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Robotics

MXY Machining is at the forefront of the robotics industry, delivering precision CNC machined parts that are essential for the development and operation of advanced robotic systems.

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Why Choose MXY Machining for Robotics Parts

Uncompromising Precision

We operate advanced 5-axis CNC machining centers capable of holding tolerances as tight as ±0.005 mm (±0.0002 inches) on complex geometries.

Deep Expertise

MXY Machining has decades of experience machining the most challenging alloys such as Titanium, Inconel & Nickel Superalloys, Aluminum, Stainless Steels, Advanced Composites & Ceramics.

Advanced Capabilities

MXY Machining eliminates the risk and delay of multi-vendor handoffs such as 5-axis CNC milling, CNC turning, Surface finishing & treatment, Reverse engineering & prototyping.

Short lead time

Our every programs run on schedule integrity. MXY Machining combines capacity planning, real-time production monitoring, and a proven supply chain to deliver.

Huge production capacity

We can fulfill orders of virtually any size, from one-off engine part prototypes to full production of injection molded headlamp covers.

Easy quotation system

Our engineers will review your designs immediately to provide a fast and accurate quotation for the project. Please contact us and join our newslettel chanel.

From Prototyping to Manufacturing Robotics Parts

Prototyping

01

Prototyping

Get high-quality early-stage prototypes, improve your ideas, materials, and designs, and quickly create test-ready models.Our process helps you assess and refine your designs so they are fully working and ready for testing.

  • Accelerated revisions for materials and design
  • Refined prototypes for complex shapes
  • Realistic models that closely resemble the final product.
exam

02

Engineering Validation and Testing

Quickly develop precise functional prototypes to ensure that performance standards are met.Our models identify potential design issues and help efficiently address them through several rounds of prototype testing.

  • Accurate component fabrication
  • Reliable design and technical support
  • Custom material properties for unique designs
Design-velidation

03

Design Validation and Testing

Confirm the function, performance, and appearance of parts using various materials and surface finishing methods.Anebon offers mechanical designs, materials, and finishes that meet the requirements for aerospace components.

  • Premium parts for user testing and market analysis.
  • Checking if the parts work properly and look good.
  • Long-lasting, high-quality surface treatments.
manufacture

04

Production Validation and Testing

Prepare design documents for large-scale, high-quality manufacturing processes, ensuring strong quality assurance and continuous feedback throughout the design validation testing phase.Make final adjustments to improve the ease of manufacturing.

  • Ensure quick delivery of production-ready components.
  • Confirm the effectiveness of manufacturing procedures.
  • Create tooling for small-scale production batches.
mass-production

05

Mass Production

Prepare design documentation for full-scale, production-ready manufacturing, ensuring strong quality control and continuous feedback throughout the design validation testing phase.Carry out final adjustments to improve the ease of manufacturing.

  • Provide high-quality, custom components.
  • Ensure precise dimensional accuracy in machined parts
  • Include post-processing procedures to achieve surface finish

State-of-the-Art Facilities

our cutting-edge facilities equipped with the latest technology and infrastructure to drive innovation and excellence in every aspect.

Aerospace industry - Facility 6
Precision Machining Center

High-tech facility for exacting CNC manufacturing with utmost accuracy and efficiency.

Aerospace industry - Facility 2
CNC Production Workshop
Dedicated space for streamlined production using cutting-edge CNC technology.
Aerospace industry - Facility 3
Advanced CNC Manufacturing Hub
Centralized facility equipped for intricate CNC component fabrication and assembly.
Aerospace industry - Facility 4
Automated Machining Facility
Fully automated workshop for precise, rapid CNC machining operations.
Aerospace industry - Facility 1 5
High-Performance CNC Workshop
Dynamic space optimized for delivering top-tier CNC machining performance.
Aerospace industry - Facility 1
Integrated CNC Production Plant
Comprehensive facility integrating CNC processes for seamless manufacturing workflow.

Robotics industry CNC Machined Parts We Offer

MXY Machining manufactures precision Robotics industry CNC machined parts for commercial, defense, and space programs including turbine blades, engine mounts, structural brackets, hydraulic manifolds, and landing gear components.

