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首页> 外文期刊>Journal of Applied Polymer Science >CREEP BEHAVIOR OF BIAXIAL COLD-ROLLED POLYPROPYLENE
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CREEP BEHAVIOR OF BIAXIAL COLD-ROLLED POLYPROPYLENE

机译:双轴冷轧聚丙烯的蠕变行为

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Polypropylene was biaxially rolled up to 60% at ambient temperature, and the tensile creep behavior over the temperature range 27 to 60 degrees C was investigated using a dead-load apparatus. The degrees of crystallinity of the as-molded and rolled PP were determined using a differential scanning calorimeter (DSC) and density bottle. The DSC showed a slight change in the crystallinity during the early stage of the rolling process, while the density bottle indicated a continuous drop of the density with increasing rolling reduction. The elongation due to rolling was found almost fully recoverable when the samples were thrown into hot silicon oil at 180 degrees C. The effects of cold rolling on creep strain, secondary creep strain rate, and creep activation energy were investigated. Cold rolling led to an increase in the creep strain and secondary creep strain rate. The creep activation energy was found to increase with increasing rolling reduction. Within the secondary creep stage, the creep process in polypropylene is mainly due to the alpha-relaxation process and most of the creep strain was recoverable. (C) 1995 John Wiley and Sons, Inc. [References: 21]
机译:在环境温度下将聚丙烯双轴轧制至60%,并使用静载装置研究27至60摄氏度温度范围内的拉伸蠕变行为。使用差示扫描量热仪(DSC)和密度瓶测定模塑和压延PP的结晶度。 DSC在轧制过程的早期显示出结晶度的轻微变化,而密度瓶显示随着轧制压下率的增加,密度连续下降。当将样品放入180摄氏度的热硅油中时,发现由轧制引起的伸长率几乎可以完全恢复。研究了冷轧对蠕变应变,二次蠕变应变速率和蠕变活化能的影响。冷轧导致蠕变应变和二次蠕变应变速率的增加。发现蠕变活化能随着轧制压下率的增加而增加。在二次蠕变阶段内,聚丙烯的蠕变过程主要归因于α松弛过程,并且大部分蠕变应变是可恢复的。 (C)1995 John Wiley and Sons,Inc. [参考:21]

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