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Thermomechanical Modelling of Direct-Drive Friction Welding Applying a Thermal Pseudo Mechanical Model for the Generation of Heat

机译:直接驱动摩擦焊的热机械建模应用热伪机械模型在热轧中

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In the present work a 2D axisymmetric thermomechanical model of the direct-drive friction welding process is developed, taking the temperature dependent shear yield stress into account in the description of the heat generation, utilizing a recent thermal pseudo mechanical model originally developed for the friction stir welding (FSW) process. The model is implemented in ABAQUS/Explicit via a subroutine. The application in this case is joining of austenitic stainless steel rods with an outer diameter of 112 mm, used for manufacturing of exhaust gas valves for large two stroke marine engines. The material properties in terms of the temperature dependent flow stress curves used both in the thermal and the mechanical constitutive description are extracted from compression tests performed between 20 °C and 1200°C on a Gleeble 1500 thermomechanical simulator. Comparison between measured and simulated transient temperatures shows relatively good agreement and furthermore, the simulated deformations in terms of upsetting length and flash formation are also in good agreement with the observations from the experiment.
机译:在本工作中,开发了直接驱动摩擦焊接过程的2D轴对称热机械模型,在发热的描述中考虑温度依赖性剪切产生应力,利用最初为摩擦搅拌开发的最新热伪机械模型焊接(FSW)工艺。该模型通过子程序在Abaqus / Explicit中实现。在这种情况下,应用在这种情况下是外径为112mm的奥氏体不锈钢棒,用于制造用于大型两冲程海洋发动机的废气阀。在热量和机械本构体上描述的温度相关的流量曲线方面的材料特性从在GLELBE 1500热机械模拟器上在20°C和1200℃之间进行的压缩试验中提取。测量和模拟瞬态温度之间的比较表明了相对良好的一致性,而且,在镦粗长度和闪光形成方面的模拟变形也与实验的观察结果吻合良好。

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