光学 精密工程, 2018, 26 (9): 2198, 网络出版: 2018-12-16  

微喷孔聚酰亚胺表面持续性亲水工艺

Hydrophilic retention process of micro nozzle on polyimide surface
作者单位
1 北京科技大学 机械工程学院, 北京 100083
2 清华大学 机械工程系 精密超精密制造装备及控制北京市重点实验室, 北京 100084
引用该论文

赵翔, 贾志新, 张康生, 李勇, 周凯. 微喷孔聚酰亚胺表面持续性亲水工艺[J]. 光学 精密工程, 2018, 26(9): 2198.

ZHAO Xiang, JIA Zhi-xin, ZHANG Kang-sheng, LI Yong, ZHOU Kai. Hydrophilic retention process of micro nozzle on polyimide surface[J]. Optics and Precision Engineering, 2018, 26(9): 2198.

参考文献

[1] 常家庆, 黄博, 刘亚欣. 圆管式压电喷头的液体分配[J]. 光学 精密工程, 2017, 25(4): 954-962.

    CHANG J Q, HUANG B, LIU Y X. Liquid distribution of tubular piezoelectric print head [J]. Opt. Precision Eng., 2017, 25(4): 954-962. (in Chinese)

[2] 姚海根. 数字印刷与平面数字出版 [J]. 印刷杂志, 2005(10): 60-61.

    YAO H G. Digital printing and plano-digital publishing [J]. Printing Field, 2005(10): 60-61. (in Chinese)

[3] 杨强. 喷墨打印墨滴的动态行为研究 [D]. 北京: 中国科学院大学博士论文, 2015.

    YANG Q. Study on the Dynamic Behavior of Ink-Jet Printing Ink [D]. Beijing: Graduate University of the Chinese Academy of Sciences, 2015. (in Chinese)

[4] SHEN S C, LEE C J, WANG M W, et al.. Fabrication micro-nozzle plates for inkjet print head using LIGA process [J]. Materials Science Forum, 2008, 594: 132-137.

[5] 褚祥诚, 仲作金, 张红军, 等. 喷墨打印头陶瓷喷孔的皮秒激光加工研究 [J]. 佛山陶瓷, 2014, 24(12): 24-26.

    CHU X CH, ZHONG Z J, ZHANG H J, et al.. Picosecond laser machining of ceramic nozzle for inkjet printhead [J]. Foshan Ceramics, 2014, 24(12): 24-26. (in Chinese)

[6] LINDEMANN T, ASHAUER H, YU Y, et al.. One inch thermal bubble jet printhead with laser structured integrated polyimide nozzle plate [J]. Journal of Microelectromechanical Systems, 2007, 16(2): 420-428.

[7] 邓永波, 张平, 杜新, 等. 亲/疏水性不同壁面组成微通道的深宽比与通道内液体的自发毛细流动 [J]. 光学 精密工程, 2010, 18(7): 1562-1567.

    DENG Y B, ZHANG P, DU X, et al.. Aspect ratio for microchannels with nonuniform surface properties and spontaneous capillary [J]. Opt. Precision Eng., 2010, 18(7): 1562-1567. (in Chinese)

[8] BEACH B L, SMITH S D, JACKSON T H, et al.. Polyimide nozzle plate for ink jet printer with surface containing a layer derived from a polydialkylsiloxane having a reactive end group which covalently binds the polysiloxane to the polyimide; ink repellency in selected areas: US, US 6151045 A[P]. 2000.

[9] LINDEMANN T, ASHAUER H, GOETTSCHE T, et al.. Bubble jet printhead with integrated polyimide nozzle plate [J]. 18th IEEE International Conference on, 2005: 560-563.

[10] DRURY P R. Method of manufacturing a component for droplet deposition apparatus: WO, US8042269 [P]. 2011.

[11] 辜信实. 印制电路用覆铜箔层压板 [M]. 北京: 化学工业出版社, 2002: 389.

    GU X SH. Copper Clad Laminate for Printed Circuit Board [M]. Beijing: Chemical Industry Press, 2002: 389. (in Chinese)

[12] GHOSH I, KONAR J, BHOWMICK A K. Surface properties of chemically modified polyimide films [J]. Journal of Adhesion Science and Technology, 1997, 11 (6): 8772893.

[13] PARK W J, YOON S G, JUNG W S, et al.. Effect of dielectric barrier discharge on surface modification characteristics of polyimide film [J]. Surface & Coatings Technology, 2007, 201 (9211): 501725020.

[14] WANG W C, KANG E T, NEOH K G.Electro less plating of copper on polyimide films modified by plasma graft copolymerization with 4-vinyl pyridine [J]. Applied Surface Science, 2002, 199 (1/4) : 52266.

[15] 马进, 吴臣国, 吴佩璇. 等离子体轰击致聚酰亚胺表面亲水性研究 [J]. 真空科学与技术学报, 2009, 29(6): 664-668.

    MA J, WU CH G, WU P X.Hydrophilicity of polyimide surface-modified by plasma bombardment [J]. Chinese Journal of Vacuum Science and Technology, 2009, 29(6): 664-668. (in Chinese)

[16] KOH S K, PARK S C, KIM S R. Surface modification of polytetrafluoroethylene by Ar+ irradiation for improved adhesion to other materials [J]. Journal of Applied Polymer Science, 1997, 64(10): 1913-1921.

[17] 杨建忠, 杨冰磊. 利用低温等离子体处理实现聚酰亚胺纤维表面改性 [J]. 西安工程大学学报, 2009, 23(2): 136-140.

    YANG J ZH, YANG B L. Surface modification effect of polyimide fiber by low temperature plasma treatment [J]. Journal of Xian Polytechnic University, 2009, 23(2): 136-140. (in Chinese)

[18] 郑朝銮, 沈丽. 等离子体处理条件对聚酰亚胺薄膜表面处理效果的影响 [J]. 表面技术, 2012, 41(3): 90-93.

    ZHENG X L, SHEN L. The effect of different plasma treatment conditions on the surface properties of polyimide film [J]. Surface Technology, 2012, 41(3): 90-93. (in Chinese)

[19] 唐桂华, 何雅玲, 陶文铨. 粗糙度与气体稀薄性对微尺度流动特性的影响 [J]. 工程热物理学报, 2006, 27(2): 304-306.

    TANG G H, HE Y L, TAO W Q. Roughness and rarefaction effects on flow characteristics in microchannels [J]. Journal of Engineering Thermophysics, 2006, 27(2): 304-306. (in Chinese)

[20] 徐志钮, 王国利, 赵丽娟, 等. 亲水性时静态接触角算法及在硅橡胶憎水性检测中的应用 [J]. 高电压技术, 2012(8): 1891-1900.

    XU ZH N, WANG G L, ZHAO L J, et al.. Static contact angle algorithm of hydrophilicity and its application in silicone rubber hydrophobicity detection [J]. High Voltage Technology, 2012(8): 1891-1900. (in Chinese)

赵翔, 贾志新, 张康生, 李勇, 周凯. 微喷孔聚酰亚胺表面持续性亲水工艺[J]. 光学 精密工程, 2018, 26(9): 2198. ZHAO Xiang, JIA Zhi-xin, ZHANG Kang-sheng, LI Yong, ZHOU Kai. Hydrophilic retention process of micro nozzle on polyimide surface[J]. Optics and Precision Engineering, 2018, 26(9): 2198.

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