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    المؤلفون: 郭廷偉, Kuo, Ting-Wei

    المساهمون: 淡江大學化學工程與材料工程學系碩士班, 林國賡, Lin, Gwo-Geng

    وصف الملف: 144 bytes; text/html

    Relation: 1. H. J. Barnes, J. F. Hutton, K. Walters, An Introduction to Rheology, Elsevier, 1989. 2. C. D. Han, Rheological behavior of Polymer Blends, J. Appl. Polym. Sci, 29, 2205, 1984. 3. J. M. Dealy, K. F. Wissbrun, Melt Rheology and its Role in Plastics Processing: Theory and Application, Champman & Hall, 1995. 4. M. L. Williams, R. F. Landel, J. D. Ferry ,The Temperature Dependence of Relaxation Mechanisms in Amorphous Polymers and Other Glass-forming Liquids, J. Amer. Chem. Soc, 77, 3701, 1955. 5. R.B. Bird, C.F. Curtiss, R.C. Armstrong, O. Hassager, Dynamics of polymeric liquids, vol 2, Wiley, 1987. 6. W. P. Cox, E. H. Merz, Correlation of dynamic and steady flow viscosities, J. Polym. Sci, 28, 619, 1958. 7. H.M. Laun, Prediction of elastic strains of polymer melts in shear and elongation, J Rheol, 30, 459, 1986. 8. S. G. Hatzikiriakos,G. Heffner,D. Vlassopoulos, K. Christodoulou, Rheological characterization of polyethylene terephthalate resins using a multimode Phan-Tien-Tanner constitutive relation, Rheol Acta, 36, 568, 1997. 9. R. Pantani, V. Speranza, A. Sorrentino, G. Titomanlio, Molecular orientation and strain in injection moulding of thermoplastics, Macromol. Symp, 185, 293, 2002. 10. R. Pantani, A. Sorrentino,V. Speranza, G. Titomanlio, Molecular orientation in injection molding : experiments and analysis, Rheol Acta, 43, 109, 2004. 11. J. L. White and A. Metzner, Rheological equations from molecular network theories, J. Appl. Polym. Sci, 7, 1867, 1963. 12. A. Souvaliotis, A. N. Beris, An extended White–Metzner viscoelastic fluid model based on an internal structural parameter, J. Rheo, 36, 241, 1992. 13. W. Minoshima, J.L. White, J.E. Spruiell, Experimental investigations of the influence of molecular weight distribution on melt spinning and extrudate swell characteristics of polypropylene, J. Appl. Polym. Sci, 25, 287, 1980. 14. W. Minoshima, J. L. White, Significance of Deformation Rate Softening of Memory in Viscoelastic Fluid Mechanics and Polymer Processing, Polym. Eng. Sci, 21, 1113, 1981. 15. G. G. Lin, J. T. Chang, T. W. Kuo, Experimentation and modeling for the apparent elongation viscosity of polymer melts with the White–Metzner model, Polym. Adv. Technol, 25, 1565, 2014. 16. W.Minoshima, J. L. White, A comparative experimental study of the isothermal shear and uniaxial elongational rheological properties of low density, high density and linear low density polyethylenes, J. Non-Newt. Fluid Mech, 19, 251, 1986. 17. H. A. Barnes, G. R. Roberts, A simple empirical model describing the steady-state shear and extensional viscosities of polymer melts, J. Non-Newt. Fluid. Mech, 44, 113, 1992. 18. R.G. Larson, Constitutive Equations for Polymer Melts and Solutions, Butterworths, 1988. 19. G. W. Peters, J. F. Schoonen, F. P. Baaijens, H. E. Meijer, On the performance of enhanced constitutive models for polymer melts in a cross-slot flow, J. Non-Newt. Fluid. Mech, 82, 387 1999. 