博碩士論文 943204019 詳細資訊




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姓名 廖家陽(Chia-yang Liao)  查詢紙本館藏   畢業系所 化學工程與材料工程學系
論文名稱 巨大基團對Polyurethane urea結構與性質的影響
(The Influences of bulky group on the structures and properties of PUU)
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摘要(中) 嵌段式聚氨基甲酸酯(Segmented polyurethane,PU)擁有龐大的化學結構數目與其內部特殊的微相形態,故反應出許多多變的性質,同時也複雜化了PU形態、結構和性質的關係。為此我們希望能藉由合成完全相分離的PU彈性體,來探討此微域形態與其形態變化的交互關係。
本實驗室過去曾探討水性PU(Waterborne Polyurethane),在其結構變化與物理性質之間的關係上有重大發現,並利用穿透式電子顯微鏡由微相結構方面著手建立水性PU三個model,此水性PU特有之雙連續相網狀結構(phase separated bicontinues network structure) ,具高透明性、高拉伸剛性、高堅韌性、耐高溫,且易於加工,本實驗將以此架構續將此高分子改質成不具水溶性,依據溶液聚合法,將硬質段改質,並維持其材料特性,期望能將此高分子帶入實用之領域。
本實驗乃是利用3-二異丙氨-1,2丙二醇
(3-Diisopropylamino-1,2-propanediol)取代水性PU之DMPA,即從硬段改質油性PU,添加3-二異丙氨-1,2丙二醇形成巨大側基(Bulky group),藉由TEM、FTIR、DSC、DMA、TGA、拉力機,探討其結
與性質。
摘要(英) Segmented polyurethane possesses enormous amount of chemical structures and its Micro-phase structure could react to form a variety of properties, hence it complicates its own as well. In order to probe into the mutual actions between its properties and compositions, we synthesize the nonpolar PU elastomer into a complete whole.
Our laboratory once looked into Waterborne Polyurethane’s structural variations and physical properties and had came out with a significant discovery. With the usage of TEM(transmission electron microscope) we built up three Waterborne Polyurethane models in micro-phase-oriented aspect, its phase separated bicontinues network structure possesses the penetrability, elasticity, tenacity, being heat-proof and facile process. The experiment is to transform Waterborne Polyurethane into fat-soluble. By taking the measure of solution polymerization, that is altering the structure of hard segment , yet maintaining its material distinction. I do expect to bring it into application in the coming future.
We utilized 3-Diisopropylamino-1,2-propanediol as substitutes for the DMPA of Waterborne Polyurethane. That is adding 3-Diisopropylamino-1,2-propanediol so as to form a bulky group, to change its structure through hard segment. Afterward we study its structures and properties with TEM, FTIR, DSC, DMA,TGA and Tensile strength.
關鍵字(中) ★ 雙連續相分離網狀結構
★ 水性PU
★ 嵌段式聚氨基甲酸酯
關鍵字(英) ★ phase separated bicontinues network structure
★ Waterborne Polyurethane
★ Segmented polyurethane
論文目次 摘要 ------------I
英文摘要----------II
致謝 ----------III
目錄 -----------IV
圖目錄 -----------VI
表目錄 ----------X
第一章 緒論 ----1
第二章 文獻回顧-4
2-1 PU硬質段的結構組成 -------------4
2-2 PU的形態與結構 ------------ 6
2-3水性PU的形態與結構 ----------------9
第三章 實驗部份 ---------------15
3-1 化學藥品 ------------------------15
3-2 儀器設備 ------------------------16
3-3 實驗流程 ------------------------17
3-3-1 反應物 -----------------------17
3-3-2 合成步驟 -------------- 17
3-3-3 實驗樣品命名 -------------------18
3-3-4 PU試片製備 --------------18
3-3-5 FTIR測試 ----------------18
3-3-6 DSC熱性質分析-------------------19
3-3-7熱重損失分析 -------------------19
3-3-8動態機械分析 --------------------19
3-3-9抗張強度測試 -------------------19
3-3-10 Transmission Electron Microscope分析---20
第四章 結果與討論 -----------------------------23
4-1成膜結果 --------------------------------23
4-2 FTIR分析 --------------------------------24
4-3 PUU之熱裂解 ------------------------------29
4-4 DSC熱分析 -------------------------------35
4-5 動態機械性質------------------------------39
4-6穿透式電子顯微鏡(TEM)對PU形態分析----------43
4-7 機械性質 ---------------------------------81
第五章 改質成果與檢討-----------------------------------------------------82
參考文獻 -------------------------------------------------------------------- 89
參考文獻 1. N.S. Schneider, et al. Advance in Urethane Science and
Technology, 1981,8, 49.
