CN106675798A - 一种光学镜头镜片清洗液及其制备方法 - Google Patents

一种光学镜头镜片清洗液及其制备方法 Download PDF

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CN106675798A
CN106675798A CN201611167270.7A CN201611167270A CN106675798A CN 106675798 A CN106675798 A CN 106675798A CN 201611167270 A CN201611167270 A CN 201611167270A CN 106675798 A CN106675798 A CN 106675798A
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张小华
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ANHUI CHANGGENG OPTICAL TECHNOLOGY Co Ltd
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Abstract

一种光学镜头镜片清洗液及其制备方法,光学镜头清洗溶液技术领域,由双氧水、乳化硅油、植物蜡、亲水剂、松香粉、淀粉精、丙烯乙二醇、苯乙烯、抗寒剂、和去污剂制备而成。本发明具有很高的耐寒性能,不会轻易结冰,清洁能力强,利用去污剂的强效去污作用可以防止灰尘和油渍等附着在镜头上,提高拍摄的清晰度,通过抗寒剂的使用可以有效保证低温环境下不会发生结冰、结雾等,而亲水剂能够将抗寒剂和去污剂与初料有效的有机结合,使得成品不会产生沉淀、易挥发等问题并有益于提高清洗液的使用效果。

Description

一种光学镜头镜片清洗液及其制备方法
技术领域:
本发明涉及光学镜头清洗溶液技术领域,具体涉及一种光学镜头镜片清洗液及其制备方法。
背景技术:
光学镜头是机器视觉系统中必不可少的部件,直接影响成像质量的优劣,影响算法的实现和效果。光学镜头从焦距上可分为短焦镜头、中焦镜头,长焦镜头;从视场大小分有广角、标准,远摄镜头;结构上分有固定光圈定焦镜头,手动光圈定焦镜头,自动光圈定焦镜头,手动变焦镜头、自动变焦镜头,自动光圈电动变焦镜头,电动三可变(光圈、焦距、聚焦均可变)镜头等。现有的光学镜头特别是镜片在清洗时一般都是采用普通的清洗液水作为洗涤液进行清洗,而普通的玻璃清洗液具有以下缺点,防冻的效果差,温度低时容易结冰,导致无法使用,由于高挥发性,不便于保存,在擦拭时也容易留有杂质或对光学镜头造成伤害。
发明内容:
本发明所要解决的技术问题在于提供一种具有很高的耐寒性能,不会轻易结冰,清洁能力强的一种光学镜头镜片清洗液及其制备方法。
本发明所要解决的技术问题采用以下的技术方案来实现:
一种光学镜头镜片清洗液及其制备方法由以下重量份组分制成;
双氧水15~20份,乳化硅油15~30份,植物蜡10~12份,亲水剂3~5份,松香粉5~7份,淀粉精1~3份,丙烯乙二醇3~5份,苯乙烯5~8份,抗寒剂5~8份和去污剂5~8份;
其中亲水剂由表面活性剂MES0.6~1份、甲基丙烯酸甲酯2~5份、六亚甲基二异氰酸酯3~5份制备而成;
其中抗寒剂由乙醇5~10份、氯化钙3~8份、精制甘油5~8份、亚硝酸钠10~15份;
上述去污剂由:柠檬酸10~15份、十二烷基硫酸钠8~10份、苯丙三氮唑5~8份、乙二胺四乙酸二钠3~5份、花生衣提取液8~10份、食用盐1~3份、茶籽粉2~5份制备而成;
上述光学镜头镜片清洗液的制备方法包括以下步骤:
(1)在反应釜中加入双氧水、乳化硅油、植物蜡,加热至200~220℃后保温2~3小时制成初料,保温过程中不断搅拌;
(2)制备亲水剂,将表面活性剂MES、甲基丙烯酸甲酯、六亚甲基二异氰酸酯混合加热溶解至完全溶解待用;
(3)制备抗寒剂,将乙醇5~10份、氯化钙3~8份、精制甘油5~8份、亚硝酸钠均匀混合后在微波频率20~50kMHz的条件下微波10~20min后完成;
(4)制备去污剂,将花生衣提取液、茶籽粉、食用盐和柠檬酸混合搅拌,并用水浴法进行溶解,然后将十二烷基硫酸钠、苯丙三氮唑、乙二胺四乙酸二钠加入其中让入到反应釜中温度控制在80~160℃时,并迅速搅拌,加入完毕后加热至170~200℃,不断搅拌下保温0.5~1小时;
(5)将初料放入到反应釜中并加入松香粉、淀粉精、丙烯乙二醇和苯乙烯然后逐渐升温,并在反应釜温度达到120~140℃时添加亲水剂,添加过程中不断搅拌,添加后在120~140℃下保温0.5~2小时;
(6)将去污剂和抗寒剂混合送入到蒸馏塔中进行蒸馏活的蒸馏液;
(7)将蒸馏液与步骤5中保温后的原料一起混合后采用搅拌机进行匀速搅拌,搅拌过程中升温至180~200后停止升温并继续匀速搅拌10~20min;
