实验室规模层压复合材料制造质量控制的可编程便携式超声无损检测

Q1 Engineering
Yusuf Giri Wijaya , Suprijanto , Damar Rastri Adhika , Rhakamerta Hijazi , Abian Nurrohmad
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引用次数: 0

摘要

叠层复合材料是研究中心或初创企业制造无人机(uav)最常用的部件材料。在实验室规模上,层压复合材料的制造依赖于技术人员的技能,因为涉及手工过程。为了保证层合复合材料最终产品的结构完整性,需要进行无损检测。提出了一种可编程便携式超声无损检测(NDT),用于检测由于异物污染层合复合材料制造层的潜在缺陷。所提出的可编程无损检测系统采用开板器件构建;因此,与商业无损检测系统相比,它的开发成本更低。所提出的无损检测可以测量和分析a扫描信号的模式,作为异物污染材料的函数。基于c扫描图像,提出的无损检测系统也可以被编程来检测由于异物污染的潜在缺陷的大小区域。对碳纤维增强聚合物(CFRP)和玻璃纤维增强聚合物(GFRP)两种试样进行了测试,以评估所开发的无损检测系统的性能。测试的目的是识别故意放置在这些样本中的人为缺陷。本文提出的便携式超声无损检测方法可在a型和c型扫描图像上有效检测CFRP和GFRP缺陷。因此,所提出的便携式超声无损检测是一种负担得起的系统,可以在实验室车间开发,用于实验室规模的层压复合材料制造的质量控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nondestructive test for quality control in laboratory-scale fabrication of laminated composites using programmable portable ultrasonic
Laminated composites are the most frequently used component materials in manufacturing unmanned aerial vehicles (UAVs) in research centers or start-up industries. On a laboratory scale, laminated composites are fabricated by relying on technicians' skills due to the involvement of manual processes. Nondestructive testing (NDT) is needed to guarantee the structural integrity of the final product of laminated composites. The work proposes a programmable portable ultrasonic for nondestructive testing (NDT) to detect a potential defect due to foreign object contamination of fabrication layers of laminate composite. The proposed programmable NDT system is built using open-board devices; therefore, it could be developed cost-effectively compared to a commercial NDT system. The proposed NDT can measure and analyze a pattern of A-scan signal as a function of foreign object contamination material. Based on a C-scan image, the proposed NDT system could also be programmed to detect the size area of potential defects due to foreign object contamination. Two types of specimens, carbon fiber-reinforced polymer (CFRP) and glass fiber-reinforced polymer (GFRP), were tested to evaluate the performance of the developed NDT system. Testing aims to identify artificial defects intentionally placed within these specimens. The proposed portable ultrasonic NDT effectively detects CFRP and GFRP defects on A-mode and C-scan images. Therefore, the proposed portable ultrasonic NDT is an affordable system that can be developed in a laboratory workshop for quality control in laboratory-scale fabrication of laminated composites.
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来源期刊
International Journal of Lightweight Materials and Manufacture
International Journal of Lightweight Materials and Manufacture Engineering-Industrial and Manufacturing Engineering
CiteScore
9.90
自引率
0.00%
发文量
52
审稿时长
48 days
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