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Nonlinear springs with applications to flow regulation valves and mechanisms

机译:非线性弹簧,适用于流量调节阀和机构

摘要

This thesis focuses on the application of nonlinear springs for fluid flow control valves where geometric constraints, or fabrication technologies, limit the use of available solutions. Types of existing nonlinear springs are discussed and categorized as either, single element springs or springs relying on external elements to provide nonlinear characteristics. This work discusses the design principles of, both, hardening and softening nonlinear springs and the development of a nonlinear spring system using a contact surface to increase or decrease stiffness. This work has been motivated by the development of a new automotive positive crankcase ventilation (PCV) valve that meets the flow requirements of the current production valve, yet resist stiction commonly associated with the freezing of the valve's internal components. The valve regulates the PCV system, which ventilates corrosive gases from the crankcase. Using the nonlinear spring design principles developed here, a valve has been designed that is estimated to cost 90% less than the current production valve, addresses the issue of freezing, reduces oil consumption by 54%, is less prone to hysteresis and eliminates flutter instabilities that cause the valve to violate flow specification. This thesis concludes with a discussion of the potential for this type of nonlinear spring in medical devices, toys, microsystems, mechanical couplings and fixturing.
机译:本文重点研究非线性弹簧在流体流量控制阀上的应用,在这种情况下,几何约束或制造技术限制了可用解决方案的使用。对现有非线性弹簧的类型进行了讨论并归类为单元件弹簧或依靠外部元件提供非线性特性的弹簧。这项工作讨论了硬化和软化非线性弹簧的设计原理,以及使用接触表面增加或减小刚度的非线性弹簧系统的开发。这项工作的动机是开发一种新型汽车曲轴箱正向通风(PCV)阀门,该阀门可以满足当前生产阀门的流量要求,同时还能抵抗通常与阀门内部组件冻结有关的静摩擦。该阀调节PCV系统,该系统排出曲轴箱中的腐蚀性气体。使用此处开发的非线性弹簧设计原理,阀门的设计成本比目前的生产阀门低90%,解决了冻结问题,减少了54%的机油消耗,不易滞后并消除了颤振不稳定性导致阀门违反流量规格。本文最后讨论了这种非线性弹簧在医疗设备,玩具,微系统,机械耦合和夹具中的潜力。

著录项

  • 作者

    Freeman David Calvin;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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