By Xiaogang Chen
Advances in 3D Textiles offers the newest advances within the construction of 3-dimensional fibrous constructions and the way their use has led to the production of novel materials and purposes. The textual content covers a variety of textile forms, together with their constructions, homes, and makes use of within the textiles undefined.
Beginning with a number of the kinds of woven third-dimensional materials, the textual content then examines 3D knitted, braided, and non-woven textiles, and the most functions and makes use of of third-dimensional textiles.
- Presents the newest advances within the construction of third-dimensional fibrous buildings and the way their use has ended in the construction of novel materials and applications
- Examines many sorts of three-D textiles, together with knitted, braided, and non-woven textiles, and the most makes use of of third-dimensional textiles
- Covers their buildings, houses, and makes use of in the textiles industry
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Additional info for Advances in 3D textiles
With appropriate means of manipulating yarns, more complicated false interlacings could be achieved on a warp sheet of parallel yarns. In the 1980s, Atlantic Research Corporation built a large machine that operated on this principle to make Layer-Interlock preforms. , 2009). 8 (a) and (b) shows how yarns can be laid down on top of one another and then hypersonically bonded. 8(c) illustrates a first trial of the process. A large, computer-controlled, robotically operated machine was then built. 8(d) and (e).
Bull. Res. Inst. Polym. Text. 131, 151. , 2001. Application of latticed structural composite materials with three-dimensional fabrics to artificial bones. British Patent GB2361891, Moulded Fibre Product. , 2011. Developments in 3D nonwovens. H. ), Specialist Yarn and Fabric Structures: Developments and Applications. Woodhead Publishing, Cambridge, UK, pp. 264–286. , 2003. Novel technology for 3D nonwovens. Text. Res. J. 73, 120–123. , 2009. Deep molded nonwovens and hybrid nonwoven composites: process and applications.
Analysing the yarn paths of the nodal weave architectures within a 3D solid panel under various external pressures would generate a series of performance data. This would enable the minimisation of ‘suck it and see’, in the scope of future 3D nodal configurations and other 3D woven shaped textile preforms utilising unbalanced weave architectures. The complexity of combining the multilevel, multilayer weaves generates, traditionally, a range of production data within a 2D graphical format, as evidenced in the design production stages of the N3DWS.
Advances in 3D textiles by Xiaogang Chen