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Effect of vertical rolling at various temperatures on subsequent multi-pass severe rolling of AZ31B alloy sheet

机译:不同温度下的垂直轧制对随后的AZ31B合金薄板多道次粗轧的影响

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摘要

AZ31B alloy was subjected to vertical rolling at various temperatures prior to multi-pass severe rolling processing including initial rolling including one 80% reduction pass and finish rolling at 300℃ and 350℃, respectively. The depth and number of edge crack, microstructure evolution and tensile properties were examined. The results indicate that pre-vertical rolling at low temperature before severe rolling can significantly restrain edge crack, change relative frequency distribution of edge-crack depth, increase microstructure homogeneity and sharply change the intensity and distribution of basal texture of initial-rolled sheets. The level of edge crack increases with increased vertical rolling temperature above 100℃ mostly due to the combination of shear band density, microstructure homogeneity, grain size and texture of rolled sheets. Compared with conventional rolling, the effect of vertical rolling on final mechanical properties depends on the finish rolling temperature due to the combination of shear bands, twins and grain size. The variation trend of mechanical properties with increased vertical rolling temperature is also sensitive to finish rolling temperature. For as-rolled sheets, the severe rolling route with vertical rolling at 100℃ and finish rolling at 300℃ should be required.
机译:AZ31B合金先在各种温度下进行垂直轧制,然后进行多道次严格轧制,包括分别进行一次初轧(包括80%的压下道次)和在300℃和350℃的精轧。检查了边缘裂纹的深度和数量,显微组织的演变和拉伸性能。结果表明,低温前垂直轧制可有效抑制边缘裂纹,改变边缘裂纹深度的相对频率分布,增加组织均匀性,并显着改变初始轧制薄板的基础组织强度和分布。边缘裂纹的水平随着垂直轧制温度的升高而升高,高于100℃,这主要是由于剪切带密度,组织均匀性,晶粒尺寸和轧制板织构的结合。与常规轧制相比,由于剪切带,孪晶和晶粒尺寸的组合,垂直轧制对最终机械性能的影响取决于最终轧制温度。垂直轧制温度升高时机械性能的变化趋势也对精轧温度敏感。对于轧制薄板,应要求严格的轧制路线,即100℃的垂直轧制和300℃的精轧。

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