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A showcase of precision CNC-machined plastic parts by Beeplastic, featuring a complex PEEK medical component, a green FR-4 insulator, and a white Delrin gear.

✅3, 4 & 5-Axis CNC Capability✅Tight Tolerances✅Expertise in High-Performance PlasticsHello,

Expert CNC Machining of Custom Plastic Components

At Beeplastic, we specialize in transforming the most challenging plastic materials into mission-critical components. Leveraging state-of-the-art multi-axis CNC technology and deep material-specific expertise, we deliver production-quality parts with complex geometries, tight tolerances, and superior surface finishes. Your design, machined with unparalleled precision.

UPLOAD CAD FOR A PRECISION QUOTE

Complex Geometries Unlocked with 5-Axis CNC Machining

Many plastic parts today require complex curves, undercuts, and features on multiple faces. Our advanced 3, 4, and 5-axis CNC machining centers tackle these challenges with ease. By machining your part in a single setup ("done-in-one"), we eliminate the inaccuracies that arise from multiple re-fixtures required by simpler 3-axis machines. This directly translates to:

  • Higher Precision & Tighter Tolerances: Consistent accuracy across all part features.
  • Improved Surface Finishes: Continuous toolpaths create smoother, more aesthetic surfaces.
  • Faster Lead Times: Reduced setup time means your parts get to you quicker.
  • Greater Design Freedom: Bring your most intricate and ambitious designs to life, without compromise.

We Don't Just Machine Plastic; We Understand It

Every plastic has a unique personality. Machining abrasive **FR-4** requires different tools and speeds than preventing melting in Polycarbonate (PC) or managing internal stresses in Delrin (POM). Our extensive, hands-on experience has allowed us to develop material-specific machining strategies:

  • Specialized Tooling: We use diamond-coated and carbide tools for abrasive composites like G-10 and FR-4 to maintain edge quality and precision.
  • Optimized Parameters: Our machinists expertly control speeds, feed rates, and cooling to prevent melting, chipping, and stress-induced cracking.
  • Post-Machining Treatments: We have expertise in annealing specific plastics like PEEK and Delrin to relieve internal stresses and ensure long-term dimensional stability.

Optimizing Your Design Before the First Cut

The most expensive mistake is the one made on the production floor. That's why every project at Beeplastic begins with a complimentary, comprehensive Design for Manufacturability (DFM) review. Our engineers analyze your CAD models to:

  • Identify Potential Issues: We look for features that are difficult to machine, may cause material stress, or drive up costs.
  • Suggest Cost-Saving Modifications: Simple changes like standardizing hole sizes or adding fillets can significantly reduce machining time and cost.
  • Ensure Material & Design Compatibility: We ensure your chosen plastic is the best fit for your design's geometry and intended application.This collaborative, proactive approach saves you time, money, and prevents costly redesigns.

Precision You Can Measure and Trust

In precision machining, quality isn't subjective—it's quantifiable. Our commitment to quality is backed by a robust inspection process and state-of-the-art metrology equipment.

  • In-Process & Final Inspections: We perform quality checks at multiple stages of the manufacturing process to catch any deviations early.
  • Advanced Metrology Tools: We utilize Coordinate Measuring Machines (CMMs), profile projectors, and a full range of precision gauges to verify that every critical dimension meets your specified tolerances.
  • Full Traceability & Reporting: We offer full material traceability and can provide detailed First Article Inspection Reports (FAIR) and full quality reports upon request, giving you complete confidence in the parts you receive.

Our Comprehensive CNC Plastic Machining Capabilities

Precision CNC Plastic Machining Services
Custom Plastic Parts & Components Manufacturing

Transform your designs into high-precision plastic components with ±0.03mm (±0.0012") accuracy. 15+ years expertise in CNC milling, turning & routing of engineering plastics including PEEK, POM, PTFE, Nylon, PC, ABS and more. No MOQ24-Hour QuoteFree DFM AnalysisGlobal Shipping

BeePlastic CNC machining services - precision plastic parts manufacturing with multi-axis CNC machines

Advanced CNC Plastic Machining Capabilities

CNC Milling Services

3, 4 & 5-axis CNC milling for complex plastic components. Precision machining of engineering thermoplastics and composites with specialized diamond-coated and carbide tooling.

