Porosity and Nitrogen Content of Weld Metal in Laser Welding of High Nitrogen Austenitic Stainless Steel
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概要
- 論文の詳細を見る
Some problems such as nitrogen desorption and pores always occur in the weld metal during welding of high nitrogen steel. In order to study the nitrogen content and porosity of the weld metal of high nitrogen steel 1Cr22Mn16N, the steel was welded by CO2 laser welding, and the influence of the shielding gas composition and heat input on the nitrogen content and porosity of the weld metal was investigated. The experimental results indicate that the weld nitrogen content increases slightly with the increase of the nitrogen content in shielding gas under the same laser welding conditions. The nitrogen content of the weld metal decreases with the increase of the heat input when pure argon is used as the shielding gas, whereas that of the weld metal is improved with the increase of the heat input when some nitrogen is added to the shielding gas. The higher the heat input, the less the porosity in the weld metal, and the more nitrogen in the shielding gas, the less the porosity becomes.
- 社団法人 日本鉄鋼協会の論文
- 2007-12-15
著者
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Zhao Lin
State Key Laboratory Of Advanced Steel Processes And Products Central Iron & Steel Research Inst
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Tian Zhiling
State Key Laboratory Of Advanced Steel Processes And Products Central Iron & Steel Research Inst
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PENG Yun
State Key Laboratory of Advanced Steel Processes and Products, Central Iron & Steel Research Institu
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Peng Yun
State Key Laboratory Of Advanced Steel Processes And Products Central Iron & Steel Research Inst
-
Zhao Lin
State Key Laboratory Of Advanced Steel Processes And Products Central Iron & Steel Research Inst
-
Tian Zhiling
State Key Laboratory Of Advanced Steel Processes And Products Central Iron & Steel Research Inst
関連論文
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- Metallurgical and Mechanical Properties of Fusion Zones of TRIP Steels in Laser Welding
- Fusion Zone Microstructure Evolution of Al-Alloyed TRIP Steel in Diode Laser Welding
- Porosity and Nitrogen Content of Weld Metal in Laser Welding of High Nitrogen Austenitic Stainless Steel
- Microstrcture and Mechanical Properties of Heat-affected Zone of High Nitrogen Steel Simulated for Laser Welding Conditions