Industries We Support

Machined components for systems that have to perform.

From robotic motion systems to laboratory instruments, each application brings a different combination of geometry, materials, tolerances, finish and inspection. Xunke CNC builds the manufacturing plan around those requirements.

01Drawing-led DFM and revision review
02Prototype, pilot and repeat-batch support
03Metals and engineering plastics
04Inspection scope matched to the part

Find Your Sector

Start with where the part has to work.

Select an industry to see the typical parts and manufacturing priorities we review.

Application Profiles

Different industries. Different definitions of risk.

These profiles frame the engineering conversation. Final capability is confirmed against your released drawing and order requirements.

Precision machined metal parts for robotics and automationIND / 01

Robotics & Automation

Need: repeatable interfaces, controlled alignment and efficient moving mass.

Manufacturing planning focuses on datum relationships, thread quality, assembly access and the features that determine motion accuracy.

Typical parts
End-effector platesActuator housingsSensor bracketsPrecision mounts
Aircraft wing representing aerospace development applicationsIND / 02

Aerospace Development

Need: lightweight geometry, controlled revisions and inspection around critical features.

We review thin walls, access, distortion risk and documentation needs for prototypes, test fixtures and development hardware.

Typical parts
Lightweight bracketsTest fixturesSensor mountsGround-support parts
Medical equipment environment for precision component applicationsIND / 03

Medical & Laboratory Equipment

Need: precise fit, burr control and consistent visible surfaces.

For non-implant devices and laboratory hardware, we align machining and finishing with the specified functional and cosmetic requirements.

Typical parts
Instrument housingsLab fixturesOptical mountsDevice enclosures
Automotive workshop representing vehicle development applicationsIND / 04

Automotive & Mobility

Need: fast design iteration followed by a repeatable low-volume route.

The machining plan considers evolving revisions, assembly trials, finishing and the transition from prototype parts to scheduled batches.

Typical parts
Prototype housingsThermal bracketsAssembly fixturesPerformance parts
Electronic circuit board representing electronics and optics applicationsIND / 05

Electronics & Optics

Need: thermal performance, stable mounting and controlled cosmetic finish.

We review flatness, thin features, heat-transfer surfaces, threaded interfaces and finishing areas that remain visible after assembly.

Typical parts
Heat sinksInstrument bodiesOptical mountsProtective enclosures
Industrial engineer working with production equipmentIND / 06

Industrial Equipment

Need: dependable fit, practical lead time and repeat supply when the machine returns to service.

Projects range from new-machine components to replacement parts, jigs and tooling produced from controlled drawings or measured requirements.

Typical parts
Machine componentsReplacement partsJigs & fixturesProduction tooling

Shared Engineering Priorities

The industry changes. The control points stay visible.

Before quotation, identify which requirements affect function, assembly, inspection and the final appearance of the part.

01 / DATUMS

Functional relationships

Define the surfaces and features that control alignment, motion or assembly.

02 / MATERIAL

Material and condition

Confirm grade, temper or condition when they affect machining, strength or finish.

03 / FINISH

Surface requirements

Separate cosmetic zones, sealing areas, wear surfaces and post-finish dimensions.

04 / EVIDENCE

Inspection records

Agree which dimensions, material documents and reports are required with the order.

Typical Part Programs

A practical route from first part to repeat order.

These examples describe common sourcing patterns rather than published customer claims.

ROBOTICSPROGRAM / 01

Multi-side aluminum actuator bracket

DFM around tool access, threaded features and datum relationships, followed by controlled repeat batches.

INSTRUMENTATIONPROGRAM / 02

Precision mount with finished surfaces

Critical bores and mounting faces protected through machining, finishing and final inspection.

INDUSTRIALPROGRAM / 03

Replacement component for an active machine

Material, fit and key interfaces reviewed to support practical replacement and future repeat supply.

Application Review

Five steps before the part is released.

STEP 01

Define use

Share where the part works and which features drive performance.

STEP 02

Review drawing

Confirm revision, material, tolerances, finish and inspection points.

STEP 03

Plan process

Match setups, tooling and secondary operations to the geometry.

STEP 04

Machine & verify

Check agreed control points during production and final inspection.

STEP 05

Release & repeat

Pack, document and retain the confirmed revision for future orders.

Discuss Your Application

Send the drawing and tell us what the part has to do.

Include the industry, assembly function, material, quantity, finish, critical tolerances and target date. We will review the manufacturing route around the actual requirement.