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Bearing strength at bolt holes in connections with large end distance and bolt pitch

机译:端距大且螺栓间距大的连接中螺栓孔的轴承强度

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The paper presents test results of one and two bolt connections with very large end distances that failed in bolt bearing, where very high bearing forces were recorded. The purpose of the tests was to investigate the behaviour of the plate in bearing that was not limited by shear, splitting, bolt or net cross-section failure, but with tearing of the material in front of the bolt. The tests showed that the bearing capacity increased insignificantly as the width of the plate increased. Numerical simulations show that bearing resistance is in cases of large end distances significantly influenced by friction forces. They develop because the bolt head and nut, together with the lap plates, constrain the increase of the plate thickness related to plastic deformation. The paper deals with the formation of the stress-strain field as well as the influence of the inner bolt determined by the numerical simulations. The resistances obtained from the tests agree very well with the bearing strength model presented recently by Moze and Beg (2014). The coefficient of the bearing strength model that considers the influence of the inner bolt is calibrated on the basis of the presented test results as well as on high strength steel connections with several bolts. The presented bearing strength model was adopted in the final draft of the second generation of EN 1993-1-8. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了端距非常大的一个和两个螺栓连接的测试结果,这些结果在螺栓轴承中失败了,在螺栓轴承中记录了很高的轴承力。测试的目的是研究轴承中板的行为,该行为不受剪切,开裂,螺栓或净横截面破坏的限制,但螺栓前面的材料会破裂。测试表明,随着板的宽度增加,承载能力微不足道。数值模拟表明,在较大的末端距离情况下,轴承阻力受摩擦力的影响很大。之所以会出现这种情况,是因为螺栓头和螺母以及搭接板一起限制了与塑性变形有关的板厚的增加。本文讨论了应力-应变场的形成以及数值模拟确定的内螺栓的影响。从测试中获得的电阻与Moze和Beg(2014)最近提出的轴承强度模型非常吻合。考虑到内部螺栓影响的轴承强度模型的系数根据给出的测试结果以及带有多个螺栓的高强度钢连接件进行了校准。提出的轴承强度模型已在EN 1993-1-8的第二代最终草案中采用。 (C)2018 Elsevier Ltd.保留所有权利。

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