Home > FAQ > Why does EFAME have better low-temperature performance than many traditional plasticizers?

Why does EFAME have better low-temperature performance than many traditional plasticizers?

Henan GO Biotech Co., Ltd.
2026-07-22
Frequently Asked Questions about Products
EFAME is derived from long-chain fatty acids and has a more flexible molecular structure. It maintains better chain mobility at low temperatures, helping PVC retain softness and resistance to brittle cracking for cold-resistant applications.

EFAME generally delivers better low-temperature performance than many traditional plasticizers because it is derived from long-chain fatty acids and has a more flexible molecular structure. This structure helps maintain molecular chain mobility when temperatures decrease.

In PVC formulations, improved chain mobility can help the material retain softness and flexibility under cold conditions. As a result, EFAME can more effectively support resistance to brittle cracking, making it suitable for applications that require cold-resistant performance.

Why EFAME supports low-temperature PVC flexibility

  • It is derived from long-chain fatty acids.
  • Its molecular structure is more flexible and conformable.
  • It maintains better chain-segment mobility at low temperatures.
  • It helps PVC improve softness and resistance to brittle cracking in cold environments.

For PVC products used in low-temperature environments, EFAME is therefore a practical plasticizer option where enhanced softness and cold resistance are required. Henan GO Biotech Co., Ltd. provides EFAME plasticizer solutions for PVC formulations requiring reliable low-temperature performance.

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