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Analysis and evaluation of mechanical performance of reinforced sandwich structures : X-CorTM and K-CorTM

机译:增强夹层结构力学性能分析与评价:X-CorTm和K-CorTm

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摘要

X-CorTM and K-CorTM are foam based lightweight structural cores reinforced with ZFiber ® rods oriented in a truss pattern. They can generate sandwich structures which possess strength- and stiffness-to-weight ratios such to compete with aerospace grade honeycomb constructions. The enhanced tailoring ability to specific design needs, the flexibility in reinforcement type and arrangement, the variety between closed cell foamfilled or hollow core configurations for ultimate weight savings or structural multifunctionality, while utilising manufacturing procedures similar to traditional honeycomb sandwich structures (low cost out-of-autoclave manufacturing techniques included) make these novel materials an attractive alternative. The process of their implementation into current engineering practice requires a parallel comparison with existing competitor cores and a critical evaluation of their performance, identifying advantages and disadvantages. This study represents one of the first attempts to create a rigorous methodology for the analysis and evaluation of their mechanical behaviour and manufacturing sensitivities. The balance of out-of-plane properties (shear and compression), fundamental for a sandwich core material, has been investigated. The material energy absorption capacity for the aforementioned loading cases, as well as for in-plane crushing was evaluated. For this purpose, a new quasi-static test for progressive crushing of flat sandwich laminates was designed successfully. The experimental data gathered validate proposed analytical models which allowed further deductions on core parameters influence to be made. Those parameters were the pin insertion angle, pin lay-out, pin density and the role of the foam. A local-global FE modelling approach for Z-pinned sandwich cores is also provided and validated for X-CorTM structures. Structural differences between XCorTM and K-CorTM are at the base of a diverse mechanical response; their performance is sensitive to the manufacturing process, as it determines the quality of the pin-skin and pin-adhesive film interfaces. An ‘improved’ manufacturing technique designed for XCorTM resulted in a sandwich panel able to offer the same mechanical performance of a Nomex® honeycomb structure for a 25% of weight saving.
机译:X-CorTM和K-CorTM是基于泡沫的轻型结构芯,通过以桁架图案定向的ZFiber®棒加固。它们可以产生具有强度和刚度重量比的三明治结构,从而可以与航空级蜂窝结构竞争。增强的针对特定设计需求的剪裁能力,加固类型和布置的灵活性,闭孔泡沫填充或空心结构之间的差异,以实现最终的重量减轻或结构多功能性,同时采用类似于传统蜂窝夹层结构的制造程序(低成本包括高压釜制造技术)使这些新型材料成为有吸引力的替代方案。将其实施到当前工程实践的过程中,需要与现有竞争对手的核心进行并行比较,并对其性能进行严格评估,从而确定优缺点。这项研究是首次尝试创建一种严格的方法来分析和评估其机械性能和制造敏感性的方法之一。已经研究了作为夹芯材料的基本面外特性(剪切和压缩)的平衡。评估了上述载荷工况以及面内破碎的材料能量吸收能力。为此,成功设计了一种新的准静态试验,用于逐步压扁扁平夹层板。收集的实验数据验证了建议的分析模型,该模型可以进一步推论核心参数的影响。这些参数是销钉插入角度,销钉布局,销钉密度和泡沫的作用。还提供了针对Z钉夹芯的局部局部有限元建模方法,并已针对X-CorTM结构进行了验证。 XCorTM和K-CorTM之间的结构差异是多种机械响应的基础。它们的性能对制造工艺很敏感,因为它决定了针-皮和针-胶膜界面的质量。为XCorTM设计的“改良”制造技术使夹芯板能够提供与Nomex®蜂窝结构相同的机械性能,而且重量减轻了25%。

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