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NUMERICAL SIMULATION OF WELD THERMAL HISTORY FOR PULSED GMAW PROCESS

机译:脉冲GMAW过程焊接热历史的数值模拟

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Pulsed gas metal arc welding (P-GMAW) is one of the most effective joining methods used for mainline field girth welding of large diameter, long distance pipelines. Single torch and single wire P-GMAW utilizing narrow-groove weld geometry has been applied extensively in both onshore and offshore pipeline constructions. The industry has a desire to increase welding productivity by the development and application of multi-wire variants of P-GMAW such as tandem-wire and dual-torch processes. These varieties of P-GMAW processes have their unique characteristics which affects the heat transfer and resulting microstructures in the heat-affected zone (HAZ) and deposited weld metal. These unquie features need to be considered in the welding heat transfer analyses. This paper presents heat transfer analyses of various P-GMAW processes with a consistent heat source model and its associated thermal boundary conditions. The objective of the study is to extend the thermal analysis procedures of single-wire P-GMAW to the wider range of P-GMAW processes. To validate the thermal analysis models, the predicted temperature histories (cycles) and cooling times for welds produced under different pre-hcat temperatures and different P-GMAW processes were compared with experimentally measured thermal histories. Generally good agreement between the predicted and measured thermal histories was achieved. The areas of further refinement of the thermal analysis models and experimental measurment procedures were identified.
机译:脉冲气体金属电弧焊接(P-GMAW)是用于大直径,长距离管道的主线场环焊接的最有效的连接方法之一。使用窄槽焊接几何形状的单个火炬和单线P-GMAW已在陆上和海上管道结构中进行广泛应用。该行业希望通过开发和应用P-GMAW的多线变体,如Tandem-Wire和双割炬工艺,提高焊接生产率。这些P-GMAW工艺的各种各种特征是影响热影响区域(HAZ)和沉积焊接金属中的传热和产生的微观结构的特性。在焊接传热分析中需要考虑这些不相容的特征。本文介绍了各种P-GMAW工艺的传热分析,具有一致的热源模型及其相关的热边界条件。该研究的目的是将单线P-GMAW的热分析程序扩展到更广泛的P-GMAW工艺。为了验证热分析模型,将在不同的HCAT温度和不同的P-GMAW过程下产生的焊缝的预测温度历史(循环)和冷却时间与实验测量的热历史进行比较。通常达到预测和测量的热历史之间的良好一致性。确定了热分析模型和实验测量程序的进一步改进的领域。

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