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薄型化背光源顶白形成机理探讨及改善 被引量:1
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作者 唐胜果 董春垒 +6 位作者 刘子源 徐海丰 项海霞 张正元 随鹏 马勇 赵曼 《液晶与显示》 CAS CSCD 北大核心 2018年第10期836-843,共8页
介绍了背光源顶白不良,探讨了顶白的形成机理。研究发现表面光滑反射片对导光板网点间留白区域的挤压是产生顶白的根本原因。由此提出通过改善背板局部凸起高度和增加反射片粗糙度来改善顶白。结果表明:顶白发生率随背板局部凸起高度降... 介绍了背光源顶白不良,探讨了顶白的形成机理。研究发现表面光滑反射片对导光板网点间留白区域的挤压是产生顶白的根本原因。由此提出通过改善背板局部凸起高度和增加反射片粗糙度来改善顶白。结果表明:顶白发生率随背板局部凸起高度降低和反射片表面粗糙度增加而明显降低。控制模具凸棱厚度可调整回压量,进而降低背板局部凸起高度。模具凸棱厚度为0.05mm时,背板局部凸起高度均值由无回压时的0.21mm降低至0.11mm,加速试验条件下对应顶白发生率由50%降低至18.7%;涂布不同大小粒子可调整反射片表面粗糙度。当反射片涂布Bead粒子径为40μm,对应粗糙度为6.29μm时,并搭配段差回压后背板,改善后背光源在加速试验条件下无顶白发生。同时,经光学、老化及振动测试,改善后背光源未发现其它相关不良。 展开更多
关键词 顶白 薄型化背光源 粒子涂布 反射片 背板
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A perspective of microplasma oxidation (MPO) and vapor deposition coatings in surface engineering of aluminum alloys 被引量:1
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作者 AWAD Samir Hamid 《Journal of Chongqing University》 CAS 2004年第2期4-11,共8页
Over the past years, great achievements have been made in the development of coating technologies for surface improvement of aluminum alloys. Despite these achievements, the role in the market strongly depends on the ... Over the past years, great achievements have been made in the development of coating technologies for surface improvement of aluminum alloys. Despite these achievements, the role in the market strongly depends on the ability of surface coating technology under technical and economic considerations to meet the increased demands for heavy tribological applications of aluminum alloys. Microplasma oxidation (MPO) technology has recently been studied as a novel and effective means to provide thick and hard ceramic coating with improved properties such as excellent load-bearing and wear resistance properties on aluminum alloys. The present work covers the evaluation of the performances of current single and duplex coatings combining MPO, physical vapor deposition (PVD), and plasma assisted chemical vapor deposition (PACVD) coatings on aluminum alloys. It suggests that the MPO coating is a promising candidate for design engineers to apply aluminum alloys to heavy load-bearing applications. The prospective future for the research on MPO coatings is introduced as well. 展开更多
关键词 aluminum alloys microplasma oxidation (MPO) duplex coating physical vapor deposition (PVD) plasma assisted chemical vapor deposition (PACVD)
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Rapid nanopatterning technique based on monolayer silica nanosphere close-packing by spin coating 被引量:2
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作者 WANG QuanDai YE Lian +3 位作者 WANG Li LI PengYang CAO Yi LI Yan 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第10期1573-1580,共8页
Nanoparticles monolayer formation by spin coating is considered to be a simple, fast and inexpensive nanopatteming technique However, the parameters that govern the overall growth process in this technique are not com... Nanoparticles monolayer formation by spin coating is considered to be a simple, fast and inexpensive nanopatteming technique However, the parameters that govern the overall growth process in this technique are not completely quantified and techniques for the controlled and continuous growth of close packed monolayer particle arrays without defects need to be developed. In this paper, an ordered particle array formation process is analyzed theoretically, employing material flux balance and parti- cle-subjected forces balance, based on the film thickness model of spin coating and evaporation rate law. A series of experi- ments were conducted using silica particle suspensions with various particle volume fractions and different spin speeds. The results show that the spin speed should match the particle volume fraction to meet the requirements of material flux and particles movement in order to obtain a close packed monolayer film. The formation mechanism of fabrication defects involving particle agglomeration and uncontrollable voids were analyzed qualitatively based on crystal growth theory, and validation experiments were performed. The formation of highly uniform close-packed monolayer films was demonstrated and the condi- tion requirements for achieving monolayer nanoparticles array with good quality presented. 展开更多
关键词 monolayer arrangement NANOPATTERNING SELF-ASSEMBLY silica nanoparticle spin coating
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