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Thermal degradation of polymers* A primer

机译:聚合物的热降解*底漆

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THERMAL degradation of polymers is molecular deterioration as a result of overheating. At high temperatures the components of the long chain backbone of the polymer can begin to separate (molecular scission) and react with one another to change the properties of the polymer. Thermal degradation can present an upper limit to the service temperature of plastics as much as the possibility of mechanical property loss. Indeed unless correctly prevented, significant thermal degradation can occur at temperatures much lower than those at which mechanicar failure is likely to occur. The chemical reactions involved in thermal degradation lead to physical and optical property changes relative to the initially specified properties. Thermal degradation generally involves changes to the molecular weight (and molecular weight distribution) of the polymer and typical property changes include reduced ductility and embrittlement, chalking, color changes, cracking, general reduction in most other desirable physical properties. This represents one of the limiting factors in the application of plastics at high temperatures as they not only become softer but also to thermally degrade. Thermal degradation can present an upper limit to the service temperature of plastics as much as the possibility of mechanical property loss. Indeed unless correctly prevented, significant thermal degradation can occur at temperatures much lower than those at which mechanical failure is likely to occur.
机译:聚合物的热降解是由于过热导致的分子降解。在高温下,聚合物长链主链的组分可以开始分离(分子断裂)并相互反应以改变聚合物的性能。热降解会给塑料的使用温度带来上限,同时也会降低机械性能。的确,除非正确预防,否则在比可能发生机械故障的温度低得多的温度下,会发生明显的热降解。涉及热降解的化学反应导致物理和光学性质相对于最初指定的性质发生变化。热降解通常涉及聚合物分子量(和分子量分布)的变化,典型的性能变化包括延展性和脆性降低,粉化,变色,开裂,大多数其他所需物理性能的普遍降低。这代表了在高温下应用塑料的限制因素之一,因为它们不仅变得更软而且还会热降解。热降解会给塑料的使用温度带来上限,同时也会降低机械性能。的确,除非正确预防,否则在比可能发生机械故障的温度低得多的温度下,会发生明显的热降解。

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