Analytical and experimental assessment of household extruded polystyrene foam (XPS) practicability for sandwich hull panels of small craft

M.V. Tsyvarev, A.S. Vetlugina, M.Yu. Mironov
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Abstract

Object and purpose of research. This paper is an integrated study of extruded polystyrene foam (XPS) practicability for three-layered composite hull structures of small craft. Subject matter and methods. Mechanical properties of composite materials and their components are determined experimentally (three-point bending, longitudinal tension/compression). Elastic properties and limit-state characteristics are obtained from beam theory, mixed model of composite beam, finite-element method, as well as solution of geometrically non-linear contact problems as per Newton-Raphson iterative technique. Main results. The study illustrates final diagrams for structural responses of investigated composite beam, filler and binder as functions of pre-defined displacement of test rigging. It also gives the estimates for equivalent Young’s moduli, as well as preliminary positive opinion about the practicability of XPS as a substitute for the conventional wood veneer in composite structures of small ships. The paper also presents a structurally similar FE model suitable for prediction calculations of large complex structures that can be tested only when the whole full-scale hull is available. Conclusion. This study formulates and solves the elastic problem for the investigated XPS-based sandwich panels. The results give an idea about the practicability of this material for shipbuilding applications.
家用挤塑聚苯乙烯泡沫塑料(XPS)用于小型船壳夹层板实用性的分析与实验评价
研究对象和目的。本文对挤压聚苯乙烯泡沫塑料(XPS)在小型船舶三层复合船体结构中的实用性进行了综合研究。主题和方法。复合材料及其组分的力学性能是通过实验(三点弯曲、纵向拉伸/压缩)来确定的。通过梁理论、复合梁混合模型、有限元法以及牛顿-拉夫森迭代法求解几何非线性接触问题,得到了弹性特性和极限状态特性。主要的结果。该研究给出了所研究的组合梁、填料和粘结剂的结构响应随试验索具预定义位移的最终函数图。给出了等效杨氏模量的估计,并初步肯定了XPS在小型船舶复合结构中替代传统木饰面的可行性。本文还提出了一种结构相似的有限元模型,适用于大型复杂结构的预测计算,这些结构只有在全尺寸船体可用时才能进行试验。结论。本文提出并求解了所研究的xps夹层板的弹性问题。研究结果说明了该材料在造船方面的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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