EXPERIMENTAL INVESTIGATION ON MECHANICAL BEHAVIOUR OF AZ91C METAL MATRIX COMPOSITE REINFORCED WITH B4C

N. J. Krishna, D. Nagaraju
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Abstract

Magnesium-based composite materials play an important role in aerospace and automobile industries because of their low density, stiffness & high specific strength. These hybrid composite materials were needed to increase the strength, surface finish, machinability, corrosion resistance, etc. To address such a problem this work has been focused on the preparation of magnesium-based metal matrix composite materials AZ91C reinforced with the B4C with two different proportions which are prepared by using the casting process. For the characterization of the prepared Mg-based MMCs, various tests like tensile test and hardness test have been performed on three model sample specimens of namely AZ91C(100%)+B4C(0%). AZ91C(98%)+B4C(2%) And AZ91C(96%)+B4C(4%). It was found that the compressive strength is and hardness is decreased due to the addition of the B4C to the matrix alloy AZ91C while tensile strength is increased. The tensile strength is increased by 15.58% with the addition of 4% B4C when compared with 2% of B4C and also hardness is increased by 31.49%. The compressive strength is decreased by 41.43% with the addition of 4% B4C when compared with 2% of B4C.
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b4c增强az91c金属基复合材料力学性能的试验研究
镁基复合材料以其低密度、刚度和高比强度在航空航天和汽车工业中发挥着重要作用。这些杂化复合材料需要提高强度,表面光洁度,可加工性,耐腐蚀性等。为了解决这一问题,本文采用铸造法制备了两种不同比例的镁基金属基复合材料AZ91C。为了表征制备的mg基mmc,对AZ91C(100%)+B4C(0%)三种模型试样进行了拉伸试验和硬度试验。AZ91C(98%)+B4C(2%)和AZ91C(96%)+B4C(4%)。结果表明:基体合金AZ91C中加入B4C后,抗压强度减小,硬度降低,抗拉强度提高;与添加2% B4C相比,添加4% B4C可使拉伸强度提高15.58%,硬度提高31.49%。与添加2% B4C相比,添加4% B4C可使抗压强度降低41.43%。
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