进行了2 mm SUS301L-HT不锈钢激光焊和惰性气体保护(MIG)焊试验,对比了两组焊缝在成形、显微组织、力学性能等方面的差别。两种焊接方法焊得的焊缝在成形上有较大不同,激光焊焊缝成形均匀稳定,接头角变形小,熔宽小,热影响区(HAZ)窄,优于...进行了2 mm SUS301L-HT不锈钢激光焊和惰性气体保护(MIG)焊试验,对比了两组焊缝在成形、显微组织、力学性能等方面的差别。两种焊接方法焊得的焊缝在成形上有较大不同,激光焊焊缝成形均匀稳定,接头角变形小,熔宽小,热影响区(HAZ)窄,优于MIG焊缝。两种焊接方法焊得的焊缝的金相组织差异较大,激光焊焊缝组织由细小柱状奥氏体枝晶和枝晶间δ铁素体组成,HAZ发生了回复和再结晶,晶粒有一定程度的长大;MIG焊缝由粗大的块状奥氏体组织和少量δ铁素体组成,HAZ组织变化丰富,组织随着与熔合线距离的改变而不同。两种焊接方法焊得的焊缝的力学性能差异明显,激光焊焊缝拉伸性能优于MIG焊缝,激光焊接头拉伸断裂在焊缝,断口为典型韧性断口,接头抗拉强度达到979.1 MPa,延伸率达到48.2%。展开更多
The binary and ternary rare earth terbium(Ⅲ) complexes were introduced into the styrene/ α methylacrylic acid copolymerization system, and some optical resins that possess a high transparency in visible light region...The binary and ternary rare earth terbium(Ⅲ) complexes were introduced into the styrene/ α methylacrylic acid copolymerization system, and some optical resins that possess a high transparency in visible light region were obtained. The study of the optical property showed that they have good luminescent properties such as a high luminous intensity and a long luminous lifetime. In addition, we investigated the relationship among the transparency, the luminescent property of the copolymer, and the content of the components in the polymeric system. The results indicated that the optical resins can provide a relatively stable environment for composite rare earth complexes, which is good to exhibit the luminescent properties of rare earth complexes. At the same time, the rare earth complexes can offer the transparent resin a novel function.展开更多
文摘进行了2 mm SUS301L-HT不锈钢激光焊和惰性气体保护(MIG)焊试验,对比了两组焊缝在成形、显微组织、力学性能等方面的差别。两种焊接方法焊得的焊缝在成形上有较大不同,激光焊焊缝成形均匀稳定,接头角变形小,熔宽小,热影响区(HAZ)窄,优于MIG焊缝。两种焊接方法焊得的焊缝的金相组织差异较大,激光焊焊缝组织由细小柱状奥氏体枝晶和枝晶间δ铁素体组成,HAZ发生了回复和再结晶,晶粒有一定程度的长大;MIG焊缝由粗大的块状奥氏体组织和少量δ铁素体组成,HAZ组织变化丰富,组织随着与熔合线距离的改变而不同。两种焊接方法焊得的焊缝的力学性能差异明显,激光焊焊缝拉伸性能优于MIG焊缝,激光焊接头拉伸断裂在焊缝,断口为典型韧性断口,接头抗拉强度达到979.1 MPa,延伸率达到48.2%。
文摘The binary and ternary rare earth terbium(Ⅲ) complexes were introduced into the styrene/ α methylacrylic acid copolymerization system, and some optical resins that possess a high transparency in visible light region were obtained. The study of the optical property showed that they have good luminescent properties such as a high luminous intensity and a long luminous lifetime. In addition, we investigated the relationship among the transparency, the luminescent property of the copolymer, and the content of the components in the polymeric system. The results indicated that the optical resins can provide a relatively stable environment for composite rare earth complexes, which is good to exhibit the luminescent properties of rare earth complexes. At the same time, the rare earth complexes can offer the transparent resin a novel function.