面向车载显示屏印刷制造的基板气浮转移控制研究开题报告

 2021-12-24 16:07:43

全文总字数:29268字

1. 研究目的与意义(文献综述)

1.1研究背景

in recent years, with the development of economy and the progress of science and technology, display technology develops rapidly. with the development of electronic technology and the application of new materials, the display technology continues to improve, and begins to develop in the direction of digitalization and multi-function. in recent years, a variety of new display technologies have been developed, from the initial display technology of crt to plasma display panel (pdp), then to liquid crystal display (lcd) and organic light emitting diode (oled), which occupy the mainstream market. display technology plays an important role in many fields, so the pursuit of improving the display effect of the society has never stopped. it puts forward higher and higher requirements for display technology and display devices, hoping to make a lighter form, faster response speed and higher resolution display products.

in january 2017, national development and reform commission issued the guidance catalogue for key products and services of strategic emerging industries (2016 edition), listing new displays such as "high-performance amorphous silicon (a-si) low-temperature polycrystalline silicon (ltps) oxide liquid crystal display (tft-lcd) panel products" as strategic emerging industries; the three-year action plan for surpassing development of new display industries released in 2018, clearly put forward the next step, the ministry of industry and information technology will guide and support enterprises to speed up the research and development of mass production technology such as new backplane, ultra high definition, flexible panel, etc., drive product innovation through technological innovation, realize product structure adjustment, accelerate the research and layout of amoled micro display, quantum dot, printed oled display, micro led display and other forward-looking display technologies, strengthen technical reserves, and complete the exploration and layout of new industrial technology routes; in june 2019, the national development and reform commission, the ministry of ecological environment and the ministry of commerce issued the implementation plan for promoting the update and upgrading of key consumer goods and promoting the recycling of resources (2019-2020), focusing on breaking through new display technologies such as flexible oled display, laser projection display, quantum dot backlight, small spacing led backlight, gradually realizing the mass production of ultra-high definition, flexible panel and new backplane, and speeding up industrialization of key system equipment for uhd video.from the perspective of the national policies in recent years, the state attaches more and more importance to the new display industry, vigorously developing the new display industry and gradually establishing a good industry order will be one of the important development plans of the government.

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2. 研究的基本内容与方案

2.1设计基本内容

according to the design requirements of air flotation platform, the basic contents of this design include the following aspects:

(1)study on theoretical basis of air flotation platform

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3. 研究计划与安排

根据设计要求,本设计的进度安排如表3.1所示。

表3.1 进度安排

时间

安排

7 学期第20周

确定毕业设计选题、完善毕业设计任务书(相关参数)、校内外资料收集

8 学期第1-2周

方案构思、文献检索、完成开题报告

8学期第3周

外文翻译、资料再收集

8学期第5-6周

设计计算、草图绘制

8学期第7-9周

图样绘制、编写设计计算说明书(论文)

8学期第10-13周

图样及论文整理;中期检查

8学期第14周

学生提出答辩申请,作答辩准备,资料袋整理;答辩资格审查,查重;教师审阅图纸、说明书

8学期第15周

参加答辩

4. 参考文献(12篇以上)

[1]hung-yi chen,jin-wei liang. piezoelectric-actuated drop-on-demand droplet generator control using adaptive wavelet neural network controller[j]. journal of process control,2014,24(5).

[2]trung kien nguyen,vu dat nguyen,baekhoon seong,nguyen hoang,jungkeun park,doyoung byun. control and improvement of jet stability by monitoring liquid meniscus in electrospray and electrohydrodynamic jet[j]. journal of aerosol science,2014,71.

[3]kim kukjoo,kim gyeomuk,lee bo ram,ji sangyoon,kim so-yun,an byeong wan,song myoung hoon,park jang-ung. high-resolution electrohydrodynamic jet printing of small-molecule organic light-emitting diodes.[j]. nanoscale,2015,7(32).

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