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Dynamic analysis of a rectangular plate under a moving line load using scale beams and scaling laws

机译:使用比例尺梁和比例尺定律的动线荷载下矩形板的动力分析

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This paper presents a technique for predicting the dynamic responses of a two-dimensional (2-D) full-size rectangular plate undergoing a transverse moving line load (i.e., multiple concentrated loads located in a straight line) by using the one-dimensional (1-D) equivalent beam model or the scale beams subjected to a moving concentrated load, where the structural sizes and the external-load magnitude of the beam model are not necessarily equal to the corresponding ones of the plate model. In addition to the complete-similitude scale beams, the partial-similitude scale beams are also presented. It has been found that based on the scaling factors for partial similitude, some better scale beams may be established and one may have more choices for achieving the better model testing. The good agreement between the theoretical vibration responses of the 2-D full-size rectangular plate under a moving line load and the predicted ones obtained from the 1 -D equivalent beam model or its scale beams under a moving concentrated load confirms the reliability of the presented theory. Because the scale model tests are cheaper and easier to be carried out, the presented technique will be meaningful from this viewpoint. The effort required by the presented technique based on the 1-D beam theory is also much smaller than that required by the conventional approaches based on the 2-D plate theory due to the fact that the order of overall property matrices for a beam model is much lower than that for the associated plate model.
机译:本文提出了一种用于预测二维(2-D)全尺寸矩形板通过横向移动线载荷(即,位于一条直线上的多个集中载荷)的动力响应的技术,该技术通过使用一维( 1-D)等效梁模型或承受移动集中载荷的比例梁,其中梁模型的结构尺寸和外部载荷大小不一定等于平板模型中的相应梁。除了完全相似的比例梁之外,还提出了部分相似的比例梁。已经发现,基于局部相似度的缩放因子,可以建立一些更好的缩放光束,并且可以有更多选择来实现更好的模型测试。二维全尺寸矩形板在运动线荷载下的理论振动响应与从一维等效梁模型或其比例梁在运动集中荷载下获得的预测振动响应之间的良好一致性证实了该方法的可靠性。提出的理论。由于比例模型测试更便宜且更易于执行,因此从此观点出发,所提出的技术将是有意义的。由于基于光束模型的整体属性矩阵的阶数是这样的事实,因此基于1-D射线理论的现有技术所需的工作量也远小于基于2-D平板理论的传统方法所需的工作量。比相关的平板模型低很多。

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