Custom Precision Machined Parts --Ultra High Precision,used in precision electronics, medical equipment, semiconductor equipment, inspection instrument, optical equipment and other fields. Supplier, Products

With advanced machining centers, high-speed milling machine,CNC grinding machines, CNC no-conventional machine tools, and six-axis linkage integrated processing machine tools, we can develop hardware with high precision and high surface quality requirements for our customers.

In terms of hardness , we can process metal parts above HRC58; in terms of materials, we can process stainless steel, super stainless steel, duplex stainless steel, titanium alloy, nickel base alloy, cobalt alloy, copper-nickel alloy, etc.

Such products are mostly used in precision electronics, medical equipment, semiconductor equipment, inspection instrument, optical equipment and other fields.

Product Description

Products Features

Ultra High Precision

By using multi-axis CNC machines (such as 5-axis machining centers), precise tolerances of ±0.005mm can be achieved. In some cases, the precision even reaches the level of 0.0025mm. A strict quality inspection system ensures that the key dimensions meet the requirements of high-end fields such as healthcare and aerospace.

Material Diversity

Support processing of various materials such as stainless steel, aluminum alloy, titanium alloy, copper and engineering plastics. The surface treatment process (such as passivation) can be selected according to the requirements to enhance performance.

Complex Structure

By using multi-axis linkage technology, complex geometric shapes can be processed, such as those for medical devices and components of unmanned aerial vehicles.

Industry Compatibility

It is widely applied in fields such as precision instruments, automobiles, communication equipment and automated machinery.

Application Fields

Precision machined parts, with their micrometer-level precision and the ability to process complex geometries, play a crucial role in multiple high-tech fields.

Electronic and semiconductor equipment

Lithography machine components: The silicon wafer carrier needs a flatness of ≤ 0.1 μm/100mm, and it is processed using a precision grinding method on a granite base.

5G base station filter: Cavity processing accuracy ±0.01mm, complex internal cavity structure is achieved through slow wire electrical discharge machining.

Medical Devices and Biotechnology Engineering

Surgical robot joint: Made of 316L stainless steel, precisely processed, with a mating clearance of ≤ 10 μm, ensuring smooth movement.

Implantable device: The surface of the artificial joint needs to be mirror-polished (Ra ≤ 0.2 μm) to reduce tissue friction. The material is cobalt-chromium alloy.

Automobile and New Energy Field

Electric drive system: The motor shaft is made of carburized steel 20CrMnTi, with gear shape accuracy reaching DIN 6 level, reducing transmission noise.

Hydrogen fuel cell bipolar plate: Flow channel depth tolerance ±0.02mm, achieved through ultra-precise stamping for micrometer-level sealing.

Aerospace and Defense Industry

Aircraft engine components: such as turbine blades and fuel nozzles need to meet geometric tolerances of ≤ 5 μm, surface roughness of Ra ≤ 0.4 μm. Complex curved surfaces are formed through five-axis CNC processing.

Missile guidance system: The inertial navigation components (such as gyroscope mounts) need to ensure micrometer-level coaxiality through precise turning. The materials are mostly titanium alloy TC4.

Frequently Asked Questions

1. What is the maximum precision level achievable in your CNC machining?
We utilize advanced multi-axis CNC machines capable of achieving tolerances as precise as ±0.005mm, with some specialized processes reaching up to 0.0025mm.
2. What types of materials do you work with?
We support a wide range of materials, including stainless steel, aluminum alloy, titanium alloy, copper, and various engineering plastics to suit different project requirements.
3. Can you handle complex geometries for medical or aerospace components?
Yes, by leveraging multi-axis linkage technology, we can process intricate geometric shapes necessary for high-tech applications like surgical robots and drone components.
4. How do you ensure the quality of the finished parts?
We implement a strict quality inspection system at every stage of the manufacturing process to ensure that all key dimensions meet the rigorous standards of high-end industries.
5. Are your parts suitable for semiconductor equipment?
Yes, we provide high-precision components for semiconductor equipment, including lithography machine parts and 5G base station filters, meeting stringent flatness and accuracy requirements.

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