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添加高熵合金粉末AZ31B镁合金/304不锈钢电阻点焊接头组织和力学性能 被引量:3
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作者 成家龙 程东海 +1 位作者 亓安泰 肖雄 《材料工程》 EI CAS CSCD 北大核心 2024年第1期146-152,共7页
以FeCoNiCrMn高熵合金为中间层,获得高质量的AZ31B/不锈钢电阻点焊接头。分析过渡区与两侧母材的反应扩散行为,检测接头性能并优化焊接工艺。结果表明:包含FeCoNiCrMn颗粒的过渡区成功连接镁、钢两母材。镁合金侧界面主要是颗粒周围反... 以FeCoNiCrMn高熵合金为中间层,获得高质量的AZ31B/不锈钢电阻点焊接头。分析过渡区与两侧母材的反应扩散行为,检测接头性能并优化焊接工艺。结果表明:包含FeCoNiCrMn颗粒的过渡区成功连接镁、钢两母材。镁合金侧界面主要是颗粒周围反应生成的Fe4Al13金属间化合物;而不锈钢侧边界主要由(Fe,Ni)固溶体和Fe4Al13金属间化合物两部分组成。拉剪载荷F随焊接电流I和焊接压力P的增加,焊接时间t的延长,呈现出先升高后降低的趋势,在18.2~22.5 kA,15~35周波,2.0~10.6 kN的实验工艺范围内,添加高熵合金镁/钢点焊接头拉剪载荷在3.2 kN以上,最大拉剪载荷为5.605 kN,相比未添加高熵合金镁/钢点焊接头拉剪载荷提高了397%。高熵合金过渡层形成了大量(Fe,Ni)固溶体,减少Fe4Al13脆性金属间化合物的生成,有效提高了接头的力学性能。 展开更多
关键词 AZ31B镁合金 304不锈钢 电阻点焊 高熵合金 抗剪载荷
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Experimental study on remodeling strength of granular materials under different loads and lengths of time 被引量:2
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作者 韩流 周伟 +3 位作者 才庆祥 舒继森 靖洪文 李鑫 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2783-2790,共8页
Remodeled clay and sand rock specimens were prepared by designing lateral confinement and water drainage experiments based on the stress exerted on granular materials in a waste dump.An in situ test was conducted in a... Remodeled clay and sand rock specimens were prepared by designing lateral confinement and water drainage experiments based on the stress exerted on granular materials in a waste dump.An in situ test was conducted in an internal waste dump;the physical and mechanical parameters of the remodeled rock mass dumped at different time and depths were measured.Based on statistics,regression analysis was performed with regard to the shearing stress parameters acquired from the two tests.Other factors,such as remodeling pressure(burial depth),remodeling time(amount of time since waste was dumped),and the corresponding functional relationship,were determined.Analysis indicates that the cohesion of the remodeled clay and its remodeling pressure are correlated by a quadratic function but are not correlated with remodeling time length.In situ experimental results indicate that the shear strength of reshaped granular materials in the internal dump is positively correlated with burial depth but poorly correlated with time length.Cohesion Cand burial depth H follow a quadratic function,specifically for a short time since waste has been dumped.As revealed by both in situ and laboratory experiments,the remodeling strength of granular materials varies in a certain pattern.The consistency of such materials verifies the reliability of the remodeling experimental program. 展开更多
关键词 load time granular materials remodeling shear strength
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