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首页> 外文期刊>Journal of Applied Polymer Science >Effect of the inner wall cooling rate on the structure and properties of a polyethylene pipe extruded at a high rotation speed
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Effect of the inner wall cooling rate on the structure and properties of a polyethylene pipe extruded at a high rotation speed

机译:内壁冷却速率对高速旋转聚乙烯管结构和性能的影响

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摘要

A novel rotation extrusion processing system was self-designed to prepare high-performance polyethylene (PE) pipes. In this study, during the extrusion of the PE pipes at a high mandrel rotation speed, compressed air, as a cooling medium, was introduced through their interior to achieve the quick cooling of the inner wall and the effects of the inner wall cooling rate on the microstructure and mechanical properties of the obtained PE pipes were investigated. The experimental results showed that in contrast to conventional extrusion, the molecular orientation deviated from the axial direction under a high mandrel rotation speed and was fixed by the inner wall cooling; with increasing cooling rate, the orientation degree also increased. On the other hand, cooling promoted the augmentation of spherulites. So when the cooling rate reached a certain high point, the effect of cooling on the formation of spherulites was stronger than that on the fixation of the orientation. A much higher cooling rate decreased the orientation degree, which was closely related to the performance of the PE pipe. As a result, there was an optimal cooling rate of the inner wall during the rotation extrusion for better performance of the PE pipe. When the cooling rate was 1.5°C/s, the hoop strength of the PE pipe produced by the novel extrusion method increased from the original 24.1 MPa up to 37.1 MPa without a decrease in the axial strength, and the pipe's crack initiation time increased from 27 to 70 h.
机译:自行设计了新颖的旋转挤压加工系统,以制备高性能聚乙烯(PE)管。在这项研究中,在高心轴转速下挤出PE管的过程中,通过压缩空气作为冷却介质引入了它们的内部,以实现内壁的快速冷却以及内壁冷却速率对内壁的影响。研究了所得聚乙烯管材的组织和力学性能。实验结果表明,与常规挤出相比,分子取向在高芯轴转速下偏离轴向,并通过内壁冷却而固定。随着冷却速度的增加,取向度也增加。另一方面,冷却促进了球晶的增加。因此,当冷​​却速率达到一定的高点时,冷却对球晶形成的影响要强于取向的固定。更高的冷却速度会降低取向度,这与PE管的性能密切相关。结果,在旋转挤压过程中,内壁具有最佳的冷却速度,从而可以更好地保护PE管的性能。当冷却速率为1.5°C / s时,通过新型挤压方法生产的PE管的环向强度从原来的24.1 MPa增加到37.1 MPa,而轴向强度却没有降低,并且管子的裂纹萌生时间从27至70小时。

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