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  1. NTU Theses and Dissertations Repository
  2. 工學院
  3. 高分子科學與工程學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/29543
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor李雅榮
dc.contributor.authorShenq-Feng Fuhen
dc.contributor.author傅聖峰zh_TW
dc.date.accessioned2021-06-13T01:09:56Z-
dc.date.available2007-07-24
dc.date.copyright2007-07-24
dc.date.issued2007
dc.date.submitted2007-07-19
dc.identifier.citation[1] 吳金翰, ”船用FRP SCRIMP技術與數值模擬分析”, 台灣大學工程科學及海洋工程學研究所碩士論文, 中華民國九十二年六月
[2] CHENG-HSIEN WU, T. JAMES WANG, and L. JAMES LEE, 'Trans-Plane Permeability Measurement and Analysis in Liquid Composite Molding', POLYMER COMPOSITES, AUGUST 1994, Vol. 15, No. 4.
[3] R. Mathur, D. Heider, C. Hoffmann, J.W. Gillespie JR., S. G. Advani, and B. K. Fink. “Flow Front Measurement and Model Validation in the Vacuum Assisted Resin Transfer Molding Process” Polymer Composite, August 2001, Vol. 22, NO.4
[4] Darcy, H., ’’Les Fontaines Publiques de la Ville de Dijon, Libraire des Corps Imperiaux des Ponts et Chaussees et des Mines’’, 1856.
[5] Kozeny, J., ’’Uber kapillare Leitung des Wassers im Boden, Sitzungsber. Akad. Wiss.’’, Vienna, Abs. IIIa, 136, 276-306, 1927.
[6] Greenhill, A. G.., ’’On the Flow of Viscous Liquid in a Pipe or Channel’’, Proc. London Math. Soc., 13, 43-46, 1881.
[7] Lord, E., ’’Airflow through plugs of Textile Fibres’’, Part I – General Flow Relations, Text. Res. J., 46, T191-213, 1955.
[8] L. TREVINO, K. RUPEL, W. B. YOUNG, MING J. LIOU, and L. JAMES LEE, 'Analysis of Resin Injection Molding in Molds With Preplaced Fiber Mats. I: Permeability and Compressibility Measurements', POLYMER COMPOSITES, FEBRUARY 1991, Vol. 12, No. 1.
[9] PIERRE FERLAND, DOMINIQUE GUITTARD, and FRANCOIS TROCHU, 'Concurrent Method for Permeability Measurement in Resin Transfer Molding', POLYMER COMPOSITES, FEBRUARY 1996, Vol. 17, No. 1.
[10] W. B. YOUNG, K. RUPEL, K. HAN, L. JAMES LEE and MING J. LIOU, 'Analysis of Resin Injection Molding in Molds With Preplaced Fiber Mats. II: Numerical Simulation and Experiment of Molding Filling', POLYMER COMPOSITES, FEBRUARY 1991, Vol. 12, No. 1.
[11] W. B. YOUNG, K. HAN, L. H. FONG, L. JAMES LEE and MING J. LIOU, 'Flow Simulation in Molds with Pre places Fiber Mats', POLYMER COMPOSITES, DECEMBER 1991, Vol. 12, No. 6.
[12] Z. TADMOR, E. BROYER, and C. GUTFINGER, 'Flow Analysis Network (FAN)—A Method for Solving Flow Problem in Polymer Processing', POLYMER ENGINEERING AND SCIENCE, SEPTEMBER, 1974, Vol. 14, No.9.
[13] ARJEN KOOREVAAR, 'SIMULATION OF LIQUID INJECTION MOLDING', SAMPE 2002 conference, April 2002.
[14] ARJEN KOOREVAAR, 'Fast, Accurate, Reliable 3D Reactive RTM Simulation', ISCM 2002 conference.
