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HEATED TOOL WELDING OF THERMOPLASTIC POLYOLEFINS (TPO)

机译:热塑性聚烯烃(TPO)的加热工具焊接

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摘要

This study focused on the weldability of two specific thermoplastic polyolefins (TPO-A and TPO-B) using heated tool welding. A three-factor (heating temperature, heating time, and welding pressure) and three-level design matrix was used to perform the welding. Two statistical methods, three-factor two-level design of experiments (DOE) and Box Behnken method, were used to analyze the weld results. In addition, vibration welding of these TPOs was also used to compare the weldability. For heated tool welding, the maximum joint strength was 88% of the bulk strength for TPO-A and 76% of the bulk strength for TPO-B. For vibration welding, the maximum joint strength was 65% for TPO-A and 56% for TPO-B. While heated tool welding provided stronger joints compared to vibration welding, it had a longer cycle time. The two statistical methods provided similar results indicating that the simple three-factor two-level design of experiments was a valid screening method for heated tool welding of TPO.
机译:这项研究的重点是使用加热工具焊接的两种特定热塑性聚烯烃(TPO-A和TPO-B)的可焊接性。使用三因素(加热温度,加热时间和焊接压力)和三级设计矩阵进行焊接。采用两种统计方法,即三因素两级实验设计(DOE)和Box Behnken方法来分析焊接结果。此外,还使用了这些TPO的振动焊接来比较可焊性。对于加热工具焊接,TPO-A的最大结合强度为堆积强度的88%,TPO-B的最大结合强度为堆积强度的76%。对于振动焊接,TPO-A的最大接合强度为65%,TPO-B的最大接合强度为56%。尽管与振动焊接相比,加热工具焊接提供了更牢固的接头,但循环时间更长。两种统计方法提供相似的结果,表明简单的三因素两级实验设计是TPO加热工具焊接的有效筛选方法。

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