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Mathematical modelling of 3D woven fabrics for CAD/CAM software

机译:用于CAD / CAM软件的3D机织织物的数学建模

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摘要

Weaving is one of the key technologies that are used in organising unidirectional fibrous materials into 2D sheet and 3D shaped geometrical architectures for applications such as textile composites. It has been demonstrated that the conventional weaving technology has the potential to produce textile assemblies which have many different types of 3D shaped fabrics, and this approach has obvious advantages in the provision of a sizeable quantity of 3D shaped fabric and in cost reduction. However, the design of such 3D shaped woven fabrics may be complicated especially when the shape and micro structures are complex. This paper reviews the mathematical modelling of different types of 3D weaves which have been successfully used in developing CAD/CAM software for 3D fabrics. The types of weaves described here include single-layer, 3D orthogonal, 3D angle interlock, and 3D cellular. Results from different CAD programmes are also demonstrated.
机译:编织是将单向纤维材料组织成2D薄板和3D形状的几何结构以用于诸如纺织复合材料之类的关键技术之一。已经证明,常规的编织技术具有生产具有许多不同类型的3D成形织物的纺织品组件的潜力,并且这种方法在提供大量的3D成形织物和降低成本方面具有明显的优势。然而,尤其是当形状和微结构复杂时,这种3D形状的机织织物的设计可能是复杂的。本文回顾了已成功用于开发3D织物CAD / CAM软件的不同类型3D编织的数学建模。此处描述的编织类型包括单层,3D正交,3D角度互锁和3D蜂窝。还演示了来自不同CAD程序的结果。

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