  • 3D contouring & complex surfaces
  • Pockets, cavities & undercuts
  • Holes, slots & threaded features
  • Tight tolerances: ±0.03mm standard

CNC Turning (Lathing)

High-precision CNC turning of plastic rods into cylindrical components. Expert machining of bushings, spacers, insulators and custom plastic shafts.

  • OD/ID diameter control
  • Threading (internal/external)
  • Grooving & parting operations
  • Superior surface finishes

5-Axis CNC Machining

Advanced multi-axis machining for the most complex geometries. Single-setup production of intricate aerospace, medical and robotics components.

  • Complex undercuts & angles
  • Reduced setup time
  • Enhanced accuracy
  • Aerospace-grade precision

CNC Routing Services

High-speed CNC routing for plastic sheets and panels. Perfect for large format parts, custom profiles and production cutting.

  • Large format capabilities
  • Profile cutting & shaping
  • Edge finishing & polishing
  • Panel optimization

Precision CNC Machining Process Excellence

Advanced Milling Technologies

Our multi-axis CNC milling centers deliver unparalleled precision for complex plastic components. Utilizing high-speed spindles up to 40,000 RPM and specialized diamond-coated tooling for composites, we achieve exceptional surface finishes while maintaining tight tolerances of ±0.03mm (±0.0012").

Key Milling Capabilities:

  • Heat Management: Advanced cooling systems and optimized cutting parameters prevent thermal deformation in thermoplastics like PC, PMMA, and ABS
  • Chip Evacuation: High-pressure air blast and vacuum systems ensure clean surfaces and prevent chip re-welding
  • Tool Selection: Extensive library of single-flute, O-flute, and diamond-coated end mills for different plastic types
  • Surface Quality: Ra 0.8-1.6 μm standard, with capability for Ra 0.4 μm on critical surfaces
Materials Expertise

Specialized parameters for PEEK, POM, Nylon, PC, PTFE, and 40+ other engineering plastics

Complex Geometries

3D contouring, undercuts, deep pockets, and intricate features in single setup

CNC milling service for complex plastic parts - BeePlastic precision manufacturing

High-precision 5-axis CNC milling of complex plastic components with tolerances up to ±0.03mm

Rapid prototyping ABS plastic - CAD to CNC machined part - BeePlastic

From CAD design to finished prototype in 2-3 days for urgent development projects

Rapid Prototyping Excellence

Transform your concepts into physical prototypes with unprecedented speed and precision. Our rapid CNC prototyping services accelerate product development cycles, allowing you to validate designs, test functionality, and iterate quickly using production-grade materials.

Prototyping Advantages:

  • 24-Hour Quotes: Upload CAD files and receive detailed quotes within one business day
  • Free DFM Analysis: Our engineers review designs for manufacturability and cost optimization
  • Material Matching: Test with actual production plastics, not prototype-only materials
  • Design Iterations: Quick modifications without expensive tooling changes
  • Functional Testing: Parts suitable for real-world testing and validation

Fast Track Service: Critical prototypes can be completed in 48-72 hours. Perfect for design reviews, investor presentations, and urgent product launches.

2-3
Days Standard Lead Time
100%
Dimension Verification
50+
Material Options

Precision Turning Capabilities

Expert CNC turning transforms plastic rod stock into high-precision cylindrical components with exceptional concentricity and surface finish. Our advanced lathe technology, combined with specialized tooling and extensive material knowledge, produces parts that meet the most demanding specifications for fit, function, and performance.

Turning Specializations:

Bushings & Bearings

Low-friction POM (Delrin), Nylon, and UHMW-PE components with ID/OD tolerances ±0.025mm

Electrical Insulators

High-voltage FR-4, G-10, and phenolic spacers with precise length control

Sealing Components

PTFE and PEEK valve seats, backup rings with mirror finish surfaces

Drive Components

Custom plastic shafts, rollers, and pulleys with keyways and set screw flats

Technical Capabilities:
  • Diameter range: 3mm to 300mm
  • Length capacity: Up to 1000mm
  • Concentricity: 0.05mm TIR standard
  • Surface finish: Ra 0.8 μm achievable
  • Threading: Metric, UNC, UNF, ACME
CNC turning service - precision plastic cylindrical parts - BeePlastic

