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首页> 外文期刊>Particulate Science and Technology: An International Journal >Abrasive wear behavior of monolithic alloy,homogeneous and functionally graded aluminum(LM25/AIN and LM25/SiO2) composites
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Abrasive wear behavior of monolithic alloy,homogeneous and functionally graded aluminum(LM25/AIN and LM25/SiO2) composites

机译:整体合金,均匀且功能梯度铝(LM25 / AIN和LM25 / SIO2)复合材料的磨料磨损行为

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Functionally graded metal matrix composites(MMCs) and homogenous composites(AI/AIN and Al/SiO2-10wt%) have been fabricated through centrifugal casting and liquid metallurgy route,respectively.The properties of these composites were compared with aluminum alloy.Microstructural characteristics and hardness were studied on the surfaces of functionally graded materials(FGMs),homogenous composites,and unreinforced aluminum alloy using an optical microscope and a Vickers micro hardness tester,respectively.Tensile test was carried out on the outer and inner sections of FGMs and specimens from homogenous composites and alloy utilizing universal testing machines(UTMs).Three-body abrasive wear test was conducted for different loads and speeds to study their effect on the surfaces of composites and alloy using dry abrasion tester.Microstructural and hardness results reveal that the outer surface of aluminum nitride(AIN)-reinforced FGM has a particle-enriched region with the highest hardness.Tensile strength was found higher in both homogenous composites compared to zones of their FGMs.Abrasion wear rate was found increased with increase in load and decreased with increase in speed.The outer surface of AIN-reinforced FGM has higher wear resistance followed by the outer surface of SiO2-reinforced FGM.Scanning Electron Microscopy(SEM) analysis was performed on worn-out surfaces and observed particle-enriched outer surface of AI/AIN FGM with less abrasion.
机译:通过离心铸造和液体冶金途径制造了功能梯度金属基复合材料(MMC)和均匀复合材料(AI / AIN和Al / SiO2-10wt%)。将这些复合材料的性质与铝合金进行了比较。与铝合金。性能特征和使用光学显微镜和VICKERS微硬度测试仪在功能梯度材料(FGMS),均匀复合材料和未原始的铝合金的表面上进行硬度。在FGMS和标本的外部和内部进行致密化测试利用通用试验机(UTMS)的均匀复合材料和合金。采用不同的负荷和速度进行三体磨料磨损试验,以使用干磨机研究它们对复合材料表面的影响。使用干磨机。外表面显示出外表面氮化铝(AIN) - 强迫FGM具有富含硬度的富含粒子的区域.Tensi与其FGMS的区域相比,均匀复合材料中的le强度较高。发现磨损率随着负荷增加而增加,随着速度的增加而降低。AIN加强FGM的外表面具有更高的耐磨性,然后是外表面。 SiO2加强的FGM。在磨损的表面上进行SiO2加强的FGM。Scanning电子显微镜(SEM)分析,并观察到耐磨性的颗粒富集的AI / AIN FGM的外表面。

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