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An Asymmetric Wrenching System with High Torque Transfer Capability for Aerospace Pins

机译:具有高扭矩传递能力的非对称扳手系统,用于航空销

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The installation of common threaded aerospace fasteners by the application of a torque to a nut or collar is made possible by an internal wrenching element or recess feature adapted to the threaded end of a pin, which accepts a mating anti-rotation key designed to partially balance the applied torque. In applications such as the mechanical joining of composite structures accomplished by wet clearance fit installations of permanent fasteners, high nut or collar seating torques not adequately opposed by frictional resistance at the contact surfaces of the fastener and joint members effectively shift a greater proportion of the torque reaction requirement onto the recess and mating anti-rotation key which in turn can experience high torsional stresses exceeding their design capability and result in frequent service failures. In particular, the industry standard hexagonal recess and key have been shown to be highly susceptible to such severe conditions with failure rates as high as 20% in field applications. A superior asymmetric recess design was developed for use in aerospace pins to enhance the reaction torque capability of the fastener and mating key over the current baseline, without compromising established functional requirements, enabling fastener use in more demanding service applications. In this paper, the installation performance capability of threaded pins with the asymmetric recess is compared to equivalent substitutes with alternative recess designs through a series of standard industry tests conducted across a range of part sizes. Numerical simulations and experimental test results demonstrate that the asymmetric recess and key exceed the torsional strength and fatigue life of the current industry standard and other commercially available designs, offering the potential to increase productivity and reduce the cost of structural assembly and maintenance operations.
机译:共同带螺纹的航天紧固件由扭矩到螺母或套环的应用程序的安装是通过内部痛苦元件成为可能或凹陷特征适于销的螺纹端,它接受设计成部分地平衡配合防旋转键所施加的扭矩。在实际应用中,如机械连接通过永久紧固件,高螺母或没有充分的摩擦阻力在接触相对的凸缘容纳转矩的湿间隙配合的安装完成的复合结构的紧固件的表面和接头部件有效地转移扭矩的更大比例反应要求在这反过来又可以体验到高扭应力超过频繁的服务故障他们的设计能力和结果的凹槽和匹配防旋转键。特别是,工业标准六角凹部和键已被证明是非常容易与故障率高达20%在现场应用中这样的严酷的条件。优异的非对称凹部设计是为在航天销使用,以增强在当前基线紧固件和配合键的反应扭矩能力的发展,而不会损害建立功能要求,使得能够在更苛刻的服务的应用的紧固件使用。在本文中,与所述非对称凹部螺纹销安装性能能力进行比较以通过一系列在一系列部分的尺寸进行了标准工业试验替代凹部的设计等效的替代品。数值模拟和实验测试结果表明,非对称凹部和键超过目前的行业标准和其他市售设计的抗扭强度和疲劳寿命,提供以提高生产率,减少结构组装和维护运营成本的潜力。

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