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Effect of bright annealing on stainless steel 304 formability in tube hydroforming

机译:光亮退火对管材液压成形中304不锈钢成形性的影响

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Effects of bright annealing (BA) on enhancing formability of stainless steel 304 tube in a tube hydroforming (THF) process were studied. The tube material was the meta-stable austenitic stainless steel 304 with an initial thickness of 0.5 mm and an outer diameter of 31.8 mm. Both FEA and experimental results showed that THF process of the investigated part alone failed to achieve desired tube expansion of the diameter of 50.8 mm without severe fracture. Thus, a heat treatment process, also known as bright annealing (BA), which caused little to none oxide on the surface of annealed tube, was considered. Initially, effects of different annealing parameters such as temperature and holding time on the material formability were investigated using tensile tests. Stress-strain responses of various conditions were compared. As a result, an annealing process consisted of heating at the temperature of 1,050℃, holding for 30 min, and rapidly cooling by purging N_2 gas was identified. This annealing should be applied intermediately after a pre-forming step. With the aid of the BA process, tube deformation was significantly increased and the required tube expansion could be therefore attained. In addition, strain-induced martensitic transformation occurred during the forming process was examined by X-ray diffraction (XRD) method. The amounts of martensite taking place in tubes (pre-forming, post-forming, and after annealing) were determined and discussed.
机译:研究了光亮退火(BA)在管液压成型(THF)过程中增强304不锈钢管成形性的影响。管材料是亚稳态奥氏体不锈钢304,其初始厚度为0.5mm,外径为31.8mm。有限元分析和实验结果均表明,仅被研究部件的THF工艺无法实现所需的直径为50.8 mm的管膨胀而没有严重断裂。因此,考虑了一种热处理工艺,也称为光亮退火(BA),该工艺几乎不会在退火管的表面产生氧化物。最初,使用拉伸试验研究了不同退火参数(例如温度和保持时间)对材料可成型性的影响。比较了各种条件下的应力应变响应。结果,确定了一种退火过程,该过程包括在1,050℃的温度下加热,保持30分钟并通过吹扫N_2气体进行快速冷却。该退火应在预成型步骤之后中间进行。借助于BA工艺,显着增加了管的变形,因此可以达到所需的管膨胀。此外,通过X射线衍射(XRD)方法检查了变形过程中发生的应变诱发马氏体转变。确定并讨论了在管中发生的马氏体数量(预成型,后成型和退火后)。

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