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基于二元回归分析的玄武岩长丝上浆优化 被引量:2

Optimization of basalt filament sizing processing based on binary regression analysis
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摘要 研究玄武岩长丝上浆工艺,并对其混合浆料工艺进行优化.使用响应面法中的HDD进行试验设计,选取固体聚丙烯酸酯用量、混合浆液浓度等2个主要因素作为影响因子,以上浆后玄武岩长丝的耐磨性能作为考察对象,对实验数据进行处理,建立二次二元回归模型,并进行方差分析和显著性检验.结果表明:当固体聚丙烯酸酯浆料质量分数为21.29%,且浆液质量分数为8.41%,上浆温度为70℃时,浆纱的耐磨性能达到最优值. Sizing processing of basalt filament is studied and the process of blended size mixture is optimized. The experiment is designed by the HDD of response surface methodology (RSM), selecting the amount of solid acrylic and concentration of blended size mixture as influencing factors, selecting the wear resistance of sized basalt filament as the subject of the study. A binary regression model is established by using data of wear resistance, which is verified by analysis of variance and significance test. It is found that when the content of solid acrylic is 21.29%, the concentration of blended size mixture is 8.41%, and the sizing temperature is 70 ℃, the wear resistance of sized basalt filament is the most optimal.
出处 《天津工业大学学报》 CAS 北大核心 2013年第2期39-41,共3页 Journal of Tiangong University
基金 国家高技术研究发展计划项目(2012AA03A204-04)
关键词 玄武岩长丝 上浆工艺 耐磨性 二元回归分析 响应面法 优化 basalt filament sizing process wear resistance binary regression analysis response surface methodology optimization
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  • 1高祯云,朱俊萍,祝成炎.3D立体机织结构研究与设计[J].丝绸,2005,42(2):19-21. 被引量:2
  • 2王永菲,王成国.响应面法的理论与应用[J].中央民族大学学报(自然科学版),2005,14(3):236-240. 被引量:612
  • 3王开林,张英杰,张磊,司晓郡.双酚A催化加氢制备氢化双酚A[J].精细石油化工,2007,24(5):39-44. 被引量:9
  • 4吕连海,杜文强,张克勇.一种制备2,2-二(4一羟基环己基)丙烷的方法:中国,CNl02211979A[P].2011-10-12.
  • 5MARCOS A B, RICARDO E S, ELIANE P 0, et al. Response surface methodology (RSM) as a tool for optimization in ana- lytical chemistry[J]. Talanta,2008,76(5):965-977.
  • 6PERICIN D, POPOVIC S. Modeling and optimization of prote- olytic process:Application of response surface methodology (RSM)[J]. Journal of Biotechnology, 2010,150( 1 ) : S304.
  • 7JONATHAN F P . Electrical switch or use in garments :US,6642467[P]. 2003-10-04.
  • 8CHARLES S G BJE . Conductive fabric sensor system :HK,1015326[P]. 2004-02.
  • 9GEORGE M KMJ,TRUONG V G. A flexible, lightweighthigh-performance electronic fabric interface:WO,2004107831[P]. 2004-12-09.
  • 10GEORGE M TVG,KATHARINE P. Stretchable fabric switch:US,0175187A1[P]. 2006-10-10.

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