High-precision CNC turned components including bushings, spacers, and custom shafts

Industry Applications & Custom Solutions

🏥

Medical Devices

Biocompatible PEEK implants, surgical instruments, diagnostic equipment housings, fluid handling components

✈️

Aerospace & Defense

Lightweight structural components, insulation parts, cabin interior fittings, radar transparent radomes

🚗

Automotive

Under-hood components, interior trim parts, lighting assemblies, EV battery components

📱

Electronics

PCB insulators, semiconductor handling, electronic enclosures, connector housings

⚙️

Industrial Equipment

Machine guards, conveyor components, pump parts, wear-resistant guides

🤖

Robotics

End effectors, grippers, structural frames, precision gears and pulleys

Advanced 5-Axis CNC Machining & Finishing Services

5-axis CNC machining plastic parts - BeePlastic advanced manufacturing

5-axis simultaneous machining for aerospace and medical grade components

5-Axis Simultaneous Machining

Our 5-axis CNC technology represents the pinnacle of plastic machining capability. By enabling simultaneous movement across five axes, we can approach workpieces from virtually any angle, creating complex geometries that would be impossible or require multiple setups on conventional machines.

Complex Geometries
  • Deep cavities with undercuts
  • Compound angle features
  • Helical grooves and channels
  • Turbine blade profiles
Single Setup Benefits
  • Eliminates repositioning errors
  • Reduces total machining time
  • Improves part accuracy
  • Enables tighter tolerances

Industry Applications:

Aerospace: Lightweight structural brackets, ducting components, and interior cabin parts requiring complex angles and weight-optimized designs.

Medical: Surgical instrument handles, implant trials, and diagnostic device components with ergonomic curves and precise mating surfaces.

Robotics: End effectors, gripper jaws, and articulated joint components requiring compound angles and integrated mounting features.

Premium Surface Finishing Services

The perfect surface finish can make the difference between a good part and an exceptional one. Our comprehensive finishing services go beyond standard deburring to provide aesthetic appeal, functional improvements, and enhanced performance characteristics tailored to your application.

Available Finishing Options:

Vapor Polishing (For PC & Acrylic)

Achieves optical clarity and glass-like transparency. Perfect for lenses, sight glasses, and display windows. Surface roughness reduced to Ra 0.05-0.1 μm.

Bead Blasting

Creates uniform matte texture for improved grip and reduced glare. Available in various media grades for different surface textures from fine satin to coarse matte.

Mechanical Polishing

Progressive sanding and buffing for high gloss finish on engineering plastics. Ideal for aesthetic components and parts requiring low friction surfaces.

Laser Marking & Engraving

Permanent part identification, serialization, logos, and instructional markings. High contrast marking on most plastic materials without surface damage.

Ra 0.05 μm
Optical Polish Available
100%
Edge Deburring Standard
10+
Finishing Methods
PEEK medical device component - 5-axis CNC machined - BeePlastic

Complete Manufacturing Solutions Beyond CNC

Assembly & Hardware

Complete sub-assembly services including threaded insert installation, press-fit components, and multi-part assembly. Simplify your supply chain with turnkey solutions.

Learn More →

Laser Cutting & Engraving

Precision laser cutting for intricate 2D profiles and patterns. Perfect for panels, gaskets, and decorative elements with exceptional edge quality.

Explore Service →

Cut-to-Size Services

Custom cutting of plastic sheets, rods, and tubes to your exact specifications. Save time and reduce waste with precision-cut materials.

Get Quote →

Plastic Welding

Expert plastic welding for tanks, fabrications, and repairs. Hot gas, extrusion, and ultrasonic welding capabilities for permanent joints.

View Details →

Thermoforming & Bending

Heat bending and vacuum forming for complex 3D shapes. Ideal for guards, covers, and custom enclosures from thermoplastic sheets.

Discover More →

Injection Molding

Cost-effective production for higher volumes. From prototype tooling to production molds, we handle complete injection molding projects.

