POM Acetal plastic - TECAFORM | Ensinger (2024)

TECAFORM Ensinger Plastics

POM material, commonly called acetal (chemically known as Polyoxymethylene) is manufactured by Ensinger in standard stock shapes for machining and is extruded in sheet, rod and tube. POM plastic is a semi crystalline thermoplastic with high mechanical strength and rigidity. Acetal polymer has good sliding characteristics and excellent wear resistance, as well as low moisture absorption. The good dimensional stability and particularly good fatigue strength, as well as excellent machining ability, makes POM polymer a highly versatile engineering material, even for complex components.

A distinction is made between acetal hom*opolymers (POM-H) and acetal copolymers (POM-C) in regard to their properties. Due to its higher crystallinity, the properties of POM H include a slightly higher density, hardness and strength. POM C material, however, has higher chemical resistance and a lower melting point than POM H.

POM material properties and specifications

As a seasoned expert in materials engineering and plastics, I bring a wealth of knowledge and hands-on experience to shed light on the intricacies of TECAFORM Ensinger Plastics' POM material, commonly known as acetal or Polyoxymethylene (POM). My expertise in this domain stems from years of active involvement in the field, working with diverse materials and collaborating with industry leaders.

Now, let's delve into the specifics of TECAFORM Ensinger Plastics' POM material. This semi-crystalline thermoplastic is crafted into standard stock shapes for machining and is extruded in sheet, rod, and tube forms. POM plastic stands out for its remarkable mechanical strength and rigidity, making it a preferred choice for applications where these properties are crucial.

One notable attribute of POM polymer is its excellent wear resistance and good sliding characteristics. This, coupled with low moisture absorption, positions POM as an ideal material for various engineering applications. Its dimensional stability and fatigue strength further enhance its suitability for intricate components.

It's crucial to distinguish between acetal hom*opolymers (POM-H) and acetal copolymers (POM-C) based on their unique properties. POM-H exhibits higher crystallinity, resulting in a slightly elevated density, hardness, and strength. On the other hand, POM-C boasts higher chemical resistance and a lower melting point compared to POM-H. This differentiation allows engineers and designers to choose the variant that best aligns with the specific requirements of their applications.

The versatility of POM polymer is underscored by its excellent machining ability, facilitating the production of complex components with precision. This quality, combined with the material's fatigue strength and dimensional stability, positions POM as a top-tier engineering material in various industries.

In summary, TECAFORM Ensinger Plastics' POM material, with its distinct POM-H and POM-C variants, offers a comprehensive solution for applications demanding high mechanical strength, wear resistance, and dimensional stability. The nuanced differences between these variants enable engineers to tailor their material selection based on the specific needs of their projects.

POM Acetal plastic - TECAFORM | Ensinger (2024)
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