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Point Fixings In Annealed And Tempered Glass Structures: Modeling And Optimization Of Bolted Connections

机译:退火和钢化玻璃结构中的点固定:螺栓连接的建模和优化

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In the design of high load bearing elements made of tempered flat glass, connections cannot be avoided when large spans or high stiffness beams are considered. This paper investigates bolted connections in glass structures; the main objective is to determine the optimal joint. This work is performed through the determination of stress states due to both thermal tempering and in-plane loading. The modeling of the thermal tempering is performed with the FE software Abaqus and additional user subroutines. Experiments on industrial tempering line with specific set-up allow the determination of the air flow in the hole and then of the forced convection coefficients. The radiative heat transfer is also modeled numerically and the semi-transparency of glass in the near infrared is considered. In order to calculate residual stresses, the visco-elasticity of glass and the structural relaxation phenomena are taken into account. The computed stresses are checked against photo-elastic measurements. As various holes are considered, this study allows to determine the hole geometry for which the tempering process is the most effective. For the study of the consequences of in-plane loading, a large experimental campaign has been performed. The studied connection is derived from countersunk supports. The influences of different parameters as the hole geometry, the nature of the washer between glass and metallic connector as well as the glass-washer material friction coefficient were investigated. The modeling of these tests is performed with the FE software Abaqus. This modeling takes into account the ductility of the materials, the friction and the clearances between the parts. This modeling is validated thanks to failure stress measurements. The combination of modeling and experiments leads to identify optimal connection.
机译:在设计由钢化平板玻璃制成的高承载元件时,当考虑大跨度或高刚度梁时,不可避免的连接是不可避免的。本文研究玻璃结构中的螺栓连接。主要目的是确定最佳接头。这项工作是通过确定由于热回火和面内载荷而产生的应力状态来完成的。使用FE软件Abaqus和其他用户子例程执行热回火的建模。通过对工业回火线进行特殊设置的实验,可以确定孔中的空气流量,然后确定强制对流系数。还对辐射传热进行了数值建模,并考虑了玻璃在近红外下的半透明性。为了计算残余应力,考虑了玻璃的粘弹性和结构松弛现象。对照光弹性测量值检查计算出的应力。考虑到各种孔,这项研究可以确定最适合回火过程的孔几何形状。为了研究平面载荷的后果,进行了一次大型实验。研究的连接来自沉头支撑。研究了不同参数对孔的几何形状,玻璃与金属连接器之间的垫圈的性质以及玻璃清洗器材料的摩擦系数的影响。使用FE软件Abaqus对这些测试进行建模。该建模考虑了材料的延展性,摩擦和零件之间的间隙。该模型通过失效应力测量得到了验证。建模和实验的结合可以确定最佳连接。

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