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STUDY ON THE FRACTURE BEHAVIOR OF W-NI-FE HEAVY ALLOYS

机译:W-Ni-Fe重合金的骨折行为研究

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The fracture behaviors of tungsten alloys 91 W-6.3Ni-2.7Fe were investigated by tensile tests and numerical simulations. Firstly, tensile tests were conducted on the S-570 SEM with an in-situ tensile stage. With this system, the process of deformation, damage and evolution in micro-area can be tracked and recorded, and at the same time, the load-strain curve can be drawn. Secondly, the 2D finite element model of a unit cell for the tungsten alloys was established by using finite element program. By copying the unit cell model, the macro-model of the alloys was given. Dozen of cases were performed to simulate the fracture behaviors of tungsten alloys. Thirdly, the random model of the alloys was established. The fracture patterns of the alloys were investigated by the model. The interface between the tungsten particle and the matrix was explored in details. The effect of interface strength on the fracture patterns of the alloys was taken into account. A good agreement was achieved between the experimental results and the numerical predictions.
机译:通过拉伸试验和数值模拟研究了钨合金91W-6.3NI-2.7FE的断裂行为。首先,用原位拉伸阶段在S-570 SEM上进行拉伸试验。通过该系统,可以跟踪和记录微区域的变形,损坏和演化的过程,同时可以绘制负载 - 应变曲线。其次,通过使用有限元件来建立用于钨合金的单元电池的2D有限元模型。通过复制单元电池模型,给出了合金的宏观模型。进行了已经进行了十几种病例以模拟钨合金的断裂行为。第三,建立了合金的随机模型。通过模型研究了合金的断裂模式。详细探讨了钨颗粒和基质之间的界面。考虑了界面强度对合金裂缝图案的影响。在实验结果和数值预测之间实现了良好的一致性。

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