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Feasibility study of a novel hot stamping process for Ti6Al4V alloy

机译:Ti6Al4V合金新型热冲压工艺的可行性研究

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To investigate the feasibility of a novel hot stamping process for the Ti6Al4V titanium alloy using low temperature forming tools, mechanical properties of the material were studied using hot tensile tests at a temperature range of 600 - 900°C with a constant strain rate of 1s-1. Hot stamping tests were carried out to verify the feasibility of this technology and identify the forming window for the material. Results show that when the deformation temperature was lower than 700°C, the amount of elongation was less than 20%, and it also had little change with the temperature. However, when the temperature was higher than 700°C, a good ductility of the material can be achieved. During the forming tests, parts failed at lower temperatures (600°C) due to the limited formability and also failed at higher temperatures (950°C) due to the phase transformation. The post-form hardness firstly decreased with the temperature increasing due to recovery and then increased due to the phase transformation. Qualified parts were formed successfully between temperatures of 750 - 850°C, which indicates that this new technology has a great potential in forming titanium alloys sheet components.
机译:为了研究使用低温成型工具对Ti6Al4V钛合金进行新的热冲压工艺的可行性,在600-900°C的温度范围内以1s-恒定应变速率使用热拉伸试验研究了材料的机械性能。 1。进行热冲压测试以验证该技术的可行性并确定材料的成型窗口。结果表明,当变形温度低于700℃时,伸长率小于20%,并且随温度的变化也很小。然而,当温度高于700℃时,可以实现材料的良好延展性。在成形测试过程中,由于有限的可成型性,零件在较低温度(600°C)下失效,并且由于相变在较高温度(950°C)下失效。成型后硬度首先由于恢复而随温度升高而降低,然后由于相变而升高。在750-850°C的温度范围内成功地形成了合格的零件,这表明这项新技术在形成钛合金板材组件方面具有巨大的潜力。

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