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Finite element simulation of welding distortions in ultra-high strength steel S960 MC including comprehensive thermal and solid-state phase transformation models

机译:超高强度钢S960M MC中焊接畸变的有限元仿真,包括综合热态相变模型

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摘要

The objective of this study is developing a thermo-metallurgical-mechanical finite element (FE) model in- corporating the effect of solid-state phase transformation (SSPT) to accurately simulate deformations for single bead -on -plate welding of an ultra -high strength carbon steel. Comprehensive phase transformation modeling including both diffusive and diffusionless (displacive) transformation kinetics, was performed and the effect of SSPT on welding -induced deformations was investigated. Modelling the heat source and thermal boundary conditions were accomplished in the ABAQUS user subroutines, the former based on the Goldak 's double el- lipsoidal heat source model. An ABAQUS user subroutine was developed in which kinetics of diffusive and diffusionless transformations based on Machnienko model and Koistinen-Marburger formula, respectively, were implemented. Modification of strains due to volumetric change as a result of SSPT was accomplished using an ABAQUS user -defined subroutine. A comparison between the temperature histories from thermal simulations (with isotropic as well as anisotropic conductivities) and measurement with thermocouples shows that much better verification with experiments can be obtained when anisotropic conductivity is applied. From the results of the mechanical simulations (with and without considering the effect of SSPT) and comparison with measured deformations, it is observable that more accurate prediction of welding -induced angular and bending distortions is possible when the effect of SSPT is incorporated for the material under investigation.
机译:本研究的目的正在开发一种热冶金 - 机械有限元(FE)模型,包括固态相变(SSPT)的效果,以便精确地模拟超高速的单个珠光板焊接的变形强度碳钢。研究了包括扩散和扩散(位移)转化动力学的综合相变建模,并研究了SSPT对焊接焊接的变形的影响。基于Goldak的双脂素热源模型,在ABAQUS用户子程序中实现了模拟热源和热边界条件。开发了ABAQUS用户子程序,其中实施了基于Machnienko Model和Koistinen-Marburger公式的扩散和扩散变换的动力学进行了实施。由于SSPT由于SSPT而导致的菌株的修改是使用ABAQUS用户 - 定义的子程序完成的。热模拟(具有各向同性以及各向异性导电性)的温度历史之间的比较和热电偶测量表明,当施加各向异性导电性时,可以获得具有实验的更好的验证。从机械模拟的结果(有和不考虑SSPT的效果)并与测量变形进行比较,可以观察到,当SSPT的效果掺入材料时,可以观察到更精确地预测焊接,导致的角度和弯曲变形是可能的在调查中。

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