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3D Systems

Figure 4 Resin Cartridge RUBBER-65A BLK - 3D Systems

SKU 420143-901

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Manufacture rubber parts with production performance properties with this mid-tear strength, high elongation at break and Shore 65A hardness material. A mid-tear strength, production-grade rubber combined with Shore 65A hardness and a high elongation at break

Figure 4 RUBBER-65A BLK material is specially formulated to address key customer needs for rubber parts featuring production performance properties and production mechanical properties, in the light of specifications tested according to industry standards.

Figure 4 RUBBER-65A BLK is a mid-tear strength material for the production of medium hard rubber parts with slow rebound, for applications such as grips, handles, gaskets, bumpers, seals, vibration dampening components and more.

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Material Type: Figure 4
Application: Prototyping

Applications

  • Air /dust gaskets
  • Seals and housings
  • Vibration dampener and pipe spacers
  • Bumpers
  • Grips and handle

Benefits

  • Production performance properties
    • Long-term stability
    • Excellent compression set
    • UL94 HB  flammability test standards
  • Low cost and low hazard cleaning
  • Engineered for long term environmental stabili

Features

  • High elongation at break
  • Shore-A of 65 (medium hard rubber)
  • Mid-tear strength, compression set, Bayshore rebound resilience
  • Biocompatible capable per ISO10993-5 and ISO10993-

Key Material Properties

The full suite of mechanical properties are given per ASTM and ISO standards where applicable. All parts are conditioned per ASTM recommended standards for a minimum of 40 hours at 23 °C, 50% RH. Material properties include physical and mechanical properties, as well as thermal, UL flammability, and electrical (dielectric strength, dielectric constant, dissipation factor, and volume resistivity).

Isotropic properties

Figure 4 technology prints parts that are isotropic in mechanical properties meaning the parts printed along either the XYZ axis will give similar results. Parts do not need to be oriented to get the highest mechanical properties, further improving the degree of freedom for part orientation for mechanical properties.