(8)搅拌完成后冷却至常温后,装瓶密封,进行低温冷藏,冷藏温度控制在3~8℃,冷藏20小时后取出,至此光学镜头镜片清洗液制备完成;
本发明的有益效果是:具有很高的耐寒性能,不会轻易结冰,清洁能力强,利用去污剂的强效去污作用可以防止灰尘和油渍等附着在镜头上,提高拍摄的清晰度,通过抗寒剂的使用可以有效保证低温环境下不会发生结冰、结雾等,而亲水剂能够将抗寒剂和去污剂与初料有效的有机结合,使得成品不会产生沉淀、易挥发等问题并有益于提高清洗液的使用效果。
具体实施方式:
为了使本发明实现的技术手段、创作特征、达成目的与功效易于明白了解,下面结合具体示例,进一步阐述本发明。
实施例1:一种光学镜头镜片清洗液及其制备方法由以下重量份组分制成;
双氧水15份,乳化硅油15份,植物蜡10份,亲水剂3份,松香粉5份,淀粉精1份,丙烯乙二醇3份,苯乙烯5份,抗寒剂5份和去污剂5份;
其中亲水剂由表面活性剂MES0.6份、甲基丙烯酸甲酯2份、六亚甲基二异氰酸酯3份制备而成;
其中抗寒剂由乙醇5份、氯化钙3份、精制甘油5份、亚硝酸钠10份;
上述去污剂由:柠檬酸10份、十二烷基硫酸钠8份、苯丙三氮唑5份、乙二胺四乙酸二钠3份、花生衣提取液8份、食用盐1份、茶籽粉2份制备而成;
光学镜头镜片清洗液通过以下方法进行制备:
(1)在反应釜中加入双氧水、乳化硅油、植物蜡,加热至200℃后保温2小时制成初料,保温过程中不断搅拌;
(2)制备亲水剂,将表面活性剂MES、甲基丙烯酸甲酯、六亚甲基二异氰酸酯混合加热溶解至完全溶解待用;
(3)制备抗寒剂,将乙醇5份、氯化钙3份、精制甘油5份、亚硝酸钠均匀混合后在微波频率20kMHz的条件下微波10min后完成;
(4)制备去污剂,将花生衣提取液、茶籽粉、食用盐和柠檬酸混合搅拌,并用水浴法进行溶解,然后将十二烷基硫酸钠、苯丙三氮唑、乙二胺四乙酸二钠加入其中让入到反应釜中温度控制在80℃时,并迅速搅拌,加入完毕后加热至170℃,不断搅拌下保温0.5小时;
(5)将初料放入到反应釜中并加入松香粉、淀粉精、丙烯乙二醇和苯乙烯然后逐渐升温,并在反应釜温度达到120~140℃时添加亲水剂,添加过程中不断搅拌,添加后在120℃下保温0.5小时;
(6)将去污剂和抗寒剂混合送入到蒸馏塔中进行蒸馏活的蒸馏液;
(7)将蒸馏液与步骤5中保温后的原料一起混合后采用搅拌机进行匀速搅拌,搅拌过程中升温至180后停止升温并继续匀速搅拌10min;
(8)搅拌完成后冷却至常温后,装瓶密封,进行低温冷藏,冷藏温度控制在3℃,冷藏20小时后取出,至此光学镜头镜片清洗液制备完成;
实施例2:
一种光学镜头镜片清洗液及其制备方法由以下重量份组分制成;
双氧水20份,乳化硅油30份,植物蜡12份,亲水剂5份,松香粉7份,淀粉精3份,丙烯乙二醇5份,苯乙烯8份,抗寒剂8份和去污剂8份;
其中亲水剂由表面活性剂MES1份、甲基丙烯酸甲酯5份、六亚甲基二异氰酸酯5份制备而成;
其中抗寒剂由乙醇10份、氯化钙8份、精制甘油8份、亚硝酸钠15份;
上述去污剂由:柠檬酸15份、十二烷基硫酸钠10份、苯丙三氮唑8份、乙二胺四乙酸二钠5份、花生衣提取液10份、食用盐3份、茶籽粉5份制备而成;
光学镜头镜片清洗液通过以下方法进行制备:
(1)在反应釜中加入双氧水、乳化硅油、植物蜡,加热至220℃后保温3小时制成初料,保温过程中不断搅拌;
(2)制备亲水剂,将表面活性剂MES、甲基丙烯酸甲酯、六亚甲基二异氰酸酯混合加热溶解至完全溶解待用;
(3)制备抗寒剂,将乙醇10份、氯化钙8份、精制甘油8份、亚硝酸钠均匀混合后在微波频率50kMHz的条件下微波20min后完成;
(4)制备去污剂,将花生衣提取液、茶籽粉、食用盐和柠檬酸混合搅拌,并用水浴法进行溶解,然后将十二烷基硫酸钠、苯丙三氮唑、乙二胺四乙酸二钠加入其中让入到反应釜中温度控制在160℃时,并迅速搅拌,加入完毕后加热至200℃,不断搅拌下保温1小时;
(5)将初料放入到反应釜中并加入松香粉、淀粉精、丙烯乙二醇和苯乙烯然后逐渐升温,并在反应釜温度达到140℃时添加亲水剂,添加过程中不断搅拌,添加后在140℃下保温2小时;
(6)将去污剂和抗寒剂混合送入到蒸馏塔中进行蒸馏活的蒸馏液;
(7)将蒸馏液与步骤5中保温后的原料一起混合后采用搅拌机进行匀速搅拌,搅拌过程中升温至200后停止升温并继续匀速搅拌20min;
(8)搅拌完成后冷却至常温后,装瓶密封,进行低温冷藏,冷藏温度控制在8℃,冷藏20小时后取出,至此光学镜头镜片清洗液制备完成;
以上显示和描述了本发明的基本原理和主要特征和本发明的优点。本行业的技术人员应该了解,本发明不受上述实施例的限制,上述实施例和说明书中描述的只是说明本发明的原理,在不脱离本发明精神和范围的前提下,本发明还会有各种变化和改进,这些变化和改进都落入要求保护的本发明范围内。本发明要求保护范围由所附的权利要求书及其等效物界定。

