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A grammatical approach to customization of shape and composite materials.

机译:定制形状和复合材料的语法方法。

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摘要

With the increasing use of composite materials in Mechanical and Aerospace industries, an approach is required to facilitate designing of components using composite materials, while ensuring customization of the shape such a way that multiple design goals for the components are satisfied. Existing design methods may be used in some cases, where the component shape and loadings are simple. While a significant amount of research has been conducted to study the properties of composite materials, little attention has been paid to find out a design approach such that (1) the user requirements in the very general form may be used directly and as the input for the design, (2) the best possible composite material are selected to meet multiple desired functions, and (3) shape variation is analyzed in order to enable mass customization of the design. Thus an approach is required that will be able to handle both the shape and the material in order to design a load bearing component using composite materials. In this research the focus is to develop a design approach that will consider the user requirements for a composite component in its very general form and generate component shape and material details in a systematic order so that the designed component can withstand a given loading condition.;Consequently, the Primary Research Question is: How to simultaneously explore shape and composite materials during the design of a product to meet multiple property and functional goals?;The wide range of properties, covered by various fiber-matrix combinations, along with their directional property characteristics, maximizes the flexibility of the designers, while designing composite material products. Meeting multiple property goals, however, complicates the design process as both the composite material selection and the component shape formation becomes highly intricate with the loading conditions and a number of matrix calculations needs to be performed to determine theoretical value of composite material properties.;A grammar is a formal definition of a language written in transformational form. To address these issues, in this research a grammatical approach is developed that will generate a shape grammar to perform shape optimization, and then incorporate a composite material selection system and loading analysis techniques of Solid Mechanics in order to design load bearing components of irregular shape.;The approach will be able to consider the user requirements in the very general text form, convert them to the design requirements for the component, generate optimized shape based on multiple design constraints, perform the complete design work, and generate the component.;The major contributions include: (1) generating a shape grammar to represent functions of the load bearing component such a way that mass-customization of shape is possible, (2) developing a composite material customization system in order to satisfy directional property requirements, and (3) introducing a unique laminate design approach in order to satisfy design property requirements at the critical cross-sections locally that can result in highly efficient design compared to conventional design method. Verification of the approach will focus on its application to simultaneously explore shapes and customization of composite materials.
机译:随着机械和航空航天工业中复合材料的使用越来越多,需要一种方法来促进使用复合材料进行组件的设计,同时确保形状的自定义,从而满足组件的多个设计目标。在某些情况下,可能会使用现有的设计方法,其中组件的形状和载荷很简单。尽管已经进行了大量的研究来研究复合材料的性能,但很少有人关注寻找一种设计方法,使得(1)可以将一般形式的用户需求直接用作输入,并作为输入。在设计中,(2)选择可能的最佳复合材料以满足多种所需功能,并且(3)分析形状变化以实现设计的大规模定制。因此,需要一种能够处理形状和材料的方法,以便使用复合材料设计承重部件。在本研究中,重点是开发一种设计方法,该方法将考虑用户对于非常普通形式的复合构件的要求,并以系统的顺序生成构件的形状和材料详细信息,以使设计的构件能够承受给定的载荷条件。因此,主要研究问题是:如何在产品设计过程中同时探索形状和复合材料,以满足多种特性和功能目标?;广泛的特性,包括各种纤维-基质组合,以及方向性特性,在设计复合材料产品时最大程度地提高了设计师的灵活性。然而,要达到多种性能目标,会使复合材料的选择和零件形状的形成都变得非常复杂,从而使设计过程变得更加复杂,并且要考虑到加载条件,因此需要进行大量矩阵计算才能确定复合材料性能的理论值。语法是对以转换形式编写的语言的正式定义。为了解决这些问题,在本研究中,开发了一种语法方法,该方法将生成形状语法以执行形状优化,然后合并复合材料选择系统和Solid Mechanics的载荷分析技术,以设计不规则形状的承重部件。该方法将能够以非常普通的文本形式考虑用户需求,将其转换为组件的设计需求,基于多个设计约束条件生成优化的形状,执行完整的设计工作,并生成组件。主要贡献包括:(1)生成形状语法以表示承重组件的功能,以使形状的大规模定制成为可能;(2)开发复合材料定制系统以满足方向性要求;以及( 3)引入一种独特的层压板设计方法,以满足临界弯曲处的设计性能要求与传统设计方法相比,局部ss截面可导致高效设计。该方法的验证将集中在其应用上,以同时探索复合材料的形状和定制。

著录项

  • 作者

    Nandi, Soumitra.;

  • 作者单位

    The University of Oklahoma.;

  • 授予单位 The University of Oklahoma.;
  • 学科 Design and Decorative Arts.;Engineering Mechanical.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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