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Prepara?§?£o de Superf?-cie para Medi?§?£o de Tens?μes Residuais em Soldagem por DRX

机译:测量X射线焊接残余应力的表面处理

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A characteristic feature of the X Ray Diffraction (XRD) method for stress determinationt is that measurements occur at a thin surface layer. Steel sheets come with surfaces modified by lamination, cleaning (sandblasting, grinding) and even corrosion, which induce residual stresses or roughness inherent to the material. Therefore, surface preparation prior to the residual stress measurement is essential, although no standard procedure seems to be available. A general recommendation is to remove a thin layer so that only residual stresses related to the welding process will be measured. In this study, the use of portable electrolytic equipment was evaluated for mechanized surface material removal. Chemical compositions of electrolytic solutions and the influence of current on the removed material, removal time and temperature during the process were studied. As a result, a suitable chemical solution for electroetching of low carbon steel was developed and a set of “soft” parameters that allowed the removal of about 300 um in a reasonable time was found. Higher currents reduce the removal time, yet increasing the consumption of the solution and plate temperature (which could adversely alter the microstructure or generate thermal stresses). Furthermore, the influence of these parameters on the operability of the process was demonstrated.
机译:用于确定应力的X射线衍射(XRD)方法的特征是,测量发生在薄表面层。钢板的表面经过层压,清洁(喷砂,磨削)甚至腐蚀而被改性,这些腐蚀会引起材料固有的残余应力或粗糙度。因此,尽管似乎没有可用的标准程序,但在残余应力测量之前进行表面处理是必不可少的。一般建议是去除薄层,以便仅测量与焊接过程有关的残余应力。在这项研究中,对便携式电解设备的使用进行了机械表面材料去除的评估。研究了电解液的化学成分以及电流对工艺过程中去除材料,去除时间和温度的影响。结果,开发了一种适用于低碳钢电腐蚀的化学溶液,并找到了一组“软”参数,可以在合理的时间内去除约300 um。较高的电流会减少去除时间,但会增加溶液的消耗量和板温度(这可能会不利地改变微观结构或产生热应力)。此外,还演示了这些参数对过程可操作性的影响。

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