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首页> 外文期刊>Journal of Elastomers & Plastics >The unique effect of chain entanglements and particle morphology on the sintering of ultrahigh molecular weight polyethylene
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The unique effect of chain entanglements and particle morphology on the sintering of ultrahigh molecular weight polyethylene

机译:链纠缠和粒子形态对超高分子量聚乙烯烧结的独特效果

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摘要

Nascent ultrahigh molecular weight polyethylene (UHMWPE) is a thermoplastic material, consisting of nodular-fibrillar structure making it too much porous. At the present work, the effect of both particle morphology and chain entanglements on the sintering of UHMWPE was investigated. Neck growth for particles of three different commercial grades was determined as a function of time at isothermal sintering temperatures. A comparison between the experimental data and predictions from a theoretical model based on Maxwell constitutive equations revealed a complicated effect of particle size and morphology. It was observed that at early stages of sintering, Bellehumeur's model was in an excellent agreement with the experimental data, while it was deviated at late stages when the neck growth ratio (y/a) exceeds 0.8. Unlike commercially entangled samples, melted disentangled powder particles did not flow toward each other even after a long time had elapsed. Disentangled UHMWPE pellets, sintered for 10 min near the melting temperature, showed great transparency indicating low air voids and developing the sintering process, while grain boundaries remained undeveloped for entangled pellets.
机译:新生超高分子量聚乙烯(UHMWPE)是一种热塑性材料,由结节性纤维状结构组成,使其过多多孔。目前,研究了粒子形态和链缠结对UHMWPE烧结的影响。三种不同商业等级颗粒的颈部生长是在等温烧结温度下的时间的函数。基于麦克斯韦本构方程的理论模型的实验数据和预测之间的比较揭示了粒度和形态的复杂效果。观察到,在烧结的早期阶段,Bellehumeur的模型与实验数据一致,当颈部生长比(Y / A)超过0.8时,它偏离了晚期阶段。与商业上纠缠的样品不同,即使经过长时间已经过时,熔化的切除戒露的粉末颗粒也不会朝向彼此流动。解开UHMWPE颗粒,在熔化温度附近烧结10分钟,显示出透明度低,指示低空气空隙并开发烧结过程,而晶粒边界仍未开发,对于缠结的颗粒保持不发。

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