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Thermoplastic Elastomer (TPE) is defined as “an Elastomer with properties similar to vulcanized rubber at room temperature and properties similar to Thermoplastic resin after temperature rise, which can be molded or reshaped into a polymer or a polymer compound”.

TPEs can be classified as styrene TPE (named TPS), olefin TPE (TPO), vinyl chloride TPE (TPVC), polyurethane TPE (TPU), ester TPE (TPEE), amine TPE (TPAE) and other TPE.



Improved Flame Retardancy

Achieved UL Yellow Card verified V0,fully support cables products to pass the VW-1 or IEC60332 flame retardance tests.

Improved Product Safety

Exclusive patented technology: no PPS (polyphenylene ether) as flame retardant synergist in flame retardant design which can effectively avoid the stress cracking risk of ordinary flame retardant TPE materials applied to cables and unaccepted pungent teste.

Improved Environmental Resistant Performance

In term of different application requirements such as earphone cables, date cables and medical equipment cables, environmental resistance performance is improved such as perspiration resistance, oil resistance, mold resistance, microbial resistance, Anti-UV etc.

Improved Temperature Tolerance

TPE which has passed chemical crosslinking or radiation crosslinking can meet requirements of high temperature (125℃ temperature resistance grade) flame retardance and long-term high temperature aging tests, and is designed with nice softness, so it is the ideal jacket materials for internal high voltage cables of new energy automobile.

Improved Electrical Conductivity

TPE material is conducted modification of semi-conductive aiming at some special applications (such as medical cables) to make its surface resistance stable to no more than 103.

Improved Wearing Resistance

The introduction of rubber functional groups provides a more comfortable and soft rubber touch and wear resistance than conventional flame retardant TPEs on the market.

Chemical foaming modification

Chemical foaming modification is conducted to proportion of 0.65-0.70. to meet the application requirement of marine floating cables and consumptions.

Improved Processing Performance

Cable extruding application, injection molding application and rubber coating application are all studied and product designed to improve the product extrusion rate, injection molding efficiency, coating performance and stability that really improve the manufacturing conformity rate of TPE materials by a large margin.

TPEs Cable Application Fields

TPEs has the characteristics of high strength, high resilience, injection-molding, wide application range, environmental protection, non-toxic and safe, and excellent colorability.

Medical equipment cable
Consumer Electronic Data Cable
Medical supplies
Children Toys
Consumer Goods

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  • 1. Customer demands

    The customer proposes performance requirements based on actual cable application scenarios

  • 2.ATP engineers develop material solutions

    ATP customizes appropriate elastomer solutions according to customer requirements.

  • 3.Customer approves the solution , ATP makes samples

    After the customer approves the solution, ATP makes material samples for the customer to test.

  • 4.Customer test samples

    Customer make cable sheath according to sample material and test performance requirement.

  • 5.After sample test is passed, both parties will draw up the order contract

    After the customer passes the test and is satisfied with the material, he will draw up the order contract with ATP as required.

  • 6.Close the deal

    ATP produces materials as required and delivers products on time.

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