首页> 外文期刊>Journal of Naval Architecture and Marine Engineering >Numerical simulation of transient temperature in flash butt-welded axi-symmetric circular sections.
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Numerical simulation of transient temperature in flash butt-welded axi-symmetric circular sections.

机译:闪光对焊轴对称圆形截面瞬态温度的数值模拟。

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Thermal history along the length of a circular section subjected to flash-butt welding was analyzed by the finite difference method. A one–dimensional nonlinear thermal numerical simulation using a computational model based on the finite difference approach is formulated taking into consideration fusion zone (FZ) temperature as a measure of heat input, ambient and initial temperature of rod. Flexibility of physical characteristics such as bar length, diameter and temperature dependency of thermal properties and variation of boundary conditions were applied. Peak temperatures of 490°C and 410°C were computed for a 20 mm external diameter solid and hollow pipes respectively at distance 5 mm from weld line. Preheat temperatures of 200°C and 400°C resulted into a 41.1% and 89.3% increase respectively in peak temperature as compared with non preheat conditions. The predicted values from this model compared reasonably with experimentally obtained thermal histories. DOI: http://dx.doi.org/10.3329/jname.v10i1.8683
机译:用有限差分法分析了沿对接焊的圆形截面长度的热历史。考虑到熔化区(FZ)温度作为输入热量,环境温度和棒材初始温度的量度,采用了基于有限差分法的计算模型来进行一维非线性热数值模拟。应用了诸如棒长,直径和热性能的温度依赖性以及边界条件变化等物理特性的灵活性。对于距焊接线5 mm处的外径为20 mm的实心和空心管,分别计算出490°C和410°C的峰值温度。与非预热条件相比,预热温度200°C和400°C分别导致峰值温度增加41.1%和89.3%。该模型的预测值与实验获得的热历史进行了合理比较。 DOI:http://dx.doi.org/10.3329/jname.v10i1.8683

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