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Optimization of pre-stressed press frames

机译:优化预应力的压力框架

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Pre-stressing is a technique often used in presses, and it is obtained either by wire or tape winding or by bolted rods. Pre-stressing is always performed by combining two materials: one which is tougher and used as the pre-stressing medium and one which is less resistant and used as the pre-compressed casing. Pre-stressing can be applied for several reasons: for reducing the cost of manufacturing and assembling the press frames in case of very large tonnage presses, for reducing the deflections and elongations of the frames during pressing operation, for improving the fatigue resistance of the press components, etc. In this paper a simple analytical model of loads, stresses and deformations will be proposed for pre-stressed columns. The results of the model will be validated and compared to the results of realistic FEM simulations of the behavior of the press frame in operation. The equations of the analytical models will be then used as the constraints of a global optimization algorithm, implemented with Matlab. The results clearly show that, only if the press frame structure is monolithic, it is possible to obtain a solution which is truly optimal by prestressing, i.e. by combination of a more expensive and high performance material with a relatively "poor" material. This conclusion seems to be robust with respect to potential noise or uncertainty issues, which in this case are mainly related to the coefficient of the objective functions.
机译:预应力是一种经常在压力机中使用的技术,并且通过电线或带绕组或通过螺栓杆获得。始终通过组合两种材料来进行预应力:一个更难以用作预应力介质的材料和耐受耐药性并用作预压缩壳体的材料。可以有几种原因施加预应力:为了降低在非常大的吨位压力机的情况下减少制造成本和组装压力框架,用于减小压制操作期间框架的偏转和伸长,以提高压力机的疲劳电阻在本文中,将提出用于预应力柱的简单分析模型,将用于预应力的柱。该模型的结果将被验证并与现实有限元模拟操作的现实有限元模拟操作。然后将分析模型的等式用作与MATLAB实现的全局优化算法的约束。结果清楚地表明,只有在压架结构是单片的,可以通过预应力获得真正最佳的解决方案,即通过具有相对“差”材料的更昂贵和高性能材料的组合。这一结论似乎对潜在的噪声或不确定性问题具有稳健,在这种情况下主要与客观函数的系数相关。

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