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Numerical Thermal Model of Resistance Spot Welding in Aluminum

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TLDR
In this article, a three-dimensional thermal model for resistance spot welding in aluminum is presented, validated with experimental findings, considered phase change and the associated weld pool convection, and a parametric study was performed to determine the influence of welding features such as welding current, faying surface (workpiece contact surface) electrical contact resistance, and electrode-workpiece (E/W) thermal contact conductance.
Abstract
A three-dimensional thermal model for resistance spot welding in aluminum is presented. The numerical model, validated with experimental findings, considered phase change and the associated weld pool convection. A parametric study was performed to determine the influence of welding features such as welding current, faying surface (workpiece contact surface) electrical contact resistance, and electrode-workpiece (E/W) thermal contact conductance. These parameters have significant effects on the nugget and heat-affected-zone geometry. The phase change morphology, including melting and solidification rates and weld pool dynamics, was also significantly influenced by the parameters studied. The strongest convection was observed at the center of the molten pool in a vertical plane, aligned with gravity. Although two prominent convection cells developed, the phase change morphology was not significantly affected by convection due to the short welding time (less than 0.1 s) and low fluid velocity (smaller than 0.01 mm/s). The nugget grew nonlinearly with increasing current and faying surface electrical contact resistance, whereas it diminished with increasing E/W thermal contact conductance. The influence of electrical contact resistance at the faying surface on nugget size was less pronounced than that of the other parameters. The length of time that the weld pool existed was directly proportional to current and indirectly proportional to E/W thermal contact conductance.

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Thermal modelling of laser welding and related processes: a literature review

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Heat transfer—A review of 2005 literature

TL;DR: A review of the heat transfer literature published in 2005 can be found in this article, where the authors restrict themselves to papers published in English through a peer-review process, with selected translations from journals published in other languages.
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Overview of recent advances of process analysis and quality control in resistance spot welding

TL;DR: The establishment of general models to online process analysis, quality estimation and real time control system design for obtaining welds with satisfactory quality still remains a big challenge in reality.
Journal ArticleDOI

Modeling Dynamic Electrical Resistance During Resistance Spot Welding

TL;DR: In this paper, the authors quantitatively modeled and analyzed the dynamic electrical resistance during resistance spot welding, which is obtained by taking the sum of temperature-dependent bulk resistance of the workpieces and contact resistances at the faying surface and electrode-workpiece interface within an effective area corresponding to the electrode tip.
Journal ArticleDOI

Numerical analysis of magnetic fluid dynamics behaviors during resistance spot welding

TL;DR: In this article, a coupled multiphysics finite element model was proposed to systematically investigate the fluid flow and heat transfer behaviors in a spot weld nugget, and it was found that the flow field in the spot weld Nugget evolves through five consecutive stages: incubation, fluctuation, rapid growth, rapid attenuation, and termination.
References
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Book

Numerical heat transfer and fluid flow

TL;DR: In this article, the authors focus on heat and mass transfer, fluid flow, chemical reaction, and other related processes that occur in engineering equipment, the natural environment, and living organisms.
Journal ArticleDOI

Enthalpy-porosity technique for modeling convection-diffusion phase change: application to the melting of a pure metal

TL;DR: In this article, the melting of pure gallium in a rectangular cavity has been numerically investigated using the enthalpy-porosity approach for modeling combined convection-diffusion phase change.
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Melting and Solidification of a Pure Metal on a Vertical Wall

TL;DR: Etude experimentale de l'ecoulement de convection naturelle dans la phase liquide and de son influence on le mouvement of l'interface liquide-solide et sur le transfert de chaleur au cours de la fusion and de la solidification de gallium a haute purete sur une paroi verticale as mentioned in this paper.
Journal ArticleDOI

Recent Developments in Contact Conductance Heat Transfer

TL;DR: A review and categorization of recent developments in contact conductance heat transfer can be found in this article, where the authors discuss the theoretical/analytical/numerical studies of conductance for conforming surfaces and other surface geometries; the thermal conductance in such technological areas as advanced or modern materials, microelectronics, and biomedicine; and selected topics including thermal rectification, gas conductance, cylindrical contacts, periodic and sliding contacts, and conductance measurements.
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