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The Effect of Superalloy Structure on Ultrasonic Wave Parameters

机译:高温合金结构对超声波参数的影响

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This paper analyses the nickel based superalloy Inconel 713C casts typically used in high and low pressure turbines of aircraft engines. The ingots were manufactured in the Research and Development Laboratory for Aerospace Materials at the Rzesz?3w University of Technology. The superalloy structures were analysed by the following methods: X-ray diffraction orientation measurement and ultrasonic wave propagation. Ultrasonic techniques are mainly used to measure the blade walla??s thickness. Measurement accuracy is determined by the velocity of the ultrasonic wave in the material tested. This work evaluates the effect of the nickel-based superalloy microstructure on the velocity of the ultrasonic wave propagation. Three different macrostructures: equiax (EQ), directionally solidified (DS) and single crystal (SX) were analysed. The authors determined the crystal misorientation in the obtained casts as the deviation of [001] crystallographic direction from the withdrawal axis or the main axis of the ingots. The measurements performed allowed researchers to identify significant differences in the wave velocity between EQ, DS and SX structures.
机译:本文分析了镍基高温合金Inconel 713C铸件,这些铸件通常用于飞机发动机的高压和低压涡轮机。这些锭是在热舒夫3w大学的航空材料研究与开发实验室中制造的。通过以下方法分析超合金结构:X射线衍射取向测量和超声波传播。超声技术主要用于测量叶片壁的厚度。测量精度取决于被测材料中超声波的速度。这项工作评估了镍基高温合金微观结构对超声波传播速度的影响。分析了三种不同的宏观结构:等轴(EQ),定向凝固(DS)和单晶(SX)。作者将获得的铸件中的晶体取向不良确定为[001]晶体学方向与铸锭退出轴或主轴的偏差。进行的测量使研究人员能够识别EQ,DS和SX结构之间的波速差异。

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