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Experimental study of relationship between interfacial instabilities and mechanical strength of three-layer symmetric polymer melts

机译:三层对称聚合物熔体界面不稳定性与机械强度关系的实验研究

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In this research, an experimental apparatus has been developed for observing interfacial stability and deformation of multilayer pressure driven channel flows. The interface instability of the co-extrusion flow of polyethylene and polypropylene is studied experimentally in a slit geometry. This is done by introducing disturbances of controlled wave length and amplitude on three-layer symmetric (A-B-A) polymer melts as well as performing a series of extrudate mechanical testing. In this study variations of the mechanical properties as well as wave interlocking have been related to the conformation of the interfacial waves (IW). By investigating the growing (IW) and tensile stress of extrudate samples a relationship between interfacial instability (II) and mechanical properties of polypropylene (PP) and high density polyethylene (HDPE) has been established. It has been shown that instabilities are associated with IW, and it turns out that IW amplitude is known as a mechanism for controlling the strength of three layer polymer products. It is shown that the mechanism of interfacial strength is related to interfacial instabilities as well as the interfacial strength. By considering that the instability is controlled by its dominant mode. It is shown that there is ability to forecast the quality of final products in co-extrusion process.
机译:在这项研究中,已经开发出一种用于观察界面稳定性和多层压力驱动的通道流动变形的实验装置。在狭缝几何形状中,对聚乙烯和聚丙烯共挤出流的界面不稳定性进行了实验研究。这是通过在三层对称(A-B-A)聚合物熔体上引入受控波长和振幅的扰动以及执行一系列挤出机械测试来完成的。在这项研究中,机械性能的变化以及波的互锁已与界面波(IW)的构造相关。通过研究挤出物样品的生长(IW)和拉伸应力,已建立了界面不稳定性(II)与聚丙烯(PP)和高密度聚乙烯(HDPE)的机械性能之间的关系。已经表明,不稳定性与IW有关,事实证明,IW振幅是控制三层聚合物产品强度的机制。结果表明,界面强度的机制与界面不稳定性以及界面强度有关。通过考虑不稳定性是由其主导模式控制的。结果表明,可以预测共挤过程中最终产品的质量。

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