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Featured researches published by Zhang Jianxun.


Acta Metallurgica Sinica | 2013

FRACTURE TOUGHNESS OF WELDED JOINTS OF X100 HIGH-STRENGTH PIPELINE STEEL

Bi Zongyue; Yang Jun; Niu Jing; Zhang Jianxun

Fracture toughness of base metal,weld seam and heat-affected-zone(HAZ) in XlOO high-strength pipeline steel welded joints was investigated by three-point crack tip opening displacement(CTOD) test.Microstructure and inclusion near fracture zones were observed by means of SEM and TEM.The results indicated that fracture toughness of XlOO high-strength pipeline steel welded joints was greatly influenced by test temperature.At the same temperature,the numerical values of apparent crack initiationδ_(0.05),conditional crack initiationδ_(0.2) andδ_(0.2BL) of base metal are higher than that of weld seam and HAZ,and low temperature fracture toughness of base metal is better than those of weld seam and HAZ.With temperature decreasing,the fracture toughness of base metal,weld seam and HAZ decreased.The microstructure of near fracture zones of base metal specimen was composed of granular bainite(GB),a small quasi polygonal ferrite(QF) and lath bainite ferrite(BF),and the fine and equally dispersed M-A structure distributed on the grain boundary. The microstructure of near fracture zones of weld seam specimen was composed of acicular ferrite (AF),and the form of M-A constituents shows diversity,sharp-angled clearly.The microstructure of near fracture zones of coarse-grain HAZ was composed of GB and parallel LBF,and the square, wedged and bar M-A constituents distributed on the interior of grain,grain boundary and lath boundary. The poor fracture toughness of weld seam and HAZ specimen results from large size and cusp type M-A structure.While the higher distribution of inclusion in weld seam makes fracture toughness worse.


Archive | 2014

Micro pressure shear experimental device and testing method of mechanical property of fusion welding microcell

Zhang Jianxun; Guo Wei; Niu Jing; Zhao Xilong; Zhu Tong


Archive | 2015

Laser welding clamp and protecting device for titanium alloy thin-walled workpiece in shape of complex space

Zhang Jianxun; Liu Hong; Guo Tao; Cheng Shumin; Chen Wenge; Xu Mei; Yun Haitao; Li Xiangli; Niu Jing; Zhu Tong


Archive | 2013

System and method of improving appearance of laser welding line of titanium alloy sheet

Zhang Jianxun; Fang Xiuyang; Zhang Weizhi; Zhu Tong; Tan Long; Liu Hong; Zhao Xilong


Archive | 2013

Method of brazing alloy extrusion and backflow stuffing for carrying out stirring and friction of welding keyhole

Zhang Guifeng; Jiao Weimin; Zhang Jianxun


Archive | 2013

Vertical friction stud welding method

Zhang Guifeng; Jiao Weimin; Zhao Jipeng; Zhang Jianxun


Archive | 2003

Phase change-diffusion brass solder technique

Zhang Guifeng; Zhang Jianxun; Pei Yi


Archive | 2013

Welding operation simulation training equipment

Xue Jinbao; Zhang Jianxun; Dou Shitao; Niu Jing; Zhang Xiaoliang; Dong Liuzhai


Archive | 2014

Vertical type multidirectional welding simulation operation training device

Nie Min; Zhang Jianxun; Zhang Xiaoliang; Yang Long; Wang Junfeng; Zhu Tong; Dong Liuzhai; Cao Suijun; Ding Zili; Mu Xiangkui; Liu Xinhai; Wang Chunsheng; Li Jun; Chen Xiaoyi


Archive | 2014

Control cabinet used for welding simulation?training?equipment

Zhang Xiaoliang; Niu Jing; Nie Min; Li Hongjiang; Cao Suijun; Zhang Jianxun; Dong Liuzhai; Wang Junfeng; Liu Xinhai; Mu Xiangkui; Ding Zili; Wang Chunsheng; Li Jun; Chen Xiaoyi

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Niu Jing

Xi'an Jiaotong University

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Zhang Guifeng

Xi'an Jiaotong University

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Li Jun

Crops Research Institute

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