Effect of Tin Addition on the Mechanical Properties and Microstructure of Aluminium Bronze Alloyed with 4% Nickel

B. Oluwadare, P. Okolie, S. Adeleye
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Abstract

The current study investigates the impact of adding tin to aluminium bronze alloyed with 4% nickel on its microstructure and mechanical properties. Sand casting was chosen as the most cost-effective and efficient method of preparing the aluminium bronze alloy. Following their melting points, six distinct samples of aluminium bronze alloyed with 0% to 10% tin were added into the crucible furnace. Nickel with the highest melting point of 1453°C was added into the crucible furnace first, while tin with the lowest melting of 231.9°C was added last into the crucible furnace. The alloying components were mixed well by manually mixing the liquid for around five minutes. After sand casting, the specimens were machined, sectioned, and grounded then tests were carried out to measure their hardness, tensile strength, and impact resistance. The results of the tests indicate that the tensile strength first increases and subsequently declines as the tin addition increases. The hardness of the aluminium bronze alloy increases as the proportion of tin addition increases. The results of the investigations also demonstrate that as the hardness of the specimens increases, their impact resistance decreases and the tensile stress of each specimen increases with strain. 
添加锡对含 4% 镍的铝青铜合金的机械性能和微观结构的影响
本研究探讨了在含 4% 镍的铝青铜合金中添加锡对其微观结构和机械性能的影响。砂型铸造是制备铝青铜合金最具成本效益和效率的方法。根据熔点,将六种不同的含 0% 至 10% 锡的合金铝青铜样品加入坩埚炉中。熔点最高(1453°C)的镍首先加入坩埚炉,熔点最低(231.9°C)的锡最后加入坩埚炉。通过手动搅拌液体约五分钟,使合金成分充分混合。砂型铸造完成后,对试样进行机械加工、切片和研磨,然后进行硬度、拉伸强度和抗冲击性测试。测试结果表明,随着锡添加量的增加,抗拉强度先是增加,随后下降。铝青铜合金的硬度随着锡添加比例的增加而增加。研究结果还表明,随着试样硬度的增加,其抗冲击性降低,每个试样的拉伸应力随应变而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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