Hakim Gilad, Abramovich Haim
Faculty of Aerospace Engineering, Technion-Israel Institute of Technology (I.I.T.), Haifa 32000, Israel.
Materials (Basel). 2023 Mar 1;16(5):2041. doi: 10.3390/ma16052041.
Large deflection of rectangular plates under transverse pressure is described by Föppl-von Kármán equations, which have only approximated solutions. One of these methods is the separation into a small deflection plate and a thin membrane described by a simple third order polynomial expression. The present study presents an analysis to obtain analytical expressions for its coefficients by using the plate's elastic properties and dimensions. To validate the non-linear relationship between the pressure and the lateral displacement of the multiwall plate, a vacuum chamber loading test is used to measure the plate's response, with a large number of plates and length-width combinations. In addition, to further validate the analytical expressions, several finite element analyses (FEA) were performed. It has been found that the polynomial expression fairly describes the measured and calculated deflections. This method allows the prediction of plate deflections under pressure as soon as the elastic properties and the dimensions are known.
矩形板在横向压力作用下的大挠度由弗普尔-冯·卡门方程描述,该方程只有近似解。其中一种方法是将其分离为一个小挠度板和一个由简单三阶多项式表达式描述的薄膜。本研究通过使用板的弹性特性和尺寸,对其系数的解析表达式进行了分析。为了验证多层板压力与横向位移之间的非线性关系,采用真空室加载试验来测量板的响应,试验使用了大量的板和长宽组合。此外,为了进一步验证解析表达式,进行了几次有限元分析(FEA)。结果发现,多项式表达式能够较好地描述测量和计算得到的挠度。一旦知道弹性特性和尺寸,该方法就可以预测板在压力下的挠度。