Halogen-free flame-retardant high-temperature-resistant polyester elastomer and preparation method thereof
A high-temperature-resistant polyester and polyester elastomer technology, which is applied in the wire industry around automobile engines, halogen-free flame-retardant high-temperature-resistant polyester elastomers and their preparation fields, can solve problems such as low-temperature resistance and flame-retardant efficiency, and avoid Degradation behavior, increase flame retardant charcoal performance, and broad market prospects
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0045] Polyester type polyester elastomer 40 parts
[0046] Polybutylene terephthalate 15 parts
[0047] Compatibilizer 3 parts
[0048] Phosphorus nitrogen flame retardant 20 parts
[0049] Phosphonate flame retardant 10 parts
[0050] 3 servings of acid absorber
[0051] Flame retardant synergist 7 parts
[0052] Antioxidant 0.5 parts
[0053] Anti-hydrolysis agent 1.5 parts
[0054] The preparation method is as follows:
[0055] In the first step, after weighing the raw materials according to the weight ratio of the raw materials, first dry 40 parts of polyester elastomer and 15 parts of PBT in an oven at 120-130 °C for pretreatment; in the second step, mix 3 parts of compatibilizer, phosphorus 20 parts of nitrogen flame retardant, 10 parts of phosphate ester flame retardant, 3 parts of acid absorbing agent, 7 parts of flame retardant synergist, 0.5 part of antioxidant, 1.5 parts of anti-hydrolysis agent are thrown into the high mixer and mixed evenly; the third The...
Embodiment 2
[0057] Polyester type polyester elastomer 35 parts
[0058] Polybutylene terephthalate 20 parts
[0059] Compatibilizer 5 parts
[0060] Phosphorus nitrogen flame retardant 15 parts
[0061] Phosphonate flame retardant 15 parts
[0062] 3 servings of acid absorber
[0063] Flame retardant synergist 5 parts
[0064] Antioxidant 0.5 part
[0065] Anti-hydrolysis agent 1.5 parts
[0066] The preparation method is as follows:
[0067] In the first step, after weighing the raw materials according to the weight ratio of the raw materials, 35 parts of polyester elastomer and 20 parts of PBT are dried and pretreated in an oven at 120-130 ° C; in the second step, 5 parts of compatibilizer, phosphorus 15 parts of nitrogen flame retardant, 15 parts of phosphate ester flame retardant, 3 parts of acid absorbing agent, 5 parts of flame retardant synergist, 0.5 part of antioxidant, 1.5 parts of anti-hydrolysis agent are thrown into the high mixer and mixed evenly; the third The first...
Embodiment 3
[0069] Polyester type polyester elastomer 30 parts
[0070] Polybutylene terephthalate 25 parts
[0071] Compatibilizer 7 parts
[0072] Phosphorus nitrogen flame retardant 10 parts
[0073] Phosphonate flame retardant 20 parts
[0074] 3 servings of acid absorber
[0075] Flame retardant synergist 3 parts
[0076] Antioxidant 0.5 part
[0077] Anti-hydrolysis agent 1.5 parts
[0078] The preparation method is as follows:
[0079] In the first step, after weighing the raw materials according to the weight ratio of the raw materials, 30 parts of polyester elastomer and 25 parts of PBT are dried and pretreated in an oven at 120-130 °C; in the second step, 7 parts of compatibilizer, phosphorus 10 parts of nitrogen flame retardant, 20 parts of phosphate ester flame retardant, 3 parts of acid absorbing agent, 3 parts of flame retardant synergist, 0.5 part of antioxidant, 1.5 parts of anti-hydrolysis agent are thrown into the high mixer and mixed evenly; the third The first ...
PUM
| Property | Measurement | Unit |
|---|---|---|
| softening point | aaaaa | aaaaa |
| melting point | aaaaa | aaaaa |
| softening point | aaaaa | aaaaa |
Abstract
Description
Claims
Application Information
Login to View More 

