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Cyclic Flaring and Sinking (CFS) as a New Severe Plastic Deformation Method for Thin-walled Cylindrical Tubes

机译:循环扩口和下沉(CFS)作为薄壁圆柱管的一种新的严重塑性变形方法

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摘要

A novel severe plastic deformation method entitled cyclic flaring and sinking (CFS) is presented for producing ultrafine-grained thin-walled cylindrical tubes. CFS process includes two different flaring and sinking half-cycles. At flaring half cycle, the flaring punch with two stepped regions is pressed into the tube. Shear and normal tensile strains are applied as a result of the existence of shear zones and increase in the tube diameter. In the second half cycle, the tube is pressed to the sinking die that applies same shear strains and normal compression strain. The results indicate that the yield and ultimate strengths of the CFS processed Al tube significantly increases to 155, and 168 MPa, respectively from the initial values of 35, and 80 MPa. The elongation to failure decreases to about 15 % after three cycles from the initial value of 56 %. In addition, the hardness increases to similar to 38 Hv after ten cycles of CFS from similar to 23 Hv.
机译:提出了一种新型的严重塑性变形方法,称为循环扩口和下沉(CFS),用于生产超细晶粒薄壁圆柱管。 CFS过程包括两个不同的扩口和沉降半周期。在扩口半周期,将具有两个阶梯区域的扩口冲头压入管中。由于存在剪切区和管径增加,施加了剪切和正常拉伸应变。在第二个半周期中,将管子压到下沉模上,施加相同的剪切应变和法向压缩应变。结果表明,经CFS处理的铝管的屈服强度和极限强度分别从初始值35和80 MPa显着增加到155和168 MPa。在三个循环后,断裂伸长率从初始值的56%降至约15%。另外,在十个CFS循环后,硬度从相似的23 Hv增加到相似的38 Hv。

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