[15] XIUDONG SUN, SHOUJIE Li, and L. JAMES LEE, 'Mold Filling Analysis in Vacuum-Assisted Resin Transfer Molding. Part I: SCRIMP BASED on a High Permeable Medium', POLYMER COMPOSITES, DECEMBER 1998, Vol. 19, No. 6.
[16] JUN NI, SHOUJIE LI, XIUDONG SUN, and L. JAMES LEE, 'Mold Filling Analysis in Vacuum-Assisted Resin Transfer Molding. Part II: SCRIMP Based on Grooves', POLYMER COMPOSITES, DECEMBER 1998, Vol. 19, No. 6.
[17] KERANG HAN, SHUNLIANG JIANG, CHUCK ZHANG, BEN WANG, 'Flow modeling and simulation of SCRIMP for composites manufacturing', COMPOSITES Part A: applied science and manufacturing 31 (2000) 79-86.
[18] K-T. HSIAO, R. MATHUR, S. G. ADVANI, J. W. GILLESPIE, JR., and B. K. FINK, 'A Closed Form Solution for Flow During The Vacuum Assisted Resin Transfer Molding Process', Journal Manufacturing Science and Engineering, AUGUST 2000, Vol. 122 / 463.
[19] KUANG-TING HSIAO, JOHN W. GILLESPIE, JR., SURESH G. ADVANI, and BRUCE K. FINK, 'Role of Vacuum Pressure and Pore Locations on Flow Front Control for Liquid Composite Molding Process', POLYMER COMPOSITES, OCTOBER 2001, Vol. 22, No. 5.
[20] T. JAMES WANG, C. H. WU, and L. JAMES LEE, 'In-Plane Permeability Measurement and Analysis in Liquid Composite Molding', POLYMER COMPOSITES, AUGUST 1994, Vol. 15, No. 4.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/29543-
dc.description.abstract高分子複合材料在現今的工業界扮演一重要的角色,它極優良的物理性質提供了我們製造高性能商品的能力,從安全帽、浴缸到車體、機翼、船舶等都有其產品。SCRIMP(Seemann Composite Resin Infusion Molding Process)為一種高分子複合材料的加工方法,它運用了真空的吸力把樹脂和纖維以非常密合的狀態包覆在一起,並減少了傳統人工以手積方式將樹脂塗佈在纖維層時會形成的氣泡。在工作環境方面也因不需要直接的接觸樹脂,樹脂內的揮發性化學物質較不會由呼吸而進入人體,進而對人體造成傷害,總括來說,SCRIMP改善了工作環境並提升了產品性能。
船殼等大型構件灌注時,通常會在最上層添加一層滲透率極高之黑網,用以提升其滲透的速率,這層黑網的存在與纖維本身的厚度,會使得積層表面與底面的流動時間相差甚大,這樣的一種現象可能使我們錯估其灌注所需的時間,而造成實際在灌注上的錯誤,所以厚度方向滲透率的量測在模擬灌注上有其重要性。
除此之外,有了各纖維材料厚度方向滲透率之後,可配合各纖維之平面方向之滲透率,利用RTM-Worx在長度與厚度方向之平面上的運算,對各種纖維疊層於SCRIMP灌注時之滲透率進行預估,如此一來不需要再對各種不同疊層之積層板進行平面方向之灌注試驗,即可由模擬得知平面方向滲透率。因而本論文的目的是藉由黑網及純纖維各方向的滲透率量測,來預估SCRIMP灌注疊層時之上、下表面滲透率,進而應用於各種幾何形狀之積層構件的流動模擬,以增進RTM-Worx使用之方便性。
zh_TW
dc.description.abstractPolymer composite material plays an important role in the industry. With its great physical properties we can produce high performance manufactures. SCRIMP (Seemann Composite Resin Infusion Molding Process) a novel polymer processing technique uses the vacuum pressure to tighten the resin with fibers, reduces bubbles from the original hand-lay-up procedure. It also improves the working environments, workers will not contact the resin for too long time and vapor of toxic chemicals will not directly damage workers’ health while processing.
