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A Filament Winding Technique for Manufacturing Cement Based Cross-ply Laminates

机译:一种纤维缠绕技术,用于制造水泥基交叉层压板

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摘要

A filament winding system was developed for manufacturing various types of fiber/cement composite materials. The system may be easily configured using the computer software to use continuous fiber composite laminates, cross-ply and angle ply laminates, pipes, and pultruded sections. The electrical and mechanical components of the system are discussed in detail. Cement based composite laminates are manufactured using continuous glass and polypropylene fibers. Tensile stress-strain response was measured using closed-loop strain controlled tests. Results indicated that tensile strength of composites can exceed 50 MPa using 5% alkali-resistant (AR) glass fibers. The ultimate strain capacity can also be increased by varying the stacking sequences. Ultimate strain capacities of the order of 2% were obtained. The experimental observations agree favorably with the theoretical predictions based on the ply discount method.
机译:开发了用于制造各种类型的纤维/水泥复合材料的长丝缠绕系统。使用计算机软件可以轻松配置该系统,以使用连续纤维复合材料层压板,交叉层和角层板层压板,管道和拉挤型材。详细讨论了系统的电气和机械组件。水泥基复合材料层压板是使用连续的玻璃纤维和聚丙烯纤维制造的。使用闭环应变控制测试测量拉伸应力-应变响应。结果表明,使用5%的耐碱(AR)玻璃纤维可以使复合材料的拉伸强度超过50 MPa。极限应变能力也可以通过改变堆叠顺序来增加。获得的极限应变能力约为2%。实验观察与基于层折法的理论预测吻合良好。

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