20. T. Hagen, M. Renardy, Boundary layer analysis of the Phan-Thien-Tanner and Giesekus model in high Weissenberg number flow, J. Non-Newt. Fluid. Mech, 73, 181, 1997. 21. N. Phan-Thien, R.I. Tanner, A new constitutive equation derived from network theory, J. Non-Newt. Fluid. Mech, 2, 353, 1977. 22. H. Giesekus, A unified approach to a variety of constitutive models for polymer fluids based on the concept of configuration dependent molecular mobility, Rheol. Acta, 21, 366, 1982. 23. H. Giesekus, A simple constitutive equation for polymer fluids based on the concept of deformation dependent tensorial mobility, J. Non-Newt. Fluid. Mech, 11, 69, 1982. 24. R.C. Armstrong, R.A. Brown, L.M. Quinzani, G.H. McKinley, J.A. Byars, Measurement of velocity and stress fields in complex polymer flows, in: P. Moldenaers, R. Keunings (Eds.), Proc. XI Int. Cong. Rheology, Theoretical and Applied Rheology, Brussels, Elsevier, 16, 1992. 25. H.P. Baaijens, G.W. Peters, F.P. Baaijens, H.E. Meijer, Viscoelastic flow past a confined cylinder of a polyisobutylene solution, J. Rheol, 39, 1243, 1995. 26. G.Hatzikiriakos,G. Heffner, D. Vlassopoulos, K. Christodoulou, Rheological characterization of polyethylene terephthalate resins using a multimode Phan-Tien-Tanner constitutive relation. Rheol. Acta, 36, 568, 1997. 27. 李輝煌,田口方法品質設計的原理與實務,高立圖書,2011。 28. 張榮語,射岀成型具設計(Ⅰ)材料特性,高立圖書,2002。 29. 張榮語,射岀成型具設計(Ⅱ)具設計,高立圖書,2002。 30. 張榮語,射岀成型具設計(Ⅲ)操作實務,高立圖書,2002。 31. X. Lu, L. S. Khim, A Statistical Experimental Study of the Injection Molding of Optical Lenses, J. Mater. Process. Technol, 113, 189, 2001. 32. 黃東鴻,薄殼射出件翹曲變形與殘留應力研究,國立成功大學航空太空工程學系碩士論文,2002。 33. 鄭穎聰,鏡片射出成形分析具設計,國立高雄應用科技大學具工程系碩士論文,2004。 34. J.Y. Shieh, L. K. Wang, S. K. Ke, A feasible injection molding technique for the manufacturing of large diameter aspheric plastic lenses, Optical Review, 17, 399, 2010. 35. 張元榕、邱顯森、楊文賢、張榮語,應用黏彈性分析於預測射出產品之動殘留應力,台灣區電腦輔助成型技術交協會CAE Molding Conference,科盛科技股份有限公司、國立清華大學化學工程學系,2008。 36. M. R. Kamal, R. A. Lai-Fook, J. R. Hernandez-Aguilar, Residual thermal stresses in injection moldings of thermoplastics: A theoretical and experimental study, Polym. Eng. Sci, 42, 1098, 2002. 37. A. I. Isayev,Orientation development in the injection molding of amorphous, polymers, Polym. Eng. Sci, 23, 271, 1983. 38. P. J. Wang, and H. E. Lai, Study Of Residual Birefringence In Injection Molded Lenses, Asia Pacific Conference on Optics Manufacture, ANTEC Proceeding, 2494, 2007. 39. 葉敬賢,複合式光學元件於振動式射出壓縮成形之殘留應力及光學品質研究,國立臺灣科技大學機械工程系碩士論文,2011。 40. A. I. Isayev, G. D. Shyu, C. T. Li, Residual stresses and birefringence in injection molding of amorphous polymers: Simulation and comparison with experiment, J. Polym. Sci., Part B: Polym. Phys, 44, 622, 2006. 41. 張元榕、游朝凱、邱顯森、楊文賢、王培仁,射出成型光學鏡片的擬與驗證,科盛科技股份有限公司、國立清華大學動力機械工程學系,2009。 42. Y. J. Chang, C. K. Yu, H. S. Chiu, W. H. Yang, H. E. Lai, P. J. Wang, Simulations and Verifications of True 3D Optical Parts by Injection Molding Process, Society of Plastics Engineers Annual Technical Conference, 2009. 