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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Study of the microstructures and mechanical properties of ZK61 magnesium alloy cylindrical parts with inner ribs formed by hot power spinning
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Study of the microstructures and mechanical properties of ZK61 magnesium alloy cylindrical parts with inner ribs formed by hot power spinning

机译:ZK61镁合金圆柱形件与热功率纺纱形成内肋的微观结构和力学性能

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摘要

Cylindrical parts with inner ribs (CPIR) of magnesium alloy have increasingly become a research focus to adapt the continuous improvement of lightweight requirement. The hot power spinning (HPS) method was proposed to form the magnesium alloy CPIR, and the microstructures, textures, and mechanical properties of blank and spun workpiece at cylindrical wall (CW) and inner rib (IR) were analyzed experimentally. The results show that the average grain size at CW and IR of spun workpiece is refined from 2.49 mu m of blank to 1.88 mu m and 2.11 mu m, respectively. Thec-axis of most grains at CW and IR of spun workpiece is deflected from tangential direction (TD) to radial direction (RD) by 90 degrees and 72 degrees, respectively. Compared with blank, the elongation at CW and IR of spun workpiece is increased by 52.2% and 39.8%, respectively. The yield strength and ultimate tensile strength of IR are basically the same as those of blank, while those of CW are decreased by 6.5% and 3.9%, respectively. The difference of macro fracture directions of tensile specimen of blank and spun workpiece is resulted from the change of grainsc-axis direction and the increase of grain freedom degree aroundc-axis.
机译:镁合金的内肋(CPIR)的圆柱形部件越来越多地成为适应轻质要求的持续改进的研究重点。提出了热功率纺丝(HPS)方法以形成镁合金CPIR,并在实验上分析圆柱形壁(CW)和内肋(IR)处的空白和旋转工件的微观结构,纹理和机械性能。结果表明,分别从2.49亩坯料坯料的CW和IR的平均晶粒尺寸分别从2.49 mu m拍摄到1.88 mu m和2.11 mu m。 CW和IR的大多数颗粒的轴分别从切向方向(Td)到径向(Rd)分别偏转90度和72度。与坯料相比,CW和纺器型工件的伸长率分别增加了52.2%和39.8%。 IR的屈服强度和极限拉伸强度与空白的屈服强度和最终拉伸强度基本相同,而CW的屈服度分别降低了6.5%和3.9%。谷物轴方向的变化和谷粒自由度基轴的增加导致坯料和旋转工件的拉伸样品的宏裂缝方向的差异。

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