首页> 外文会议>ASME Pressure Vessels and Piping Conference >IMPROVEMENT OF TIGHTENING ACCURACY OF TORQUE CONTROL METHOD BY TAKING ACCOUNT GEOMETRIC ERRORS IN THREADED FASTENERS
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IMPROVEMENT OF TIGHTENING ACCURACY OF TORQUE CONTROL METHOD BY TAKING ACCOUNT GEOMETRIC ERRORS IN THREADED FASTENERS

机译:通过在螺纹紧固件中考虑几何误差来提高扭矩控制方法的精度

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Torque control method is commonly used when tightening bolted joints because of its easy operation. However, the method involves an essential problem of fairly large scatter in bolt preloads. It has been reported that even if the same torque is applied, bolt preloads show a considerable scatter, e.g., ranging from 25% to 35%. A scatter in coefficients of friction on nut bearing surface and thread pressure flank is a primary source of bolt preload scatter. Meanwhile, the effect of Equivalent Friction Diameter at the bearing surfaces of nut and bolt head cannot be ignored. The scatter in Equivalent Friction Diameter is caused by imperfect geometry, i.e., the flatness deviation at the bearing surfaces. In this paper, the magnitudes of Equivalent Friction Diameter are quantitatively evaluated by FEA, using the experimental data of flatness deviation measured for a number of commercial nuts and bolts. It is shown that the bolt preload is likely to be scattered by as much as plus minus 10% of the target value, owing to the flatness deviation. Based on the comprehensive calculations by considering the imperfect geometry, a strategy to effectively suppress the bolt preload scatter is proposed.
机译:由于其易于操作而拧紧螺栓接头时,通常使用扭矩控制方法。然而,该方法涉及在螺栓预载荷中相当大的散射的基本问题。据报道,即使施加相同的扭矩,螺栓预载荷也显示出相当大的散射,例如,从25%到35%。螺母表面和螺纹压力侧面上的摩擦系数散射是螺栓预载散射的主要源。同时,不能忽略螺母和螺栓头轴承表面处的等效摩擦直径的影响。等效摩擦直径的散射是由不完美的几何形状引起的,即轴承表面处的平坦度偏差引起。在本文中,使用对多个商业螺母和螺栓测量的平坦度偏差的实验数据定量评估等效摩擦直径的大小。结果表明,由于平坦度偏差,螺栓预载可能会像目标值的加上10%一样散射。基于通过考虑不完美的几何形状,提出了一种有效抑制螺栓预载散散射的策略。

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