论文标题
具有非直觉特性的液相增强金属基质(LMM)复合材料
Liquid-phase reinforced Metal matrix (LMM) composite with non-intuitive properties
论文作者
论文摘要
多年来,已经努力使用复合设计来增强金属和合金,以提高其强度和模量。另一方面,大自然本人通过用零强度/模量的液体增强材料来提高材料的强度,延展性,刚度和韧性。在这里,模仿性质,已经努力与液体金属加固(LMM)开发新的基于TIN的合金/复合材料。基于热力学计算,已经设计了一种成分,以使其在熔化和铸造时形成固体金属(TIN固体溶液),而共晶混合物在室温下保持液态形式。与传统的焊料合金相比,称为LMM的复合结构显示出硬度,强度,延展性,韧性和耐磨性的多胎改进。基于有限元方法(FEM)的模拟显示了复合材料中的应变分布,从而导致独特的行为。 LMM还显示了热膨胀的负系数,该系数使用原位显微镜和热力学计算进一步验证。
Over the ages, efforts have been made to use composite design to reinforce metals and alloys in order to increase their strength and modulus. On the other hand, nature herself improves the strength, ductility, stiffness and toughness of materials by strengthening them with liquids having zero strength/modulus. Here, emulating nature, efforts have been made to develop a new class of tin based alloy/composite with liquid metal reinforcement (LMM). Based on thermodynamic calculations, a composition has been designed such that on melting and casting it forms a solid metal (tin solid solution) and the eutectic mixture remains in liquid form at room temperature. The composite structure named as LMM shows multifold improvement in hardness, strength, ductility, toughness and wear resistance as compared to conventional solder alloys. A Finite Element Method (FEM) based simulation shows strain distribution in the composite which results in the unique behavior. The LMM also shows a negative coefficient of thermal expansion which is further verified using in-situ microscopy and thermodynamic calculations.