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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Hardness prediction based on microstructure evolution and residual stress evaluation during high tensile thick plate butt welding
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Hardness prediction based on microstructure evolution and residual stress evaluation during high tensile thick plate butt welding

机译:基于高拉伸厚板对接焊接期间的微观结构演化和残余应力评估的硬度预测

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Two High Tensile Strength Steel (EH47) plates with thickness of 70?mm were butt-welded together by multi-pass Submerged Arc Welding (SAW), also the hardness and welding residual stress were investigated experimentally. Based on Thermal-Elastic-Plastic Finite Element (TEP FE) computation, the thermal cycles during entire welding process were obtained, and the HAZ hardness of multi-pass butt welded joint was computed by the hardenability algorithm with considering microstructure evolution. Good agreement of HAZ hardness between the measurement and computational result is observed. The evolution of each phase was drawn to clarify the influence mechanism of thermal cycle on HAZ hardness. Welding residual stress was predicted with considering mechanical response, which was dominantly determined by last cap welds through analyzing its formation process.
机译:两种高抗拉强度钢(EH47)厚度为70Ωmm的板通过多通浸电弧焊接(SAW)进行焊接在一起,并且实验研究了硬度和焊接残余应力。基于热弹性塑料有限元(TEP FE)计算,获得了整个焊接过程中的热循环,通过考虑微观结构演化来计算多通道焊接接头的HAZ硬度。观察到测量和计算结果之间的HAZ硬度吻合良好。绘制了每相的演变,以阐明热周期对HAZ硬度的影响机制。考虑机械响应预测了焊接残余应力,通过分析其形成过程,通过最后盖焊缝通过最后盖焊缝占主导地位。

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