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Experimental and Numerical Methodology Assessment of Load Transfer Capacity of Bolts

机译:螺栓载荷传递能力的实验和数值方法学评估

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In Australia, the common method of laboratory testing of bolt for load transfer capacity determination is by short encapsulation push testing. Some concerns are raised about the validity of the test methodology, as the method does not reflect on the actual load transfer characteristics of bolt in real field situation. Thus, laboratory testes were carried out to examine the load transfer mechanisms of bolts in both the push and pull conditions. Tests were conducted by shearing a short resin encapsulated bolt out of a cylindrical steel sleeve. Three types of bolts with different surface profile configurations were tested. The study was complemented with numerical simulation of the test methods. Irrespective of bolt type the average shear load and shear stress values were found to be greater in push test, and the displacement at peak shear load was greater in pull test. The average shear stiffness values were greater in push test. The numerical simulation of the bolts provided a clear understanding of the stresses and strains generated by different bolt profiles during both the pull and pull testing process, thus allowing a better appreciation of the load transfer mechanism process.
机译:在澳大利亚,用于确定载荷传递能力的螺栓的实验室测试的常用方法是通过短封装推压测试。由于该方法不能反映螺栓在实际情况下的实际载荷传递特性,因此对测试方法的有效性提出了一些担忧。因此,进行了实验室测试以检查在推和拉条件下螺栓的载荷传递机制。通过从圆柱形钢套筒上剪下一个短的树脂封装螺栓进行测试。测试了三种具有不同表面轮廓配置的螺栓。该研究得到了测试方法的数值模拟的补充。不论螺栓类型如何,在推力试验中发现平均剪切载荷和剪切应力值都较大,而在拉力试验中,在峰值剪切载荷下的位移较大。在推力试验中,平均剪切刚度值较大。螺栓的数值模拟清楚地了解了在拉力和拉力测试过程中不同螺栓轮廓产生的应力和应变,因此可以更好地了解载荷传递机制的过程。

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