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Fabrication of High-Quality Straight-Line Polymer Composite Frame with Different Radius Parts Using Fiber Winding Process

机译:采用纤维绕组工艺制造具有不同半径零件的高质量直线聚合物复合框架

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摘要

The extraordinary features of fibrous composites enable advanced industries to design composite structures with superior performance compared to traditional structures. Composite frame structures have been designed frequently as components of mechanical systems to resist lateral and gravity loads. The manufacturing of high-quality composite frames depends primarily on the accurate fiber winding on frames with different pro-files and curved shapes. The optimal fiber winding process on a nonbearing composite frame with a circular cross-section is described in previous works by the same authors. As an extension to that, this study focuses on the manufacturing of straight-line composite frames with different profile radii at multiple locations. Such production procedure allows continuous winding of fibers gradually on individual parts of the frame and generally with different angles of fiber winding. The winding procedure is performed using fiber-processing head and industrial robot. The procedure for calculating the distance of the winding plane of fibers on the frame from the guide-line of the fiber-processing head is targeted. This distance depends on the required angle of fiber winding, the radius of the frame, and the geometric parameters of the fiber-processing head. The coordination of the speed of winding the fibers on the frame and the speed of the passage of the frame through the winding head is also considered. Determining the correct distance of winding the fibers from the corresponding guide-line of fiber-processing head and right coordination of the winding speed and the speed of passage of the frame through the fiber-processing head ensure compliance of the required angles of fiber windings on the frame and homogeneity of winding fibers, which are the two of the most important prerequisites for producing a quality composite frame. The derived theory is well verified on a practical experimental example.
机译:与传统结构相比,纤维复合材料的非凡工业使先进行业设计具有卓越性能的复合结构。复合框架结构经常设计为机械系统的部件,以抵抗横向和重力载荷。高质量复合框架的制造主要取决于具有不同专业文件和弯曲形状的框架上的精确纤维绕组。使用圆形横截面的不承诺复合框架上的最佳光纤绕组过程描述于同名作者的原作者中。作为该研究的延伸,本研究专注于在多个位置的不同轮廓半径的直线复合框架的制造。这种生产过程允许沿框架的各个部件逐渐连续绕组,并且通常具有不同的纤维绕组角度。使用纤维处理头和工业机器人进行绕组过程。用于计算纤维卷绕平面在纤维处理头的引导线上框架的距离的过程。该距离取决于光纤绕组的所需角度,框架的半径和光纤处理头的几何参数。还考虑了在框架上缠绕纤维的速度的协调和通过绕组头的框架通过框架的速度。从相应的纤维处理头部缠绕纤维的正确距离和绕组速度的正确配位和框架通过光纤处理头的通道速度确保纤维绕组所需角度的依从性绕线纤维的框架和均匀性,这是制造质量复合框架的两个最重要的先决条件。衍生的理论在实际的实验例子上得到了很好的验证。

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