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Polydecanediamine Sebacate

  • Apr 08, 2025

Engineering plastic polyamide 1010 is an engineering plastic polyamide variety created by China, which was successfully developed by Shanghai Celluloid Factory in 1958. Engineering plastic polyamide 1010 is an engineering plastic created by China, which is made by extracting decanediamine and sebacic acid from castor oil and then condensing them. Engineering plastic polyamide 1010 has excellent ductility and excellent impact properties at room temperature and low temperature.

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Polydecanediamine sebacate

Polydecanediamine sebacate is also known as polyamide 1010, commonly known as nylon 1010, referred to as PA1010, a kind of engineering plastic. Engineering plastic polyamide 1010 is an engineering plastic polyamide variety created by China, which was successfully developed by Shanghai Celluloid Factory in 1958. Engineering plastic polyamide 1010 has the characteristics of simple process, no special requirements for equipment, easy to master technology, stable product quality and excellent comprehensive performance, so it has developed rapidly. Engineering plastic polyamide 1010 is a translucent white or slightly yellow tough solid with the general common properties of engineering plastic polyamide. It is very stable to mold and very stable to light.

Engineering plastic polyamide 1010 is an engineering plastic created in China. It is made from castor oil as raw material, extracted from decanediamine and sebacic acid and then condensed. It has low cost, good economic effect, excellent self-lubrication and wear resistance, good oil resistance, low brittle transition temperature (about -60буC), high mechanical strength, and is widely used in mechanical parts and chemical and electrical parts.

Engineering plastic polyamide 1010 has excellent ductility and excellent impact properties at room temperature and low temperature. Engineering plastic polyamide 1010 gradually turns yellow and its mechanical strength decreases when it is in contact with oxygen for a long time at temperatures above 100буC. Especially in the molten state, it is very easy to thermally oxidize and degrade.

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