香蕉皮粉作为合成绿砂成型系统替代添加剂的适用性研究

IF 1.3 4区 材料科学 Q3 METALLURGY & METALLURGICAL ENGINEERING
V. Siddharth, D. Rao, B. R. Ramana Murthy
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引用次数: 5

摘要

以纳加瓦里河砂为原料,添加香蕉皮粉作为添加剂,研究了合成绿砂体系的力学性能。抗压强度、抗剪强度、模具硬度、体积密度和渗透性是在实验室按照标准测试程序发现的各种性能。以膨润土为粘结剂,以香蕉皮粉为添加剂,以不同的量加入到硅砂中,制备砂骨料。通过对标准砂样的强度和硬度测试,取得了令人鼓舞的结果。事实上,所表现出的性能几乎与添加2%糊精作为砂骨料添加剂所获得的值相似。由于香蕉皮粉可以很容易地制备,与糊精相比在成本上是最经济的,因此可以作为制备砂模的替代添加剂,以获得足够的强度和硬度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigations on the suitability of banana peel powder as an alternative additive in synthetic green sand moulding system
ABSTRACT An experimental study focused on the determination of mechanical properties of synthetic green sand system using Nagavali river sand by adding banana peel powder as an additive. Compression strength, shear strength, mould hardness bulk density and permeability are the various properties found in the laboratory following standard testing procedures. Sand aggregate is prepared by mixing the bentonite as binder and banana peel powder as an additive to the silica sand in various amounts. Encouraging results in terms of strength and hardness are obtained by testing the standard sand samples. In fact, the properties exhibited are almost similar to the values obtained by addition of 2% dextrin as an additive to the sand aggregate. Since the banana peel powder can be easily prepared which is most economical in terms of cost compared with dextrin, that can be an alternative additive in preparing the sand moulds to obtain adequate strength and hardness.
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来源期刊
CiteScore
2.70
自引率
7.10%
发文量
14
审稿时长
7.5 months
期刊介绍: The International Journal of Cast Metals Research is devoted to the dissemination of peer reviewed information on the science and engineering of cast metals, solidification and casting processes. Assured production of high integrity castings requires an integrated approach that optimises casting, mould and gating design; mould materials and binders; alloy composition and microstructure; metal melting, modification and handling; dimensional control; and finishing and post-treatment of the casting. The Journal reports advances in both the fundamental science and materials and production engineering contributing to the successful manufacture of fit for purpose castings.
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