Polyacetal-Delrin Machined Components

Polyacetal-Delrin Machined Components

700 INR/Millimeter

Product Details:

  • Product Type Polyacetal-Delrin Machined Components
  • Plastic Type Polyacetal (POM) / Delrin
  • Plastic Molding Type Machined
  • Thickness 2 mm - 50 mm (customizable)
  • Density 1.43 Gram per cubic centimeter(g/cm3)
  • Strength High Mechanical Strength
  • Shape As per drawing / Custom shapes
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Polyacetal-Delrin Machined Components Price And Quantity

  • 700 INR/Millimeter
  • 10-15 Millimeter
  • ±0.05 mm
  • Low
  • White / Natural / Black
  • Industrial / Engineering Applications
  • Available
  • -40°C to +120°C
  • No
  • M80 Rockwell
  • Smooth / Machined

Polyacetal-Delrin Machined Components Product Specifications

  • Polyacetal (POM) / Delrin
  • Polyacetal-Delrin Machined Components
  • High Mechanical Strength
  • Machined
  • 2 mm - 50 mm (customizable)
  • As per drawing / Custom shapes
  • 1.43 Gram per cubic centimeter(g/cm3)
  • ±0.05 mm
  • Low
  • White / Natural / Black
  • Industrial / Engineering Applications
  • Available
  • -40°C to +120°C
  • No
  • M80 Rockwell
  • Smooth / Machined

Polyacetal-Delrin Machined Components Trade Information

  • 20000 Millimeter Per Month
  • 10 Days

Product Description

Specification

Application

gears,cams,bearings,rollers,sprockets,guide & wear profiles,insulating components

Material

Polyacetal

Automation Grade

Semi-Automatic

Type Of Components

Machined component

Part Type

Machined component

Finishing

Fine Finish

Brand

POLYMAT

Color

Black & White

 




Superior Dimensional Accuracy

Polyacetal-Delrin machined components are crafted with strict tolerances of 0.05 mm, ensuring exceptional precision. Their customizability in thickness and shape to suit specific industrial requirements boosts reliability and performance, especially in applications demanding tight fitting and minimal deviations.


Engineered for Versatility

Adaptable for a wide range of industrial and engineering applications, these components perform reliably under harsh conditions. With high mechanical strength, low water absorption, and customizable shapes, they serve sectors requiring both durability and flexibility, from mechanical systems to complex assemblies.

FAQs of Polyacetal-Delrin Machined Components:


Q: How are Polyacetal-Delrin machined components customized to fit specific design requirements?

A: Customization is achieved through precision machining, allowing adjustments in thickness (2 mm to 50 mm), shape, surface finish, and color. Customers can provide drawings or specifications to receive components tailored to their exact needs.

Q: What are the benefits of using Polyacetal-Delrin components in industrial and engineering applications?

A: Polyacetal-Delrin components offer high mechanical strength, low water absorption, excellent dimensional stability, and reliable performance across a broad temperature range. Their smooth, machined finish and precise tolerances make them suitable for demanding environments where durability is critical.

Q: When should Polyacetal-Delrin machined components be selected over other plastics?

A: These components are ideal when applications require high strength, dimensional stability, and low moisture uptake, particularly where tight tolerances and smooth finishes are crucial. They are favored in mechanical, electrical, and automotive contexts where reliability is mandatory.

Q: Where are Polyacetal-Delrin machined components commonly used?

A: They are widely utilized in industrial machinery, automotive parts, electronic devices, assembly lines, and custom engineering products, mainly where precision, toughness, and minimal water absorption are essential performance criteria.

Q: What is the machining process for creating Polyacetal-Delrin components?

A: Components are produced using advanced CNC machining or conventional mechanical processes. This allows for precise shaping, drilling, and finishing according to detailed engineering drawings, ensuring the desired tolerance and surface quality are achieved.

Q: How does the materials temperature resistance enhance its usability?

A: With reliable performance from -40C to +120C, these components maintain their mechanical properties across varied conditions, making them suitable for systems exposed to both extreme cold and moderate heat environments.

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