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Microstructure Evolution of Cold Pilgering Stainless Steel Tubes

机译:冷铅浸式不锈钢管的微观结构演变

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The 347 stainless steel tube cold rolling test was carried out by a LG60 two-roll pilger mill. The microstructure evolution was examined by microscope, SEM, and XRD tests. The finite element software DEFORM-3D has been used to simulate the pilgering process, and the obtained equivalent stress and metal flow were analyzed. The experimental results showed that the internal slip line was randomly distributed, the deformation of the inner wall was more intense than the outer wall structure, and the austenite γ phase was transformed into the α′-martensitic phase. The simulation results indicated that the direction of metal flow was constantly changing, and the equivalent stress of the inner wall of the steel tube was greater than the equivalent stress of the outer wall. In addition, the slip zone of the inner wall of the characteristic section was more severe than that near the outer wall slip zone. The simulation verified the experimental results to some extent.
机译:通过LG60双辊钳磨机进行347不锈钢管冷轧试验。通过显微镜,SEM和XRD测试检查微观结构演化。有限元软件DEFORM-3D已用于模拟置料过程,并分析所获得的等效应力和金属流动。实验结果表明,内部滑管随机分布,内壁的变形比外壁结构更强烈,奥氏体γ相转化到α'-马氏体相中。模拟结果表明金属流动方向不断变化,钢管内壁的等效应力大于外壁的等同应力。另外,特征部分的内壁的滑动区比外壁滑块附近更严重。模拟在一定程度上验证了实验结果。

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