Claims (5)

1.一种光学镜头镜片清洗液,其特征在于:由以下重量份组分制成;
双氧水15~20份,乳化硅油15~30份,植物蜡10~12份,亲水剂3~5份,松香粉5~7份,淀粉精1~3份,丙烯乙二醇3~5份,苯乙烯5~8份,抗寒剂5~8份和去污剂5~8份;
其中亲水剂由表面活性剂MES0.6~1份、甲基丙烯酸甲酯2~5份、六亚甲基二异氰酸酯3~5份制备而成;
其中抗寒剂由乙醇5~10份、氯化钙3~8份、精制甘油5~8份、亚硝酸钠10~15份;
上述去污剂由:柠檬酸10~15份、十二烷基硫酸钠8~10份、苯丙三氮唑5~8份、乙二胺四乙酸二钠3~5份、花生衣提取液8~10份、食用盐1~3份、茶籽粉2~5份制备而成。
2.一种光学镜头镜片清洗液的制备方法,其特征在于:包括以下步骤:
(1)在反应釜中加入双氧水、乳化硅油、植物蜡,加热至200~220℃后保温2~3小时制成初料,保温过程中不断搅拌;
(2)制备亲水剂,将表面活性剂MES、甲基丙烯酸甲酯、六亚甲基二异氰酸酯混合加热溶解至完全溶解待用;
(3)制备抗寒剂,将乙醇5~10份、氯化钙3~8份、精制甘油5~8份、亚硝酸钠均匀混合后在微波频率20~50kMHz的条件下微波10~20min后完成;
(4)制备去污剂,将花生衣提取液、茶籽粉、食用盐和柠檬酸混合搅拌,并用水浴法进行溶解,然后将十二烷基硫酸钠、苯丙三氮唑、乙二胺四乙酸二钠加入其中让入到反应釜中温度控制在80~160℃时,并迅速搅拌,加入完毕后加热至170~200℃,不断搅拌下保温0.5~1小时;
(5)将初料放入到反应釜中并加入松香粉、淀粉精、丙烯乙二醇和苯乙烯然后逐渐升温,并在反应釜温度达到120~140℃时添加亲水剂,添加过程中不断搅拌,添加后在120~140℃下保温0.5~2小时;
(6)将去污剂和抗寒剂混合送入到蒸馏塔中进行蒸馏活的蒸馏液;
(7)将蒸馏液与步骤5中保温后的原料一起混合后采用搅拌机进行匀速搅拌,搅拌过程中升温至180~200后停止升温并继续匀速搅拌10~20min;
(8)搅拌完成后冷却至常温后,装瓶密封,进行低温冷藏,冷藏温度控制在3~8℃,冷藏20小时后取出,至此光学镜头镜片清洗液制备完成。
3.根据权利要求1所述的光学镜头镜片清洗液,其特征在于:所述亲水剂组分的优选方案为:表面活性剂MES0.6份、甲基丙烯酸甲酯2份、六亚甲基二异氰酸酯3份。
4.根据权利要求1所述的光学镜头镜片清洗液,其特征在于:所述去污剂组分的优选方案为:柠檬酸10份、十二烷基硫酸钠8份、苯丙三氮唑5份、乙二胺四乙酸二钠3份、花生衣提取液8份、食用盐1份、茶籽粉2份。
5.根据权利要求1所述的光学镜头镜片清洗液,其特征在于:所述抗寒剂组分的优选方案为:乙醇5份、氯化钙3份、精制甘油5份、亚硝酸钠10份。
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