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KEBABLEND / EC FE 190501 TPE (Development product*)

KEBABLEND / EC FE 190501 TPE is an electrically conductive TPU with a Shore hardness of A 87. It is characterized by good hydrolysis resistance, very good wear and abrasion resistance and good damping and recovery properties.



KEBABLEND is a wide range of functional compounds, often tailor-made to customer requirements. Under the trade name KEBABLEND, we market magnetizable, thermally or electrically conductive compounds, high-density injection molding materials, compounds for radiation protection applications, detectable plastics and much more.

Typical areas of application

  • Sealing elements
  • Spring elements
  • Sliding elements
  • Haptic components
  • industrial goods

Industry sectors

  • Automotive
  • Household appliances
  • Industry
  • Agriculture
  • Mechanical Engineering
  • Sports & Recreation


  • electrically conductive
  • flexible
  • Good electrical properties
  • good gliding properties
  • High wear resistance

Overview of product features

Electrical properties

Contact resistance in Ohm*m
IEC 60093

Mechanical properties

Breaking stress in MPa
ISO 527-1
Elongation at break in %
ISO 527-1
Shore A hardness
DIN ISO 7619-1
Tear resistance
DIN ISO 34-1

Physical properties

Density in kg/m³
ISO 1183


Dryer type: dry air dryer
Temperature: 90°C
Drying time: 3 – 4 h
Residual moisture content: < 0.02%.


Melt temperature: 205 – 220°C
Mold temperature: 20 – 70°C

Due to its special properties, KEBABLEND / EC FE 190501 may tend to stick to smooth and polished mold surfaces. Structured surfaces favor the demolding behavior. Alternatively, the mold can be provided with suitable coatings. Please consult our application engineering department.

Dwell time in the cylinder / hot runner:

Aim for short dwell time, empty cylinder when production is interrupted, lower temperature, flush with fresh material when restarting.


To achieve optimum product properties, we recommend tempering components made of KEBABLEND / EC FE 190501 TPE after injection molding. As a starting point for determining the optimum annealing parameters, 20 hours at 100°C has proven effective. Annealing improves the mechanical properties, especially creep behavior, wear resistance and dimensional stability.

Legal notice

The information in this data sheet is based on our current knowledge and experience. Due to the wide range of possible influences during processing and application of our products, they do not exempt the processor from carrying out his own tests and trials. A legally binding assurance of certain properties or suitability for a specific application cannot be derived from our information.

* FE products are development products which are still in the trial phase. Technical data may still change in the course of product and process development. No final decision has yet been made on the commercialization of FE products. We reserve the right to discontinue the manufacture of FE products without giving further reasons.


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