首页> 外文会议>ASME Pressure Vessels amp;amp;amp; Piping Conference >FINITE ELEMENT MODELING OF HYBRID FRICTION DIFFUSION WELDING OF TUBE-TUBESHEET JOINTS
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FINITE ELEMENT MODELING OF HYBRID FRICTION DIFFUSION WELDING OF TUBE-TUBESHEET JOINTS

机译:有限元模拟管箱关节的混合摩擦扩散焊接

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Hybrid Friction Diffusion Bonding (HFDB) is a solid-state welding process that proved its capability of producing sound tube-tubesheet joints, but with limitations on tube thickness (up to 1mm) and tube-tubesheet materials. In the petrochemical industry, there is a great demand for the use of carbon steel shell and tube heat exchangers. To investigate the feasibility of HFDB techniques in joining thicker tube (i.e 2.1 mm) on tubesheet joint, a three-dimensional thermo-mechanical finite element model (FEM) was developed and solved using ABAQUS (commercial finite element analysis (FEA) software). The model was used to predict the temperature distribution and developed stresses during and after welding. The model considered temperature dependent material properties while Johnson-cook model was used to govern material plastic flow behavior. In this paper, 19 mm (3/4 in) ASTM 179 cold-drawn carbon steel tube into an ASTM A516 Grade 70 tubesheet joints was simulated. Results are validated based on temperature measurements, which was found in good agreement with experimental results. The developed model can be used to optimize processing parameters (i.e. tool rotational speed, dwell time "holding time", and forging force.. etc) and study their effect on material flow and developed stresses.
机译:混合摩擦扩散键合(HFDB)是一种固态焊接过程,证明了其生产声管段关节的能力,但具有管厚度(高达1mm)和管径材料的限制。在石化行业中,对使用碳钢和管热交换器的需求很大。为了研究加厚管(即2.1mm)在管板接头上的HFDB技术的可行性,使用ABAQUS(商业有限元分析(FEA)软件)开发和解决了三维热机械有限元模型(FEM)。该模型用于预测焊接期间和之后的温度分布和发出应力。该模型考虑了温度依赖性材料特性,而Johnson-Cook模型用于控制材料塑料流动行为。在本文中,将19毫米(3/4英寸)ASTM 179冷绘制的碳钢管成ASTM A516级70级管胸部接头。结果基于温度测量验证,该结果与实验结果吻合良好。开发的模型可用于优化处理参数(即刀具转速,停留时间“保持时间”和锻造力。等)并研究其对材料流动的影响和发育应力。

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