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A novel method for fabrication of fiber reinforced plastic laminated plates

机译:纤维增强塑料层压板的新型制造方法

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摘要

A new hand lay-up technique for fabrication of fiber reinforced plastic (FRP) laminated plates, using glass fibers in the form of continuous rovings, is presented. The advantages of this method over its existing counterparts are discussed. This broad approach can further be categorized into three different sub-methods or techniques. Various difficulties encountered in this process and remedial measures to overcome them are described in detail. In addition, some of the important mechanical properties of such plates have been investigated and reported. All of the three techniques offer the ability to lay the continuous rovings with certain amounts of tension manually. In this sense, these fabrication techniques retain the advantages of both hand lay-up and filament winding techniques, while avoiding their disadvantages to a great extent. These techniques permit fabrication of any laminated anisotropic plate consisting of arbitrary number of layers oriented at desired fiber directions without employing complicated and expensive tooling required by other methods. Equally important, an inverse method is presented wherein the elastic stiffnesses/moduli of the corresponding 0° lamina are computed from the experimentally determined fundamental resonant frequencies of any three of the same series of simply supported symmetric rotated cross-ply anisotropic [φ/90 + φ/φ/90 + φ/φ] type laminates. In the interest of simplicity of computation, the laminates with φ = 0°, 90° and 45? are selected. The errors in these moduli with respect to their counterparts determined from static bending/twisting tests are used as criteria for the assessment of quality of fabrication of these laminates.
机译:提出了一种新的手工铺网技术,该技术使用连续粗纱形式的玻璃纤维来制造纤维增强塑料(FRP)层压板。讨论了该方法相对于现有方法的优点。这种广泛的方法可以进一步分为三种不同的子方法或技术。详细描述了此过程中遇到的各种困难以及克服这些困难的补救措施。另外,已经研究和报道了这种板的一些重要的机械性能。三种技术都提供了以一定的张力手动铺设连续粗纱的能力。从这个意义上讲,这些制造技术保留了手工铺网和细丝缠绕技术的优点,同时在很大程度上避免了它们的缺点。这些技术允许制造由任意数量的以期望的纤维方向取向的层组成的层压各向异性板,而无需采用其他方法所需的复杂且昂贵的工具。同样重要的是,提出了一种反演方法,其中根据实验确定的同一系列简单支撑的对称旋转交叉层各向异性[φ/ 90 +]中任意三个的基本共振频率来计算相应的0°层的弹性刚度/模量。 φ/φ/ 90 +φ/φ]型层压板。为了简化计算,将φ= 0°,90°和45°的层压板叠合。被选中。这些模量相对于由静态弯曲/扭曲测试确定的对应模量的误差被用作评估这些层压板的制造质量的标准。

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