Engine components

Landing gear parts

Aircraft structural parts

Turbine blades

Housings and enclosures

Heat shields

Brackets and mounts

Actuator components

Fasteners

Electrical connectors

Materials for Robotics Parts

We offer 30+ metal alloys and hundreds of high-performance plastics for prototyping to full-scale production, with finishing options to enhance durability and performance.

industry-material-(steel)
industry-material-(aluminum)
industry-material-(titanium)
industry-material-(nylon)
industry-material-(pmma)
industry-material-(silicon)
Steel
Aluminum
Titanium
PA(Nylon)
PMMA
Silicone
CNC machining, rapid tooling
CNC machining, rapid tooling, sheet metal
CNC machining, SLM 3D printing
CNC machining, SLS 3D printing, injection molding
CNC machining, injection molding
Liquid silicone injection molding
Strong, corrosion-resistant, range of grades
Machinable, strong, range of grades
Lightweight, temperature-resistant
Strong, smooth surface finish
Transparent, shatter-resistant
Durable, flexible, biocompatible, inert
Brake components, engine components
Cylinder heads, manifolds, Ductwork, housings, bus ducts
Engine valves, axle shafts, pipes, nuclear waste storage
Peripheral engine parts, covers and housings
Lighting components
 
Seals, cover assemblies, Fluid management devices
 

Surface Finishes for Robotics Parts

We offer 30+ metal alloys and hundreds of high-performance plastics for prototyping to full-scale production, with finishing options to enhance durability and performance.

As machined

Passivation process

The default finish straight from CNC machining like cnc milling, cnc turning, or cnc drilling  with no secondary treatment. Visible tool marks, feed lines, and end mill paths remain on the surface, with a typical Ra of 1.6–6.3 µm. Edges may carry slight burrs. The most cost-effective finish suitable for functional components, internal parts, brackets, and any application where cosmetic appearance is secondary to dimensional accuracy and cost. Often followed by deburring or other secondary finishes as needed.

as-machined

Passivation process

The foundational corrosion protection layer for automotive bodies and chassis. Parts are immersed in a water-based paint bath and an electric current deposits a uniform, pinhole-free primer film on every surface including recesses and cavities. Provides excellent corrosion resistance and serves as the base for subsequent paint layers. Standard for all automotive body-in-white, frames, and structural components.

E-Coating

Passivation process

Electrostatic dry powder paint applied to wheels, chassis brackets, suspension components, and trim, then thermally cured for a durable, chip-resistant finish. Available in any RAL color with matte, satin, or gloss sheens. Provides excellent corrosion and UV resistance and the standard finish for alloy wheels, underbody components, and exterior trim requiring durability and color consistency.

Powder Coating

Passivation process

Electrochemical deposition of a bright, hard, highly reflective chromium layer (typically over nickel undercoat) on exterior trim, door handles, grilles, bumpers, and decorative accents. Provides a premium mirror-like appearance with excellent corrosion and scratch resistance. Widely used in automotive exterior styling from classic chrome bumpers to modern trim accents for a distinctive, high-end aesthetic.

Plating-(Chrome-Nickel-Gold)

Passivation process

Electrochemical process creating a hard, corrosion-resistant, dyeable aluminum oxide layer on aluminum wheels, interior trim, engine components, and structural brackets. Available in any color like black, gunmetal, silver, blue, red. Provides wear protection, improved corrosion resistance, and a premium colored finish. Widely used for aftermarket wheels, interior trim pieces, pedal sets, and engine bay components.

Anodizing

Passivation process

The standard multi-layer finish for automotive body panels: primer → color base coat (solid, metallic, or pearl) → transparent clear coat for gloss, UV protection, and scratch resistance. Produces a deep, high-gloss, durable finish with excellent color retention. The defining aesthetic finish for all vehicle exteriors available in thousands of colors with solid, metallic, pearl, and matte effects.

Automotive-Paint

Passivation process

Hot-dip galvanizing immerses steel chassis, underbody brackets, and structural components in molten zinc, creating a thick, corrosion-resistant zinc-iron alloy coating with a characteristic spangled pattern. Provides excellent long-term corrosion protection for outdoor and underbody applications. Standard for automotive frames, chassis components, brackets, and any steel part exposed to road salt, moisture, and harsh underbody conditions.

Galvanized

Passivation process

Chemical conversion coating creates a uniform matte black finish on steel fasteners, bolts, nuts, brackets, and small hardware. Minimizes light reflection, provides mild corrosion protection (often enhanced with oil or wax topcoat), and does not affect dimensional accuracy. Widely used for automotive fasteners, interior hardware, engine compartment components, and any steel part requiring a non-reflective black finish without plating thickness.

Black-Oxide

Passivation process

Mechanical process bombarding the surface with small spherical media (steel shot, glass beads) to create a uniform dimpled texture and induce compressive residual stresses, significantly improving fatigue resistance. Essential for high-stress engine components like connecting rods, crankshafts, gears, valve springs, and suspension components. The peened surface also improves lubricant retention and reduces crack propagation in cyclically loaded automotive parts.