43. C. T. Huang, M. C. Chen, Y. R. Chang, W. L. Yang, S. C. Tseng, H. Y. Chang, Optical property investigation in sequential multi-component molding, Annual Technical Conference, ANTEC Proceeding, 2008. 44. J.W. Dally, W. F. Riley, Experimental Stress Analysis, McGraw-Hill Inc, 3rd ed, 1991. 45. 張元榕、楊文賢、許嘉翔,塑膠光學元件射出成型之殘留應力與光彈分析,台灣區電腦輔助成型技術交協會CAE Molding Conference,科盛科技股份有限公司,2007 。 46. 張元榕、楊文賢、游朝凱、張榮語,塑膠射出成型產品之雙折射預測,台灣區電腦輔助成型技術交協會CAE Molding Conference,科盛科技股份有限公司、國立清華大學化學工程學系,2008。 47. H. E. Lai, P. J. Wang, Study of process parameters on optical qualities for injection-molded plastic lenses, Appl. Opt, 47, 12, 2008 . 48. R. Y. Chang, W. H. Yang, Numerical simulation of mold filling in injection molding using a three-dimensional finite volume approach, Int. J. Numer. Methods Fluids, 37, 125, 2001. 49. Moldex3D/Solid真實三維模流分析理論與應用,科盛科技股份有限公司,2009。 50. C. W. Makosko, Rheology principles, measurements, and applications, Wiley/vch, 1994. 51. R. G. Larson, The Structure and Rheology of Complex Fluids, Oxford University Press, 1999. 52. N. Phan-Thien, Understanding Viscoelasticity, Springer Science, 2002. 53. K. Hyun, M. Wilhelm, C. O. Klein, K. S. Cho, J. G. Nam,K. H. Ahn, S. J. Lee, R. H. Ewoldt, G. H. McKinley,A review of nonlinear oscillatory shear tests: Analysis and application of large amplitude oscillatory shear (LAOS), Prog. Polym. Sci, 36, 1697, 2011. 54. J. F. Vega, S. Rastogi, G. W. Peters, H. E. Meijer, Rheology and reptation of linear polymers. Ultrahigh molecular weight chain dynamics in the melt, J. Rheol, 48, 663, 2004. 55. J. F. Vega, D. P. Ceron, S. G. Ruiz, S. Prashar, M. Fajardo, J. M. Salazar, Viscoelasticity and macromolecular topology in single-site catalyzed polyethylene, J Mater Sci, 43, 1745, 2008. 56. J.Z. Liang, W. Peng, Melt viscosity of PP and FEP/PP blends at low shear rates, Polym. Test, 28, 386, 2009. 57. A.Y. Malkin, Non-Newtonian viscosity in steady-state shear flows, J. Non-Newt. Fluid. Mech,192, 48, 2013. 58. J. Aho, S. Syrjala, Shear viscosity measurements of polymer melts using injection molding machine with adjustable slit die, Polym. Test, 30, 595, 2011. 59. E.A. Jensen , J. deC. Christiansen, Measurements of first and second normal stress differences in a polymer melt, J. Non-Newt. Fluid. Mech, 148, 41, 2008. 60. D.G. Baird, First normal stress difference measurements for polymer melts at high shear rates in a slit-die using hole and exit pressure data, J. Non-Newt. Fluid. Mech, 148, 13, 2008. 61. Moldex3D data base.; U0002-2502201513261700; http://tkuir.lib.tku.edu.tw:8080/dspace/handle/987654321/105670; http://tkuir.lib.tku.edu.tw:8080/dspace/bitstream/987654321/105670/1/index.html

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    المؤلفون: 曾信智, 黃柏慶, 甘晏璇

    المساهمون: 南台科技大學機械工程系所

    مصطلحات موضوعية: 內裝飾, 翹曲變形, 分析, 田口方法

    Time: 4

    وصف الملف: 486713 bytes; application/pdf

    Relation: 第 36 卷,第3 期,23-34頁; http://ir.lib.stust.edu.tw/handle/987654321/17714

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    المؤلفون: 賴雋凱, LaiJumKai

    المساهمون: 能源工程研究所

    Time: 17

    وصف الملف: 143 bytes; application/octet-stream

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