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一项使用激光诱导击穿光谱法(LIBS)对金属增材制造部件中自孔的光谱信号效应进行的研究。

A study of the spectral signal effect of self-holes in metal additive manufacturing components using laser-induced breakdown spectroscopy (LIBS).

作者信息

Lin Jingjun, Hao Zexin, Yang Jiangfei, Che Changjin, Lin Xiaomei

机构信息

Changchun University of Technology, Changchun, Jilin 130012, China.

Beihua University, Jilin 132013, China.

出版信息

Anal Methods. 2023 Dec 14;15(48):6656-6665. doi: 10.1039/d3ay01772a.

Abstract

Understanding the detection mechanism of hole defects in metal additive manufacturing (AM) components is of great significance for the detection of metal AM component defects using laser-induced breakdown spectroscopy (LIBS). In this work, the mapping relationship between the hole defects of metal AM components and the LIBS spectral signal was studied using the controlled variable method. The effect of hole defects mostly showed a suppression effect and peaked at a hole depth of 1.0 mm when the LIBS system was at its optimal excitation parameter. To explore the possible reasons behind the inhibitory effect of self-holes, the variation law of the plasma temperature with and without hole defects was further investigated. Our results showed that the plasma temperature change curve was similar to the spectral line intensity change trend. Finally, the linear relationship between the focal length effect and the hole effect, and the relationship between the constraint effect and the hole effect were studied. The minimum fitting between the constraint effect and the hole effect was 0.979. We believed that the inhibition of the hole effect was mainly caused by the absorption and loss of energy in the plasma during the process of plasma radiation and shock wave reflection from the hole wall. By studying the detection mechanism of hole defects in metal additive manufacturing components excited by LIBS and finding the effective characteristics of hole defects in metal AM components, it is helpful to achieve higher precision and higher sensitivity defect detection.

摘要

了解金属增材制造(AM)部件中孔洞缺陷的检测机制,对于利用激光诱导击穿光谱法(LIBS)检测金属AM部件缺陷具有重要意义。在这项工作中,采用控制变量法研究了金属AM部件的孔洞缺陷与LIBS光谱信号之间的映射关系。当LIBS系统处于最佳激发参数时,孔洞缺陷的影响主要表现为抑制作用,且在孔洞深度为1.0 mm时达到峰值。为探究自孔洞抑制作用背后的可能原因,进一步研究了有无孔洞缺陷时等离子体温度的变化规律。结果表明,等离子体温度变化曲线与光谱线强度变化趋势相似。最后,研究了焦距效应与孔洞效应之间的线性关系以及约束效应与孔洞效应之间的关系。约束效应与孔洞效应之间的最小拟合度为0.979。我们认为,孔洞效应的抑制主要是由于等离子体在从孔洞壁进行等离子体辐射和冲击波反射过程中的能量吸收和损失所致。通过研究LIBS激发的金属增材制造部件中孔洞缺陷的检测机制,并找到金属AM部件中孔洞缺陷的有效特征,有助于实现更高精度和更高灵敏度的缺陷检测。

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