Custom Acrylic CNC Machining

Acrylic (PMMA) Machining Service

Get custom acrylic parts in days, not months. Prolean MFG machines clear and colored acrylic for prototypes and production, with accurate dimensions, smooth surfaces, and reliable repeatability across larger orders.

Request an Acrylic Machining Quote

Share the main part requirements for an engineering review.

ISO 9001 Quality Management · Files are handled confidentially.

3 to 7 Days

Typical Lead Time

±0.10 mm

Standard Tolerance

0.8 mm

Minimal Wall Thickness*

Prototype to Production

Supported Volumes

Reliable Acrylic Production

Why Choose Us

Practical machining support from design review through inspection and delivery.

3 to 7 Day Lead Times

Fast scheduling for prototype parts and repeat production orders.

Complex Part Capability

Pockets, slots, threads, engraving, deep contours, and turned features.

Reviewed Tolerance Capability

Standard tolerance is ±0.10 mm. Tolerances down to ±0.01 mm may be achievable on selected dimensions after engineering review.

Multiple Finish Options

As-machined, sanding, polishing, vapor polishing, blasting, and engraving.

ISO 9001 Quality System

Production and dimensional inspection are managed under an ISO 9001 quality management system.

Free DFM Review

Engineering feedback on wall thickness, tool access, tolerances, and machining cost.

Material Overview

What Is Acrylic (PMMA)?

Acrylic, or polymethyl methacrylate, is a transparent engineering thermoplastic commonly used as a lightweight, shatter-resistant alternative to glass. It combines optical clarity with good weather resistance and straightforward machinability.
PMMA is suitable for parts that need a clean appearance, controlled dimensions, and outdoor durability. Prolean MFG machines both cast and extruded acrylic to customer drawings for prototypes and production runs.
Clear acrylic PMMA sheets
Material Data

Typical Acrylic Properties

Reference values for machined PMMA. Actual results vary by grade, supplier, and material condition.
PropertyTypical ValueTest Standard
Tensile Strength8,038 psiASTM D638
Elongation at Break2.7%ASTM D638
Tensile Modulus350,000 to 500,000 psiASTM D638
Flexural Strength12,000 psiASTM D790
Rockwell HardnessM80 to M100ASTM D785
Performance Advantages

Benefits of Acrylic CNC Machining

Glass-like Transparency

Suitable for viewing windows, covers, and optical components.

Lightweight Construction

Reduces component weight compared with glass.

Dimensional Accuracy

Supports controlled mating features and assembly interfaces.

Smooth Surfaces

Machined faces and edges can be polished where required.

Complex Geometry

Pockets, contours, holes, threads, and engraved details.

Outdoor Durability

Good UV and weather resistance for exposed applications.

Low Moisture Absorption

Supports stable dimensions in typical service environments.

Electrical Insulation

Useful for covers, guards, and electrical equipment parts.

Machining Snapshot

PMMA CNC Machining at Prolean MFG

Every design is reviewed for machining access, part stability, tolerance requirements, and finish expectations before production.
CapabilityDetails
Available GradesClear, white, black, colored, cast, extruded, impact-modified, and UV-resistant acrylic
Minimum Wall Thickness0.8 mm typical; thinner sections require geometry review
Standard Tolerance±0.10 mm. Tolerances down to ±0.01 mm may be achievable on selected dimensions after engineering review.
Surface Finish OptionsAs-machined, fine sanding, mechanical polishing, vapor polishing, bead blasting, and engraving
Production VolumePrototypes, low-volume batches, and high-volume production
Common ApplicationsDisplays, machine guards, instrument covers, lighting parts, medical equipment, and custom plastic components
*Minimum wall thickness and achievable tolerances depend on part size, geometry, feature depth, material grade, and machining requirements.
Material Selection

Acrylic Grades Available for CNC Machining

Grade selection should reflect clarity, impact loading, outdoor exposure, part geometry, and the required finish.
GradeStrengthClarityMachiningTypical UsePrice
Cast AcrylicHighExcellentExcellentPrecision parts and optical components$$
Extruded AcrylicMediumExcellentVery GoodGeneral-purpose components$
Impact-Modified AcrylicVery HighGoodGoodProtective covers and industrial parts$$$
UV-Resistant AcrylicHighExcellentVery GoodOutdoor components$$$
Colored AcrylicHighOpaque / TranslucentExcellentDisplay and decorative parts$$
Need help selecting a grade? Share the drawing, operating environment, appearance requirements, and quantity. Our team can recommend a suitable option.
Engineering Reference

Acrylic CNC Machining Design Guidelines

Use these values as general design references. Final limits depend on grade, geometry, tolerance, tool access, and machining strategy.

