首页> 外文会议>IMAC, A Conference and Exposition on Structural Dynamics >Investigating Nonlinearity in a Bolted Structure Using Force Appropriation Techniques
【24h】

Investigating Nonlinearity in a Bolted Structure Using Force Appropriation Techniques

机译:使用武力拨款技术研究螺栓结构中的非线性

获取原文

摘要

Understanding the dynamic response of a structure is critical to design. This is of extreme importance in high-consequence systems on which human life can depend. Historically, these structures have been modeled as linear, where response scales proportionally with excitation amplitude. However, most structures are nonlinear to the extent that linear models are no longer sufficient to adequately capture important dynamics. Sources of nonlinearity include, but are not limited to: large deflections (so called geometric nonlinearities), complex materials, and frictional interfaces/joints in assemblies between subcomponents. Joint nonlinearities usually cause the natural frequency to decrease and the effective damping ratio to increase with response amplitude due to microslip effects. These characteristics can drastically alter the dynamics of a structure and, if not well understood, could lead to unforeseen failure or unnecessarily over-designed features. Nonlinear structural dynamics has been a subject of study for many years, and provide a summary of recent developments and discoveries in this field. One topic discussed in these papers are nonlinear normal modes (NNMs) which are periodic solutions of the underlying conservative system. They provide a theoretical framework for describing the energy-dependence of natural frequencies and mode shapes of nonlinear systems, and lead to a promising method to validate nonlinear models. In and, a force appropriation testing technique was developed which allowed for the experimental tracking of undamped NNMs by achieving phase quadrature between the excitation and response. These studies considered damping to be small to moderate, and constant. Nonlinear damping of an NNM was studied in using power-based quantities for a structure with a discrete, single-bolt interface. In this work, the force appropriation technique where phase quadrature is achieved between force and response as described in is applied to a target mode of a structure with two bolted joints, one of which comprised a large, continuous interface. This is a preliminary investigation which includes a study of nonlinear natural frequency, mode shape, and damping trends extracted from the measured data.
机译:了解结构的动态响应对于设计至关重要。这对人类生活可以依赖的高后果系统来说是极度重要的。从历史上看,这些结构已经被建模为线性,其中响应与激励幅度成比例。然而,大多数结构是非线性的,即线性模型不再足以充分捕获重要动态。非线性的来源包括但不限于:子组件之间的组件中的大偏转(所谓的几何非线性),复杂材料和摩擦接口/关节。关节非线性通常导致自然频率降低和有效阻尼比由于微脂溢效应导致响应幅度增加。这些特性可以大大改变结构的动态,如果不太清楚,可能导致不可预见的故障或不必要的过度设计的功能。非线性结构动力学多年来一直是学习的主题,并在该领域的最新发展和发现摘要提供了摘要。这些论文中讨论的一个主题是非线性正常模式(NNMS),其是基础保守系统的周期性解。它们提供了一种理论框架,用于描述非线性系统的自然频率和模式形状的能量依赖性,并导致有希望的验证非线性模型的方法。在并开发了一种力拨款测试技术,其允许通过在激发和反应之间实现相位正交来实验失败的NNMS的实验跟踪。这些研究认为阻尼少至中等,恒定。使用基于功率的单螺栓接口的结构进行了基于功率的单螺栓接口的结构进行了非线性阻尼。在这项工作中,在力和响应之间实现相位正交的力拨款技术,如所描述的那样应用于具有两个螺栓接头的结构的目标模式,其中一个是一个大的连续界面。这是一种初步调查,其包括从测量数据提取的非线性固有频率,模式形状和阻尼趋势的研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号