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首页> 外文期刊>The Journal of the Textile Institute >Sampling phased array technology for the detection of voids in carbon fiber-reinforced plastics
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Sampling phased array technology for the detection of voids in carbon fiber-reinforced plastics

机译:采样相控阵技术,用于检测碳纤维增强塑料中的空隙

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In the lightweight material industries, the current focus is on fiber-reinforced plastics, in particular on carbon fiber-reinforced plastics (CFRPs), since they offer higher relative specific tensile strength and stiffness as well as reduced weight compared to conventional metallic materials. Currently, the quality assurance of manufactured CFRP components represents a major challenge for CFRP manufacturers. Voids are generated during the infusion process of CFRPs, which in turn reduce the mechanical performance of CFRPs. This article presents the possibility to detect the distribution of voids across the surface of CFRPs by using a non-destructive testing method, the so-called sampling phased array ultrasound technology. Two types of CFRPs with six carbon layers in the same direction are fabricated by means of a vacuum-assisted resin infusion process. Voids in CFRPs are generated using a foaming agent during the impregnation process. The C-scan images produced through the sampling phased array technology are subsequently analyzed by the optical image analysis software in order to determine the amount of voids for each type of manufactured CFRP.
机译:在轻质材料工业中,当前的重点是纤维增强塑料,尤其是碳纤维增强塑料(CFRP),因为与传统的金属材料相比,它们提供了更高的相对比拉伸强度和刚度以及更轻的重量。当前,制造的CFRP组件的质量保证是CFRP制造商面临的主要挑战。在CFRP注入过程中会产生空隙,从而降低CFRP的机械性能。本文提出了通过使用非破坏性测试方法(所谓的采样相控阵超声技术)来检测CFRP整个表面上空隙分布的可能性。通过真空辅助树脂灌注工艺制造了具有相同碳层方向的两种类型的CFRP。 CFRP中的空隙是在浸渍过程中使用发泡剂生成的。随后通过光学图像分析软件分析通过采样相控阵技术产生的C扫描图像,以确定每种制造的CFRP的空隙量。

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