Learn More →

Specialized High-Performance Plastic Solutions

PEEK plastic board for industrial high temperature applications - BeePlastic

High-performance PEEK components for extreme temperature applications up to 260°C

PEEK & High-Temperature Engineering Plastics

When standard plastics fail, high-performance polymers excel. Our expertise in machining PEEK, PEI (Ultem), PAI (Torlon), PPS, and other advanced thermoplastics enables us to deliver components that withstand extreme temperatures, aggressive chemicals, and demanding mechanical loads where traditional materials cannot survive.

Material Performance Comparison:

Material Max Temp Key Properties
PEEK 260°C Chemical resistance, biocompatible
PEI (Ultem) 170°C High strength, flame retardant
PAI (Torlon) 275°C Extreme wear resistance, dimensional stability
PI (Polyimide) 300°C Ultra-high temp, low outgassing
Critical Applications
  • Aerospace engine components
  • Medical implants & instruments
  • Semiconductor equipment
  • Oil & gas downhole tools
Processing Excellence
  • Specialized carbide tooling
  • Controlled environment machining
  • Stress-relief protocols
  • 100% dimensional inspection

Optical & Transparent Components

Creating truly transparent plastic components requires expertise beyond standard machining. Our specialized processes for polycarbonate, acrylic (PMMA), and PETG combine precision cutting with advanced polishing techniques to achieve optical clarity rivaling glass.

Optical Clarity Process:

1
Precision Machining

Single-point diamond turning or specialized tooling for minimal surface stress

2
Progressive Sanding

Multi-stage wet sanding from 400 to 3000 grit for surface preparation

3
Vapor/Flame Polishing

Chemical vapor or controlled flame treatment for glass-like transparency

4
Quality Inspection

Optical clarity verification and surface quality measurement

Typical Applications:

Machine safety guards • Medical device lenses • Display windows • Light guides and pipes • Sight glasses • Fluidic devices • Protective covers • Optical prototypes

Optically clear polycarbonate electronic housing - CNC milled and vapor polished

Crystal-clear polycarbonate housing achieved through precision machining and vapor polishing

Engineering Support & Technical Excellence

📐

Free DFM Analysis

Our engineering team reviews every design for manufacturability. We identify potential issues, suggest optimizations, and help reduce costs while maintaining quality. Get expert feedback before production begins.

🎯

Precision Tolerances

Standard tolerance of ±0.03mm (±0.0012") with capability for even tighter tolerances on critical features. Our quality control ensures every part meets your exact specifications.

🔧

Material Selection Guide

Not sure which plastic is best for your application? Our experts help you select the optimal material based on mechanical requirements, environmental conditions, and budget constraints.

Frequently Asked Questions About CNC Plastic Machining

What is your minimum order quantity (MOQ)?

We have NO minimum order quantity. Whether you need a single prototype or thousands of production parts, we're equipped to handle orders of any size. This flexibility makes us ideal for R&D projects, custom replacements, and production runs.

What tolerances can you achieve with plastic CNC machining?

Our standard machining tolerance is ±0.03mm (±0.0012") for most plastics. For stable engineering plastics like PEEK, POM, and G-10, we can achieve even tighter tolerances based on part geometry. Critical dimensions should be clearly specified on your technical drawings.

Which file formats do you accept?

We prefer 3D CAD files in STEP (.stp, .step) or IGS (.igs, .iges) format for the most accurate quotes. We also accept 2D drawings in DWG, DXF, or PDF format. Our engineering team can work with you if you need assistance with file preparation.

What is your typical lead time?

Standard lead times are 5-7 business days for most CNC machined plastic parts. Simple parts or urgent prototypes can often be completed in 2-3 days. Complex multi-axis parts or large production runs may require additional time. Rush service is available for critical deadlines.

Do you offer free shipping?

Yes! We offer free standard shipping to many countries and regions worldwide. Express shipping is available at additional cost for urgent deliveries. Contact us for specific shipping information to your location.

Can you machine custom plastic materials I provide?

Yes, we can machine customer-supplied materials. However, we recommend using our stock materials when possible to ensure consistent quality and material properties. If you have special material requirements, our team can source specialty plastics for your project.

