首页> 外文期刊>Journal of Advanced Manufacturing Technology >EXPERIMENTAL EVALUATION OF MECHANICAL PROPERTIES OF TIN COMPOSITE (TIN, RICE HUSK AND SILICON CARBIDE) FOR SUSTAINABLE PRODUCTION TOOLING
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EXPERIMENTAL EVALUATION OF MECHANICAL PROPERTIES OF TIN COMPOSITE (TIN, RICE HUSK AND SILICON CARBIDE) FOR SUSTAINABLE PRODUCTION TOOLING

机译:可持续生产刀具用锡复合材料(锡,稻壳和碳化硅)力学性能的实验评估

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Experimental specimens were fabricated using Tin (Sn) as core material while silicon carbide and rice husk acted as reinforced materials to increase the specimen’s hardness. Silicon carbide and rice husk were reinforced in the Tin using metal casting process (mold plate casting). The specimen mold plate was cut using laser cutting machine and the material plate used was Aluminum. After metal casting process has been completed, the specimen in the mould were pressed using the hot press molding machine. Two types of testing were used in this study namely tensile test and hardness test. Three specimens have been used for each test. The result for the testings have been observed and analyzed based on their tensile strength and material hardness. It has been found that the tensile strength for the composite material is higher than the initial Tin (Sn), as well as its hardness. However, the mixing technique could have been improved to obtain better SiC and rice husk distribution.
机译:实验样品是使用锡(Sn)作为核心材料制造的,而碳化硅和稻壳则用作增强材料以增加样品的硬度。锡中的碳化硅和稻壳使用金属铸造工艺(模板铸造)进行了加固。使用激光切割机切割样品模板,并且所使用的材料板是铝。金属铸造过程完成后,使用热压成型机对模具中的样品进行压制。本研究使用两种类型的测试,即拉伸测试和硬度测试。每个测试使用了三个样本。测试结果基于其拉伸强度和材料硬度进行了观察和分析。已经发现,复合材料的抗拉强度及其初始硬度均高于初始锡(Sn)。但是,可以改进混合技术以获得更好的SiC和稻壳分布。

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