R.I.M. Resin

Alchemix R.I.M. Polyurethane resin materials are developed to be processed using conventional two component dispensing machines. The resin materials offer a range of properties depending on the product chosen: high impact strength, high temperature resistance, high flexural strength and flexibility. The materials have a consistent mixing ratio throughout the range.

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  • PU3833F

    ALCHEMIX PU 3833F is a two component polyurethane system which is impact resistant and can be easily pigmented. The system is ideal for rapid prototyping and limited production runs using metering machinery, with or without vacuum. Learn More
  • PU3837

    ALCHEMIX PU 3837 is a two component polyurethane system which is impact resistant and can be easily pigmented. The system is ideal for rapid prototyping and limited production runs using metering machinery, with or without vacuum. The product is also available in black.   Learn More
  • PU3838

    ALCHEMIX PU 3838 is a two-component polyurethane system suitable for a variety of applications in the automotive industry. The system is ideal for rapid prototyping and limited production runs using dedicated metering machinery. ALCHEMIX PU 3838 contains milled carbon fibre and is specifically designed for low rates of thermal expansion and dimensional stability. Learn More
  • PU3841

    ALCHEMIX PU 3841 is a two component polyurethane system, which is designed to simulate thermoplastics such as polypropylene. The system is ideal for rapid prototyping and limited production runs using dedicated metering machinery. The product is ideal for high temperature applications, such as under the bonnet uses in the automotive industry. Learn More
  • PU3842

    ALCHEMIX PU 3842 is a two-component polyurethane system, which is designed to simulate thermoplastics such as polypropylene. The system is ideal for rapid prototyping and limited production runs using dedicated metering machinery. The product is ideal for applications requiring high impact resistance and dimensional stability at elevated temperatures. Learn More

Items 11 to 15 of 15 total

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