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首页> 外文期刊>Transactions of the Indian Institute of Metals >Numerical Simulation of Temperature Field and Residual Stresses in Stainless Steel T-Joint
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Numerical Simulation of Temperature Field and Residual Stresses in Stainless Steel T-Joint

机译:不锈钢T关节温度场和残余应力的数值模拟

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摘要

T-joint, an important type of welding joint, is widely used in automobiles, ships, aerospace, and other industries. The variation in the temperature field and the stress field for T-joint is more complicated than that in other joint methods, and it is difficult to control the welding quality. The temperature field and stress field in 316L stainless steel T-joint were analyzed in this research by using simulation software, considering the thermal-metallurgical-mechanical coupling behavior, the isotropic hardening model and moving heat source condition. In the end, the simulation results were verified by the test results, and it was shown that the numerical simulation results agreed with the test results, which proved the reliability of the simulation results in 316L T-joint. The simulation results showed that the temperature distribution of T-joint cross section changed from a fan shape to an elliptical shape and the temperature distribution range increased with time. The temperature field was distributed symmetrically along the center of the weld. There was a large temperature difference between the weld zone and the base metal. The peak temperature was obtained in the second pass, and the peak temperature in the web plate was significantly higher than that in the flange plate; with farther away from the weld, a little variation happened in the thermal cycle curve. Whether it was longitudinal residual stress or transverse residual stress presented a hat-like distribution trend along the weld direction. The maximum tensile longitudinal residual stress appeared in the middle, while the maximum transverse residual stress appeared near the middle. In the vertical weld, the larger tensile stress in longitudinal and transverse direction appeared near the weld zone.
机译:T关节是一种重要的焊接接头,广泛用于汽车,船舶,航空航天和其他行业。温度场和T关节应力场的变化比在其他关节方法中更复杂,并且难以控制焊接质量。通过使用仿真软件在本研究中分析了316L不锈钢T关节中的温度场和应力场,考虑到热冶金 - 机械耦合行为,各向同性硬化模型和移动热源条件。最后,通过测试结果验证了模拟结果,并显示了与测试结果同意的数值模拟结果,这证明了模拟结果的可靠性导致316L T关节。仿真结果表明,随着时间的推移,从风扇形状变为椭圆形和温度分布范围的T接头横截面的温度分布。温度场沿着焊缝中心对称分布。焊接区和基础金属之间存在大的温差。在第二次通过中获得峰值温度,幅材中的峰值温度明显高于法兰板中的峰值温度;距离焊接越远,热循环曲线发生了一点变化。无论是纵向残余应力还是横向残余应力沿焊接方向呈现帽状分布趋势。中间的最大拉伸纵向残余应力出现,而中间的最大横向残余应力出现。在垂直焊接中,纵向和横向的较大拉伸应力出现在焊接区附近。

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