薄化液对显示屏基板玻璃性能影响的探究

晁悦, 李运涛*, 杜滕, 牛俊丽, 贺雪洋

化工新型材料 ›› 2021, Vol. 49 ›› Issue (5) : 262 -265.

PDF (2819KB)
化工新型材料 ›› 2021, Vol. 49 ›› Issue (5) : 262-265. DOI: 10.19817/j.cnki.issn 1006-3536.2021.05.059
开发与应用

薄化液对显示屏基板玻璃性能影响的探究

    晁悦, 李运涛*, 杜滕, 牛俊丽, 贺雪洋
作者信息 +

Research on the influence of liquor of glass slimming for the surface property of display screen

  • Chao Yue, Li Yuntao, Du Teng, Niu Junli, He Xueyang
Author information +
文章历史 +
PDF (2886K)

摘要

依据玻璃深加工对高铝玻璃表面粗糙度和透光率的要求,提出一种不同于传统玻璃薄化的新工艺。通过研究不同薄化温度、超声时间、工艺条件和减薄液配方,比较了减薄前后玻璃表面的粗糙度和透光率,并对其性能进行了探究。实验表明,在配制的减薄溶液中浸泡12h,40℃下,于53kHz超声处理35min,得到的玻璃基板表面固体沉积物显著降低,而且基板表面均匀,并具有一定的韧性。因此,该工艺对于玻璃基板功能化具有一定的意义。

Abstract

A new process different from the traditional glass corrosion was proposed according to the glass deep processing request to the surface roughness and light transmittance.The different temperature,different time,different process conditions,different glass slimming formula were studied,and compared before and after slimming of the glass surface roughness and light transmittance,get conclusion.Glass was immersed in the corrosion solution for 12h,then ultrasonic process in the following parameters:ultrasonic frequency 53kHz,ultrasonic time 35min,ultrasonic temperature 40℃.After the treatment of the process,the surface roughness was effectively reduced,and the precipitation of the precipitates was reduced.Moreover,the substrate surface was well-distributed,and had certain toughnes.This process had certain significance for glass functionalization.

关键词

玻璃减薄 / 减薄液 / 表面处理 / 粗糙度

Key words

glass thinning / thinning fluid / surface treatment / roughness

引用本文

引用格式 ▾
薄化液对显示屏基板玻璃性能影响的探究[J]. 化工新型材料, 2021, 49(5): 262-265 DOI:10.19817/j.cnki.issn 1006-3536.2021.05.059

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] 陈锋.一种使玻璃减薄药液循环使用的方法,CN105439454A[P].2016.
[2] 马超,唐会明,徐功涛.一种碱性玻璃腐蚀工艺的研究[J].清洗世界,2011,27(7):17-21.
[3] 陈福,武丽华,王迎春.柔性玻璃国内外发展现状及趋势[J].玻璃,2017,44(11):15-17.
[4] 刘俊利.氢氟酸的用途、危害及预防[J].安全,2003(5):27.
[5] 张庆喜.微蚀刻废液资源化研究[D].南宁:广西大学,2012.
[6] 钱华军,向勇.玻璃平板显示器的一种单面薄化方法[C]//中国硅酸盐学会电子玻璃分会2013年光电子玻璃技术研讨会,2013.
[7] 李凯华.液晶显示屏刻蚀工艺废液处理及回收技术研究[D].上海:上海交通大学,2013.
[8] 张佳.微氟玻璃蚀刻技术的开发及应用[D].西安:陕西科技大学,2014.
[9] 成惠峰,李要辉,吴云龙,等.硅酸盐玻璃的化学处理研究进展[J].硅酸盐通报,2011,30(4):827-833.
[10] Warren L J.The measurement of pH in acid fluoride solutions and evidence for the existence of (HF)2[J].Anal Chim Acta,1971,53:199-202.
[11] Verhaverbeke S,Teerlinck I,Vinckier C,et al.The etching mechanism of SiO2 in hydrofluoric acid[J].J Electrochem Soc,1994,141(10):2852-2857.
[12] Liang D T,Readey D W.Dissolutions kinetics of crystalline and amorphous silica in hydrofluoric-hydrochloric acid mixtures[J].Journal of the American Ceramic Society,1987,70(8):570-577.
[13] Spierings G A.Wet chemical etching of silicate glasses in hydrofluoric acid based solutions[J].Journal of Materials Science,1993,28(23):6261-6273.
[14] Geisler T,Janssen A,Scheiter D,et al.Aqueous corrosion of borosilicate glass under acidic conditions:a new corrosion mechanism[J].Journal of Non-Crystalline Solids,2010,356(28-30):1458-1465.
[15] 张婵,郑爽英.超声空化效应及其应用[J].水资源与水工程学报,2009,20(1):136-138.
[16] 李运涛,牛俊丽,许淑嫱,等.高铝玻璃减薄优化工艺研究[J].陕西科技大学学报,2017,35(3):86-89,100.
[17] 李运涛,阮方毅,杜滕,等.智能玻璃黑板书写性能与光电显示效应的研究[J].化工新型材料,2019,47(10):264-267.
AI Summary AI Mindmap
PDF (2819KB)

536

访问

0

被引

导航
相关文章

AI思维导图

/