首页> 外文期刊>Composites Science and Technology >Deformation And Failure Behavior Of A Hydrostatically Extruded Zr_(38)ti_(17)cu_(10.5)co_(12)be_(22.5) Bulk Metallic Glass/porous Tungsten Phase Composite Under Dynamic Compression
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Deformation And Failure Behavior Of A Hydrostatically Extruded Zr_(38)ti_(17)cu_(10.5)co_(12)be_(22.5) Bulk Metallic Glass/porous Tungsten Phase Composite Under Dynamic Compression

机译:静挤压Zr_(38)ti_(17)cu_(10.5)co_(12)be_(22.5)大块金属玻璃/多孔钨相复合材料在动态压缩下的变形和破坏行为

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摘要

Hydrostatic extrusion of a Zr_(38)Ti_(17)Cu_(10.5)Co_(12)Be_(22.5) bulk metallic glass/porous tungsten phase composite was performed, and the dynamic compressive deformation and fracture behavior of the as-extruded composite were investigated in detail at room temperature by means of the Split Hopkinson Pressure Bar (SHPB). In comparison with the as-cast composite, the as-extruded composite presented a much higher flow stress without sacrificing plasticity under dynamic compression, exhibiting ductility increment, but evidence of work softening was observed. The specimen for the as-extruded composite failed by axial splitting with occasional shear fracture in some regions. It is suggested that the increase in flow stress and ductility of the as-extruded composite is attributed to the extrusion process which introduced hardened condition and texture in the tungsten phase as well as the 3D net structure of the porous tungsten phase. The work softening mechanism appears to be essentially associated with the large number of microcracks and voids under dynamic compression.
机译:进行Zr_(38)Ti_(17)Cu_(10.5)Co_(12)Be_(22.5)块状金属玻璃/多孔钨相复合材料的静液压挤压,并观察了挤压时复合材料的动态压缩变形和断裂行为。在室温下通过分流霍普金森压力棒(SHPB)进行了详细研究。与铸态复合材料相比,挤压复合材料在动态压缩下呈现出更高的流变应力,而不会牺牲塑性,表现出延展性增加,但是观察到了工作软化的迹象。挤压后的复合材料试样在某些区域会因轴向分裂而断裂,偶尔会发生剪切断裂。有人提出,挤出复合材料的流动应力和延展性的增加归因于挤出过程,该过程在钨相中引入了硬化条件和织构,并引入了多孔钨相的3D网状结构。功软化机制似乎与动态压缩下的大量微裂纹和空隙有关。

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