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Strength and installation characteristics of tension-control bolts.

机译:张力控制螺栓的强度和安装特性。

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摘要

The Research Council on Structural Connections of the Engineering Foundation provides a specification for the installation of high-strength bolts (1). This Specification is directed primarily at users of ASTM A325 or A490 bolts. The use of so-called alternative design fasteners is also permitted, however.;Tension-control bolts are a relatively new type of alternative design fastener. The bolt itself has a splined end that extends beyond the threaded length of the bolt. It also has an annular groove between the threaded portion of the bolt and the splined end. In order to install these bolts, a special electrically-powered wrench is required. This wrench has two coaxial chucks--an inner chuck that slips over the splined end of the bolt and an outer chuck that envelopes the nut. The two chucks turn relative and opposite to each other to tighten the bolt. At some point, the torque developed by the friction between the nut and bolt threads and at the nut-washer interface equals the shear resistance of the bolt material at the annular groove and the splined end of the bolt shears off at the groove. If the system has been properly manufactured and calibrated, pretension is achieved at this point.;Factors that control the pretension are material strength, thread conditions (such as lubrication, dirt, and thread damage), the diameter of the splined end, and the surface conditions at the nut-washer-joint interface.;The program herein investigated the pretension of production tension-control bolts as it varied from manufacturer to manufacturer as well as under different conditions of aging weathering, and thread conditions. Further objectives were to examine the behavior of these bolts in direct and torqued tension and to establish whether or not these bolts meet the material properties requirements of the governing standard (4).
机译:工程基金会结构连接研究委员会为安装高强度螺栓(1)提供了规范。本规范主要针对ASTM A325或A490螺栓的用户。但是,也允许使用所谓的替代设计紧固件。张力控制螺栓是一种相对新型的替代设计紧固件。螺栓本身的花键端超出螺栓的螺纹长度。它还在螺栓的螺纹部分和花键端之间有一个环形槽。为了安装这些螺栓,需要使用特殊的电动扳手。该扳手有两个同轴卡盘-一个内部卡盘滑过螺栓的花键端,另一个外部卡盘包裹螺母。两个卡盘相对且彼此相对转动以拧紧螺栓。在某一点上,螺母和螺栓螺纹之间以及在螺母-垫圈界面处的摩擦所产生的扭矩等于在环形槽处螺栓材料的抗剪力,并且螺栓的花键端在槽处剪切。如果系统已正确制造和校准,则此时将达到预张紧力。控制预张紧力的因素包括材料强度,螺纹状况(例如润滑,污垢和螺纹损坏),花键端的直径以及螺母-垫圈-接合处的表面条件。本文中的程序研究了生产张力控制螺栓的预紧力,该预紧力因制造商的不同而不同,并且在老化,风化和螺纹条件不同的情况下也不同。进一步的目标是检查这些螺栓在直接和扭矩作用下的性能,并确定这些螺栓是否满足管理标准(4)的材料性能要求。

著录项

  • 作者

    Undershute, Scott Thomas.;

  • 作者单位

    University of Alberta (Canada).;

  • 授予单位 University of Alberta (Canada).;
  • 学科 Civil engineering.
  • 学位 M.Sc.
  • 年度 1994
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 老年病学;
  • 关键词

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