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Simplified Modeling Methods for Mechanically Fastened Connections in Flight Structures.

机译:飞行结构中机械固定连接的简化建模方法。

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摘要

Simplified modeling and analyses methods for aerospace connectors have been around for the better part of 30 years, but continue to evolve with technology. For the preliminary design process, the modeling of individual fasteners is time consuming and unforgiving, as the fastener sizes and locations often change during the process, necessitating a new model each iteration. Further simplifying the design process introduces a so called connector pad, which acts as a representative for entire groups of fasteners within a finite element model. Expanding upon previous developments from the last quarter century, this new method creates small groups of solid elements that are able to accurately represent any number of fasteners that exist within that region. Using FEMAP and NX NASTRAN to validate extensive linear displacement test data, this connector pad can be seen as another successful way to model mechanical connectors in flight structures. The success of the model lies strictly in linear displacements, however. Stresses, strengths, and margins of safety are not considered in this Thesis, though it is possible to extract such data. A group of specimens, consisting of varying state of the art connector types such as Hi-Lok fasteners, and ranging in connection density from two to eight fasteners, was tested axially within the linear elastic range. This data was compared to several different computer based fastener modeling techniques, such as using springs, beams, solids, or the new connector pad to represent the fastener. Not only does this study work to further validate the established techniques, but it also gives rise to the possibilities and advantages of a new, more simplified approach to modeling mechanical fasteners in aircraft.
机译:航空航天连接器的简化建模和分析方法已经存在了30多年,但随着技术的发展而不断发展。对于初步设计过程,单个紧固件的建模既费时又费力,因为紧固件的尺寸和位置在此过程中经常变化,因此每次迭代都需要一个新的模型。为了进一步简化设计过程,引入了所谓的连接器垫,该连接器垫可代表有限元模型中的整个紧固件组。在上个四分之一世纪以前的发展的基础上,这种新方法创建了几组实体元素,这些实体元素能够准确表示该区域内存在的任何数量的紧固件。使用FEMAP和NX NASTRAN来验证广泛的线性位移测试数据,可以将这种连接器垫视为在飞行结构中对机械连接器建模的另一种成功方法。但是,该模型的成功严格取决于线性位移。尽管可以提取此类数据,但本文中并未考虑压力,强度和安全系数。在线性弹性范围内轴向测试了一组样品,这些样品由不同类型的连接器类型(例如Hi-Lok紧固件)组成,连接密度范围从2到8个紧固件不等。将该数据与几种不同的基于计算机的紧固件建模技术进行了比较,例如使用弹簧,梁,实体或新的连接器垫来表示紧固件。这项研究不仅有助于进一步验证已建立的技术,而且还为在飞机上机械紧固件建模提供了一种新的,更简化的方法,从而带来了可能性和优势。

著录项

  • 作者

    Brewer, Brett Andrew.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Engineering Aerospace.
  • 学位 M.S.
  • 年度 2012
  • 页码 127 p.
  • 总页数 127
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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