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Microstructure and properties of a bismuth-indium-tin eutectic alloy

机译:铋铟锡共晶合金的组织与性能

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A ternary eutectic alloy with a composition of 57.2%Bi, 24.8%In and 18%Sn was continuously cast into wire of 2 mm diameter with casting speeds of 14 and 79 mm min(-1) using the Ohno continuous casting process. The microstructures and mechanical properties of the wires were compared with those of statically cast specimens. Extensive segregation of massive bismuth crystals, bismuth complex structures, and tin rich dendrites was found in specimens which were statically cast. The bismuth complex-regular structures, which are a ternary eutectic constituent, existed along the boundaries of the BiIn dendrite cells forming a double binary eutectic. In the continuously cast wires, primary tin dendrites coupled with a fine bismuth phase were uniformly distributed within the Bi-In alloy matrix. With this novel, net-shape, casting process, the formation of massive bismuth crystals, bismuth complex-regular structures and BiIn eutectic dendrite cells was prevented, resulting in a more uniform microstructure which was in contrast to the heavily segregated structures of the statically cast specimens. These differences in structure significantly affected the mechanical properties. The continuously cast wires exhibited considerable ductility in contrast with the statically cast specimens which had lower toughness and exhibited cleavage fracture with little or no elongation at higher strain rates. (C) 2002 Kluwer Academic Publishers. [References: 12]
机译:使用Ohno连续铸造工艺将成分为57.2%Bi,24.8%In和18%Sn的三元共晶合金连续铸造为直径2 mm的线材,铸造速度分别为14和79 mm min(-1)。将线材的显微组织和力学性能与静态铸造的试样进行了比较。在静态铸造的样品中发现了块状铋晶体,铋复合物结构和富含锡的树枝晶的广泛偏析。铋复合规则结构是三元共晶成分,沿BiIn枝晶晶胞的边界存在,形成双二元共晶。在连续铸造的线材中,与细铋相耦合的原生锡枝晶均匀分布在Bi-In合金基体内。通过这种新颖的净形铸造工艺,可防止形成大量的铋晶体,铋复合规则结构和BiIn共晶枝晶细胞,从而形成了更均匀的微观结构,这与静态铸造的严重偏析结构形成了鲜明对比标本。这些结构差异显着影响了机械性能。与具有较低韧性的静态铸造试样相比,连续铸造的线材表现出相当大的延展性,所述静态铸造试样具有较高的应变速率,断裂断裂几乎没有或没有伸长。 (C)2002 Kluwer学术出版社。 [参考:12]

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