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Estudo da microestrutura formada no processo de soldagem por atrito em a?§o C-Mn com pino consum?-vel

机译:消耗性销钉在C-Mn作用下摩擦焊接过程中形成的显微​​组织的研究

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The arc welding it is the most used technique to repair large structures, however, has disadvantages that result from the solidification of the weld metal. So the use of friction welding, specifically the FHPP (friction hydro pillar processing) process that consists on using plugs for friction repair, presents advantages because it is a process that is carried out on the solid state. Lower temperatures are involved and do not have the influence of the external environment, minimizing the problems on structure repairs. This work has the objective of observe the process parameters variation and their effects on microstructure and on the quality of the repair. The study compared different axial forces on repairs whit C-Mn steel through of metallographic and microhardness profiles. A higher axial force results in less time of process, in a more homogeneous microstructure, and avoided the defects "noncompliance" in the bounding zone and "hot shear" of the plug.
机译:电弧焊是修复大型结构的最常用技术,但是它具有焊接金属凝固导致的缺点。因此,摩擦焊的使用,特别是FHPP(摩擦水柱处理)工艺(包括使用堵头进行摩擦修复)具有优势,因为它是在固态条件下进行的。所涉及的温度较低,并且不受外部环境的影响,从而最大程度地减少了结构维修方面的问题。这项工作的目的是观察工艺参数的变化及其对微观结构和修复质量的影响。该研究通过金相和显微硬度曲线比较了不同的轴向力对修复C-Mn钢的影响。较高的轴向力会缩短加工时间,使显微组织更加均匀,并且避免了堵塞区域的缺陷“不合格”和塞子的“热剪切”。

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