Trexel

Trexel

Plastics, 100 Research Dr Ste 1, Wilmington, Massachusetts, 01887, United States, 11-50 Employees

trexel.com

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phone no Phone Number: +17*********

Who is TREXEL

The MuCell microcellular foam injection molding process for thermoplastics materials provides unique design flexibility and cost savings opportunities not found in conventional injection ...

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  • 100 Research Dr Ste 1, Wilmington, Massachusetts, 01887, United States Headquarters: 100 Research Dr Ste 1, Wilmington, Massachusetts, 01887, United States
  • 1982 Date Founded: 1982
  • 11-50 Employees: 11-50
  • dollar-icon Revenue: $5 Million to $10 Million
  • tech-icon Active Tech Stack: See technologies

industries-icon Industry: Plastics

SIC SIC Code: 3089 | NAICS Code: 326199 | Show More

checked-icon Does something look wrong? Fix it. | View contact records from TREXEL

Trexel Org Chart and Mapping

Employees

Petr Janik

Vice President of Operations & Finance

Gloria Brewer

Director Product Support and Sevice

Matt Garabedian

Design Manufacturing Engineer

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Frequently Asked Questions Regarding Trexel

Answer: Trexel's headquarters are located at 100 Research Dr Ste 1, Wilmington, Massachusetts, 01887, United States

Answer: Trexel's phone number is +17*********

Answer: Trexel's official website is https://trexel.com

Answer: Trexel's revenue is $5 Million to $10 Million

Answer: Trexel's SIC: 3089

Answer: Trexel's NAICS: 326199

Answer: Trexel has 11-50 employees

Answer: Trexel is in Plastics

Answer: Trexel contact info: Phone number: +17********* Website: https://trexel.com

Answer: The MuCell microcellular foam injection molding process for thermoplastics materials provides unique design flexibility and cost savings opportunities not found in conventional injection molding. The MuCell process allows for plastic part design with material wall thickness optimized for functionality and not for the injection molding process. The combination of density reduction and design for functionality often results in material and weight savings of more than 20%. By replacing the pack & hold phase with cell growth, lower stress parts parts are produced which have enhanced dimensional stability and substantially reduce warpage. Cell growth also results in the elimination of sink marks. Unlike chemical foaming agents, the physical MuCell process has no temperature limitation and does not leave any chemical residue in the polymer; making consumer products perfectly suitable for recycling within the original polymer classification and allowing re-grind material to reenter the process flow. The numerous cost and processing advantages have led to rapid global deployment of the MuCell process primarily in automotive, consumer electronics, medical parts, packaging and consumer goods applications.

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