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Application of Ultrasonic Array Method for the Inspection of TC18 Addictive Manufacturing Titanium Alloy

机译:超声阵列法在TC18增材制造钛合金检测中的应用

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摘要

Ultrasonic arrays have been investigated for inspecting the quality of special materials. Unfortunately, non-destructive testing and evaluation (NDT&E) of internal defects in additive manufacturing (AM) materials are difficult due to the anisotropy and the coarse grain. To solve the problem, this paper brings forward research on the inspection of TC18 AM titanium alloy products using an ultrasonic array. Firstly, a three-dimensional acoustic field distribution of different ultrasonic array transducers is established to design an optimal detection solution for an AM titanium alloy. Then, a total focusing method (TFM) for the ultrasonic annular array transducer is proposed and its imaging method is analyzed. Besides, the relation between ultrasonic group velocities in a TC18 AM specimen with different propagating angles is measured using the full matrix capture (FMC) method. Based on the measurements, the anisotropy of the AM titanium alloy is discussed and the TFM algorithm of annular array is optimized as well. Finally, C-scan experiments are conducted on the specimen with a height of 55 mm using the linear ultrasonic array transducer of the conventional focusing method and the TFM of annular array transducer, respectively. The results show that the TFM of annular array has higher accuracy in quantifying the defects of flat bottom holes and transverse holes with a diameter of 0.8 mm. In addition, the detection results of different forming directions are analyzed and the 3D imaging of defects in the specimen is realized based on FMC data. The TFM of annular array is an innovative ultrasonic testing technology with high resolution for AM titanium alloy products.
机译:为了检查特殊材料的质量,已经研究了超声波阵列。不幸的是,由于各向异性和粗大的晶粒,很难对增材制造(AM)材料的内部缺陷进行无损检测和评估(NDT&E)。为解决这一问题,本文提出了利用超声阵列对TC18 AM钛合金产品进行检验的研究方法。首先,建立了不同超声阵列换能器的三维声场分布,以设计用于AM钛合金的最佳检测解决方案。然后,提出了一种用于超声环形阵列换能器的全聚焦方法(TFM),并对其成像方法进行了分析。此外,使用全矩阵捕获(FMC)方法测量了具有不同传播角度的TC18 AM样品中超声波群速度之间的关系。在此基础上,讨论了AM钛合金的各向异性,并优化了环形阵列的TFM算法。最后,分别使用常规聚焦方法的线性超声阵列换能器和环形阵列换能器的TFM对高度为55 mm的样品进行C扫描实验。结果表明,环形阵列的TFM在量化直径为0.8 mm的平底孔和横向孔的缺陷方面具有更高的精度。此外,分析了不同成形方向的检测结果,并基于FMC数据实现了样品中缺陷的3D成像。环形阵列的TFM是一种创新的超声波测试技术,可用于AM钛合金产品,具有高分辨率。

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