Quick Material Selection Guide

Choose the right plastic for your CNC machining project based on your application requirements

For High Temperature (>200°C)

Best choices for heat resistance:

  • PEEK: Up to 260°C continuous
  • PEI (Ultem): Up to 170°C
  • PAI (Torlon): Up to 275°C
  • PI (Polyimide): Up to 300°C

For Low Friction / Wear

Ideal for bearings and slides:

  • POM (Delrin): Excellent wear resistance
  • PTFE: Lowest friction coefficient
  • UHMW-PE: Self-lubricating
  • Nylon: Good wear, absorbs vibration

For Transparency

Clear plastic options:

  • Acrylic (PMMA): Best optical clarity
  • Polycarbonate: Impact resistant clear
  • PETG: Chemical resistant clear
  • PVC: Economical transparent option

For Electrical Insulation

Non-conductive materials:

  • FR-4/G-10: Glass-epoxy composite
  • Phenolic: High dielectric strength
  • PEEK: High temp insulation
  • Nylon: Good insulator, cost-effective

For Chemical Resistance

Resistant to acids/solvents:

  • PTFE: Inert to most chemicals
  • PEEK: Excellent resistance
  • PP: Good acid resistance
  • HDPE: Resistant to many chemicals

For Cost-Effective Prototypes

Budget-friendly options:

  • ABS: Easy to machine, versatile
  • PVC: Economical, rigid
  • HDPE: Low cost, durable
  • Acrylic: Clear option, affordable

Your Journey From Design to Delivery

1

Submit Design

Upload your CAD files and specifications

2

DFM Review

Free engineering analysis & optimization

3

24-Hour Quote

Detailed pricing and lead time

4

Precision Machining

Expert CNC production begins

5

Quality Control

100% inspection before shipping

6

Global Delivery

Fast, secure worldwide shipping

Ready to Start Your CNC Plastic Machining Project?

Join thousands of engineers and designers who trust BeePlastic for precision plastic components. From prototype to production, we deliver quality you can depend on.

15+
Years Experience
50+
Plastic Materials
24hr
Quote Response
±0.03mm
Standard Tolerance

Have Questions? Contact Our Expert Team

Email: beeplastic@beeplastic.com

We're here to help you select the right materials and machining solutions for your project

CNC ABS plastic processing - custom machined parts PEEK CNC machining - high performance plastic parts OEM plastic replacement parts - CNC machined components

01 What are your typical machining tolerances for plastic parts?

For most plastic materials, we can consistently achieve standard machining tolerances of ±0.005 inches (±0.127mm). For many high-performance and stable plastics like PEEK and G-10, we can often achieve even tighter tolerances down to ±0.001 inches (±0.025mm) or better, depending on the part geometry and material properties. Please specify your critical tolerances on your engineering drawing, and we will review them for manufacturability.

02 What file formats do you accept for a quote?

We can work with a wide variety of 2D and 3D CAD files. For the fastest and most accurate quote, we prefer 3D solid models in STEP (.stp, .step) or IGS (.igs, .iges) format. We also accept SolidWorks (.sldprt), Parasolid (.x_t), and AutoCAD (.dwg, .dxf) files. For reference, you can also include 2D drawings in PDF format with material specifications and tolerance callouts.

03 How do you handle difficult-to-machine or abrasive plastics like FR-4 and glass-filled Nylon?

This is our expertise. We utilize specialized tooling, such as diamond-coated or solid carbide end mills, which are designed to handle the abrasive nature of glass and carbon-filled composites without rapid wear. Furthermore, we employ optimized cutting strategies and robust dust extraction systems to prevent delamination, ensure a high-quality surface finish, and maintain a clean-room work environment when needed.

04 Do you have a Minimum Order Quantity (MOQ)?

We pride ourselves on being a flexible partner for businesses of all sizes. For our CNC machining services, our MOQ is typically just one piece (MOQ=1). We are happy to support everything from single rapid prototypes to low-to-medium volume production runs. Contact us to discuss the most cost-effective solution for your required quantity.

05 What is a DFM review and is it included?

DFM, or Design for Manufacturability, is a critical engineering review of your part design. Yes, a complimentary DFM analysis is included with every quote request. Our engineers will analyze your design to identify any features that could be difficult or costly to machine. We may provide suggestions to improve your part's strength, reduce machining time, and lower overall cost, all before production begins.

