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Investigation on enhancement of weld strength between PMMA and PBT in laser transmission welding-Using intermediate material

机译:利用中间材料提高激光透射焊接中PMMA与PBT之间焊接强度的研究

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摘要

Poly(methyl methacrylate) (PMMA) and poly(butylene terephthalate) (PBT) are widely used in industry; however, poor compatibility between two materials lead to poor weld strength. Polycarbonate (PC) has good compatibility with PMMA and PBT. Therefore, the welding method was that PC film as intermediate material was used to enhance weld strength in laser transmission welding (LTW) of PMMA and PBT. Through the LTW experiment, the weld strength was tested by mechanical testing and it was found that the best weld strength was improved more than four times than the weld strength without intermediate material. By observing the micro morphology of the weld zone, one reason was founded that the bubbles can be used to form micro-mechanical riveting to enhance the weld strength. The reptation time for PMMA, PC, and PBT were investigated to analyze the establishment of the weld strength. When the reptation time is much shorter than time in molten state, the higher weld strength is feasible. It can be concluded that the weld strength of PC/PBT was higher than the weld strength of PMMA/PC. The equilibrium interfacial width was calculated through Helfand's theory to analyze the compatibility of dissimilar materials. The equilibrium interfacial width for PMMA/PC and PC/PBT were similar to tube diameter. That is the reason for weld strength enhancement. And then, the response surface methodology was designed to predict the weld strength. (C) 2016 Wiley Periodicals, Inc.
机译:聚甲基丙烯酸甲酯(PMMA)和聚对苯二甲酸丁二酯(PBT)在工业中得到了广泛的应用。但是,两种材料之间的相容性差会导致焊接强度差。聚碳酸酯(PC)与PMMA和PBT具有良好的兼容性。因此,焊接方法是使用PC膜作为中间材料来增强PMMA和PBT的激光透射焊接(LTW)的焊接强度。通过LTW实验,通过机械测试对焊接强度进行了测试,发现最佳焊接强度比没有中间材料的焊接强度提高了四倍以上。通过观察焊接区的微观形貌,发现了一个原因,即气泡可用于形成微机械铆接以增强焊接强度。研究了PMMA,PC和PBT的复制时间,以分析焊接强度的建立。当熔化时间比熔融状态的时间短得多时,较高的焊接强度是可行的。可以得出结论,PC / PBT的焊接强度高于PMMA / PC的焊接强度。通过Helfand理论计算了平衡界面宽度,以分析不同材料的相容性。 PMMA / PC和PC / PBT的平衡界面宽度类似于管的直径。这就是提高焊接强度的原因。然后,设计了响应面方法来预测焊接强度。 (C)2016威利期刊公司

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