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Physical simulation as a tool to understand friction stir processed X80 pipeline steel plate complex microstructures

机译:物理模拟作为了解摩擦搅拌处理过的X80管道钢板复杂微观结构的工具

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The thermal cycles associated to friction stir welding and processing produce a wide range of microstructures, resulting in different mechanical behaviors along the weld. Most research efforts have focused on the development of welding parameters to obtain sound welds, yet there is still an opportunity for performance improvement based on the understanding of how microstructures are produced. This work explored the different microstructures obtained after physical simulation of an X80 pipeline steel, as a function of the cooling rate and the isothermal transformation temperature. The aim was to study the development of complex mixed microstructures under controlled conditions, in order to compare them to the ones obtained after friction stir processing. As result of the continuous cooling and isothermal thermal simulations, intermediated and high cooling rates, the microstructures matched with those found at the processed plates. These results might help developing a better cooling control after welding.
机译:与搅拌摩擦焊和加工相关的热循环产生了广泛的微观结构,导致沿焊缝的机械行为不同。大多数研究工作都集中在开发焊接参数以获得良好的焊缝上,但是基于对微观结构产生方式的理解,仍然有提高性能的机会。这项工作探索了X80管线钢的物理模拟后获得的不同的微观结构,它是冷却速率和等温转变温度的函数。目的是研究在受控条件下复杂混合微观结构的发展,以便将其与摩擦搅拌处理后获得的微观结构进行比较。通过连续冷却和等温热模拟,中等和高冷却速率的结果,显微组织与加工后的板材相匹配。这些结果可能有助于在焊接后建立更好的冷却控制。

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