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A NOVEL HEAT INPUT EQUATION FOR ANALYSIS WELDING THERMAL DISTRIBUTION AND WELDING RESIDUAL STRESS

机译:一种用于分析焊接热分布和焊接残余应力的新型热输入方程

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In the numerical simulation of welding residual stress (WRS), the thermal fields distribution of the weld beads during welding process is the basic data to calculate the residual stress due to thermal expansion and extraction. Different welding heat input control method had been proposed and used in the WRS finite element method (FEM) analysis, such as input based on theory, input controlled by temperature monitoring point and so on. Some disadvantages like less calculating efficiency, unexpected temperature variation have been found in these methods. Based on the study of the FEM result of temperature distribution through the weld butter field by using constant unit heat input, the heat transfer activities of each weld bead were researched. And a novel heat input fitted equation was proposed to describe the suitable heat input data for each weld bead of the welding process. More reliable and uniform melting temperature of weld beads with different location could be achieved. And the welding residual stresses from different welding thermal field of theory method, temperature monitoring point method, and novel heat input equation method are compared with the measured WRS results. The results show that the WRS achieved from the novel heat input equations is close to the measured result and has more computational efficiency. The uncertain WRS data used for probability safety assessment were also proposed based on the FEM results with the novel heat input equation method.
机译:在焊接残余应力(WRS)的数值模拟中,焊接过程中焊接珠的热场分布是基本数据,以计算由于热膨胀和提取引起的残余应力。不同的焊接热输入控制方法已提出并用于WRS有限元方法(FEM)分析,例如基于理论的输入,由温度监测点控制的输入等。一些缺点,如计算效率较少,在这些方法中发现了意外的温度变化。基于通过使用恒定单位热输入通过焊膏场的温度分布的FEM结果的研究,研究了每种焊接珠的热传递活动。并且提出了一种新型热输入式方程来描述焊接过程的每个焊接珠的合适的热输入数据。可以实现具有不同位置的焊珠更可靠和均匀的熔化温度。与不同焊接热场的焊接残余应力与理论方法,温度监测点法和新型热输入方程方法进行比较,与测量的WRS结果相比。结果表明,从新型热输入方程实现的WRS接近测量结果并具有更多的计算效率。还提出了基于FEM结果的概率安全评估的不确定WRS数据,采用新型热输入方程法。

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