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Properties evaluation of semi-crystalline and amorphous polymers injected in AISI P20 molds repaired by welding

机译:通过焊接修复AISI P20模具的半结晶和无定形聚合物的性质评价

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Injection molds can fail after a certain period of use, which may compromise the final part’s integrity and quality, but that can be solved using welding repair processes. This work aimed to investigate the influence of AISI P20 molds repaired by Gas Tungsten Arc Welding (GTAW) and Nd-YAG laser-welding processes on the properties of injection-molded parts with semi-crystalline (polypropylene) and amorphous (polycarbonate and acrylonitrile butadiene and styrene terpolymer) thermoplastics. Welds were prepared by machining 0.8 mm-deep 40 mm x 5 mm grooves to be filled by GTAW and Nd-YAG laser-welding deposits, in order to simulate the repair of AISI P20 molds. All polymers were injected into weld-repaired and unrepaired molds, and then evaluated in terms of microstructure, crystallinity degree, mechanical properties and gloss. The results suggest that the repaired region for both studied welding processes, despite the difference in hardness of the weld region, does not significantly affect the properties of semi-crystalline and amorphous injected polymers.
机译:>注射模具可能在一定时期之后失效,这可能会损害最终部分的完整性和质量,而是可以使用焊接修复过程来解决。这项工作旨在探讨通过气体钨弧焊(GTAW)和ND-YAG激光焊接工艺修复的AISI P20模具对具有半结晶(聚丙烯)和无定形(聚碳酸酯和丙烯腈丁二烯的注塑成型部件的性能的影响和苯乙烯三元共聚物)热塑性塑料。通过加工0.8mm深40mm×5mm的凹槽来制备焊缝,以通过GTAW和ND-YAG激光焊接沉积填充,以模拟AISI P20模具的修复。将所有聚合物注射到焊接修复和未堆叠的模具中,然后在微观结构,结晶度,机械性能和光泽方面进行评估。结果表明,尽管焊接区域的硬度差异,但研究了两种研究的修复区域,也不会显着影响半结晶和无定形注射聚合物的性质。

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