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首页> 外文期刊>Coatings >Pulsed Waterjet Roughening of Cast Iron and Aluminum Alloy for Automotive Engine Remanufacturing with Plasma Transferred Wire Arc Coating
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Pulsed Waterjet Roughening of Cast Iron and Aluminum Alloy for Automotive Engine Remanufacturing with Plasma Transferred Wire Arc Coating

机译:浇铸铁和铝合金的脉冲水射流粗糙化,用于采用等离子体转移钢丝弧制造的汽车发动机再制造

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This study utilized the high-pressure pulsed waterjet process and paired it with the plasma transferred wire arc technology to develop a novel technique to remanufacture damaged engine cylinder bores. The objective of this research was to eliminate the need for expensive bond-coats such as Ni-Al by optimizing the surface roughness profile of the substrate to provide acceptable mechanical bonding between the coating and the substrate. In this study, a high chrome stainless steel wire (Metcoloy #2) was plasma spray coated on a wide range of pulsed waterjet roughened surface profiles generated on grey cast iron and cast aluminum A380 alloy, the two most common engine materials. The pulsed waterjet greatly increased the adhesion strength between the substrates and the Metcoloy #2 coating. The increase in adhesion strength is a result of the formation of favorable mechanical anchoring points. Optimal pulsed waterjet parameters were determined to avoid the production of a copious roughness profile which resulted in a coating that mirrored the roughened surface profile. Additionally, if the roughness profile produced by the pulsed waterjet was insignificant the coating was removed in its entirety during detachment-based failure.
机译:本研究利用高压脉冲水射流工艺并将其与等离子体转移的线弧技术配对,开发一种新颖的技术来再制造损坏的发动机缸孔。本研究的目的是通过优化基板的表面粗糙度曲线来消除昂贵的粘合涂层,例如Ni-A1,以在涂层和基板之间提供可接受的机械键合。在这项研究中,高铬不锈钢线(MetColoy#2)是涂在灰色铸铁和铸铝A380合金上产生的各种脉冲水疱粗糙表面曲线上的等离子喷涂,这是最常见的发动机材料。脉冲水射流大大增加了基板和MetColoy#2涂层之间的粘合强度。粘合强度的增加是形成有利机械锚定点的结果。确定最佳脉冲水射流参数以避免产生大量粗糙度曲线,导致涂覆粗糙表面轮廓的涂层。另外,如果脉冲水射流产生的粗糙度曲线微不足道,则在基于分离的失效期间整体除去涂层。

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