Theoretical and practical investigation into sustainable metal joining process for the automotive industry

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Abstract

Currently there are about 4300 weld points on the average steel vehicle. Errors and problems due to tip damage and wear can cause great losses due to production line downtime. Current industrial monitoring systems check the quality of the nugget after processing 15 cars average once every two weeks. The nuggets are examined off line using a destructive process, which takes approximately 10 days to complete causing a long delay in the production process. In this paper a simulation results using software package, SORPAS, will be presented to determined the sustainability factors in spot welding process including Voltage, Current, Force, Water cooling rates, Material thicknesses and usage. The experimental results of various spot welding processes will be investigated and reported. The correlation of experimental results shows that SORPAS simulations can be used as an off line measurement to reduce factory energy usage. This paper also provides an overview of electrode current selection and its variance over the lifetime of the electrode tip, and describes the proposed analysis system for the selection of welding parameters for the spot welding process, as the electrode tip wears.

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APA

Al-Jader, M. A., Cullen, J. D., Shaw, A., & Al-Shamma’a, A. I. (2011). Theoretical and practical investigation into sustainable metal joining process for the automotive industry. In Journal of Physics: Conference Series (Vol. 307). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/307/1/012044

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