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The role of the soft phase in the hardening effect and the rate dependence of the ultimate physico-mechanical properties of urethane-containing segmented elastomers

机译:软相在硬化效果中的作用以及含氨基甲酸酯的嵌段弹性体的最终物理力学性能的速率依赖性

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摘要

Segmented urethane elastomers (SUE) with polytetramethylene oxide soft segments, toluene diisocyanate (TDI)/methylene-bis-o-chloroaniline (MOCA) hard segments, TDI/ MOCA + TDI/butanediol (BD) and TDI/MOCA + isophorone diisocyanate/MOCA mixed segments were investigated. A microphase separation in SUE was adjusted by the variation in the composition of the hard segments or preparation conditions. It was shown that non-linear relationships of SUE's thermo-mechanical, thermal and mechanical properties on the composition of hard segments, including an extremal one, were typical. Basic dependence types of SUE strength on the stretching rates (direct, reciprocal, extremal) were determined at various stages of the elastomer structure evolution. A significant increase in the SUE strength was found at a low degree of microphase separation. A strong effect of interaction in the soft phase on the physicochemical properties of block copolymers was shown. An improvement of the miscibility between hard and soft phases and a loose structure of the hard phase promote a stabilisation of the strength value in a wide range of the stretching rates. The effect of the strength increase equals to 30-50 %.
机译:分段聚氨酯弹性体(SUE),具有聚四亚甲基氧化物软链段,甲苯二异氰酸酯(TDI)/亚甲基双邻氯苯胺(MOCA)硬链段,TDI / MOCA + TDI /丁二醇(BD)和TDI / MOCA +异佛尔酮二异氰酸酯/ MOCA研究了混合段。通过改变硬链段的组成或制备条件,可以调节SUE中的微相分离。结果表明,SUE的热机械,热和机械性能与硬链段组成(包括一个极端)的非线性关系是典型的。在弹性体结构演变的各个阶段,确定了SUE强度对拉伸速率的基本依赖性类型(直接,相互,极值)。在微相分离程度低的情况下,发现SUE强度显着提高。显示了在软相中相互作用对嵌段共聚物的理化性质的强烈影响。硬相和软相之间的可混溶性的改善以及硬相的松散结构促进了在宽范围的拉伸速率下强度值的稳定。强度增加的效果等于30%至50%。

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