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Anisotropic Compressive Properties and Energy Absorption Efficiency of Porous Twisted Short Fiber Materials

机译:多孔捻短纤维材料的各向异性压缩性能和能量吸收效率

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摘要

Novel stainless steel porous twisted short fiber materials (PTSFMs) with spatial composite intertexture structure are produced by compaction following with sintering of twisted short fibers. The stainless steel twisted short fibers are fabricated using a cutting stainless steel fiber ropes method with a self-developed rotary multi-cutter tool. The porous structure of the stainless steel PTSFMs exhibits a large difference in the through-thickness and in-plane direction, which results in differences in compressive behavior. During the compressive process, it is determined that the stainless steel PTSFMs exhibit typical elastic-plastic behaviors (three deformation stages) in the in-plane direction, but in the through-thickness direction, entered the compact densification zone after short-term nonlinear elastic deformation without a plastic platform stage. The compression deformation resistance in the through-thickness direction is obviously stronger than that in the in-plane direction at a given porosity. The compression strength and the anisotropy both decreased with increased porosity. The compression properties are anisotropic, which also result in different energy absorption efficiencies of the two directions. The relationship between the porosity and the energy absorption efficiency is not monotonically increasing or decreasing, but with the change of porosities, there is an optimal porosity, which has relatively high-energy absorption efficiency.
机译:新型的具有多孔复合纹理结构的不锈钢多孔双绞短纤维材料(PTSFM)是通过压紧并烧结双绞短纤维而生产的。不锈钢加捻短纤维是使用切割不锈钢纤维绳方法和自行开发的旋转式多刀刀具制造的。不锈钢PTSFM的多孔结构在厚度方向和面内方向上显示出很大的差异,这导致了压缩行为的差异。在压缩过程中,确定了不锈钢PTSFM在平面内方向上表现出典型的弹塑性行为(三个变形阶段),但在整个厚度方向上,经过短期非线性弹性后进入了致密致密化区无需塑料平台平台即可变形。在给定的孔隙率下,厚度方向的抗压缩变形能力明显强于面内方向的抗压缩变形能力。压缩强度和各向异性都随孔隙率的增加而降低。压缩特性是各向异性的,这也导致两个方向的能量吸收效率不同。孔隙率和能量吸收效率之间的关系不是单调增加或减少,而是随着孔隙率的变化,存在最佳孔隙率,其具有相对较高的能量吸收效率。

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