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Simulation of laboratory tests of steel arch support

机译:模拟钢拱支撑的实验室测试

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摘要

The total load-bearing capacity of steel arch yielding roadways supports is among their most important characteristics. These values can be obtained in two ways: experimental measurements in a specialized laboratory or computer modelling by FEM. Experimental measurements are significantly more expensive and more time-consuming. However, for proper tuning, a computer model is very valuable and can provide the necessary verification by experiment. In the cooperating workplaces of GIG Katowice, VSB-Technical University of Ostrava and the Institute of Geonics ASCR this verification was successful. The present article discusses the conditions and results of this verification for static problems. The output is a tuned computer model, which may be used for other calculations to obtain the load-bearing capacity of other types of steel arch supports. Changes in other parameters such as the material properties of steel, size torques, friction coefficient values etc. can be determined relatively quickly by changing the properties of the investigated steel arch supports.
机译:钢拱拱屈服巷道支护的总承重能力是其最重要的特征之一。这些值可以通过两种方式获得:在专门实验室中进行实验测量或通过FEM进行计算机建模。实验测量明显更昂贵且更耗时。但是,对于适当的调整,计算机模型非常有价值,并且可以通过实验提供必要的验证。在GIG卡托维兹(GIG Katowice),俄斯特拉发VSB技术大学和地质学研究院(ASCR)的合作工作场所,此验证是成功的。本文讨论了静态问题的验证条件和结果。输出是经过调整的计算机模型,该模型可用于其他计算以获得其他类型的钢拱支架的承重能力。其他参数的变化,例如钢的材料特性,尺寸扭矩,摩擦系数值等,可以通过更改所研究的钢拱形支架的特性来相对较快地确定。

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