During SCIMP processing initiator will be added, and it will start to cure the resin in a short period of time. It would be an important subject to know how to arrange the injection gate and the venting port. If we settled wrongfully, products might have some defects. The worst case is that the product becomes a waste and increases manufacture cost. To prevent this kind of situation simulation is needed. RTM-Worx is one of those convenient finite element analysis programs; it’s based on D model to precede the analysis. With this software we can obtain the duration to complete injection of a ship. Since many injection arrangements can be easily simulated, choosing one with best performance will not be a big problem.
But simulation of SCRIMP process can only perform in the surface; there is no detail about what’s inside the stack. And actually in the real SCRIMP process there is distribution media placed on top of the fibers; these greatly differentiate flow in the surface and the bottom. Deviation of this will give errors to the whole process. Measurement of trans-plane permeability would be of great importance to be cared.
Besides, we can combine the trans-plane permeability and the in-plane permeability of pure fibers to predict the permeability of stacks in SCRIMP process, and no extra pre-experiment will be needed to the SCRIMP arrangement. In this research, we propose a method to simulate the mold flow process with in-plane and trans-plane permeability of pure materials. Obtaining the top and bottom surface permeability will no longer need experiments, and simulation of large structures can easily achieved with this pre-simulation method.
en
dc.description.provenanceMade available in DSpace on 2021-06-13T01:09:56Z (GMT). No. of bitstreams: 1
ntu-96-R94549022-1.pdf: 4570261 bytes, checksum: a44b8084b35ea86b37f834611e7da829 (MD5)
Previous issue date: 2007
en
dc.description.tableofcontents誌謝 ……………………………………………………………………………i
摘要 ……………………………………………………………………………ii
目錄 ……………………………………………………………………………v
圖目錄 ……………………………………………………………………………vii
表目錄 ……………………………………………………………………………xi
第一章序論…………………………………………………………………………1
1-1前言…………………………………………………………………………1
1-2厚度方向滲透研究介紹……………………………………………………2
1-3文獻回顧……………………………………………………………………9
1-4本文架構…………………………………………………………………11
第二章SCRIMP與模擬軟體介紹 …………………………………………12
2-1 SCRIMP簡介 ……………………………………………………………12
2-2模擬軟體介紹 ……………………………………………………………16
第三章厚度方向滲透率量測………………………………………………………21
3-1厚度方向滲透率量測簡介………………………………………………21
3-2厚度方向滲透率量測結果與探討………………………………………31
3-3黑網與離模布厚度方向滲透參數量測…………………………………51
第四章平面方向滲透率量測………………………………………………………54
4-1 平面方向滲透率量測簡介………………………………………………54
4-2 平面方向滲透率量測結果與探討………………………………………57
第五章SCRIMP積層模擬與預……………………………………………………72
5-1 SCRIMP積層模擬簡介……………………………………………………72
5-2 SCRIMP模擬比對…………………………………………………………73
5-3 SCRIMP模擬預估…………………………………………………………81
第六章結論與未來展望……………………………………………………………87
6-1 結論………………………………………………………………………87
6-2 未來展望…………………………………………………………………88
參考文獻……………………………………………………………………………89
dc.language.isozh-TW
dc.titleFRP厚度方向滲透率量測與樹脂模流分析之應用zh_TW
dc.titleTrans-plane Permeability measure of FRP and Its Applications of Mold Flow Simulation.en
dc.typeThesis
dc.date.schoolyear95-2
dc.description.degree碩士
dc.contributor.oralexamcommittee李應成,鍾承憲,林輝政,吳政憲
dc.subject.keyword真空灌注,厚度方向滲透率,流動預估,zh_TW
dc.subject.keywordVacuum injection,transplane permeability,flow prediction,en
dc.relation.page90
dc.rights.note有償授權
dc.date.accepted2007-07-23
dc.contributor.author-college工學院zh_TW
dc.contributor.author-dept高分子科學與工程學研究所zh_TW
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