Parts Design

CNC Machining Parts Design is the foundation of every high-precision, high-performance component. At XCM, we combine engineering expertise with advanced digital manufacturing to help you transform concepts into production-ready CNC parts with speed and accuracy. Our design-for-manufacturing (DFM) approach ensures every part is optimized for machinability, cost efficiency, and long-term reliability.

From tight-tolerance housings to complex multi-axis components, we design CNC parts that deliver maximum performance in demanding industries such as aerospace, robotics, automotive, medical devices, electronics, and industrial machinery. With XCM’s design support, you gain a smoother production flow, faster iterations, and components that meet both aesthetic and functional excellence.

Design-Driven CNC Machined Parts
Design-Driven CNC Machined Parts

At XCM, we don’t just manufacture parts—we help you design better parts for machining. Our engineering team works closely with you from the concept stage, reviewing your 3D models and drawings to ensure they are optimized for CNC milling, turning, and 5-axis machining. By considering tool access, part orientation, tolerances, and material behavior early in the design process, we help you avoid costly redesigns and shorten development cycles.

DFM Optimization for Performance and Cost
DFM Optimization for Performance and Cost

We apply Design for Manufacturability (DFM) principles to every project, focusing on wall thickness, radii, hole sizes, threads, and critical feature relationships to balance performance and cost. Our engineers recommend suitable materials, realistic tolerances, and finishing options based on your application—whether it’s medical, aerospace, robotics, automotive, or industrial equipment. This design-driven approach ensures your parts are not only functional on paper, but also stable, repeatable, and efficient to produce.

From Concept to Production-Ready Parts
From Concept to Production-Ready Parts

From rapid prototypes to production-ready components, XCM provides one-stop machined parts design support. You can send us your existing CAD files for optimization or share your functional requirements and let our team suggest design improvements. With our experience in complex geometries, multi-axis machining, and tight-tolerance assemblies, we help you turn ideas into robust, manufacturable designs that are ready for real-world use.

Parts Design is the critical first step in transforming ideas into functional, manufacturable products. At XCM, we focus on creating designs that balance innovation, performance, and real-world manufacturability. By combining engineering expertise with deep manufacturing knowledge, we ensure every part is optimized from the very beginning—saving time, reducing costs, and improving product lifecycle reliability.

Our team works closely with you to understand the purpose, environment, and performance requirements of each part. We evaluate materials, geometry, tolerances, wall thickness, surface finish needs, assembly requirements, and potential failure points. Through Design for Manufacturing (DFM) and Design for Assembly (DFA) principles, we refine your CAD models to achieve stronger structures, reduced machining complexity, and consistent production quality.

Parts Design 1
Parts Design 2
Parts Design 3

Material

6061606360825083 5754
20112014202450526101
6060 7075A356A380ZLD107
AiSI6Cu4 LM21   

Properties: Aluminum is a lightweight, corrosion-resistant, and high-strength metal that is easy to machine and has good electrical and thermal conductivity.

Applications: Aerospace, automotive manufacturing, construction, electronics packaging.

General Surface Treatments: Anodizing, Electroplating, Passivation, Blackening, Electrophoresis, Spray Painting, Screen Printing, Laser Engraving.

HPb59-1CuZn39pb1C3600CZ122CuSn6
CA104C10100C12000QSn7-0.2CuZn40
CZ109CZ122TP1TP2CU-OF
C17200Cucr1CuBe2H62H65QSn7-0.2
QAI9-4QA110-4-4C62300C63020C65500
Properties: Copper has excellent electrical and thermal conductivity and corrosion resistance. It is commonly used in electrical and heat-exchange applications.Applications: Electrical equipment, electronic components, heat exchangers, building materials.General Surface Treatments: Anodizing, Electroplating, Passivation, Blackening, Electrophoresis, Spray Painting, Screen Printing, Laser Engraving.
17-4PH0Cr17Ni4Cu4NbS17400SUS630SUS316
SUS304SUS303SUS316TiSUS321SUS420
SUS430SUS4314Cr131Cr130Cr18Ni9
1Cr18Ni9MoZn0Cr17Ni13Mo1Cr18Ni9Ti1.43011.4305
1.44011.44351.41041.4034
Properties: Stainless steel is a corrosion-resistant steel alloy containing a minimum of about 10.5% chromium, often with additions of nickel, molybdenum, and other elements. It offers excellent resistance to rust and staining, high strength, and good toughness across a wide temperature range. Depending on the grade (austenitic, ferritic, martensitic, duplex, precipitation-hardening), stainless steel can provide enhanced formability, weldability, hardness, and chloride-stress-corrosion resistance, making it suitable for both structural and hygienic applications.Applications: Food and beverage processing equipment, kitchenware and household appliances, chemical and pharmaceutical equipment, medical instruments and implants, architectural façades and handrails, marine components, pressure vessels, pumps and valves, automotive exhaust systems.General Surface Treatments: Pickling and passivation, Electro-polishing, Mechanical polishing, Brushing (satin finish), Sandblasting / bead blasting, PVD coating, Electroplating (where applicable), Spray painting (for specific uses), Laser engraving, Screen printing.
PolyformaldehydePOMPolyetheretherketonePEEKTeflon
PTFENylonPA6PA66Polyphenylsulfide
PPSPolycarbonatePCPolysulfonePSU
Properties: Plastics are synthetic polymers characterized by lightweight, chemical resistance, electrical insulation, and moldability. Properties vary widely: thermoplastics (e.g., POM, PA6) can be remelted, while thermosets (e.g., epoxy) harden permanently. Some exhibit high-temperature stability (PEEK) or low friction (PTFE).Applications: Automotive parts (bumpers, insulators), consumer goods (packaging, toys), medical devices (syringes, implants), electronics (casings, connectors), industrial components (gears, seals).General Surface Treatments: Anodizing, Electroplating, Passivation, Blackening, Electrophoresis, Spray Painting, Screen Printing, Laser Engraving.
Monel 400 Monel 500 Inconel 718Inconel 625Inconel 600
Inconel X-750 C-276 GH41692.4360 UNS NO4400 
Properties: Alloys are materials composed of two or more metallic elements, offering enhanced mechanical properties, corrosion resistance, and thermal stability compared to pure metals. Key characteristics include high strength-to-weight ratios, exceptional heat resistance, and tailored performance for specific industrial environments.Applications: Aerospace、Chemical Processing、Medical、Marine Engineering、EnergyGeneral Surface Treatments: Anodizing, Electroplating, Passivation, Blackening, Electrophoresis, Spray Painting, Screen Printing, Laser Engraving.
TC4TC6TC9Ti-6A-4VGrade5
Grade25TA11 TA15IMI3173AlTC17
TC11TA1TA2 TC20TC1
Ti-5Al-2.5SnTi-6Al-6V-2SnTi-13V-11Cr
Properties: Titanium is a lightweight, high-strength, corrosion-resistant metal with excellent biocompatibility and oxidation resistance. It has an excellent strength-to-weight ratio, making it suitable for high-demand industrial environments.Applications: Aerospace, medical implants, chemical equipment, marine engineering, sports equipment.General Surface Treatments: Anodizing, Electroplating, Passivation, Blackening, Electrophoresis, Spray Painting, Screen Printing, Laser Engraving.

