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Increasing the wear resistance of molds for injection of glass fiber reinforced plastics

机译:增加用于注射玻璃纤维增​​强塑料的模具的耐磨性

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摘要

Abrasion by glass fibers during injection molding of fiber reinforced plastics raises new challenges to the wear performance of the molds. In the last few decades, a large number of PVD and CVD coatings have been developed with the aim of minimizing abrasion problems. In this work, two different coatings were tested in order to increase the wear resistance of the surface of a mold used for glass fiber reinforced plastics: TiAlSiN and CrN/CrCN/DLC. TiAlSiN was deposited as a graded monolayer coating while CrN/CrCN/DLC was a nanostructured coating consisting of three distinct layers. Both coatings were produced by PVD unbalanced magnetron sputtering and were characterized using scanning electron microscopy (SEM) provided with energy dispersive spectroscopy (EDS), atomic force microscopy (AFM), micro hardness (MH) and scratch test analysis. Coating morphology, thickness, roughness, chemical composition and structure, hardness and adhesion to the substrate were investigated. Wear resistance was characterized through industrial tests with coated samples and an uncoated reference sample inserted in a feed channel of a plastic injection mold working with 30 wt.% glass fiber reinforced polypropylene. Results after 45,000 injection cycles indicate that the wear resistance of the mold was increased by a factor of 25 and 58, by the TiAlSiN and CrN/CrCN/DLC coatings, respectively, over the uncoated mold steel.
机译:在纤维增强塑料的注射成型期间玻璃纤维的磨损对模具的磨损性能提出了新的挑战。在最近的几十年中,已开发出大量的PVD和CVD涂层,以最大程度地减少磨损问题。在这项工作中,为了增加玻璃纤维增​​强塑料模具表面的耐磨性,对两种不同的涂层进行了测试:TiAlSiN和CrN / CrCN / DLC。 TiAlSiN沉积为渐变单层涂层,而CrN / CrCN / DLC是由三个不同的层组成的纳米结构涂层。两种涂层都是通过PVD不平衡磁控溅射制备的,并使用配备了能量色散光谱(EDS)的扫描电子显微镜(SEM),原子力显微镜(AFM),显微硬度(MH)和划痕测试分析进行了表征。研究了涂层的形态,厚度,粗糙度,化学成分和结构,硬度以及对基材的附着力。通过工业测试来表征耐磨性,其中将涂覆的样品和未涂覆的参比样品插入到使用30 wt。%玻璃纤维增​​强聚丙烯的塑料注塑模具的进料通道中。在45,000次注射循环后的结果表明,在未涂层的模具钢上,分别使用TiAlSiN和CrN / CrCN / DLC涂层,使模具的耐磨性提高了25倍和58倍。

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