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Effect of Tool Shoulder Diameter during Friction Stir Processing of AZ31B alloy sheets of various thicknesses

机译:刀肩直径在各种厚度AZ31B合金板摩擦搅拌加工过程中的影响

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Friction-stir processing (FSP) is an emerging severe plastic deformation technology that is based on friction stir welding (FSW). In FSP, the tool plays a very important role in producing a defect free processed zone. The shoulder of the tool, which is the main source of heat generation, is typically either flat or tapered in shape. The typical shape of the shoulder aids in material consolidation during processing by forcing the softened material to be retained in the processed zone, as the tool traverses along the length of the work piece. The pin also plays a very important role, in refining the grain size along the through-thickness of the work piece. In this work, high carbon steel of and AZ3 IB magnesium alloy (6mm & 1.5 mm thick) was chosen as a tool material and work piece material respectively. The tool shoulder diameter of 18 mm and 24 mm were chosen to friction stir process the work piece material in a single pass. The possibility of Increase in the tool shoulder diameter beyond 18mm but less than 24 mm, a defect free processed zone was observed for variation in the process parameters in 6mm thick plate. Also as the thickness of work piece is reduced, the defects in the friction stir processed zone of 1.5 mm thick plate is completely eliminated. A fine equiaxed grain of average grain size less than 10μm were during friction stir processing, thus creating the material to exhibit superplasticity.
机译:摩擦搅拌加工(FSP)是一种新兴的严重塑性变形技术,基于摩擦搅拌焊接(FSW)。在FSP中,该工具在生产缺陷自由处理区域方面发挥着非常重要的作用。工具的肩部是发热的主要来源,通常是平坦的或锥形的。由于工具沿着工件的长度沿着工件的长度沿着工件横穿,在处理过程中,通过强迫软化材料在加工区内进行材料固结过程中的典型形状。引脚也起到非常重要的作用,在精炼沿着工件的通孔厚度的粒度。在这项工作中,选择高碳钢和AZ3 IB镁合金(6mm&1.5mm厚)分别作为工具材料和工件材料。选择18毫米和24mm的工具肩部直径,以摩擦搅拌处理工件材料在单次通过中。刀具肩部直径增加超过18mm但小于24mm的可能性,观察到缺陷加工区,用于6mm厚板中的工艺参数的变化。此外,随着工件的厚度降低,完全消除了1.5mm厚板的摩擦搅拌处理区中的缺陷。在摩擦搅拌加工过程中,平均晶粒尺寸的细平均粒度小于10μm,从而产生材料以表现出超塑性。

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