06 What are your typical lead times for custom CNC machined parts?

Lead times can vary depending on part complexity, material availability, and current production capacity. However, for standard prototypes, we typically aim for a lead time of [e.g., 5-10] business days after design approval. For production runs, we will provide a detailed and reliable timeline with your formal quotation. If you have an urgent requirement, please let us know, and we will do our best to accommodate an expedited schedule.

Industry: Medical Devices | Material: PEEK【Tight-Tolerance PEEK Components for a Surgical Device】

The Challenge: A medical device startup required a biocompatible, sterilizable component with highly complex internal features and geometric tolerances of ±0.005 inches (±0.127mm). The material, PEEK, is known to be challenging to machine without causing internal stress.

Our Solution: Our engineering team developed a custom 5-axis CNC machining strategy with specialized tooling and a controlled thermal environment. We provided DFM feedback to slightly radius internal corners, significantly improving machinability while maintaining full functionality.

The Result: We successfully delivered production-quality PEEK components that met all critical tolerances. This enabled our client to accelerate their device testing and validation phases, securing their next round of funding.

Delamination-Free Machining of FR-4 PCB Fixtures【Industry: Electronics & Semiconductor | Material: FR-4】

The Challenge: An electronics manufacturer needed precise, non-conductive fixtures for holding Printed Circuit Boards (PCBs) during automated testing. Previous suppliers struggled with material delamination and burrs around drilled holes.

Our Solution: We leveraged our expertise in machining abrasive composites. By using diamond-coated tooling, high RPMs, and a robust vacuum hold-down system, we successfully machined the FR-4 fixtures with perfectly clean holes and sharp, precise features.

The Result: The client received highly durable and dimensionally stable fixtures that significantly improved their testing accuracy and reduced board rejection rates, leading to tangible cost savings.

Industry: Industrial Automation & Robotics | Material: POM / Nylon【Improving Durability with Machined POM & Nylon Parts】

The Challenge: A machine builder was experiencing premature failure of their 3D-printed PLA parts in a high-cycle automation application. They needed a more robust, wear-resistant, and cost-effective solution for production.

Our Solution: We recommended switching to CNC-machined Delrin (POM) for its excellent stiffness and low friction, and Nylon for other parts requiring higher toughness. We then optimized the geometry for machining, maintaining the original design's functionality.

The Result: The new machined parts exhibited a 10x increase in service life, drastically reducing machine downtime and maintenance costs for our client and their end-users.

Industry: Electronics & Manufacturing Tooling | Material: Garolite (Phenolic Cloth)【Machining a Robust Garolite (Phenolic Cloth) Fixture for Electronics Testing】

The Challenge: A manufacturer of power supply units required a durable, non-conductive fixture to securely hold their products during a rigorous final testing cycle. The fixture needed to withstand repeated clamping pressure and high temperatures without deforming or scratching the units under test.

Our Solution: We recommended NEMA Grade CE Phenolic Cloth (Garolite) for its exceptional mechanical strength and low thermal conductivity. Our engineers then designed a CNC machining strategy using specialized carbide tooling to create intricate clamping features and precise alignment holes while maintaining a smooth, non-marring surface finish.

The Result: The delivered Garolite fixtures were significantly more durable than the client's previous plastic fixtures, leading to a longer tool lifespan and reduced replacement costs. The fixture's precision also contributed to more consistent and reliable test results.

  • A collection of high-performance plastic components, expertly CNC-machined by Beeplastic from PEEK and Ultem for demanding medical and aerospace applications.

    High-Performance Plastics (PEEK, Ultem, PTFE)

    We specialize in the tight-tolerance CNC machining of high-performance polymers, managing challenges like thermal expansion and internal stresses to create critical components for aersopace, medical, and semiconductor applications.

  • Precision-machined thermoset composite parts, including a green FR-4 electrical insulator and a durable Garolite (phenolic) mechanical gear, showcasing our expertise.

    Thermoset Composites (FR-4, G-10, Phenolics)

    Our expertise with abrasive thermosets ensures delamination-free machining. We fabricate robust electrical insulators and durable mechanical parts from FR-4, G-10, Bakelite, and Garolite sheets and rods.

