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The shear properties and deformation mechanisms of porous metal fiber sintered sheets

机译:多孔金属纤维烧结板的剪切性能和变形机理

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Porous metal fiber sintered sheets (MFSSs) are a type of layered transversely isotropic open cell materials with low relative density (i.e., volume fraction of fibers), high specific stiffness and strength, and controllable precision for functional and structural applications. Based on a non-contact optical full field strain measurement system, the in-plane and transverse shear properties of SMFFs with relative densities ranging from 15% to 34% are investigated. For the in-plane shear, the modulus and strength are found to depend linearly upon the relative density. The associated deformation is mainly due to fiber stretching, accompanied by the direction change of metal fibers. When the shear loading is applied in the transverse direction, the deformation of the material is mainly owing to fiber bending, followed by the separation failure of the fiber joints. Measured results show that the transverse shear modulus and strength have quartic and cubic dependence upon the relative density respectively and are much lower than their in-plane counterparts. Simple micromechanics models are proposed for the in-plane and transverse moduli and strengths of MFSSs in shear. The predicted relationships between the shear mechanical properties of MFSSs and their relative density are obtained and are in good agreement with the measured ones.
机译:多孔金属纤维烧结片(MFSS)是一种层状横向各向同性的开孔材料,其相对密度低(即纤维的体积分数),比刚度和强度高,并且对于功能和结构应用具有可控制的精度。基于非接触光学全场应变测量系统,研究了相对密度为15%至34%的SMFF的面内和横向剪切特性。对于面内剪切,发现模量和强度线性地取决于相对密度。相关的变形主要是由于纤维拉伸,伴随着金属纤维的方向变化。当在横向上施加剪切载荷时,材料的变形主要是由于纤维弯曲,随后是纤维接头的分离失败。测量结果表明,横向剪切模量和强度分别取决于相对密度的四次和三次依赖性,并且远低于其面内对应物。提出了简单的微力学模型,用于MFSS的平面和横向模量和剪切强度。获得了MFSS的剪切力学性能与其相对密度之间的预测关系,并且与所测得的关系良好。

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