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SM—1型磨毛机工艺技术研究 被引量:2
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作者 李晔 王健 《印染》 北大核心 1992年第4期40-43,共4页
本文介绍了意大利SM—1型磨毛机的磨毛机理,分析了影响磨毛效果的因素并对磨毛工艺参数进行了优选。通过生产试验,基本上掌握了生产技术要求。该机对加工中、厚织物的平磨及花磨较为适宜。
关键词 SM-1型 工艺 整毛设备
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腈纶缝编毛毯的起毛工艺浅析
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作者 陈泽聪 《针织工业》 北大核心 1991年第3期19-21,共3页
腈纶缝编毛毯是由底布在缝编机上由针刺缝合而成。经印花、汽蒸、起毛等工序后具有色泽鲜艳、手感柔软舒适的特点。在当前高档毛毯销路不畅的形势下,物美价廉、售价仅为高档毛毯二分之一的中档缝编毛毯,具有较强的市场竞争力。
关键词 聚丙烯腈纤维 缝编 整毛
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桃源镇猪毛加工技术
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作者 张洪钦 《农技服务》 1999年第2期42-43,共2页
山东省曹县桃源镇党委政府带领农民加工猪毛致富,建成山东省猪毛加工销售三大集散地之一。该镇农民采用新技术加工猪毛,比传统加工工艺提高工效一倍以上,小小猪毛成为该镇一大经济支柱,使该镇成为荷泽地区30强乡镇。现将该镇猪毛加工新... 山东省曹县桃源镇党委政府带领农民加工猪毛致富,建成山东省猪毛加工销售三大集散地之一。该镇农民采用新技术加工猪毛,比传统加工工艺提高工效一倍以上,小小猪毛成为该镇一大经济支柱,使该镇成为荷泽地区30强乡镇。现将该镇猪毛加工新技术介绍如下: (一)整毛 展开更多
关键词 加工技术 整毛
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Wool Surface Modification and Its Adhesion with Nano Finishing Agent
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作者 李龙 王卫 《Journal of Donghua University(English Edition)》 EI CAS 2009年第6期629-633,共5页
The launderability of wool fabrics treated by nano finoshing agent influences directly the functional endurance of he treated wool fabric. In order to investigate the effect of wool fibers surface modification on the ... The launderability of wool fabrics treated by nano finoshing agent influences directly the functional endurance of he treated wool fabric. In order to investigate the effect of wool fibers surface modification on the functional erdurance of nano finishinp wool fibers, in this paper, for the first time wool fibers were chemically modified by using NaClO aqueous and KMnO4 aqueous, and then chemically modified wool fibers and native wool fibers were treated using nano ZnO finishing agent, respectively. The launderability of wool fibers treated by nano finishing agent was investigated. The experimental results show that the chemically modified wool fibers have a good launderaility after being treated by nano ZnO finishing agent treating. The surface morphologies of wool fibers were observed by using SEM. It is got that there is a strong adbesion between nano ZnO and wool surface through XPS analysis. 展开更多
关键词 wool modification nano finishing agent X - ray photoelectron spectroscopy launderability
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猪毛加工新技术
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作者 张洪钦 《农家致富顾问》 1999年第3期39-40,共2页
关键词 加工 整毛
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Effects of nitrogen addition on clonal integration between mother and daughter ramets of Moso bamboo: a ^(13)C-CO_(2) pulse labeling study
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作者 Wanlu Zhai Yi Wang +1 位作者 Junwei Luan Shirong Liu 《Journal of Plant Ecology》 SCIE CSCD 2022年第4期756-770,共15页
Resource sharing among connected ramets(i.e.clonal integration)is one of the distinct traits of clonal plants.Clonal integration confers Moso bamboo(Phyllostachys pubescens)a strong adaptability to different environme... Resource sharing among connected ramets(i.e.clonal integration)is one of the distinct traits of clonal plants.Clonal integration confers Moso bamboo(Phyllostachys pubescens)a strong adaptability to different environmental conditions.But the mechanisms of how clonal integration makes Moso bamboo has better performance are still poorly understood.In this study,acropetal and basipetal translocation of photosynthates between Moso bamboo ramets were analyzed separately to investigate how clonal fragments obtain higher benefits under heterogeneous N conditions.Clonal fragments of Moso bamboo consisting of two interconnected mother–daughter ramets were used,each of the ramets was subjected to either with or without N addition.The acropetal and basipetal translocation of ^(13)C-photosynthates was separated via single-ramet ^(13)C-CO_(2)-labeling.Mother ramets translocated more ^(13)C-photosynthates to daughter ramets with N addition,and the translocation of ^(13)C-photosynthates to mother ramets was more pronounced when daughter ramets were treated with N addition.The ^(13)C-photosynthates that were translocated from mother ramets without and with N addition were mainly invested in the leaves and roots of daughter ramets with N addition,from daughter ramets with N addition were mainly invested in the leaves and roots of mother ramets with and without N addition,respectively.These results suggest that mother ramets preferentially invest more resources in nutrient-rich daughter ramets,and that daughter ramets serve as efficient resource acquisition sites to specialize in acquiring abundant resources based on the resource conditions of mother ramets.Clonal plants can improve their resource acquisition efficiency and maximize the overall performance in this way. 展开更多
关键词 carbon allocation habitat heterogeneity ^(13)C-CO_(2)labeling resource integration Moso bamboo
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