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Structural Modeling and Analysis of FRP Composite Product Subsystems-A Systems Approach

机译:FRP复合产品子系统的结构建模与分析-一种系统方法

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This study derives a new mathematical model aimed to consider virtual design and manufacturing procedures for developing highly competitive,complex geometry composite products for various engineering applications.The fiber-reinforced polymer (FRP) composite industry faces several critical issues right from selection (of product,process,equipment,tooling,materials) to manufacturing the final products by meeting several design criteria and customer requirements.An attempt has been made in this article to identify different subsystems and other constituents of five main systems-resin system,reinforcement system,process equipment,tooling system,and product design of total composite product system.Intermediate processes,alternative designs,process sequence,technological changes,chemical reactions,and other performance affecting parameters have been discussed.Graph theoretical models,variable permanent adjacency matrix models,and permanent functions of these systems based on graph theory-matrix algebra-permanent function methodology are developed.Analytical tests for structural analysis of composite product system are derived to select optimum constituents in each of these five systems of composite product.Coefficient of similarity and dissimilarity are useful aid to take right decision between alternative solutions.Permanent function is a unique representation and to be used by composite industry for coding,evaluation,comparison,ranking,and optimum selection.Structural models are useful for basic understanding of complete composite product system,leading to right decisions for manufacturing and business strategies.Step-by-step procedure is developed to assist composite industry to implement the proposed method in a right way.Usefulness of the proposed methodology to composite industry is also presented.
机译:这项研究得出了一个新的数学模型,旨在考虑虚拟设计和制造程序,以开发适用于各种工程应用的高竞争力,复杂几何形状的复合材料产品。纤维增强聚合物(FRP)复合材料行业从选择(产品,满足几个设计标准和客户要求来制造最终产品的过程,设备,工具,材料)。本文已尝试识别五种主要系统的不同子系统和其他组成部分-树脂系统,增强系统,工艺设备,工具系统和整个复合产品系统的产品设计。讨论了中间过程,替代设计,过程顺序,技术变化,化学反应和其他性能影响参数。图形理论模型,可变永久邻接矩阵模型和永久功能图论的系统这些系统的设计开发了rix代数-永久函数方法,推导了复合产品系统结构分析的分析测试,以在这五个复合产品系统中的每个系统中选择最佳成分。相似度和相异度系数有助于在替代解决方案之间进行正确决策。永久功能是一种独特的表示形式,将由复合材料行业用于编码,评估,比较,排名和最佳选择。结构模型对于基本了解完整的复合产品系统非常有用,从而可以为制造和业务战略做出正确的决策。逐步制定了程序,以帮助复合材料工业正确地实施所提出的方法。还介绍了所提出的方法对复合材料工业的实用性。

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