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Effect of Regrind on Vibration Welding Strength of Polyolefins

机译:重新研磨对聚烯烃振动焊接强度的影响

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Polyolefins are used in the automotive industry in various components from fairly simple console bins to complex instrument panels.Since scrap is unavoidable in manufacturing processes,the use of regrind is important to maximize resin usage and to avoid landfill.In addition to evaluating the physical property changes at different levels of regrind,the application specific requirements are important.The effect of different levels of regrind on weld strength is one of the important factors that needs to be considered in some automotive applications.This study evaluated the weld strength of polyolefins using a two-factor (meltdown and pressure),two-level design of experiments.Unfilled polypropylene copolymer samples at 0%,25%,50%,75% and 100% regrind levels were welded to a TPO in a T-Joint geometry to simulate production situations.The highest weld strength was seen in TPO welded to itself and used as the baseline strength.With the TPO to polypropylene welds,there was a 13% decrease in weld strength with the 0% regrind whereas at the 100% regrind level,the decrease in weld strength was only 5.6%.The weld strength of the polypropylene material to itself was found to be between 36-44% lower than that of the baseline strength.Aside from the 75% regrind samples,the highest joint strengths were using 1 mm meltdown and 1 MPa pressure.
机译:从公平简单的控制台垃圾箱中的各种部件中使用的聚烯烃到复杂的仪表板上.SINCE废料在制造过程中是不可避免的,使用重新研磨是最大限度地利用树脂的使用,并避免垃圾填埋场。除了评估物理性质的补充不同水平的重新研磨的变化,应用具体要求很重要。不同水平重新研磨对焊接强度的影响是在一些汽车应用中需要考虑的重要因素之一。本研究评估了使用A的聚烯烃的焊接强度两因素(熔化和压力),两级实验设计。填充0%,25%,50%,75%和100%再研磨水平的单级聚丙烯共聚物样品在T关节几何形状中焊接到TPO中以模拟生产情况。TPO焊接到自身的最高焊接强度并用作基线强度。与聚丙烯焊缝的TPO,W减少13% ELD强度随着0%重新研磨而在100%重新研磨水平上,焊接强度的降低仅为5.6%。发现聚丙烯材料与本身的焊接强度低于基线强度的36-44% 。从75%的重新研磨样品中,最高的关节强度使用1mm熔化和1MPa压力。

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