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表面深滚处理对AZ91镁合金组织及性能的影响(英文) 被引量:7
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作者 罗贤 Qi-yang TAN +4 位作者 Ning MO Yu YIN 杨延清 wyman zhuang Ming-xing ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第7期1424-1429,共6页
在室温下对固溶处理后的AZ91 镁合金块体材料进行表面深滚处理,以研究其对合金表面显微组织和力学性能的影响。分析被加工试样表层沿深度方向的显微硬度和显微组织。结果表明,表面影响层厚度达到2.0 mm,可分为3 个亚层:从最表面起约为40... 在室温下对固溶处理后的AZ91 镁合金块体材料进行表面深滚处理,以研究其对合金表面显微组织和力学性能的影响。分析被加工试样表层沿深度方向的显微硬度和显微组织。结果表明,表面影响层厚度达到2.0 mm,可分为3 个亚层:从最表面起约为400μm 厚的严重变形层,大约600μm 厚的中等变形层和厚度达1000μm 的小变形层。在变形层中除晶粒细化外,还观察到应变诱导析出的β相(Mg17Al12),尤其是在严重变形层和中等变形层内。研究认为,晶粒细化、应变硬化和沉淀强化的协同作用使AZ91 镁合金在表面深滚后的硬度显著提高。 展开更多
关键词 表面变形 镁合金 表面深滚 显微组织演变 硬度
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Recent progress in additive manufacturing of bulk MAX phase components:A review
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作者 Qiyang Tan wyman zhuang +2 位作者 Marco Attia Richard Djugum Mingxing Zhang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第36期30-47,共18页
The MAX phases are a group of layered ternary,quaternary,or quinary compounds with characteristics of both metals and ceramics.Over recent decades,the synthesis of bulk MAX phase parts for wider engineering applicatio... The MAX phases are a group of layered ternary,quaternary,or quinary compounds with characteristics of both metals and ceramics.Over recent decades,the synthesis of bulk MAX phase parts for wider engineering applications has gained increasing attention in aerospace,nuclear,and defence industries.The recent adoption of additive manufacturing(AM)technologies in MAX phase fabrication is a step forward in this field.This work overviews the recent progress in additive manufacturing(AM)of bulk MAX phases along with the achieved geometric features,microstructures,and properties after briefing the conventional powder sintering methods of fabricating MAX phase components.Critical challenges associated with these innovative AM-based methods,including,poor AM processability,low MAX phase purity,and insufficient geometric accuracy of the final parts,are also discussed.Accordingly,outlooks for the immediate future in this area are discussed based on the optimization of present fabrication routes and the potential of other AM technologies. 展开更多
关键词 MAX phase Binder jetting Direct-ink-writing Sheet lamination Sintering
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