首页> 外文期刊>Journal of Engineered Fibers and Fabrics >Development of a computer-aided engineering–supported process for the manufacturing of customized orthopaedic devices by three-dimensional printing onto textile surfaces
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Development of a computer-aided engineering–supported process for the manufacturing of customized orthopaedic devices by three-dimensional printing onto textile surfaces

机译:通过三维印刷在纺织表面上制造定制矫形器件的计算机辅助工程支持的工艺的开发

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Today, additive manufacturing, also called three-dimensional printing, is used for producing prototypes as well as other products for various industrial sectors. Although this technology is already well established in the automotive, aviation and space travel, building, dental and medical sectors, its integration in the textile and ready-made industry is still in progress. At present, there is a lack of specific application scenarios for the combination of three-dimensional printing and textile materials, apart from fashion and shoe design. Hence, this article presents a digital computer-aided engineering–supported process to manufacture customized orthopaedic devices by three-dimensional printing directly onto a textile fabric. State-of-the-art fabrication methods for orthoses are typically labour intensive. The combination of three-dimensional scanning, computer-aided design modelling and three-dimensional printing onto textile materials open up new possibilities for producing custom-made products. After three-dimensional scanning of a patient’s individual body shape, the surface is prepared for constructing the textile pattern cuts by reverse engineering. The transformation of the designed three-dimensional patterns into two-dimensional is software supported. Additional positioning lines in accordance with specific body measurements are transferred onto the two-dimensional pattern cuts, which are then used as the basis for the design of the three-dimensional printed functional elements. Subsequently, the design is saved in STL (Standard Triangulation/Tessellation Language) file format, prepared by slicing and directly printed onto textile pattern cuts by means of fused deposition modelling. The last manufacturing step involves the assembly of the textile fabric. The proposed process is demonstrated by an example application scenario, thus proving its potential for industrial use in the textile and ready-made industry.
机译:如今,添加剂制造,也称为三维印刷,用于生产原型以及各种工业部门的其他产品。虽然这项技术已经在汽车,航空和太空旅行,建筑,牙科和医疗领域已经成熟,但其在纺织品和现成的行业中的整合仍在进行中。目前,除了时尚和鞋面设计之外,缺乏三维印刷和纺织材料的组合的特定应用场景。因此,本文提出了一种数字计算机辅助工程支持的过程,用于通过直接在纺织织物上通过三维印刷制造定制的整形外科设备。最先进的制造方法,通常是劳动密集型。三维扫描,计算机辅助设计建模和三维印刷的组合纺织材料开辟了生产定制产品的新可能性。在患者的个体形状的三维扫描之后,制备表面以通过逆向工程构建纺织品图案。支持设计的三维模式的转换为二维是支持的软件。根据特定体测量的附加定位线被转移到二维图案切口上,然后将其作为设计的三维印刷功能元件的设计基础。随后,设计以STL(标准三角形/曲面图语言)文件格式保存,通过切割并直接通过融合沉积建模直接印刷到纺织品图案上。最后的制造步骤涉及纺织织物的组装。通过示例申请情景证明了所提出的过程,从而证明其在纺织品和现成的行业中的工业用途潜力。

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