Application

MARITIME and Oil & GAS

Maritime and Oil & Gas

XCMCNC passed ISO9001, Marine oil field machining components rely on five-axis linkage ultra-precision machining technology, combined with Inconel/Ti-6Al-4V and other special alloy materials, the precision of key components up to ±0.005mm, nano-coating and deep nitriding treatment, corrosion resistance increased by 60%, Can withstand 1000℃ high temperature and 180MPa high pressure environment. XCM extends component life up to 120,000 hours through four-stage gas seal testing and stress/temperature/wear/vibration suppression technology.

Aerospace application

Aerospace

Micron machining ‌ 5-axis CNC technology (accuracy ±0.003mm) supports complex surface processing of titanium alloy and nickel-based superalloy; The intelligent cutting parameter optimization system controls the tool load in real time and reduces the machining loss by 22%.Complex Geometry Fabrication‌ Achieves intricate shapes (e.g., turbine disks, airfoils) via CNC programming, meeting aerodynamic and lightweight requirementsAutomated Production‌ Minimizes human errors and enhances efficiency through CNC automation, ensuring consistency in large-scale manufacturing

Medical application

Medical

Through ISO 9001 and ISO 13485 certification, relying on five-axis ultra-precision machining technology, combined with medical grade titanium alloy (Ti-6Al-4V ELI), cobalt-chromium alloy and biocompatible materials such as PEEK, the processing accuracy of key implants is up to ±0.005mm, and through nano-level electrolytic polishing and passivation treatment, surface roughness can reach to Ra≤0.1μm. Through stress optimization and microdefect control technology make the component life of more than 15 years, the defect rate < 0.005%.

Energy application

Energy

The advantages of XCM in the field of energy component processing are reflected in three aspects: technology, efficiency and sustainability. The five-axis linkage CNC system and ultra-precision machining technology can complete high-precision machining of high-end components such as complex surfaces and thin-walled structures (accuracy up to ±0.003mm), meeting the requirements of harsh working conditions such as wind turbine blades and nuclear power seals. Through computer software programming and process optimization, the processing efficiency can be increased by more than 30%, material loss can be reduced by 15%, and the unit cost can be reduced by 20%.

Robotics and Automation

Robotics & Automation

XCMcnc has become an ideal partner for robot component manufacturing with its high-precision processing technology and industry experience. We use imported five-axis CNC equipment (accuracy ±0.01mm) and strict quality inspection processes to ensure the durability and dynamic performance of key components such as robot arm joints and reducers. The mature one-stop service covers design optimization, material selection to mass production, supports the processing of special materials such as titanium alloy and carbon fiber, and meets the lightweight requirements of collaborative robots and high load requirements of industrial robots.

Automotive application

Automotive

As a professional partner in the field of precision parts processing in the automotive industry, XCMcnc provides customers with high-precision and high-reliability component solutions with advanced CNC machining technology, intelligent production systems and rich industry experience. We use advanced machine tools such as five-axis linkage machining centers and turning and milling equipment, combined with a strict IATF 16949 quality management system to ensure that the dimensional accuracy of various metal parts reaches the micron level, fully meeting the stringent requirements of key parts such as engines and transmission systems.

Why Choose XCM CNC

Transparent Pricing

Clear and honest pricing from the start so you always know exactly what you will pay.

No Minimum Order

Whether one piece or one hundred we serve every order with equal precision and care.

Accurate Prototyping

Get prototypes that match your vision with professional-grade precision and dimensional accuracy every time

Great Experience

Comprehensive on-demand machining capacity and integration of machining material resources across China.