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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Wear and scuffing characteristics of composite polymer and nickel/ceramic composite coated piston skirts against aluminum and cast iron cylinder bores
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Wear and scuffing characteristics of composite polymer and nickel/ceramic composite coated piston skirts against aluminum and cast iron cylinder bores

机译:复合聚合物和镍/陶瓷复合涂层活塞裙对铝和铸铁气缸孔的磨损特性

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摘要

The purpose of this research was to evaluate the tribological behavior and compatibility between coated piston skirts and aluminum or cast iron bore counterfaces. Aluminum piston skirts with either composite polymer coatings (CPCs) or nickel/ceramic composite coatings (NCCs) were evaluated. Among the NCC coated piston skirts, Ni-P-BN showed consistent low wear on either cast iron or the aluminum bores. The tin plated piston skirt generated low wear depths on cast iron or 390 Al bore surfaces, but higher wear depths on 413 Al or 356 Al bore. All the CPCs generated much less wear on cast iron or aluminum cylinder bores compared with the Ni-P-SiC or Ni-P-Si3N4 Skirt coatings. Even the wear tests using 413 Al and 356 Al bores showed very low wear depths. Among the CPCs, two coatings with different percentages of molybdenum disulfide and graphite particles dispersed in the resin generated the lowest wear on 390 Al bore. Using a CPC over a hard-anodized surface, the bore wear depth was further reduced and became much more consistent compared with using a CPC alone. The response of the coatings to a simulation of the oil starvation associated with scuffing conditions revealed that the CPCs had intrinsic resistance to scuffing. However, the durability was not very good. The Ni-P-BN coating had intrinsic resistance to scuffing and Mod durability when sliding against 390 Al bore in the unlubricated conditions. The hard anodized surfaces with the CPCs showed much improved coating durability with good scuffing resistance. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 6]
机译:这项研究的目的是评估涂层活塞裙与铝或铸铁孔配合面之间的摩擦学性能和相容性。评估了具有复合聚合物涂层(CPC)或镍/陶瓷复合涂层(NCC)的铝活塞裙。在涂有NCC的活塞裙中,Ni-P-BN在铸铁或铝孔上均表现出一致的低磨损。镀锡活塞裙在铸铁或390 Al孔表面上的磨损深度较低,但在413 Al或356 Al孔表面上的磨损深度较高。与Ni-P-SiC或Ni-P-Si3N4裙材涂层相比,所有CPC在铸铁或铝缸孔上产生的磨损要少得多。即使使用413 Al和356 Al镗孔进行的磨损测试也显示出非常低的磨损深度。在CPC中,两种不同百分比的二硫化钼和石墨颗粒分散在树脂中的涂层在390 Al孔中的磨损最低。与仅使用CPC相比,在硬质阳极氧化的表面上使用CPC可以进一步减小孔的磨损深度,并变得更加一致。涂层对与擦伤条件相关的缺油模拟的响应表明,CPC具有抗擦伤的固有能力。但是,耐久性不是很好。当在未润滑条件下与390 Al孔滑动时,Ni-P-BN涂层具有抗划伤性和Mod耐久性。带有CPC的坚硬阳极氧化表面显示出大大改善的涂层耐久性和良好的抗划伤性。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:6]

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