首页> 外文期刊>Tribology in Industry >Friction and Wear Properties of Rapid Solidified H-Al-17Si Alloys Processed by UV Assisted Stir - Squeeze Casting with DLC-Star (CrN + a-c:H) Coating Under HFRR
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Friction and Wear Properties of Rapid Solidified H-Al-17Si Alloys Processed by UV Assisted Stir - Squeeze Casting with DLC-Star (CrN + a-c:H) Coating Under HFRR

机译:用紫外线辅助搅拌挤压用DLC-星(CRN + A-C:H)涂层加工快速固化的H-Al-17SI合金的摩擦和磨损性能

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Tribological properties of rapid solidified hyper eutectic AlSi17Cu3.5-4Mg0.6-0.8 (H-Al-17Si) alloy were investigated under different loading conditions. The alloy was produced by the rheo-stir squeeze casting process with the T-6 condition. Experimental studies were conducted using high frequency linear reciprocating rig (HFRR) with a ball-on-plate geometry. The effect of applied load (10-50 N) on the wear and friction (COF) coefficients were studied under dry, lubricated (SAE15W40), and coated dry (DLC-Star) sliding conditions. For dry and lubricated sliding, COF values of hyper eutectic AlSi17Cu3.5-4Mg0.6-0.8 alloy were 0.26 and 0.042. A lower COF value of 0.013 was recorded with DLC-star (CrN + a-c:H) coating under dry condition. Whereas, the least wear coefficient is also observed with DLC-star coating (4.6X10-5 mm3/N.m) compared to the dry and lubricated sliding conditions (2.7X10-3 mm3/N.m and 3.8X10-4 mm3/N.m). The developments in COF and wear coefficients were mainly attributed to the distribution and size of primary Si granules and the formation of transfer layers on the coated surfaces of AlSi17Cu3.5-4Mg0.6-0.8 alloy. Surface morphologies were examined using SEM, AFM, surface roughness profilometer, and advanced metallurgical microscope (AMM) analysis techniques.
机译:在不同负载条件下研究了快速固化超共晶Alsi17Cu3.5-4mg0.6-0.8(H-Al-17Si)合金的摩擦学性质。用T-6条件,通过Rheo搅拌挤压工艺产生合金。使用带有球形板几何的高频线性往复式钻机(HFRR)进行实验研究。在干燥,润滑(SAE15W40)和涂覆的干燥(DLC-星)滑动条件下,研究了施加负荷(10-50n)对磨损和摩擦(COF)系数的影响。对于干燥和润滑滑动,高共析性Alsi17Cu3.5-4mg0.6-0.8合金的COF值为0.26和0.042。在干燥条件下用DLC-星(CRN + A-C:H)涂层记录0.013的下部COF值。然而,与干燥和润滑的滑动条件(2.7×10-3mm3 / n.mm和3.8x10-4mm3 / n为3.8x10-4mm 3),也使用Dlc-star涂层(4.6x10-5mm3 / n.m)观察到最少的磨损系数。 COF和磨损系数的开发主要归因于初级Si颗粒的分布和尺寸以及Alsi17Cu3.5-4mg0.6-0.8合金的涂层表面上的转移层的形成。使用SEM,AFM,表面粗糙度分析仪和先进的冶金显微镜(AMM)分析技术来检查表面形态。

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