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Thermal spraying of cylinder bores with the Plasma Transferred Wire Arc process

机译:等离子转移电弧工艺对气缸孔进行热喷涂

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摘要

Engine blocks of passenger cars made of hypoeutectic AlSi-alloys are generally equipped with cast iron liners in order to provide cylinder running surfaces that meet the tribological requirements. Thermally sprayed cylinder running surfaces are a promising alternative to cast iron liners. APS sprayed cylinder running surfaces made from low alloyed C steel have already proven their ability to reduce friction losses within the engine. Additional potential to reduce friction losses is offered by novel, and highly alloyed iron based surface building materials. This work describes the development of such materials and their application by the Plasma Transferred Wire Arc internal diameter coating process. The feedstocks lead to partially amorphous coatings with embedded boridic nanoscale precipitations if processed by thermal spraying. The coatings were applied onto the inner diameters of test liners made of aluminium EN AW 6060 and onto cylinder bore walls of an in-line 4 cylinder engine. Prior to coating, all surfaces to be coated were pre-treated by a novel fine boring process in order to create a surface topography which enables the adherence of the coatings. The coatings microstructures were analysed by light optical microscopy, hardness measuring and transmission electron microscopy. Furthermore the oil storage capacities of the honed surfaces were determined. (C) 2008 Elsevier B.V. All rights reserved.
机译:由亚共晶AlSi合金制成的乘用车的发动机缸体通常配备铸铁衬套,以提供满足摩擦学要求的汽缸工作表面。热喷涂气缸工作表面是铸铁衬套的有前途的替代品。由低合金C钢制成的APS喷涂气缸工作表面已经证明具有减少发动机内摩擦损失的能力。新型的,高度合金化的铁基表面建材提供了减少摩擦损失的其他潜力。这项工作描述了这种材料的发展及其在等离子转移弧内径涂层工艺中的应用。如果通过热喷涂进行处理,则原料会导致部分非晶态涂层,并嵌入硼化纳米级沉淀物。将该涂料涂到EN AW 6060铝制测试衬套的内径上,并涂在直列4缸发动机的缸孔壁上。在涂覆之前,所有待涂覆的表面均通过新颖的精细镗孔工艺进行预处理,以产生能够使涂层粘附的表面形貌。通过光学显微镜,硬度测量和透射电子显微镜分析涂层的微观结构。此外,确定了珩磨表面的储油能力。 (C)2008 Elsevier B.V.保留所有权利。

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