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Processing Structural Characterization and Comparative Studies on Uniaxial Tensile Properties of a New Type of Porous Twisted Wire Material

机译:新型多孔双绞线材料的单轴拉伸性能的加工结构表征和比较研究

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摘要

A self-developed rotary multi-cutter device cuts stainless steel wire ropes into segments to fabricate twisted wires. Stainless steel porous twisted wire materials (PTWMs) with a spatial composite intertexture structure are produced by the compaction and subsequent vacuum solid-phase sintering of twisted wires. The stainless steel PTWMs show two types of typical uniaxial tensile failure modes, i.e., a 45° angle fracture mode and an auxetic failure mode (the PTWMs expand along the direction perpendicular to the tension). The effects of the sintering parameters, porosities, wire diameters, and sampling direction on the tensile properties of the PTWMs are carefully investigated. By increasing the sintering temperature from 1130 °C to 1330 °C, the tensile strength of the PTWMs with 70% target porosity increased from 7.7 MPa to 28.6 MPa and the total failure goes down to 50%. When increasing the sintering time from 90 min to 150 min, the tensile strength increases from 12.4 MPa to 19.1 MPa and the total failure elongation drops to 78.6%. The tensile strength of the PTWMs increases from 28.9 MPa to 112.7 MPa with decreasing porosity from 69.5% to 46.0%, and the total failure elongation also increases from 14.8% to 40.7%. The tensile strength and the failure strain of the PTWMs with fine wires are higher than those of the PTWMs with coarse wires under the same porosity. Sampling direction has a small influence on the tensile properties of the PTWMs.
机译:自行开发的旋转式多刀设备将不锈钢钢丝绳切成段以制造绞合线。通过压实并随后进行真空固相烧结,可生产出具有空间复合纹理结构的不锈钢多孔双绞线材料(PTWM)。不锈钢PTWM表现出两种典型的单轴拉伸破坏模式,即45°角断裂模式和拉胀破坏模式(PTWM沿垂直于拉伸方向的方向扩展)。仔细研究了烧结参数,孔隙率,线径和采样方向对PTWMs拉伸性能的影响。通过将烧结温度从1130°C增加到1330°C,目标孔隙率70%的PTWM的抗拉强度从7.7 MPa增加到28.6 MPa,总破坏率降至50%。当烧结时间从90分钟增加到150分钟时,抗拉强度从12.4 MPa增加到19.1 MPa,总破坏伸长率降至78.6%。 PTWM的抗拉强度从28.9 MPa增加到112.7 MPa,孔隙率从69.5%降低到46.0%,总破坏伸长率也从14.8%增加到40.7%。在相同的孔隙率下,细金属丝的PTWM的抗拉强度和破坏应变高于粗金属丝的PTWM的抗拉强度和破坏应变。采样方向对PTWM的拉伸性能影响很小。

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