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Detection of Defects in Laser Powder Deposition (LPD) Components by Pulsed Laser Transient Thermography

机译:通过脉冲激光瞬态热成像检测激光粉末沉积(LPD)组分的缺陷

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Detection of defects in Laser Powder Deposition (LPD) produced components has been achieved by laser thermography. An automatic in-process NDT defect detection software system has been developed for the analysis of laser thermography to automatically detect, reliably measure and then sentence defects in individual beads of LPD components. A deposition path profile definition has been introduced so all laser powder deposition beads can be modeled, and the inspection system has been developed to automatically generate an optimized inspection plan in which sampling images follow the deposition track, and automatically control and communicate with robot-arms, the source laser and cameras to implement image acquisition. Algorithms were developed so that the defect sizes can be correctly evaluated and these have been confirmed using test samples. Individual inspection images can also be stitched together for a single bead, a layer of beads or multiple layers of beads so that defects can be mapped through the additive process. A mathematical model was built up to analyze and evaluate the movement of heat throughout the inspection bead. Inspection processes were developed and positional and temporal gradient algorithms have been used to measure the flaw sizes. Defect analysis is then performed to determine if the defect(s) can be further classified (crack, lack of fusion, porosity) and the sentencing engine then compares the most significant defect or group of defects against the acceptance criteria - independent of human decisions. Testing on manufactured defects from the EC funded INTRAPID project has successful detected and correctly sentenced all samples.
机译:通过激光热成像实现了激光粉末沉积(LPD)产生的部件中的缺陷。已经开发了一种自动进程的NDT缺陷检测软件系统,用于分析激光热成像,自动检测,可靠地测量,然后句子缺陷在LPD组件的单个珠子中。已经引入了沉积路径轮廓定义,因此可以建模所有激光粉末沉积珠,并且已经开发了检查系统以自动产生优化的检查计划,其中采样图像遵循沉积轨道,并自动控制和与机器人臂进行控制和通信,源激光器和摄像机实现图像采集。开发了算法,使得可以正确评估缺陷尺寸,并且使用测试样品确认这些尺寸。单个检查图像也可以缝合在一起,用于单个珠子,一层珠子或多层珠子,使得可以通过添加过程映射缺陷。建立了数学模型,分析和评估了整个检查珠粒的热量。经检查过程是开发的,使用位置和时间梯度算法来测量缺陷尺寸。然后执行缺陷分析以确定缺陷是否可以进一步分类(裂缝,缺乏融合,孔隙度)和判断发动机,然后比较验收标准的最重要缺陷或缺陷组 - 与人类决定无关。对EC资助的内部内部项目的制造缺陷测试已成功检测并正确判处所有样本。

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