• 沒有找到結果。

第五章 結論與建議

5.2 改進建議與未來展望

5.2.2 未來展望

微射出成形實驗中,除了本實驗探討之射出壓力與保壓壓力成形參數 變因外,尚有保壓時間、射出速度等對微結構成形品質有所影響之參數條 件,若能豐富此部分之知識,將可建立出對微射出成形品構造與高次結構 更為完整的資訊與技術,可提高微精密成形的品質、擴增其應用的領域與 符合工業上的需求。

參考文獻

[1] Richard P. Feynman, “There’s plenty of room at the bottom”, Issue of Caltech’s Engineering and Science, 1960.

[2] 陳建人,「微機電系統技術與應用」, 行政院國家科學委員會精密 儀器發展中心出版,2003 年。

[3] Ehrfeld W, “The LIGA process for microsystems”, Microsystem Technologies, H Reichl (Berlin Springer), pp. 521-528, 1990.

[4] Mohr J, et al., “Experimental results of capacitive acceleration sensors fabricated by the LIGA process”, Sensors Actuators A32, 1992.

[5] Harutaka M, et al., “Development of Three Dimensional LIGA Percess to Fabricate Spiral Microcoil”, Japanese Journal of Applied Physics, Vol. 44, No. 7B, pp. 5749-5754, 2005.

[6] Bartolini R, et al., “Embossed hologram motion pictures for television playback.” Appl. Opt. 9, pp. 2283-90, 1970.

[7] Ulrich R, et al., “Embossed optical waveguides”, Appl. Phs. Lett. 20, pp.

213-215, 1972.

[8] H. Becker and U. Heim, “Hot embossing as a method for the fabrication of polymer high aspect ratio structures”, Sensors and Actuators A, Vol.83, pp. 130-135, 1999.

[9] J. C. Viana, “Development of the skin layer in injection moulding:

phenomenological model”, Polym. Eng. Sci. Vol. 45, pp. 993-1005, 2004.

[10] K. F. Zhang and Zhen Lu, “Analysis of morphology and performance of PP microstructures manufactured by micro injection molding”,

Microsyst. Technol. Vol. 14, pp. 209-214, 2007.

[11] Hiroshi I, Kuniiko K and Takeshi K, “Effect of Process Conditions on Surface Replication and Higher-Order Structure Formation”, Macromol.

Symp., Vol. 249-250, pp. 628-634, 2007.

[12] Kuniaki K, “Mechanical Properties and Transparency of

Injection-Molded Polyacetal with Branched and Linear Structure:

Influence of Crystalline Morpology”, Journal of Appl. Polym. Sci., Vol.

100, pp. 3382-3392, 2006.

[13] Wissbrun, K. F., “Utility and Limitation in the Application of Theology to Polymer Processing”, Polymer News, Vol. 4, No. 2, pp. 55-65, 1977.

[14] Prichard, J. H. and Wissbrun, K. F., “Reversible melt flow rate increase of branched acetal polymers”, Journal of Appl. Polym. Sci., Vol. 13, pp.

233-239, 1969.

[15] Donggang Y and Byung K, “Simulation of the filling process in micro channels for polymeric materials”, Journal of Micromech. and

Microeng., Vol. 12, pp. 604-610, 2002.

[16] W. C. Bushko and V. K. Stokes, “Solidification of thermoviscoelastic melts.Ⅱ Effect of processing conditions on shrinkage and residual stress”, Polym. Eng. Sci., Vol. 35, pp. 365, 1995.

[17] Ming-Chih Huang and Ching-Chih Tai, “The effective factors in the warpage problem of an injection-molded part with a thin shell feature”, Journal of Materials Processing Technology, Vol. 110, pp. 1-9, 2001.

[18] Keehae Kwon, A. I. Isayev and K.H. Kim, “Theoretical and

Experimental Studies of Anisotropic Shrinkage in Injection Moldings of Various Polyesters”, Wiley Inter-Science, 2006.

[19] Julian M. L, Emil J. G and Albert P. P, “Polymer investment molding : Method for fabricating hollow, microscale parts”, Sensors and

Actuators A: Physical, Vol. 134, pp. 2-10, 2007.

[20] R. C. Luo and C. S. Tasi, “Thin Film PZT pressure/ Temperature Sensory Arrays for On-line Monitoring of Injection Molding”, IEEE Industrial Electronics Society, pp. 375-380, 2001.

[21] 林信隆 編譯,『塑膠射出成形』,機械技術出版社,1990.

[22] 楊衛民,『高分子材料注射成形加工極限化趨勢』,北京化工大學,

2006。

[23] L. C. E. Struik, “Orientation Effects and Cooling Stresses in Amorphous Polymers”, Polym. Eng. Sci., Vol. 18, pp. 799, 1978.

[24] 李育德,『高分子導論』,國興出版社,1983.

[25] W. Michael, Extrusion Dies of Plastics and Rubber, 2nd, Hanser, New York, 1992.

[26] 胡德,『高分子物理與機械性質(上、下)』,國立編譯館主編,渤 海堂文化公司印行,1990。

[27] 張維哲,『聚丁二酸二乙酯、聚丁二酸二丙酯及其共聚酯之檢測分 析、結晶、熔融與結晶型態』, 國立中山大學碩士論文, 2006.

[28] 伍秀菁,汪若文,林美吟,『儀器總覽=Introduction to

Instrumentation』,行政院國家科學委員會 機密儀器發展中心出版,

1998.

[29] 陳力俊等,『材料電子顯微鏡學』,國家實驗研究室 儀器科技研究 中心出版,1990.

[30] J. Agranoff, Modern plastics encyclopedia, McGraw-Hill, New York, 1989.

[31] 吳振家,『具有次微米尺度結構的自發熱模仁的開發及在成形上的 應用』,國立交通大學碩士論文,2007.

[32] 劉安誠,『微/次微米結構的射出成形特性暨可自發熱模仁的發展與 應用』,國立交通大學博士論文,2007.

[33] Varga J., “Review Supermolecular structure of isotactic polypropylene”, Journal of Materials Science, Vol. 27, pp. 2557-2579, 1992.

附錄一 射出成形模具構裝圖

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