论文标题
复合材料/结构的非破坏性测试和评估:最先进的评论
Non-destructive testing and evaluation of composite materials/structures: A state-of-the-art review
论文作者
论文摘要
复合材料/结构正在提高产品效率,成本效益和出色特定特性的发展。他们对航空航天,风力涡轮机,运输和医疗设备等负载结构的应用的需求越来越大。因此,复合材料的强大而可靠的非破坏性测试(NDT)对于降低安全性问题和维护成本至关重要。在复合产品的整个生命周期期间,已经建立了各种NDT方法,以质量保证。本文回顾了用于检测和评估复合材料中缺陷/损害进化的最确定的NDT技术。这些包括声发射,超声测试,红外热力计,Terahertz测试,剪切照相,数字图像相关以及X射线和中子成像。对于每种NDT技术,我们涵盖了用于复合研究的简短历史背景,原理,标准实践,设备和设施。我们还比较和讨论了它们的收益和局限性,并进一步总结了它们对复合结构的功能和应用。每种NDT技术都有其自身的潜力,很少能够全面诊断结构完整性。 NDT技术的未来开发将针对具有高精度和有效的数据处理能力的智能和自动化检查系统。
Composite materials/structures are advancing in product efficiency, cost-effectiveness and the development of superior specific properties. There are increasing demands in their applications to load-carrying structures in aerospace, wind turbines, transportation, and medical equipment, etc. Thus robust and reliable non-destructive testing (NDT) of composites is essential to reduce safety concerns and maintenance costs. There have been various NDT methods built upon different principles for quality assurance during the whole lifecycle of a composite product. This paper reviews the most established NDT techniques for detection and evaluation of defects/damage evolution in composites. These include acoustic emission, ultrasonic testing, infrared thermography, terahertz testing, shearography, digital image correlation, as well as X-ray and neutron imaging. For each NDT technique, we cover a brief historical background, principles, standard practices, equipment and facilities used for composite research. We also compare and discuss their benefits and limitations, and further summarise their capabilities and applications to composite structures. Each NDT technique has its own potential and rarely achieves a full-scale diagnosis of structural integrity. Future development of NDT techniques for composites will be directed towards intelligent and automated inspection systems with high accuracy and efficient data processing capabilities.