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Assessment of Hot Cracking Initiation by Laboratory Test Procedures and FEM-Simulation Associated Experimental Measurements During Welding of Large Weld Components

机译:在大型焊接部件焊接过程中,通过实验室测试程序和有限元模拟相关的实验测量评估热裂纹萌生

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The effects of material, welding procedure and weldment structure are used in the sense of joinability to analyse the complex problem of centreline solidification crack initiation during welding processing, The hot cracking test procedures with externally loaded specimen, based on the theories of Prochorov and Matsuda (MISO-technique, PVR-test and Varestraint-/Transvarestraint-test), are only partly true for the assessment of centreline solidification crack initiation during welding. The measurable condition and quantifying criteria of the tests vary from one to the next. They require a complicated calculation of the theoretical function "strain-rate". A special measuring technique was developed, tried and tested to estimate the initiation of solidification crack in flat and large components, The combination of measurement and calculation was applied to put the reliability of new derived crack minimizing methods to the test with help of the Finite Element Analysis (FEA) simulation, It takes into account the speed of cross displacement during welding processing, effected by weld component dimension and weldment assembly. The critical speed of displacement during welding processing determines the crack criterion for that moment when the local initiation of a centreline solidification crack is prevented. That is, if no hot crack is diagnosed after the welding. This is the case when the speed of displacement, released by fusion in front of the weld pool and thermal expansion during the welding process, is in equilibrium with the speed of displacement within the brittleness temperature range during solidification behind the weld pool. The centreline solidification crack initiation is assessable by comparison of the critical speed of cross displacement in the welded material (determined by experiment) to the local speed of cross displacement in the weldment (calculation by FEA-simulation). An assessment diagram for centreline solidification crack initiation during one-side welding was arrived at the multitude of results within displacement measurement during welding processing in flat and large components. It was utilized for a predictive assessment of solidification crack initiation of weldment depending on component dimension and welding procedures.
机译:从连接性的角度出发,使用材料,焊接工艺和焊件结构的影响来分析焊接过程中中心线凝固裂纹萌生的复杂问题。基于Prochorov和Matsuda( MISO技术,PVR测试和Varestraint // Transvarestraint测试仅对评估焊接过程中中心线凝固裂纹的起因部分适用。测试的可测量条件和量化标准各不相同。他们需要对理论函数“应变率”进行复杂的计算。开发,尝试和测试了一种特殊的测量技术,以估计扁平和大型部件中凝固裂纹的产生,并结合测量和计算方法,借助有限元将新的最小化裂纹扩展方法的可靠性进行了测试。分析(FEA)模拟,它考虑了焊接过程中横向位移的速度,该速度受焊接部件尺寸和焊件装配的影响。在焊接处理过程中的临界位移速度决定了当防止中心线凝固裂纹的局部引发时的裂纹判据。即,如果在焊接后没有诊断出热裂纹。当在焊接熔池后面的凝固过程中,在熔池温度范围内的脆性温度范围内,在熔池脆性温度范围内的位移速度与在熔池前的熔化和焊接过程中的热膨胀释放的位移速度达到平衡时,就是这种情况。中心线凝固裂纹的萌生可通过比较焊接材料中的横向位移的临界速度(由实验确定)与焊件中的局部横向位移的速度(通过FEA模拟计算)进行评估。在单面和大型零件的焊接过程中,通过位移测量得出的众多结果得出了单侧焊接过程中中心线凝固裂纹萌生的评估图。根据零件尺寸和焊接程序,将其用于焊接件凝固裂纹萌生的预测评估。

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