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哈氏B-3合金大型压力容器的研制 被引量:8
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作者 王平 李宇 《压力容器》 北大核心 2007年第11期26-30,共5页
在简要介绍哈氏合金的发展、分类与使用的基础上,重点介绍了哈氏B-3合金的发展、性能与各项合格指标。并结合世界首台哈氏B-3合金大型压力容器制造的实例,详细介绍了该类材料在焊接制造大型压力容器时在施工环境、冷热加工、耐蚀试验与... 在简要介绍哈氏合金的发展、分类与使用的基础上,重点介绍了哈氏B-3合金的发展、性能与各项合格指标。并结合世界首台哈氏B-3合金大型压力容器制造的实例,详细介绍了该类材料在焊接制造大型压力容器时在施工环境、冷热加工、耐蚀试验与质量控制等方面的具体要求。 展开更多
关键词 哈氏合金 冷作硬化 中温脆化 火裂 防污染 带压沸腾盐酸腐蚀试验 双面gtaw
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Penetration mechanism of aluminum alloy in double-sided GTAW process
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作者 高洪明 吴林 董红刚 《中国有色金属学会会刊:英文版》 CSCD 2005年第S2期35-38,共4页
The penetration mechanism of aluminum alloy in double-sided gas tungsten arc welding (GTAW) process was probed by means of theoretical analysis, experimentation and numerical simulation. The results show that, firstly... The penetration mechanism of aluminum alloy in double-sided gas tungsten arc welding (GTAW) process was probed by means of theoretical analysis, experimentation and numerical simulation. The results show that, firstly, the welding current goes straight through the weld zone, forms a stronger electromagnetic force field, and causes a stronger fluid flow in the weld pool. Secondly, during double-sided GTAW process, when the weld is partial penetrated, a heat-congregated zone forms between the bottoms of the two weld pools, where the temperature can increase quickly even though only a small amount of heat is input. Thirdly, the buoyancy force causes an inward flow in the bottom weld pool, which can drive the hot liquid on the surface to the bottom of the pool. 展开更多
关键词 ALUMINUM alloy double-sided gtaw PROCESS WELD PENETRATION numerical simulation
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