Minimum Wall Thickness

A minimum wall of 0.5 mm is recommended for many acrylic parts. Thin, unsupported sections may chip or deflect and should be reviewed before machining.

Minimum Feature Size

Maximum Part Size

Undercut Features

Square, full-radius, and dovetail undercuts can be machined where cutter access and surrounding wall strength permit.

Hole Depth

As a general rule, drilled depth should not exceed 12 times the drill diameter to support chip removal, tool stability, and hole quality.

Deep Internal Features

End-mill depth should generally remain within 10 times the cutter diameter. Larger internal radii reduce tool reach and machining time.

Design Choices That Help Control Cost

Appearance & Protection

Surface Finishes for CNC-Machined Acrylic Parts

FinishApplicable ToAppearance / Effect
As-MachinedAll acrylic gradesAccurate dimensions with fine tool marks
Fine SandingAll acrylic gradesSmooth matte surface; typically removes 0.02 to 0.05 mm
Mechanical PolishingCast and extruded acrylicHigh-gloss edges and improved surface clarity
Vapor PolishingPrimarily cast acrylicCrystal-clear machined edges
Bead BlastingOpaque and colored acrylicUniform, non-reflective matte texture
Laser EngravingAll acrylic gradesPermanent frosted text, logos, and markings
CNC EngravingAll acrylic gradesSharp recessed details
Protective FilmAll acrylic gradesProtects surfaces during shipping and assembly

Finish Selection Notes

Not every finish suits every grade or critical dimension.

Typical Uses

Common Acrylic Machining Applications

Controlled Acrylic Machining

CNC Milling for Clear, Accurate PMMA Parts

Stable workholding, suitable cutters, controlled feeds, and chip evacuation help limit heat buildup, edge chipping, and surface damage during acrylic machining.
Controlled cutting parameters for clean machined edges
Tool access review for pockets, holes, and internal radii
Protective handling for critical clear surfaces
Finish planning for polished or as-machined areas
Machined Part Examples

Acrylic Parts Gallery

Examples of milled, turned, threaded, polished, and optically clear PMMA components.
Machined acrylic enclosure
Milled acrylic sheet with internal pattern
CNC machined acrylic bracket
Custom milled acrylic part
Machined acrylic manifold component
Precision optical PMMA parts
Precision milled acrylic components
Matching clear acrylic components
CNC machined acrylic block with threaded ports

Start With Your Part Requirements

Need Custom Acrylic Machined Parts?

Upload your CAD model or drawing with the acrylic grade, quantity, tolerance, and finish requirements. Our engineers will review manufacturability and prepare a quotation based on your specifications.

For a Faster Review

Engineering Answers

FAQs

Can thin acrylic sections be machined?
Yes, when wall thickness is appropriate for the geometry and machining process. Very thin or unsupported sections may require design changes to reduce chipping or deflection.
Cast acrylic is commonly selected when edge quality and polishing are important. Extruded acrylic is often used for economical covers, panels, guards, diffusers, and enclosures.
Yes. Mechanical polishing and vapor polishing are available when improved edge clarity or surface appearance is required.
Yes. Prolean MFG supports prototypes, low-volume batches, and production quantities. Timing depends on part complexity, finish, and inspection requirements.
Internal and external threads can be machined within suitable size limits. Metal inserts are often recommended for repeated assembly.
Customer-supplied material can be considered after its grade, dimensions, condition, and traceability requirements are confirmed.
Dimensional reports, first-article inspection, and additional quality documents are available when requested with the quotation.
Yes. Polished, as-machined, engraved, and matte areas can be combined when each finish boundary is clearly identified on the drawing.
Provide the CAD model, technical drawing, acrylic grade and color, quantity, critical tolerances, and surface finish requirements.
The design is reviewed for manufacturability. Features affecting machining time, cost, surface quality, or accuracy are discussed before production begins.
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