首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Quasi-Static and Dynamic Deformation Behavior of STS304- and Ta-fiber-reinforced Zr-based Amorphous Matrix Composites Fabricated by Liquid Pressing Process
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Quasi-Static and Dynamic Deformation Behavior of STS304- and Ta-fiber-reinforced Zr-based Amorphous Matrix Composites Fabricated by Liquid Pressing Process

机译:液压法制备STS304和Ta纤维增强Zr基非晶基复合材料的准静态和动态变形行为

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摘要

Zr-based amorphous alloy matrix composites reinforced with stainless steel (STS) and tantalum continuous fibers were fabricated without pores or defects by a liquid pressing process, and their quasi-static and dynamic deformation behaviors were investigated by using a universal testing machine and a Split Hopkinson pressure bar, respectively. The quasi-static compressive test results indicated that the fiber-reinforced composites showed amaximum strength of about 1050-1300 MPa, and its strength maintained over 700 MPa until reaching astrain of 40%. Under dynamic loading, the maximum stresses of the composites were considerably higher than those under quasi-static loading because of the strain-rate hardening effect, whereas the fracture strains were considerably lower than those under quasi-static loading because of the decreased resistance to fracture. The STS-fiber-reinforced composite showed a greater compressive strength and ductility under dynamic loading than the tantalum-fiber-reinforced composite because of the excellent resistance to fracture of STS fibers.
机译:采用液压法制备了无孔无缺陷的不锈钢(STS)和钽连续纤维增强的Zr基非晶合金基复合材料,并通过万能试验机和Split技术研究了它们的准静态和动态变形行为。霍普金森压力棒。准静态压缩试验结果表明,纤维增强复合材料的最大强度约为1050-1300 MPa,强度一直保持在700 MPa以上,直至达到40%的应变。在动态载荷下,由于应变速率硬化效应,复合材料的最大应力明显高于准静态载荷,而由于抗断裂性降低,断裂应变明显低于准静态载荷。 。 STS纤维增强复合材料在动态载荷下比钽纤维增强复合材料表现出更大的抗压强度和延展性,因为STS纤维具有出色的抗断裂性。

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