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Experimental Analysis of Perimeter Shear Strength of Composite Sandwich Structures

机译:复合三明治结构周边剪切强度的实验分析

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摘要

The work concerns the experimental analysis of the process of destruction of sandwich structures as a result of circumferential shearing. The aim of the research was to determine the differences that occur in the destruction mechanism of such structures depending on the thickness and material of the core used. Specimens with a Rohacell foam core and a honeycomb core were made for the purposes of the research. The specimen destruction process was carried out in a static loading test with the use of a system introducing circumferential shear stress. The analysis of the tests results was made based on the load-displacement curves, the maximum load, and the energy absorbed by individual specimens. The tests indicated significant differences in the destruction mechanism of specimens with varied core material. The specimen with the honeycomb core was characterized by greater stiffness, which caused the damage to occur locally in the area subjected to the pressure of the punch. In specimens with the foam core, due to the lower stiffness of that core, the skins of the structure were bent, which additionally transfers compressive and tensile loads. This led to a higher maximum force that the specimens obtained at the time of destruction and greater energy absorption.
机译:该工作涉及由于圆周剪切而导致夹层结构破坏过程的实验分析。研究的目的是根据所用芯的厚度和材料确定这种结构的破坏机构中发生的差异。为研究目的制造具有Rohacell泡沫芯的标本和蜂窝核心。通过使用圆周剪切应力的系统在静态加载试验中进行样品破坏过程。基于负载 - 位移曲线,最大载荷和由个体样本吸收的能量进行了对测试结果的分析。该试验表明,具有多种芯材料的标本破坏机制的显着差异。具有蜂窝核心的样品的特征在于更大的刚度,这导致损坏在经受冲头压力的区域中局部发生。在具有泡沫芯的标本中,由于该芯的较低刚度,结构的皮肤弯曲,其另外转移压缩和拉伸载荷。这导致了更高的最大力,即在破坏时获得的样品和更高的能量吸收。

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