首页> 外文会议>Conference on the International Federation of Knitting Technologies >Recent developments in multi-layer flat knitting technology for waste free production of complex shaped 3D-reinforcing structures for composites
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Recent developments in multi-layer flat knitting technology for waste free production of complex shaped 3D-reinforcing structures for composites

机译:复合材料复合材料复合型3D加强结构的废物生产多层平针织技术的最新进展

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Constantly increasing prices for raw materials and energy as well as the current discourse on the reduction of CO2-emissions places a special emphasis on the advantages of lightweight constructions and its resource conserving production methods. Fibre-reinforced composites are already seeing a number of applications in automobile, energy and mechanical engineering. Future applications within the named areas require greater material and energy efficiency and therefore manufacturing methods for textile preforms and lightweight constructions enabling an optimal arrangement of the reinforcing fibres while in the same time limiting waste to a minimum. One manufacturing method for textile reinforced preforms fulfilling quite many of the named requirements is the multilayer weft knitting technology. Multilayer weft knitted fabrics containing straight reinforcing yarns at least in two directions. The arrangement of these yarns is fixed by the loop yarn. Used yarn material in each knitting row is adaptable e. g. according to the load requirements or for the local integration of sensors. Draping properties of these fabrics can be varied within a great range and through this enabling draping of very complex shaped 3D-preforms without wrinkles from just one uncut fabric. The latest developments at ITM are concentrating on the development of a full production chain considering the 3D-CAD geometry, the load analysis, the generation of machine control programs as well as the development of technology and machines to enable the manufacturing of innovative net shape 3D-multilayer weft knitted fabrics such as complex shaped spacer fabrics and tubular fabrics with biaxial reinforcement.
机译:不断提高原材料和能源的价格以及关于减少二氧化碳排放的目前的话语,特别强调轻量级结构及其资源节约生产方法的优势。纤维增强复合材料已经在汽车,能源和机械工程中看到了许多应用。命名区域内的未来应用需要更大的材料和能量效率,因此需要纺织品预制件和轻质结构的制造方法,其能够在将浪费与最小值相同的时间内实现增强纤维的最佳布置。纺织加固预成型件的一种制造方法,满足许多命名要求是多层纬编编织技术。多层纬纱针织织物,含有直的加强纱线,至少两个方向。这些纱线的布置由环纱线固定。每个针线中使用的纱线材料是适应的e。 G。根据负载要求或用于传感器的本地集成。这些织物的覆盖性能可以在很大程度上变化,并且通过这使得能够覆盖非常复杂的形状的3D-Preforms,而不是从一个未切割的织物皱纹。 ITM的最新发展是考虑到3D-CAD几何,负载分析,机器控制程序的发电以及技术和机器的发展的全部生产链的开发,以实现创新净形状3D的制造 - 纬纱针织面料,如复杂形状的间隔织物和管状织物,具有双轴加固。

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