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Effect of Temperature Variation on Stresses in Adhesive Joints between Magnesium and Steel

机译:温度变化对镁和钢胶粘剂粘附性应力的影响

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This study considers the thermal stresses in single lap adhesive joints between magnesium and steel. The source of thermal stresses is the large difference in the coefficients of thermal expansion of magnesium and steel. Two different temperature differentials from the ambient conditions (23°C) were considered, namely -30°C and +50°C. Thermal stresses were determined using finite element analysis. In addition to Mg-steel substrate combination, Mg-Mg and steel-steel combinations were also studied. Combined effect of temperature variation and applied load was also explored. It was observed that temperature increase or decrease can cause significant thermal stresses in the adhesive layer and thermal stress distribution in the adhesive layer depends on the substrate combination and the applied load.
机译:该研究考虑了镁和钢之间的单圈粘合剂接头中的热应力。热应力源是镁和钢的热膨胀系数的巨大差异。考虑来自环境条件(23°C)的两种不同的温度差异,即-30℃和+ 50℃。使用有限元分析测定热应力。除了Mg-钢基材组合之外,还研究了Mg-Mg和钢钢组合。还探讨了温度变化和施加载荷的综合影响。观察到,温度升高或减少可引起粘合剂层中的显着热应力,并且粘合剂层中的热应力分布取决于基板组合和施加的载荷。

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