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Nano tribology of nano particles added in engine oil and nano coatings of piston rings-cylinder liners in internal combustion engines

机译:在内燃机中的发动机油和活塞环缸衬里的发动机油和纳米涂层中加入纳米颗粒的纳米族摩擦学系

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This speech is related to our old and purely new scientific work carried out in our Automotive Lab. Real piston ringcylinder specimens were tested with reciprocating tribometer using five different nanoparticles added engine oil to investigate their wear and friction behavior. With regard to the experiments, it has been found that the best results were determined by TiO2 and SWCNTs (SWCNTs) according to the BN (boron nitride), Multi-walled carbon nanotubes (MWCNTs) and graphene nanoparticles added to the engine oil, respectively. At the end of the tests, abrasive wear has been observed as the main wear mechanism. The tribological characteristics of piston ring against a cylinder liner in the presence of graphene nano-additives mixed into 5W40 fully synthetic engine oil was also investigated. The tribometer and engine test results showed that graphene nanoparticles are a potentially beneficial additive to engine lubricants. Chromium Carbon Nitride coating (CrCN) is deposited with (Physical Vapor Deposition) PVD method on cylinder liner. Friction and wear test were conducted using a reciprocating tribometer. Al though the CrCN coating eliminated the wear of the coated liner, the restricted tribofilm formation and the high coating hardness led to more intense wear of the piston ring and showed slightly higher friction value related non-coated liner. Diesel engine cylinder liner is also coated with Graphene using Chemical Vapour Deposition (CVD) technique on the cylinder liner surface. Graphene coating showed slightly lower friction value between ball and coated cylinder liner pairs related non-coated liner.
机译:这次言论与我们在我们的汽车实验室开展的旧和纯粹的新科学工作有关。使用五种不同的纳米颗粒添加发动机油来测试真正的活塞环晶段标本,以研究其磨损和摩擦行为。关于实验,已经发现,根据BN(氮化硼),多壁碳纳米管(MWCNT)和加入发动机油的石墨烯纳米粒子,通过TiO 2和SWCNTS(SWCNTS)测定最佳结果。 。在测试结束时,已经观察到磨料作为主磨损机制。还研究了在将石墨烯纳米添加剂存在下混入5W40的石墨烯纳米添加剂存在下活塞环的摩擦曲线曲线的摩擦学特性。摩擦计和发动机测试结果表明,石墨烯纳米粒子是发动机润滑剂的潜在有益的添加剂。铬碳氮化铬涂层(CRCN)沉积在汽缸衬里上的(物理气相沉积)PVD方法。使用往复摩擦计进行摩擦和磨损试验。虽然CRCN涂层消除了涂层衬垫的磨损,但是受限制的呋喃酚形成和高涂层硬度导致活塞环的更强烈的磨损,并且显示出略高的摩擦值相关的非涂层衬里。柴油发动机缸衬里也涂有石墨烯,在气缸衬里表面上使用化学气相沉积(CVD)技术。 Gargal涂层在滚珠和涂层圆柱衬垫对相关的非涂层衬里之间显示出略微较低的摩擦值。

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