  • A selection of CNC-machined general engineering plastic parts, featuring a low-friction white POM (Delrin) bushing and a wear-resistant black Nylon gear for industrial applications.

    General Engineering Plastics (POM, Nylon)

    The workhorses of industry. We deliver exceptionally smooth surface finishes and precision on POM and Nylon parts, creating reliable gears, bearings, bushings, and low-friction components.

  • An optically clear machine guard, precision CNC-machined from Polycarbonate (PC) and vapor-polished to demonstrate our expert finishing for transparent plastics.

    Transparent Plastics (PC, Acrylic)

    Achieve optical clarity and intricate details with our specialized CNC milling and post-machining polishing services for Polycarbonate and Acrylic. Perfect for light guides, windows, and high-end displays.

  • A durable custom housing for an electronic device, expertly CNC-machined from versatile ABS plastic, ideal for functional prototypes and end-use parts.

    ABS Plastic

    A versatile and cost-effective material. We expertly machine ABS for durable housings, functional prototypes, and general-purpose parts, ensuring great impact strength and excellent aesthetics.

  • A custom sealing component CNC-machined from a block of high-durometer silicone rubber, showcasing our capability to machine flexible materials for unique prototypes.

    Flexible Materials (Silicone & Rubber)

    While primarily known for molding, we also have capabilities for machining specific grades of silicone and hard rubber to create unique prototypes and custom sealing components with complex geometries.

A visual representation of the Beeplastic CNC machining process, showing a CAD design on a tablet, a raw plastic block, and a final, high-precision machined component being measured.
Icon for Step 1: Securely submit your CNC machining project and CAD files for an initial review by the Beeplastic team.
Step 01: Project Submission & Initial Review

Your journey begins when you upload your CAD files and project requirements through our secure quote form. Our team performs an initial review to understand your core objectives. An NDA is available upon request to fully protect your intellectual property.

Icon for Step 2: Receive complimentary Design for Manufacturability (DFM) analysis and expert engineering feedback to optimize your plastic part design.
Step 02: Complimentary DFM & Engineering Feedback

This is our collaborative core. Our experienced engineers conduct a thorough, complimentary Design for Manufacturability (DFM) review. We analyze your design for potential issues and provide a detailed report with actionable feedback to optimize for performance, reduce costs, and accelerate production.

Icon for Step 3: Get a transparent, itemized quotation for your custom plastic fabrication project and confirm the optimized solution.
Step 03: Transparent Quotation & Final Confirmation

Following the DFM review, you will receive a clear, comprehensive, and itemized quotation with no hidden costs, along with a realistic project timeline. We work with you to confirm the final, optimized solution before any commitment is made.

Icon for Step 4: Our multi-axis CNC machines begin the precision machining of your parts, with rigorous in-process quality control checks.
Step 04: Precision CNC Machining & In-Process QC

Once confirmed, your project moves to our state-of-the-art production floor. Our skilled machinists program our multi-axis CNC centers adhering strictly to the approved design. Rigorous in-process quality checks are performed at critical stages to ensure flawless execution.

Icon for Step 5: A thorough final inspection of your machined plastic parts using CMMs. A First Article Inspection Report (FAIR) is available.
Step 05: Final Inspection & Quality Reporting

Before shipping, every component undergoes a thorough final inspection using advanced metrology tools like CMMs and profile projectors. We verify that all dimensions and tolerances meet your exact specifications. A full First Article Inspection Report (FAIR) is available.

Icon for Step 6: Securely packaging your finished components for safe, tracked global shipping to ensure on-time delivery worldwide.
Step 06: Secure Packaging & Global Delivery

Your finished precision parts are meticulously packaged for maximum protection during transit. We provide reliable, tracked global shipping to any destination worldwide, ensuring your components arrive safely and on schedule.

Direct Engineering & Sales Support
beeplastic@beeplastic.com
Our Facility Address & Hours
Building 3, Dezheng Middle Road, Chang'an Town, Dongguan City, Guangdong Province, China 【Mon to Sat - 08:00 - 22:00】
✓ Rapid Response Promise ✓ NDA Protected Confidentiality ✓ Expert DFM Feedback Included
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