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首页> 外文期刊>Tribologia >THE ABRASION OF AL-SI COATINGS WITH DIFFERENT SILICON CRYSTAL MORPHOLOGY, APPLIED IN AUTOMOTIVE SILENCERS
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THE ABRASION OF AL-SI COATINGS WITH DIFFERENT SILICON CRYSTAL MORPHOLOGY, APPLIED IN AUTOMOTIVE SILENCERS

机译:不同硅晶体形貌的AL-SI涂层的磨损,应用于汽车消音器

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This paper compares the abrasibility of aluminium-silicon coatings with silicon crystals of various forms. The tests were performed on Al-Si coatings with the chemical comp67890-osition corresponding to that of hypoeutectic and peritectic silumins (6-10wt Si), manufactured by hot-dipping on type X2CrTi12 steel and by cold cladding with 60 cold reduction on AlMn1Cu alloy. The hot-dip coatings deposited on X2CrTi12 steel were investigated as made and after a two-stage heat treatment: 420℃/2h/water and 120℃/2h/air. The morphology, shape, and size of silicon crystals in the coatings were studied under a microscope and with the image analysis technique (determining the shape factor among other parameters). Image analysis was also applied to the evaluation of abrasive wear resistance of the coatings using a ball wear test. Their adhesion strength was tested with the scratch test method. The test results indicated that the change in Al-Si coating silicon crystal morphology (from large sharp edged and needle-like to smaller rounded particles) was heat induced, which, compared to the pre-treatment condition, lowered abrasion resistance values and produced a more uniform abrasion loss. This condition was regarded as more desirable in terms of maintaining the coating continuity during drawing, with no risk of spalling. It was also demonstrated that clad Al-Si coatings could provide an alternative solution for the widely used hot dip coatings on steel sheet.
机译:本文比较了铝硅涂层与各种形式的硅晶体的耐磨性。测试是在Al-Si涂层上进行的,其化学成分comp67890-osiation对应于亚共晶和周晶硅铝(6-10wt%Si)的化学成分,通过对X2CrTi12型钢进行热浸镀,并在AlMn1Cu合金上采用冷熔覆60%冷还原制成。研究了沉积在X2CrTi12钢上的热浸涂层,并经过两阶段热处理:420°C/2h/水和120°C/2h/空气。在显微镜下和图像分析技术(确定形状因子等参数)研究了涂层中硅晶体的形态、形状和尺寸。图像分析还应用于使用球磨损测试评估涂层的耐磨性。它们的附着强度用划痕测试方法进行了测试。试验结果表明,Al-Si涂层硅晶体形貌(由大的尖边和针状颗粒到较小的圆形颗粒)的变化是热诱导的,与预处理条件相比,降低了耐磨性值,产生了更均匀的磨损损失。在拉伸过程中保持涂层连续性方面,这种条件被认为更理想,没有剥落的风险。结果还表明,铝硅复合涂层可以为钢板上广泛使用的热浸涂层提供替代解决方案。

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