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CNC Machinable Board Composite Material Polyurethane Blocks Cabin Cover Mould Moldering Tool Auto Mould Metallic Plate to Axson

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High Temperature Resistance: Designed to withstand extreme temperatures during vacuum forming processes, ensuring durability in industrial manufacturing environments.
  • Precision Moulding: CNC machinable composite polyurethane blocks enable precise shaping for cabin cover moulds and automotive metallic plate components, supporting accurate replication of complex designs.

Key features

  • 1. Material Technology

  • With high-temperature-resistant composite polyurethane, you can ensure structural integrity during demanding manufacturing processes like vacuum forming, outperforming traditional plastic sheets prone to warping under heat.*

  • 2. Interactive Design

  • With CNC machinable properties, you can achieve precise, intricate mould designs for automotive components, surpassing manual methods in accuracy and efficiency.*

  • 3. Performance Parameters

  • With vacuum forming compatibility, you can produce distortion-free cabin covers and moulds 20% faster than non-specialized materials, enhancing production speed.*

  • 4. Scenario Solutions

  • With automotive mould adaptability, you can streamline prototyping and mass production of car parts, enabling rapid design iterations and cost-effective tooling for industries like automotive engineering.

  • 5. Processing Versatility

  • With integrated CNC machining and moulding services, you can consolidate manufacturing steps, reducing lead times by up to 30% versus separate processes.*

Product details

CNC Machinable Board Composite Material Polyurethane Blocks Cabin Cover Mould Moldering Tool Auto Mould Metallic Plate to Axson

The CNC Machinable Board Composite Material Polyurethane Blocks are engineered for precision prototyping and manufacturing in automotive applications. Designed to withstand high temperatures and support vacuum forming, this material combines polyurethane's flexibility with metallic plate reinforcement for structural integrity. Ideal for creating cabin covers, molds, and tooling components, it offers customizable machining services (CNC, cutting, molding) to meet diverse industrial needs.

Technical specifications

FeatureSpecificationApplication Scenario
Material CompositionPolyurethane composite with metallic plate reinforcementAutomotive cabin cover molds, prototyping
Temperature ResistanceUp to 200°C (392°F) continuous useHigh-heat environments, industrial ovens
MachinabilityCNC-compatible, low tool wearPrecision cutting and shaping operations
Vacuum FormingSupports thin-to-thick profile formingCustom automotive trim and component shaping

Customization guide

Adjustable parameters include block dimensions (up to 2000x1000mm), material thickness (3-50mm), and surface finish (smooth/texture) to meet specialized requirements like prototyping accuracy or production-grade durability.

Get inspired

With its composite structure and precision machining capabilities, this material empowers automotive engineers to rapidly iterate designs, test aerodynamics, and produce functional prototypes that bridge the gap between concept and production.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Temperature Resistance180°C (356°F)190°C (374°F)200°C (392°F)
Machining Precision±0.2mm±0.1mm±0.05mm
Surface FinishStandard (Ra 3.2μm)Premium (Ra 1.6μm)Ultra-smooth (Ra 0.8μm)

Supplier's note

  1. Three Technical Breakthroughs:

    • Polyurethane-Metal Composite: Enables high-temperature stability while maintaining mold flexibility.
    • Enhanced CNC Machinability: Reduces tool wear by 40% compared to standard plastics.
    • Vacuum Forming Efficiency: Achieves 20% faster forming cycles than traditional materials.
  2. Optimal Version Selection:

    • Base Model: Ideal for prototyping workshops needing cost-effective solutions for standard automotive parts.
    • Advanced Model: Targets mid-tier manufacturers requiring tighter tolerances (e.g., precision instrument molds).
    • Pro Model: Best for high-end automotive OEMs demanding extreme durability and ultra-precise finishes (e.g., luxury car cabin components).

With the Pro Model’s 200°C resistance, you can safely mold heat-sensitive automotive parts in industrial ovens. Pair its ultra-smooth surface finish with vacuum forming to create seamless, gap-free prototypes—reducing post-production adjustments by up to 30%.

Frequently asked questions

  • Which CNC machinable board is best suited for high-temperature auto mould applications?

  • How does polyurethane compare to ABS or PVC for auto mould prototypes?

  • Is this polyurethane block FDA-approved for automotive moulds?

  • Can ZS customize CNC machinable boards for specific automotive mould designs?

  • What makes ZS’s polyurethane blocks suitable for vacuum forming auto parts?

  • Does the polyurethane material withstand prolonged high-temperature use in moulds?

  • Why choose polyurethane over metallic plates for auto moulds?

  • What processing services does ZS offer for automotive mould tooling?

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