首页> 外文期刊>Journal of Korean Institute of Metal and Materials >Effect of Deformation Twin on Mechanical Properties of a Lean Manganese Twinning Induced Plasticity (TWIP) Steel Deformed at Quasi-Static Strain Rates
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Effect of Deformation Twin on Mechanical Properties of a Lean Manganese Twinning Induced Plasticity (TWIP) Steel Deformed at Quasi-Static Strain Rates

机译:变形孪晶对准静态应变速率下变形的贫锰孪晶诱导塑性(TWIP)钢力学性能的影响

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摘要

The high Mn (>25 wt%) TWIP steels with low stacking fault energy are currently one of the most attractive materials in the automotive industry due to their unique combination of high strength and good ductility. However, the conventional manufacturing processes have many problems with alloying high Mn. Therefore, many efforts are being made to reduce the Mn content, but the steels could not have an appropriate stacking fault energy (SFE) for twinning with decreasing Mn content.In this study, TWIP steel with lean Mn less than 20 wt% (Fe-18Mn-l.5Al-0.6C) was made. Tensile properties of the lean 18 Mn TWIP steel were measured at a strain rate range of 10~(-4)s~(-1)≤ε ≤10~(-1)s~(-1) to investigate the correlation between twinning behavior and stress at various strain rates. The lean 18 Mn TWIP steel possessed an austenite single phase before and after tensile tests at room temperature and exhibited a total elongation of about 60% and ultimate tensile strength of about 1000 MPa by strain-induced twinning. The stress decreased with an increasing strain rate, showing a negative strain rate sensitivity. That was because the volume fraction of twinned grains decreased with an increasing strain rate at the same strain. Stress was directly related to the volume fraction of twinned grains at quasi-static strain rates.
机译:具有低堆垛层错能的高锰(> 25 wt%)TWIP钢由于具有高强度和良好的延展性的独特组合,目前是汽车工业中最有吸引力的材料之一。然而,常规的制造工艺存在使高Mn合金化的许多问题。因此,人们为降低Mn含量做出了许多努力,但由于Mn含量降低,钢无法具有合适的堆垛层错能(SFE)来孪生。在本研究中,贫锰的TWIP钢含量小于20 wt%(Fe制成-18Mn-1.5Al-0.6C)。在应变速率范围为10〜(-4)s〜(-1)≤ε≤10〜(-1)s〜(-1)的条件下测量了贫18 Mn TWIP钢的拉伸性能,以研究孪晶之间的相关性各种应变速率下的行为和应力。贫18 Mn TWIP钢在室温下进行拉伸试验之前和之后均具有奥氏体单相,并通过应变诱发孪晶表现出约60%的总伸长率和约1000 MPa的极限拉伸强度。应力随着应变率的增加而降低,显示出负应变率敏感性。这是因为在相同应变下,孪晶晶粒的体积分数随应变率的增加而降低。在准静态应变率下,应力与孪晶晶粒的体积分数直接相关。

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