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Modeling for stress-strain curve of a porous NiTi under compressive loading

机译:压缩载荷下多孔NiTi的应力-应变曲线建模

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Two models for predicting the stress-strain curve of porous NiTi under compressive loading are presented in this paper. Porous NiTi shape memory alloy is investigated as a composite composed of solid NiTi as matrix and pores as inclusions. Eshelby's equivalent inclusion method and Mori-Tanaka's mean-field theory are employed in both models. In the first model, the geometry of the pores is assumed as sphere. The composite is with close-cells. While in the second model, two geometries of the pores, sphere and ellipsoid, are investigated. The pores are interconnected to each other forming an open-cell microstructure. The two adjacent pores connected along equator ring are investigated as a unit. Two pores interact with each other as they are connected. The average eigenstrain of each unit is obtained by taking the average of each pore's eigenstrain. The stress-strain curves of porous shape memory alloy with spherical pores and ellipsoidal pores are compared, it is found that the shape of the pores has a nonignorable influence on the mechanical property of the porous NiTi. Comparison of the stress-strain curves of the two models shows that introducing of the average eigenstrains in the second model makes the predictions more agreeable to the experimental results.
机译:提出了两种预测压缩载荷下多孔NiTi应力-应变曲线的模型。研究了多孔NiTi形状记忆合金,它是由固态NiTi为基质和孔为夹杂物的复合材料。在这两个模型中均采用了Eshelby的等效包含法和Mori-Tanaka的均值场理论。在第一个模型中,孔的几何形状被假定为球形。复合材料带有闭孔。在第二个模型中,研究了孔的两个几何形状,即球形和椭圆形。孔彼此互连,形成开孔微结构。沿着赤道环连接的两个相邻孔作为一个单元进行研究。当两个孔连通时,它们彼此相互作用。每个单元的平均特征应变是通过获取每个孔的特征应变的平均值获得的。比较了具有球形孔和椭圆形孔的多孔形状记忆合金的应力-应变曲线,发现孔的形状对多孔NiTi的力学性能具有不可忽略的影响。两种模型的应力-应变曲线比较表明,第二种模型引入了平均特征应变,使预测结果与实验结果更加吻合。

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