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Investigation of Wear Behavior of Functionally Graded Al-Si Alloy Produced by Cast Decant Cast (CDC) Method

机译:铸造倾析铸造(CDC)法生产的功能梯度Al-Si合金的磨损行为研究

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Functionally Graded Materials (FGM) are said to be smart materials that are fabricated by forming a compound of two components whose volume fraction has been changed across a certain direction. FGM can be used in many applications such as high temperature, aerospace and nuclear. The aim of this research work is about an investigation of wear behavior of functionally graded material (Al-Si alloy) produced by the Cast-Decant-Cast (CDC) method. In the CDC method, the Al-Si alloys were produced with three different regions. The Si composition has varied in each region. The outer, inner and transition regions consist of 7 wt% Si, 4wt% Si and 4 to 7 wt% Si respectively. out. Taguchi L9 orthogonal array (OA) had been conducted to find out the most significant factor which influence wear rate. Microstructure examination was done using an optical microscope and scanning electron microscope (SEM) helps to understand the distribution of silicon particles in the aluminum matrix. Hardness and wear resistance of the sample was carried
机译:据说功能梯度材料(FGM)是通过形成体积分数在某个方向上改变的两个组分的化合物而制造的智能材料。 FGM可用于许多应用,如高温,航空航天和核。该研究的目的是关于通过铸造蒸馏(CDC)方法产生的功能渐变材料(Al-Si合金)的磨损行为的研究。在CDC方法中,用三个不同的区域生产Al-Si合金。 Si组合物在每个区域中变化。外部,内和过渡区域分别由7wt%Si,4wt%Si和4至7wt%Si组成。出去。已经进行了Taguchi L9正交阵列(OA)以找出影响磨损率的最重要因素。使用光学显微镜和扫描电子显微镜(SEM)进行微观结构检查有助于了解铝基中硅颗粒的分布。进行样品的硬度和耐磨性

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