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11.
纺织机械零件CAPP技术的应用研究 总被引:1,自引:0,他引:1
要提高产品的竞争能力,必须在企业中加大CAPP的应用力度,笔者通过应用思普CAPP系统(SIPM/CAPP)编制纺织机械零件工艺文件的实践,证明了在企业中应用CAPP是提高产品的市场竞争能力,提高企业工艺快速反应能力的有力工具。 相似文献
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D. Scida Z. Aboura M.L. Benzeggagh E. Bocherens 《Composites Science and Technology》1998,57(12):2733-1740
A micromechanical model called MESOTEX is presented for prediction of the elastic behaviour of composites reinforced with non-hybrid weave (plain weave, satin weave and twill weave) and hybrid weave (hybrid plain weave and hybrid twill weave) fabrics. By using the classical thin laminate theory applied to each woven structure, this analytical model takes into account the strand undulations in the two directions and also integrates the geometrical and mechanical parameters of each constituent (resin, fill and warp strands). A representative volume is chosen for each woven composite and the fibre architecture is described by several functions. To determine the effectiveness of this analysis, the elastic properties predicted for each woven composite are compared with experimental results and results extracted from the literature. This correlation shows excellent agreement between measured and predicted values, with a very low calculation cost (CPU time of less than 0·01 s). 相似文献
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纺织厂建设改造中的色彩工学 总被引:1,自引:0,他引:1
提出纺织工业领域色彩量化设计的构想,给出了作为色彩量化设计依据的色彩标准体系,并从色彩的标准化、色彩的实验心理效应等方面进行了分析,针对纺织厂的“人-机-环境”系统、原有设备色彩改造以及厂区建筑的色彩效应等探讨了色彩量化设计的可行性,并结合目前纺织厂的特点提出了色彩量化设计的实施方案以及改造方法。 相似文献
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关于加快发展南通市家用纺织业的思考 总被引:1,自引:0,他引:1
张进武 《南通纺织职业技术学院学报》2006,6(2):80-82
立足国内家用纺织品发展的大环境,在重点考察了南通、上海、无锡等地家用纺织业现状的基础上,就加快南通家用纺织业的发展提出了打造“南通国际家用纺织品研发(设计)中心”的具体思路。 相似文献
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介绍尼龙6纺织梭专用料的配方、工艺、性能及加工和应用。实践表明专用料配方合理、工艺可行性能优良、以其注射成型的纺织梭性能可靠、生产效率高、使用寿命长、附加值高、完全可替代压缩水生产纺织梭,具有工业推广应用价值。 相似文献
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Textile biocomposites were prepared by reinforcing natural rubber with woven sisal fabric. Sisal fabric was subjected to various chemical modifications like mercerization, silanization, and thermal treatment. The moisture uptake of the textile composites was found to depend upon fiber content as well as architecture. The mechanism of diffusion in the composites was found to be fickian in nature. The effect of chemical modification of sisal fabric on moisture uptake was also analyzed. Mercerization was seen to increase the water uptake in the composites while thermally treated fabric reinforced composites exhibited lower water uptake. The influence of temperature on water sorption of the biocomposites is also analyzed. The thermodynamic parameters of the sorption process were also evaluated. © 2006 Wiley Periodicals, Inc. J Appl Polym Sci 102: 416–423, 2006 相似文献
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In this study, the surface characteristics of polyester and polyamide fabrics were changed by plasma polymerization technique utilizing acrylic acid as precursor. This monomer was used to produce hydrophilic materials with extended absorbency. The hydrophilicity, total wrinkle recovery angle (WRA°) and breaking strength of the fabrics were determined prior and after plasma polymerization treatment. The modification of surfaces was carried out at low pressure (<100 Pa) and low temperature (<50°C) plasma conditions. The effects of exposure time and discharge power parameters were optimized by comparing properties of the fabrics before and after plasma polymerization treatments. It was shown that two sides of polyester fabric samples were treated equally and homogeneously in plasma reactor. For polyester fabrics, the minimum wetting time, 0.5 s, was observed at two plasma processing parameters of 10 W–45 min and 10 W–20 min, where untreated fabric has a wetting time of 6 s. For polyester fabrics, the maximum value was obtained at 60 W–5 min with the wrinkle recovery angle of 306° where the untreated fabric has 290°. The optimum plasma conditions for polyamide fabrics were determined as 30 W–45 min where 2 s wetting time was observed. Wrinkle recovery angle of untreated polyamide fabric was 264°. In this study, after plasma polymerization of acrylic acid, wrinkle recovery angle values were increased by 13%. No significant change was observed in breaking strength of both fabrics after plasma treatment. © 2007 Wiley Periodicals, Inc. J Appl Polym Sci 104: 2318–2322, 2007 相似文献