Shot Peening

Passivation process

Vacuum deposition process applying a thin, hard, wear-resistant metallic coating (titanium nitride, chromium nitride, zirconium nitride) in various colors such as gunmetal, black, bronze, gold. Produces a premium, durable, scratch-resistant finish with excellent color stability. Used for high-end automotive interior trim, gear shift knobs, door handles, badges, and luxury vehicle accents requiring a refined metallic appearance with superior durability over traditional plating.

PVD Coating for Aerospace Industry

Passivation process

High-temperature resistant ceramic-based coating applied to brake calipers, exhaust components, engine parts, and underbody heat shields. Withstands temperatures up to 1000°C+ while providing a smooth, glossy, durable finish in vibrant colors (red, yellow, blue, black). Protects against heat, corrosion, chemicals, and road debris. Popular for performance brake calipers, exhaust manifolds, turbo housings, and any automotive component requiring heat resistance with a premium colored finish.

Ceramic Coating

Why Choose MXY Machining?

At MXY Machining, we deliver high-precision CNC machining with fast turnaround times and exceptional quality. From prototypes to production parts, we ensure accuracy, efficiency, and reliability in every order.

Material Excellence

We use only the highest-grade materials, ensuring durability and performance in every sheet fabrication project.

Fabrication Precision

Our cutting-edge technology and machinery allow for precise, efficient, and cost-effective sheet fabrication solutions.

Design Adaptability

We offer extensive customization options to perfectly align with your project specifications and design requirements.

Fast Turnaround

From rapid prototyping to high-volume production, our processes enable us to meet your production needs.

Quality Assurance

Every component undergoes rigorous quality checks, surface finish validation, ensuring parts meet exact specifications.

Advanced Capabilities

Utilizing state-of-the-art CNC machining technologies, we produce complex geometries and tight tolerances with ease.

Our Robotics service capabilities

Hear Directly From Our Satisfied Clients

Discover the genuine experiences of our customers. Their words carry more weight than our claims. Explore how we’ve exceeded expectations and fulfilled unique requirements.

Ready to Elevate Your Project?

Bring Your Designs to Life with MXY Machining

Experience precision engineering with MXY Machining. From detailed prototypes to high-volume production, we’re here to turn your concepts into reality. Contact us today to discuss your project needs!

Related Articles and Insights

Stay updated with the latest insights, industry trends, and expert tips on CNC machining and precision manufacturing. Explore innovative solutions and learn more about the advancements shaping the future of machining.

Frequently Asked Questions

Robotics

  • Can you support robotics prototyping through high-volume production?

    Yes. MXY Machining supports the complete robotics product lifecycle, from early-stage R&D prototyping through pilot production and high-volume manufacturing.

  • Do you offer 5-axis machining for complex robotic joint geometries?

    Yes. 5-axis CNC machining is essential for many robotics components, particularly joint housings, wrist assemblies, and complex arm link geometries that require machining on multiple faces with compound angles.

  • What materials do you work with for robotics components?

    Structural & arm components: Aluminum alloys 7075-T6 for high-strength structural parts, 6061-T6 for general frames and housings, 5052 for sheet metal brackets.

    High-load & wear-critical: Stainless steel (17-4 PH for hardened shafts and gears, 304/316 for corrosion-resistant parts), alloy steels (4140, 4340 for hardened shafts and bearing components), and tool steels for high-wear gripper jaws and tooling.

    Premium lightweight: Titanium (Grade 5 / Ti-6Al-4V) for aerospace and medical robotics joints where high strength and low weight are critical.

    Engineering plastics: POM (acetal) for low-friction gears and bushings, nylon/PA66 for structural brackets, PEEK for high-temperature and chemically resistant components, and UHMWPE for wear pads and linear guides.

  • What tolerances do you achieve for critical robotics components?

    Precision is critical in robotics because dimensional errors compound across multi-axis movement, causing backlash, vibration, positioning inaccuracy, and premature wear. Our standard machining tolerances are ±0.0005 inch (0.0127 mm), with critical features held to ±0.020 mm (±0.001 inch) or tighter. 

  • What robotics components can MXY Machining manufacture?

    MXY Machining manufactures precision components for industrial robots, collaborative robots (cobots), autonomous mobile robots (AMRs), robotic arms, and custom automation systems.

    Our capabilities include:

    • Joint actuator housings and gearbox enclosures
    • Arm links and structural frames
    • Harmonic drive and cycloidal drive interface components
    • Bearing seats and shaft supports

    We support both articulated robot arms and parallel/delta robot configurations, from single prototype joints through complete robot body structural sets.

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