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Effect of Accumulative Strain on Grain Refinement and Strengthening of ZM6 Magnesium Alloy During Continuous Variable Cross-Section Direct Extrusion 被引量:3
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作者 Feng Li Wei Shi +1 位作者 Nan Bian Hong-Bin Wu 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2015年第5期649-655,共7页
In order to study the influence of die combination on continuous variable cross-section direct extrusion (CVCDE) in the extrusion process, the accumulative strain formula is derived, and it can be known that the ext... In order to study the influence of die combination on continuous variable cross-section direct extrusion (CVCDE) in the extrusion process, the accumulative strain formula is derived, and it can be known that the extrusion ratio of various stages directly determines the size of corresponding stage strain by formula. In this paper, as an example of the two interim dies, three die combinations of different angles and extrusion ratio are designed. Aviation magnesium alloy ZM6 is studied, and the results show that dynamic recrystallization is even more complete when continuous shear deformation occurs, so that the refinement and homogenization of microstructure are obtained. By the use of different die combinations, the accumulative strain increases under the conditions of same total extrusion ratio. Thus, the refined crystalline strengthening effect of extrusion deformation can be further analyzed. Due to the dead-zone defects, the actual accumulative strain decreases significantly and the effect of microstructure and performance improvements also decreases with it. Therefore, the optimal design of die combination is the key to the process and product of CVCDE, which provides a scientific basis for the development of severe plastic deformation. 展开更多
关键词 continuous variable cross-section direct extrusion (CVCDE) Die combination Accumulative strain Magnesium alloys Severe plastic deformation
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Microstructural characteristics and deformation of magnesium alloy AZ31 produced by continuous variable cross-section direct extrusion 被引量:1
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作者 Hongwei Jiang Feng Li Xiang Zeng 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2017年第6期573-579,共7页
Magnesium(Mg) alloy AZ31 was produced by continuous variable cross-section direct extrusion(CVCDE)to study its deformation behavior. Metallographic microscopy(OM), transmission electron microscopy(TEM), and sc... Magnesium(Mg) alloy AZ31 was produced by continuous variable cross-section direct extrusion(CVCDE)to study its deformation behavior. Metallographic microscopy(OM), transmission electron microscopy(TEM), and scanning electron microscopy(SEM) were used to observe the variations in microstructure and fracture morphology of Mg alloy AZ31 as a function of processing methods. The results reveal that grains of Mg alloy AZ31 were refined and their microstructure was homogenized by CVCDE. The recrystallization in Mg alloy AZ31 produced by CVCDE with 2 interim dies was more complete than that produced by conventional extrusion(CE) and CVCDE with 1 interim die, and the grains were finer and more uniform.Plasticity of the AZ31 alloy was improved. Fracture mode was evolved from a combination of ductility and brittleness to a sole ductile form. In summary, a CVCDE mold structure with 2 interim dies can improve microstructure, plasticity, and toughness of Mg alloy AZ31. 展开更多
关键词 continuous variable cross-section direct extrusion(CVCDE) Magnesium alloys Microstructural characteristics Plastic deformation
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连续变断面循环挤压与高压扭转对合金组织和性能影响的综述
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作者 张君彦 刘莹莹 +1 位作者 孙宇幸 王梦婷 《热加工工艺》 CSCD 北大核心 2018年第15期6-10,5,共6页
论述了高压扭转工艺与连续变断面循环挤压法两种大塑性变形方法的工艺原理和工艺特点。并介绍了这两种方法在细化金属组织方面的应用。高压扭转工艺和连续变断面循环挤压都能明显细化晶粒,均是优化材料性能的有效途径。重点分析了连续... 论述了高压扭转工艺与连续变断面循环挤压法两种大塑性变形方法的工艺原理和工艺特点。并介绍了这两种方法在细化金属组织方面的应用。高压扭转工艺和连续变断面循环挤压都能明显细化晶粒,均是优化材料性能的有效途径。重点分析了连续变断面循环挤压过程中变形参数对材料组织及力学性能的影响。 展开更多
关键词 高压扭转 连续变断面挤压 晶粒细化
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