文化大學機構典藏 CCUR:Item 987654321/28086
English  |  正體中文  |  简体中文  |  Items with full text/Total items : 46962/50828 (92%)
Visitors : 12460098      Online Users : 770
RC Version 6.0 © Powered By DSPACE, MIT. Enhanced by NTU Library IR team.
Scope Tips:
  • please add "double quotation mark" for query phrases to get precise results
  • please goto advance search for comprehansive author search
  • Adv. Search
    HomeLoginUploadHelpAboutAdminister Goto mobile version


    Please use this identifier to cite or link to this item: https://irlib.pccu.edu.tw/handle/987654321/28086


    Title: 芳香族聚醯胺纖維/3D聚酯織物複合材料之電磁波吸收及機械性質研究
    Polyethylene Terephthalate Phenyl Ester Amide / 3D Polyester Fabric Composites, Properties of the Electromagnetic Adsorption and Mechanical
    Authors: 黃書鈺
    Huang, Shu-Yu
    Contributors: 化學工程與材料工程學系奈米材料碩士班
    Keywords: 電磁波吸收
    芳香族聚醯胺纖維
    3D立體聚酯織物
    Electromagnetic Adsorption
    Polyethylene Terephthalate Phenyl Ester Amide
    3D polyester fabric
    Date: 2014-07
    Issue Date: 2014-09-05 15:34:36 (UTC+8)
    Abstract: 本研究主要是利用導電損失原理,以3D立體聚酯織物為基材,以導電、導磁粉體為填充材,不飽和聚酯樹脂和芳香族聚醯胺纖維布為補強材,且以平板型電磁波吸收體結構做為設計基礎,將導電、導磁粉體添加入芳香聚族醯胺纖維/3D立體聚酯織物製成之復合材料中,設計為平板型電磁波吸收體,以3D立體織物0.1cm、0.3cm、0.5cm三種不同之織物孔徑,0.1cm、0.3cm、0.5cm五種不同之織物厚度,各別含浸於不飽和聚酯樹與添加導電、導磁粉體之不飽和聚酯樹脂,並於3D立體聚酯樹脂上下貼和芳香族聚醯胺纖維布,製成電磁波吸收複合板材。分析探討其各者所製成之電磁波吸收複合板材對電磁波吸收效果之影響及機械性質之影響,在芳香族聚醯胺纖維布上塗佈不同比例導電、導磁粉體,分析探討製成之電磁波吸收複合板材,電磁波吸收效果之影響及機械性質之影響。
    由實驗結果得知,使用最佳3D聚酯織物厚度為0.5cm,最佳3D聚酯織物孔徑大小為0.5cm,不飽和聚酯樹脂添加15%重量百分比例活性碳粉體為最佳效果,分別以此三種最佳條件製成3D聚酯織物複合板材,製成芳香族聚醯胺纖維/3D聚酯織物複合板材,電磁波吸收頻段為4.1GHz-8.5GHz,電磁波吸收值為41dB,在300MHz-8.5GHz中,59%電磁波吸收值高於5dB。
    無添加活性碳粉體製成之芳香族聚醯胺纖維/3D立體聚酯織物複合板材,最大應力為59.3MPa,而其最大應變為0.25。而只在3D立體聚酯織物添加15%活性碳粉,製成芳香族聚醯胺纖維/3D立體聚酯織物複合板材,最大應力為46.5MPa,而其最大應變為0.37。而各別在3D立體聚酯織物添加15%活性碳粉與芳香族聚醯胺纖維添加10%活性碳,製成芳香族聚醯胺纖維/3D立體聚酯織物複合板材,其最大應力分別為49MPa,最大應變為0.39。
    純不飽和聚酯樹脂製成之複合板材,衝擊強力為11.4583kg-cm,無添加活性碳粉體製成之芳香族聚醯胺纖維/3D立體聚酯織物複合板材,衝擊強力為79.4095kg-cm,製成芳香族聚醯胺纖維/3D立體聚酯織物複合板材,衝擊強力為77.3991kg-cm,而各別在3D立體聚酯織物添加15%活性碳粉與芳香族聚醯胺纖維添加10%活性碳,製成芳香族聚醯胺纖維/3D立體聚酯織物複合板材,其衝擊強力為75.1586kg-cm。

    This study is the use of a conductive loss principle, in 3D polyester fabric substrate to a conductive, magnetic powder as a filler, an unsaturated polyester resin and reinforcing materials as establish conditions Rab, and a flat plate-type electromagnetic wave absorber as the structure of the design basis, the conductive, magnetic powder added into the aromatic polyamide fiber composites / 3D perspective of the polyester fabric, the design of a plate-type electromagnetic wave absorber, in 3D fabric 0.1cm, 0.3cm, 0.5cm of the fabric in three different apertures, 0.1cm, 0.3cm, 0.5cm five different fabric thickness, in the respective unsaturated polyester resin impregnated with added conductive, magnetic powder of an unsaturated polyester resin, and the 3D three-dimensional polyester resin paste down and establish conditions Labrador, made of electromagnetic wave absorbing composite sheet. Analysis and Discussion of electromagnetic waves by their respective composite sheet made of impact absorbing effect and influence on the mechanical properties of the electromagnetic wave absorption, establish conditions in different proportions Labrador conductive coating, magnetic powder, Analysis and Discussion of the electromagnetic wave absorbing composite sheet made of , effect of electromagnetic wave absorption and mechanical properties.
    From the experimental results, the best 3D using a polyester fabric having a thickness of 0.5cm, the best 3D polyester fabric pore size 0.5cm, unsaturated polyester resin, 15% by weight of added carbon powder is best case, optimal conditions were thus three kinds of polyester fabric composite sheet made of 3D, made of aromatic polyamide fiber / 3D polyester fabric composite plates, electromagnetic wave absorption band of 4.1GHz-8.5GHz, electromagnetic wave absorption is 41dB, the 300MHz-8.5GHz, 59% higher than the absorption of electromagnetic waves 5dB.
    Without added carbon powder made of aromatic polyamide fiber / 3D perspective polyester fabric composite sheet, the maximum stress of 59.3MPa, and the maximum strain of 0.25. But only 15% of active carbon powder added in 3D stereo polyester fabric, made from aromatic polyamide fiber / 3D three-dimensional polyester fabric composite sheet, the maximum stress of 46.5MPa, while the maximum strain of 0.37. The individual in the 3D polyester fabric add 15% active carbon powder
    with an aromatic polyamide fiber 10% activated carbon, made from aromatic polyamide fiber / 3D three-dimensional polyester fabric composite sheet, the maximum stress was 49MPa, the maximum strain of 0.39.
    Pure composite sheet made of unsaturated polyester resin, impact strength is 11.4583kg-cm, without adding aromatic polyamide fiber made of activated carbon powder / 3D three-dimensional polyester fabric composite sheet, the impact strength of 79.4095kg-cm , made of aromatic polyamide fiber / 3D three-dimensional polyester fabric composite sheet, the impact strength of 77.3991kg-cm, while the individual in the 3D add 15% polyester fabric with an aromatic polyamide fiber active carbon powder with 10% active carbon, made from poly-aromatic polyamide fiber / 3D three-dimensional polyester fabric composite sheet, the impact strength of 75.1586kg-cm.
    Appears in Collections:[Department of Chemical & Materials Engineering] thesis

    Files in This Item:

    There are no files associated with this item.



    All items in CCUR are protected by copyright, with all rights reserved.


    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library IR team Copyright ©   - Feedback