2. C.M. Brunette, S.L. Hsv,et al. Polym. Eng. Sci. ,
1981, 21, 163.
3. C. P. Christenson, et al. J. Polym. Sci. Polym. Phys. ,
1986, 24,1401.
4. A. Noshy and J. E. MoGreth, Eds., “Block Copolymer”
Wily, New York, 1973.
5. S.L. Cooper and G.M. Estes, Eds., “Multiphase
Polymer”, Adv. Chem. Ser. 176, American Chemical
Society, Washington D. C., 1979.
6. P.E. Gibson, M.A. Vallance, S.L. Cooper, Appl. Sci.
Ser., Elserier, London, 1982.
7. S.L. Aggarwal, Ed., “Block Polymer”, Plenum Press,
New York, 1970.
8. K. Ono, H. Shimada, T. Nishimura, S. Yamashita, H.
Okamoto, and Y. Minoura, Appl. Polym. Sci., 1971, 21,
3323.
9. N.S. Schneider and R.W. Matton, Polym. Eng. Sci., 1979,
19 1122.
10. C.M. Brunette, S.L. Hsu, W.J. Macknight, N.S.
Schneider, Polym. Eng. Sci., 1981, 21, 163.
11. B. Bengtson, C. Feger, W.J. Macknight, and N.S.
Schneider, Polymer, 1985, 26, 895.
12. C. Li, S.L. Goodman, R.M. Albercht, and S.L. Cooper,
Macromolecules, 1988,21, 2367.
13. T.K. Chen, C.J. Hwung, C.C. Hou, Polym. Eng. Sci.,
1992, 32, 115.
14. T.A. Speckhard, P.E. Gibson, S.L. Cooper, Polym. Eng.
Sci., 1983, 23, 337.
15. Y. Xu, M.R. Nagarajan, T.G. Grasel, P.E. Gibson and
S.L. Cooper, J. Polym. Sci. Polym. Phys. Edn., 1985,
26, 70.
16. R.A. Philips, J.C. Stevenson, M.R. Nagarajan, and S.L.
Cooper, J. Macromol. Sci. Phys., 1988, B27, 245.
17. 謝添壽, 國立中央大學化學工程與材料工程系博士論文,1998
18. 邱家永, 國立中央大學化學工程與材料工程系博士論文,1997
19. 陳柏宏, 國立中央大學化學工程與材料工程系碩士論文,2000
20. R.M. Briber and E.L. Thomas, J. Polym. Sci., Polym.
Phys-Ed., 23,1915-1932,1985
21. N.S. Schheider, C.R. Desper, J.L. Illinger,and A.O.
King, J. Macromol. Sci-Phys.,1975, B11, 527
22. X. Xu, W.J. Macknight, C.H. Chen, and E.L. Thomas,
Polymer ,1983, 24 ,1327
23. J.C. Amold, J. Elast. Plast., 1974, 6, 238
24. C. Li, X. Yu, T.A. Speckhand, and S.L. Cooper, J.
Polym. Sci., Polym.Phys. Ed.,
1988, 21, 315
25. J.W. Van Bogart, P.E. Gibson, and S.L. Cooper, J.
Polym. Sci., Polym. Phys. Ed., 1983, 21, 65
26. T.A. Speckhard, G..V. Strate, P.E. Gibson, and S.L.
Cooper, Polym. Eng. Sci.,
1983, 23, 337
27. N.S. Schneider and W. Matton, Polym, Eng. Sci., 1979,
19, 1122
28. Y. Camberlin, J.P. Pascault, M. Letoffe, and P.
Claudy, J. Polym. Sci.,Polym. Phys.
