材料科学
结构健康监测
分层(地质)
复合数
复合材料
电容感应
极限抗拉强度
十字头
结构工程
计算机科学
抗弯强度
工程类
操作系统
生物
古生物学
构造学
俯冲
作者
Khalid Alblalaihid,S. A. Al‐Ghamdi,Anas Alburayt,Ahmed Alwahid,Meshal Abuobaid,Abdullatif Alshaikh,Sabri Alkhibari,Ibrahim M. Alarifi
出处
期刊:Key Engineering Materials
日期:2022-06-08
卷期号:922: 87-93
被引量:4
摘要
Hybrid composite material has been widely used in many engineering applications (e.g., for automobiles)and has several advantages over conventional fibre-reinforced composite materials, such as high strength-to-weight ratio and low cost. However, combining two kinds of reinforcement fibre within a common matrix may lead to different failure modes, such as delamination between the layers and fragmentation when the structure is subjected to high loads. To avoid this problem, real-time damage detection should be integrated into the hybrid composite structures for structural integrity. This paper outlines the working mechanisms and the initial fabrication of an integrated capacitive sensor into the intra-ply hybrid composite. The tensile test was conducted to perform the basic characterization of the proposed sensor and provide self-sensing functionality (smart structure). The results illustrate that damage between layers can be detected by in-situ monitoring. It is shown that the initial damage was detected at the turning point where the relative change in capacitance begins to decrease and when the axial tensile force increases. In addition, the developed smart material has shown a linear sensitivity toward crosshead displacement up to the turning point, and applying the monitoring is useful in self-sensing for hybrid composites.
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