving a probe along three coordinate axes.

CMM probe contact scanning of aluminum multi-cavity CNC parts for high-precision dimensional data collection

The three measurement directions include:

  • X-axis
  • Y-axis
  • Z-axis

By collecting three-dimensional coordinate data, CMM inspection can analyze:

  • Length dimensions
  • Hole diameters
  • Flatness
  • Roundness
  • Position accuracy

What Can CMM Inspection Measure?

CMM is widely used for complex precision component inspection.

Dimensional Inspection

Including:

  • Overall dimensions
  • Hole sizes
  • Shaft diameters

Geometric Tolerance Inspection

Examples:

  • Parallelism
  • Perpendicularity
  • Concentricity
  • Position tolerance

Complex Surface Inspection

CMM is especially suitable for:

  • Multi-axis machined parts
  • Complex structural components
  • Precision mold components

CMM provides accurate measurement data and detailed analysis results for quality verification.


Advantages of CMM Inspection

1. High Accuracy

CMM inspection meets the strict dimensional control requirements of precision manufacturing industries.

2. Reliable Measurement Data

CMM measurement report displaying nominal dimensions, measured values, tolerances and deviation results

Inspection results can be used for:

  • Measurement reports
  • Data records
  • Quality traceability

3. Suitable for Complex Components

Compared with traditional measuring tools, CMM can accurately inspect complex three-dimensional geometries.


2.2D Vision Measurement

What Is 2D Vision Inspection?

A 2D vision measuring system uses a high-resolution camera to capture component profiles and analyzes dimensions through specialized measurement software.

Automatic 2D vision measuring system for precision small part profile and dimensional inspection

Main inspection items include:

  • Flat dimensions
  • Hole positions
  • External profiles
  • Angle dimensions

What Parts Are Suitable for 2D Vision Measurement?

2D vision inspection is commonly used for:

  • Precision sheet metal parts
  • Small structural components
  • Electronic components
  • Precision stamped parts

Advantages:

  • Fast measurement speed
  • Non-contact inspection
  • Suitable for small precision parts

3.Hardness Testing

Why Is Material Hardness Testing Important?

Different components require different mechanical properties depending on their operating conditions.

Quality technician testing the hardness of heat-treated CNC machined metal parts with a Rockwell hardness tester

Hardness testing verifies:

  • Whether material properties meet requirements
  • Whether heat treatment results meet standards
  • Whether wear resistance is sufficient for application needs

Common Hardness Testing Methods

Main methods include:

  • Rockwell Hardness (HRC)
  • Brinell Hardness (HB)
  • Vickers Hardness (HV)

Suitable for:

  • Steel components
  • Alloy materials
  • Heat-treated parts

4.Quality Control Process During CNC Machining

Professional CNC machining suppliers normally apply complete process quality control.

Workshop operator measuring the outer diameter of CNC turned metal parts with a digital caliper

1) Raw Material Inspection

Before machining begins, manufacturers verify:

  • Material grade
  • Material specifications
  • Material properties

2) First Article Inspection (FAI)

Before mass production, the first completed part is fully inspected.

Verification includes:

  • Machining dimensions
  • Process parameters
  • Product requirements

3) In-Process Inspection

During production, critical dimensions are continuously monitored.

Adjustments may be made to:

  • Tool condition
  • Machining parameters

4) Final Inspection

After machining completion, finished parts undergo final quality verification.

Inspection includes:

  • Dimensional inspection
  • Appearance inspection
  • Performance verification

This ensures finished products meet customer technical requirements.


5.Importance of Inspection Equipment in Precision Manufacturing

Advanced machining equipment determines manufacturing capability, while inspection systems determine quality assurance capability.

For high-precision components:

Achieving machining accuracy is only the first step.

More importantly:

Manufacturers must prove through inspection data that products meet required standards.

Therefore:

CNC Machining Capability

+

Precision Inspection Capability

=

Reliable Manufacturing Capability


6.Quality Inspection Capability of Qingdao Likunda CNC Machinery Co., Ltd.

High-precision CMM scanning of aluminum CNC housings with synchronized 3D dimensional deviation analysis

Qingdao Likunda CNC Machinery Co., Ltd. focuses on quality control throughout the CNC machining process and has established a complete inspection system.

Main inspection equipment includes:

  • CMM Coordinate Measuring Machine
  • 2D Vision Measuring System
  • Hardness Testing Equipment
  • Precision Measuring Tools

Quality control process:

Machining Process Control

Precision Inspection

Quality Verification

Through this systematic approach, we provide customers with stable and reliable precision CNC machined components.

Conclusion

Precision inspection is an essential part of CNC manufacturing.

A professional CNC machining supplier requires not only advanced machining equipment but also a complete inspection system and strong quality management experience.

By using CMM inspection, 2D vision measurement, hardness testing, and other advanced inspection methods, manufacturers can effectively ensure part accuracy and product consistency.

Qingdao Likunda CNC Machinery Co., Ltd. is committed to providing customers with high-precision and reliable CNC machining services.

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