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Mechanical characterization of a nickel-based superalloy repaired using MicroPlasma and ESD technology

机译:使用显微钙和ESD技术修复基于镍的超合金的机械表征

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In this work, the possibility using two different technologies to repair industrial flat components made of Waspaloy superalloy was investigated. Specimens present a V notch in the central zone of the gage length, which has been refilled by MicroPlasma and Electro Spark Deposition in order to recover the original thickness of the material. These specimens have been used for a complete mechanical characterization, carrying out static, low-cycle fatigue and creep tests. Finally, results have been compared to base material. Static and low-cycle fatigue test have been carried out at Room Temperature and 538°C, while creep test considered the temperature of 704°C. Results of uniaxial tensile tests showed that the two repair process have a different effect on the mechanical properties. While MicroPlasma produced a reduced yield stress and tensile strength but a good performance whit respect to the elongation to failure, Electro Spark Deposition assured a better mechanical strength but a reduced elongation to failure. Low-cycle fatigue properties have been determined carrying out tests at different temperature (Room Temperature and 538°C). Repaired material showed lower fatigue strength and an increase of the data scatter, especially ESD at 538°C. Finally, creep test carried out on a limited number of specimens allowed establishing some changes about the creep rate and time to failure. MP behaviour was more similar to base material, while ESD show the presence of a marked tertiary creep.
机译:在这项工作中,研究了使用两种不同技术来修复由WASPALOY超合金制成的工业扁平部件的不同技术的可能性。标本在量子长度的中央区呈现V凹口,其通过显微镜和电火花沉积重新填充,以便恢复材料的原始厚度。这些标本已被用于完全机械表征,进行静态,低循环疲劳和蠕变测试。最后,结果与基础材料进行了比较。已经在室温和538°C下进行静态和低循环疲劳试验,而蠕变试验认为温度为704°C。单轴拉伸试验结果表明,两种修复过程对机械性能产生了不同的影响。虽然显微载产生的屈服应力和拉伸强度,但是良好的性能亮起与失效的伸长率,电火花沉积确保了更好的机械强度,但是减少了对失效的伸长率。已经确定在不同温度(室温和538℃)下进行测试的低循环疲劳性能。修复的材料显示出较低的疲劳强度和数据散射的增加,特别是在538℃下的ESD。最后,在有限数量的标本上进行了蠕变试验,允许建立关于蠕变速率和失效时间的一些变化。 MP行为与基础材料更类似于基础材料,而ESD则显示出标记的三级蠕变的存在。

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