High Precision Machining Parts
Machining Factory: Machining parts
Material: Aluminum alloy
Origin: Zhongshan, China
Production: CNC machining
Size: Customized
Surface Treatment: Anodized
Color: Custom
Inspected:100% Inspected before shipment
Shipping:15-25Work days
Quantity(pieces):1-100000
The machining parts are applied in many industries. It is about machining parts. What is your concern?
Everyone was concerned about machining parts accuracy. Machining accuracy is one of the core indicators. Such as dimensional tolerance and shape error, which will affect the parts assembly and performance.
MK CNC Is A Machining Parts Manufacturer. How To Improve The Machining Parts Accuracy?
We need to select high-precision CNC machines and machining centers, This is the key first step, it improves the machining parts’ accuracy.
High-precision machines can provide higher machining accuracy and stability at the hardware level. Here are some detailed suggestions and
precautions on how to improve the machining parts’ accuracy.

Custom parts product display

Machines Produce Parts Accuracy
Positioning accuracy: This refers to the machine’s operation on each axis reaching the specified position during movement. The high-precision machines are usually at the micron level (for example, ±0.01mm or even higher).
Repeatability: This refers to the machine’s return to the same position multiple times, its accuracy consistency.
The high-precision machines repeatability is usually very high (for example, ±0.005mm or higher), which is very important for repeated processing in mass production.
Machining accuracy: This refers to the dimensional accuracy that the machine can achieve during the actual machining process. High-precision machines usually have high-precision spindles, guide rails, and transmission systems, which can achieve high-precision cutting.
Spindle accuracy: The spindle runout and rigidity directly affect the parts’ surface accuracy. High-precision spindles usually have low runout (less than 0.002mm) and high rigidity.
Thermal stability: High-precision machines are usually equipped with thermal compensation systems to reduce thermal deformation caused by temperature changes
Choose The Right CNC Machines For Machining Parts
CNC machines: Process rotating parts should choose high-precision CNC machines, these machines are usually equipped with high-precision spindles and turrets, it can achieve high-precision turning.
Machining center: For complex parts multi-process processing, chioce the machining center is better. High-precision machining centers usually have multiple axes, such as five-axis machining centers, it can achieve high-precision processing of complex shapes.
Grinding machine: For requires extremely high precision surface processing, such as precision shaft parts or molds, the high-precision grinder is indispensable. Grinding machines can achieve micron-level processing accuracy.
MK CNC Machining Parts Manufacturer Machines Additional Functions
What are the additional functions of machines?
Error compensation function: Many high-precision machines are equipped with error compensation systems, it can monitor and compensate for geometric errors, thermal errors, etc. The machine in real time, thereby further improving the processing accuracy.
Intelligent control system: Modern high-precision machines are usually equipped with advanced CNC systems, it can realize functions, such as automatic optimization of cutting parameters and real-time monitoring of processing status.
Automated loading and unloading system: For mass production, the automated loading and unloading system can improve production efficiency and reduce human errors.
Conclusion
Choosing MK CNC machining parts manufacturer, we have high-precision CNC machines improving the machining accuracy. Our engineer understands the machine’s key accuracy indicators, selects the appropriate machine type, and considers additional functions. We can process high-precision machining parts to meet your request.
customized from drawings
extrusion, CNC, and anodized
shipment on time




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