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首页> 外文期刊>Particulate Science and Technology: An International Journal >Fabrication of light-weight Al LM13/TiS2 metal matrix composites and investigation of its wear characteristics
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Fabrication of light-weight Al LM13/TiS2 metal matrix composites and investigation of its wear characteristics

机译:轻质Al LM13 / TIS2金属基复合材料的制备及其磨损特性的研究

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This paper aims to study the dry sliding wear characteristics of LM13 aluminum alloy matrix containing titanium disulfide(TiS2) as the reinforcement(10wt%,average size 37 pm) fabricated through liquid metallurgy route.Microstructural examination and Vickers hardness test were performed on the sample to investigate uniform distribution of the reinforcement particles in the composite.Energy Dispersive X-Ray Analysis and X-Ray Diffraction techniques were used to characterize the composite.The hardness test gave a result of 105.94 HV.The dry sliding wear experiments were designed by a five-level central composite design developed using response surface methodology.The factors considered were load,sliding distance,and velocity which were varied in the range of 10-30 N,500-1500 m,and 1-3 m/s,respectively.The experiments were then performed at room temperature using a pin-on-disc tribometer for 20 combinations.The generated regression equation showed that the developed model established a proper relation between the process variables and the response.Load being the most influential factor showed increasing trends of wear rate in the surface plots against both velocity and sliding distance.The wear rate exhibited a nonlinear trend in the surface plots against sliding distance and velocity.Scanning electron microscopy results showed greater wear at higher loads due to higher surface damage.Thus,the fabricated AI/TiS2 composite with the optimum wear process parameters can be well utilized for application where wear becomes a major consideration.
机译:本文旨在研究含有二硫化钛(TIS2)的LM13铝合金基质的干滑动磨损特性,作为通过液体冶金路线制造的增强(10wt%,平均37μm)。在样品上进行了硬化检查和维氏硬度试验为了研究复合材料中增强颗粒的均匀分布。使用X射线分析和X射线衍射技术用于表征复合材料。硬度试验得到105.94 HV的结果。通过A设计了干滑动磨损实验。使用响应面方法开发的五级中央复合设计。考虑的因素分别在10-30 n,500-1500m和1-3 m / s的范围内变化。然后使用用于20个组合的销盘摩擦计在室温下在室温下进行实验。产生的回归方程显示开发的模型建立了专业根据过程变量与响应之间的关系是最有影响力的因子,显示了表面图中的磨损率的增加趋势,而速度和滑动距离。磨损率在表面图中表现出滑动距离和速度的非线性趋势。扫描电子显微镜显微镜结果在较高的表面损伤导致的较高载荷时显示出更高的载荷。本,具有最佳磨损工艺参数的制造的AI / TIS2复合材料可以很好地用于磨损成为主要考虑的应用。

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