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Shape memory polymers with high and low temperature resistant properties

机译:具有高耐高温性能的形状记忆聚合物

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High temperature shape memory polymers that can withstand the harsh temperatures for durable applications are synthesized, and the aromatic polyimide chains with flexible linkages within the backbone act as reversible phase. High molecular weight ( M n ) is demanded to form physical crosslinks as fixed phase of thermoplastic shape memory polyimide, and the relationship between M n and glass transition temperature ( T g ) is explored. Thermoset shape memory polyimide shows higher T g and storage modulus, better shape fixity than thermoplastic counterpart due to the low-density covalent crosslinking, and the influence of crosslinking on physical properties are studied. The mechanism of high temperature shape memory effects based on chain flexibility, molecular weight and crosslink density is proposed. Exposure to thermal cycling from +150?°C to ?150?°C for 200?h produces negligible effect on the properties of the shape memory polyimide, and the possible mechanism of high and low temperature resistant property is discussed.
机译:可以承受耐用应用的严苛温度的高温形状记忆聚合物是合成的,并且芳族聚酰亚胺链具有柔性键合的骨架内充当可逆相。要求高分子量(m n )形成物理交联作为热塑性形状记忆聚酰亚胺的固定相位,以及M n 和玻璃化转变温度之间的关系(t g )。热固性形状存储器聚酰亚胺显示出较高的T <亚k / sum>和储存模量,由于低密度的共价交联,比热塑性对应物更好的形状固定性,并且研究了交联对物理性质的影响。提出了基于链柔性,分子量和交联密度的高温形状记忆效应的机理。暴露于从+150?℃的热循环到200℃的热循环200≤H,为形状记忆聚酰亚胺的性质产生可忽略不计的影响,并且讨论了高耐高温性的可能机制。

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