首页> 外文会议>ASME international mechanical engineering congress and exposition >IMPROVING TIGHTENING RELIABILITY ON BOLTED JOINTS FOR CALIBRATED WRENCH METHOD (AN ANALYSIS ON OPTIMUM TIGHTENING TORQUE BY CONFIDENCE LIMIT ELLIPSE)
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IMPROVING TIGHTENING RELIABILITY ON BOLTED JOINTS FOR CALIBRATED WRENCH METHOD (AN ANALYSIS ON OPTIMUM TIGHTENING TORQUE BY CONFIDENCE LIMIT ELLIPSE)

机译:提高校准扳手法的螺栓接头上的紧固可靠性(通过置信限制椭圆的最佳拧紧扭矩分析)

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On tightening bolted joints, the calibrated wrench method is used in manufacturing industries for a large amount of tightening work. It is important to give high initial axial tension in respect of tightening reliability, self-loosening prevention, the prevention from fatigue breakage, etc. In this method the axial tension of a bolt is controlled by grasping the wrench torque. However, since the axial tension grasp of this method is indirect, it varies greatly in lot of tightening. Therefore, the calibrated wrench method is not so accurate from the viewpoint of axial tension control. Turn-of-nut method, torque gradient control method and plastic-region tightening, etc. are developed as the methods of getting high initial axial tension with sufficient accuracy. But the calibrated wrench method is still widely used because of the simple tool and easy standardization. In this paper, the statistical distribution of the magnitude of the combined stress (equivalent stress) by shear strain energy criterion in bolted joint, which are tightened by the calibrated wrench method is formulated. Tightening torque and equivalent stress coefficients are considered to be two independent random variables. We show that the equivalent stress obtained by those products is distributed in a confidence limit ellipse. It is thought that distribution of this kind is conventionally varied in a rhombus. However, this proposed method shows that the distribution is varied inside the confidence limit ellipse. Now, when considering the permitted limit for working load stress on a bolted joint, ellipse-like variation has big margin to yield point than the shape of a conventional rhombus. Using this feature, we show that higher tightening target torque value can be set than before by this method. Finally, this research established the analysis and calculating routine for the optimum tightening torque on bolted joints. The merit and effect of this proposed method are as follows. 1) The optimum tightening torque can be raised by about 13% than conventional method by using the experimental thread characteristic values in this research. 2) In a large amount of tightening work, the axial tension distribution (tightening coefficient Q) and distribution of equivalent stress (tightening stress coefficient S) are presumed. The predicted value of the distribution of the Q is about 1.73, which has the 20% improvement effect compared to the conventional method. Also the distribution of the S is about 1.58, which has the similar improvement effect of 18%. As a rapid calculation, the nomograph of the optimum tightening torque can be obtained by combining the tightening torque and axial tension (axial stress) as well as the distribution of equivalent stress with dimensionless data of screw shape and strength. The example of nomograph on metric coarse screw is shown. In order to maintain the tightening reliability in bolted joints , standardization of the tightening work in a production site is very important. We think that this method is useful for establishment of the job standard (technical engineering standard).
机译:上紧螺栓连接,校准扳手方法在制造业对大量紧固作业的使用。它以得到高的初始轴向拉力就紧固可靠性,自我防松动,预防疲劳破损等。在该方法中,螺栓的轴向张力通过抓住扳手扭矩控制是重要的。然而,由于该方法的轴向张力把握是间接的,它极大地在很多紧缩的不同而不同。因此,校准扳手方法不是从轴向张力控制的观点出发,那么准确。关的螺母方法,转矩梯度的控制方法和塑料区紧固等被开发为获得足够的精度高的初始轴向张力的方法。但校准扳手方法仍然被广泛使用,因为简单的工具,易于标准化。在本文中,将合并的应力(相当于应力)通过螺栓接头的剪切应变能量准则,这是由校准的扳手拧紧方法的幅值的统计分布被配制。拧紧力矩和等效压力系数被认为是两个独立的随机变量。我们表明,这些产品获得的相当应力分布在置信限椭圆。据认为,这种分布在菱形通常变化。然而,该提出的方法示出了分布的置信度限制椭圆内变化。现在,考虑用于在螺栓接合工作负荷应力允许极限时,椭圆状变化具有大裕度到屈服点比传统的菱形的形状。使用此功能,我们表明,更高的目标拧紧扭矩值可以比通过此方法之前进行设置。最后,这项研究建立在螺栓连接的最佳拧紧扭矩的分析和计算程序。此提出的方法的优点和效果如下。 1)拧紧扭矩的最佳可通过比常规方法约13%由本研究用实验螺纹特征值被升高。 2)在大量的紧固作业,相当于应力(紧固应力系数S)的轴向张力分布(紧固系数Q)和分布被假定。在Q的分布的预测值是大约1.73,相对于传统的方法,其具有20%的改善效果。另外,S的分布为约1.58,其具有18%的相似的改善效果。作为一种快速计算,最佳拧紧扭矩的共线图可以通过拧紧扭矩和轴向张力(轴向应力),以及等效应力随螺杆形状和强度的无量纲的数据的分布相结合来获得。上公制粗螺纹共线的例子被示出。为了保持在螺栓连接紧固可靠,在生产现场收紧标准化工作是非常重要的。我们认为,这种方法是建立工作标准(技术工程标准)是有用的。

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