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Cu-Bi alloys with high volume fraction of Bi: A material potentially suitable for thermal surge protection and energy storage

机译:高含量Bi的Cu-Bi合金:一种潜在适用于热浪涌保护和能量存储的材料

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摘要

Thermal energy storage and surge protection materials store surplus heat energy and inhibit the increase in the temperature of materials in case of excess energy generation or surge. This study explores usage of Cu-Bi alloys comprising high volume fraction of Bi for energy storage and surge protection. Cu-Bi alloys, comprising 20,40 and 60 vol% of Bi, are prepared using liquid phase sintering by heating a mixture of Cu and Bi powders above the melting temperature of Bi, T_(m,Bi). Compression testing of Cu-Bi alloys is conducted at temperatures above and below T_(m,Bi). It is observed that the flow stress, yield stress, stress exponent and strain hardening exponent drastically decrease above T_(m,Bi). In addition, compression creep testing is performed for Cu-40 vol% Bi at temperatures above and below T_(m,Bi). The experimental results establish that this alloy can sustain moderate level of stresses at temperatures above T_(m,Bi) for long periods. Moreover, differential scanning calorimetry is employed to evaluate the heat storage capacity of the alloy with different compositions and effect of cyclic heating and cooling on the heat storage capacity. It is observed that the heat storage capacity of Cu-Bi alloy remains almost constant for several melting-solidification cycles. Finally, it is suggested that Cu-Bi alloy containing high volume fraction of Bi can be used for energy storage and thermal surge protection.
机译:热能存储和电涌保护材料会存储多余的热能,并在产生过多电涌或电涌的情况下抑制材料温度的升高。这项研究探索了包含高体积分数的Bi的Cu-Bi合金在能量存储和电涌保护中的用途。通过将Cu和Bi粉末的混合物加热到Bi,T_(m,Bi)的熔点以上,使用液相烧结来制备包含20,40和60vol%的Bi的Cu-Bi合金。 Cu-Bi合金的压缩测试在T_(m,Bi)之上和之下进行。观察到流变应力,屈服应力,应力指数和应变硬化指数急剧下降到T_(m,Bi)以上。另外,在高于和低于T_(m,Bi)的温度下对Cu-40 vol%Bi进行压缩蠕变测试。实验结果表明,该合金可以在高于T_(m,Bi)的温度下长期承受中等水平的应力。此外,差示扫描量热法用于评估具有不同组成的合金的储热能力以及循环加热和冷却对储热能力的影响。可以看出,Cu-Bi合金的储热能力在几个熔化-凝固循环中几乎保持不变。最后,建议将含有高体积分数的Bi的Cu-Bi合金用于能量存储和热浪涌保护。

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