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首页> 外文期刊>Journal of Composite Materials >A new method for ultrasonic detection of peel ply at the bondline of out-of-autoclave composite assemblies
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A new method for ultrasonic detection of peel ply at the bondline of out-of-autoclave composite assemblies

机译:在高压釜复合组件外粘结线上剥离剥离的一种新方法

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Out-of-autoclave materials have long been an established material system for secondary structural applications; however, recent advancements in material properties allow for more advanced structural applications. Even though certain out-of-autoclave properties have achieved parity with autoclaved cured materials, out-of-autoclave materials are cured at reduced temperatures and pressures resulting in less compaction and homogeneity. The consequence is extraneous ultrasonic signals, due to internal reflections and refractions that cause attenuation, potentially masking defects leading to unidentifiable indications. Advanced algorithms were developed to improve the signal to noise ratio between constituents of similar acoustic impedance in bonded out-of-autoclave carbon fiber reinforced polymer assemblies. Conventional ultrasonic nondestructive testing techniques and analysis software cannot consistently achieve signal to noise ratios that meet quantifiable rejection thresholds of accurately sized peel ply inserts at the bonded interface of composite assemblies. Ultrasonic pulse echo with full waveform capture was used to inspect a reference standard with peel ply inserts placed between the adhesive and three-dimensional-woven fabric preform. The ultrasonic signal was produced by a 64 element array transducer with a central frequency of 2.8 MHz. Waveform post-acquisition analysis with post processing software was used to analyze and enhance the signal response between the peel ply and the bondline resulting in the final algorithm. To verify the results, the signal to noise ratio of each insert was calculated for both the raw and processed data. As the measure of detectability, the method relies on principles of statistical measurement to provide an industry standard signal to noise response of 3:1.
机译:超高压灭菌材料长期以来是二次结构应用的既定材料系统;但是,材料属性最近的进步允许更先进的结构应用。尽管某些外灭菌性能已经实现了具有高压灭菌的固化材料的奇偶校验,但是在降低的温度和压力下固化外灭菌材料,导致压实和均匀性。结果是外来超声信号,由于导致衰减的内部反射和折射,可能掩蔽缺陷导致无法识别的适应症。开发了先进的算法,以改善粘结的高压釜​​碳纤维增强聚合物组件中类似声阻抗的组分之间的信噪比。传统的超声波非破坏性测试技术和分析软件不能一致地实现信号到噪声比率,其满足可量化的剥离斜片在复合组件的粘结界面处的可准确的剥离帘布层。具有全波形捕获的超声波脉冲回波用剥离帘布层的剥离插入件进行接受引用标准,置于粘合剂和三维织物预制件之间。超声信号由64元件阵列换能器产生,中心频率为2.8MHz。利用后处理软件的波形采集分析用于分析并增强剥离层和键合的信号响应,从而产生最终算法。为了验证结果,针对原始和处理的数据计算每个插入件的信噪比。作为可检测性的衡量标准,该方法依赖于统计测量原理,以提供行业标准信号到3:1的噪声响应。

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