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首页> 外文期刊>Tribology Transactions >Friction and Wear Behaviors of a Cylinder Liner-Piston Ring with Emulsified Bio-Oil as Fuel
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Friction and Wear Behaviors of a Cylinder Liner-Piston Ring with Emulsified Bio-Oil as Fuel

机译:乳化生物油为燃料的缸套-活塞环的摩擦磨损特性

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An engine cylinder liner-piston ring tribotester was used to investigate the effects of different diesel fuels on the tribological properties of a cylinder liner-piston ring. The wear surface morphology and roughness were analyzed using a scanning electron microscope and a surface profiler. The chemical structures and components of the tested oils were characterized using a Fourier transform infrared spectrophotometer and gas chromatography-mass spectrometry. The chemical components and element distribution on the rubbed surface were studied using energy-dispersive X-ray spectra. The results showed that the cylinder liner-piston ring lubricated with bio-oil (BO) had a lower friction coefficient but higher wear mass and greater surface roughness than one lubricated with diesel oil (DO), and emulsified bio-oil (EBO) can decrease the wear weight loss and surface roughness of the friction pairs. The protective film created by BO between the cylinder liner and piston ring lowered the friction coefficient due to the adsorption of polar groups of carboxylic acids and alcohols on the rubbing surface. However, these oxygen-containing organics in the BO also corroded the rubbing surfaces, which resulted in higher wear mass compared to that caused by DO. The main wear mechanisms can be identified as corrosive wear for BO and abrasive wear for EBO and DO. The EBO showed promising potential because its use resulted in lower corrosion and lower wear.
机译:发动机缸套-活塞环三botester用于研究不同柴油对缸套-活塞环的摩擦学性能的影响。使用扫描电子显微镜和表面轮廓仪分析磨损表面的形态和粗糙度。使用傅立叶变换红外分光光度计和气相色谱-质谱法对被测油的化学结构和成分进行了表征。使用能量色散X射线光谱研究了摩擦表面上的化学成分和元素分布。结果表明,用生物油(BO)润滑的气缸套-活塞环比用柴油(DO)润滑的气缸套-活塞环具有更低的摩擦系数,但具有更高的磨损质量和更大的表面粗糙度,而乳化的生物油(EBO)可以减少摩擦副的磨损失重和表面粗糙度。 BO在气缸套和活塞环之间形成的保护膜降低了摩擦系数,这是由于羧酸和醇类的极性基团在摩擦表面上的吸附。但是,BO中的这些含氧有机物也腐蚀了摩擦表面,与由DO引起的磨损相比,导致了更高的磨损质量。主要的磨损机理可以确定为BO的腐蚀磨损和EBO和DO的磨料磨损。 EBO具有广阔的发展前景,因为其使用可降低腐蚀和降低磨损。

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