Ed., 1982, 20, 1445
29. T.A. Spekhard and S.L. Cooper, Rubber Chem. Tech.,
1986, 59, 405
30. P.W. Ryan, Brit. Polym. J., 1971, 3, 415
31. C.M. Brunette, S.L. Hsu, W.J. Macknight, and N.S.
Schneider, Polym Eng. Sci., 1981, 21, 163
32. K. Ono, H. Shimada, T. Nishimura, S. Yamashita, H.
Okamoto, and Y.F. Minorua, J. Appl. Polym. Sci., 1971,
21, 3323
33. G..N. Pertrov and A.S. Lyskin, Polym. Sci. USSR, 1977,
20, 1351
34. C. Li, S.L. Goodman., R.M. Albrecht and S.L. Cooper,
Macromolecules,
1988,21, 2367.
35. N.S. Schneider, R.W. Matton, Polym. Eng. Sci.,
1979,19,1122
36. C.H.Y. Chen-Tsai, E.L. Thomas and W.J. Macknight,
Polymer, 1986, 27, 659
37. C.M. Brunette, S.L. Hsu, M. Rossman, W.J. Macknight,
N. S. Schneider Polym.
Eng. Sci., 1981,21,163
38.M. Serrano, W. J. Macknight, E. L. Thomas, and J. M.
Ottino, Polymer, 1987, 28,
1667.
39. C. Li, and S.L. Cooper, Polymer. 1990, 31, 3.
40. C. B.Wang and S. L. Cooper, Macromolecules,
1983,16,775.
41. F.M.B. Coutinho, M.C. Delpech, Polym Degrad Stab
2000,70, 49.
42. M.L. Matuszak, K.C. Frisch, J Polym Sci Polym Chem
Ed1973, 11, 637.
43. I. Kimura, H. Ishihara, H. Ono, N. Yoshihara, S.
Nomura, and H. Kawai,
Macromolecules, 1974,7,335
44. J.A. Miller, S.L. Cooper, C.C. Han, and G. Pruckmeyer,
Macromolecules,
1984,17,63
45. J.A. Miller, G. Pruckmeyer, J.E. Epperson, and S.L.
Cooper,Polymer, 1985,
26,1917
46. F.M.B. Coutinho, and M.C. Delpech , Polymer testing ,
1996 , 15 ,103~113 1643~1650
47. T.K. Chen, S.M. Huang, J. Appl. Polym. Sci., 2007 ,
105, 3794~3801
48. G.L. Wilkes, S. Bargrodia , W. Humphries and
R.Wildnauer , J. Polym.
Lett. , 1975 , 13 , 321
49. J. Blackwell, and K.H. Gardner, Polymer, 1979, 20, 13.
50. J. Blackwell, and M.R. Nagarajan, Polymer, 1981, 22,
202.
51. J. Blackwell, M.R. Nagarajan, and T.B. Hoitink,
Polymer, 1982, 23, 950.
52. J. Blackwell, M.R. Nagarajan, and T.B. Hoitink,
Polymer, 1981, 22, 1534.
53. R. Bonart, Polymer, 1979, 20, 1389.
54. D.J. Meier, Polym. Prepr. Am. Chem. Soc. Div. Polym.
Chem. 1970, 11, 400.
55. C. Li, and S.L. Cooper, Polymer. 1990, 31, 3.
56. L.M. Leung, and J.T. Koberstein, J. Polym. Sci.,
Polym. Phys-Ed., 1985, 23,
1883.
57. S. Mitsuhiro, S. Masakatus, S. Shinichi, Y. Tomoyuki,
and N. Shunji,
Macromolecules, 1991, 24, 1254.
58. C.M. Brunette, S.L. Hsu, M. Rossman, W.J. Macknoght,
and,N.S. Schneider,
Polym.Eng.Sci.,1981,21,163
59. M. Xu, W. J. Macknight, C.H.Y. Chen, and E.L.Thomas,
Polymer,
1983,24,1327
指導教授 陳登科(Teng-ko Chen) 審核日期 2007-7-20
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