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Open-Hole Compression and Digital Image Correlation based Method for Measuring Interlaminar Tensile Strength of Composites

机译:基于开孔压缩和数字图像相关性的复合材料层间拉伸强度的方法

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Advanced polymeric composites are increasingly used in high-performance aircraft structures to reduce weight and improve efficiency. However, a major challenge delaying the implementation of the advanced composites is the lack of accurate methods for material characterization. Accurate measurement of three-dimensional mechanical properties of composites, stress-strain response, strength, fatigue, and toughness properties, is essential in the development of validated analysis techniques accelerating design and certification of composite structures. Certain key properties are typically assumed in the analysis as they cannot be currently measured using standard test methods. The objective of the Composite Airframe Life Extension (CALE) program is to evaluate the applicability of advanced computational progressive damage and failure (PDFA) methods to assess the durability and damage tolerance of composite structures within the United States Air Force (USAF) fleet for service life extension. As part of this Task, a significant effort has been performed to accurately, reliably, and efficiently determine the required input properties and parameters for the methods. In particular, accurate measurement of the interlaminar tensile (ILT) strength is needed to capture delamination failure, which is one of the primary failure modes in composite aircraft structures. A major technical challenge to accurate measurement of ILT properties is their strong sensitivity to manufacturing defects including porosity that could lead to unacceptable scatter in the test results. Unacceptable failure mode in standard test methods that use transverse tension specimens is another challenge to accurate measurement of the ILT properties. In this work, an alternative methodology based on unidirectional open-hole compression (OHC) specimens is proposed and investigated as a viable alternative method to assessing ILT strength, fatigue, and stress-strain constitutive properties.
机译:先进的聚合物复合材料越来越多地用于高性能飞机结构,以减轻重量并提高效率。但是,延迟了高级复合材料的实施的重大挑战是缺乏准确的材料表征方法。精确测量复合材料的三维机械性能,应力 - 应变响应,强度,疲劳和韧性特性,对于验证分析技术的开发是必不可少的加速复合结构的设计和认证。通常在分析中假设某些关键属性,因为它们不能使用标准测试方法测量它们。复合机身寿命延长(遗址)计划的目的是评估先进的计算逐行损坏和失败(PDFA)方法的适用性,以评估美国空军(USAF)舰队以供维修服务的复合结构的耐用性和损害耐受性生命延伸。作为这项任务的一部分,已经进行了大量的努力,以准确地,可靠,可靠地确定方法所需的输入属性和参数。特别地,需要精确测量层间拉伸(ILT)强度以捕获分层失效,这是复合飞机结构中的主要故障模式之一。准确测量ILT属性的主要技术挑战是它们对制造缺陷的强烈敏感性,包括可能导致测试结果中不可接受的散射。在使用横向张力标本的标准测试方法中的不可接受的故障模式是准确测量轴射性属性的另一个挑战。在这项工作中,提出了一种基于单向开孔压缩(OHC)样本的替代方法,并作为一种可行的替代方法,以评估叶灰强度,疲劳和应变组成型性能。

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