CN106590976A - 一种灯饰用清洁剂及其使用方法 - Google Patents
一种灯饰用清洁剂及其使用方法 Download PDFInfo
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Abstract
本发明公开了一种灯饰用清洁剂及其使用方法,所述清洁剂主要由硬脂酸10~15份、橄榄油3~8份、聚山梨醇油酸脂4~10份、二乙醇胺0.5~4份、碳酸钠1~5份、起泡剂2~8份、硝酸银0.1~2份、氧化石墨烯1~3份、钼酸铋0.2~0.8份、柠檬酸钠5~9份、辛苯昔醇7~12份、香精0.2~0.8份、乙醇15~23份、余量的水组成;其使用方法为利用喷雾器将之直接喷涂在灯饰表面,等待一段时间后再利用抹布、鸡毛掸或吹风机除去灯饰表面的附着物。本发明的灯饰用清洁剂具有去污能力强、附着力适中、作用时间久、清洗过程中无水滴滑落、适于清洁具备复杂清洗面的灯饰。
Description
技术领域
本发明属于洗涤剂技术领域,尤其涉及一种使用方便、去污能力强、不会造成二次污染、适用于复杂清洗面的灯饰用清洁剂及其使用方法。
背景技术
随着人们生活水平的提高,人们对物质的要求也越来越高,对照明灯的需要不再仅限于照明,而是要求它具备精致的外观并能够与家居家风相搭配并起到画龙点睛的作用。然而,具备精致外观的灯饰一般都具有复杂的结构和表面,悬挂一定时间后,灰尘、油污等容易沾附到灯饰表面,使得灯饰黯然失色。为了除去灯饰表面的灰尘和油污,传统的方法为利用抹布擦拭多次或者将灯饰取下来浸泡到含有洗涤剂的水中,洗净灯饰表面的油污并擦干后再重新挂回去。然而,直接用抹布擦拭多次不仅费事费力,不易擦净,还容易导致灯饰表面出现划痕;而将灯饰取下来后浸泡到含洗涤剂的水中洗净油污后再挂回去又十分麻烦。为了解决这一问题,中国专利CN100532523C公开了一种装饰灯清洁剂(公告日:2009年8月26日),所述清洁剂主要采用氨水(28%)2.3%、酒精30%,十二烷基苯磺酸钠6%,OP-82%,OP-10 1.5%,易噻唑啉酮0.1%,水性硅油3%。白兰花香精0.1%,纯水55%组成。所述清洁剂主要为水系清洁剂,使用时按照上述配方配好后直接将之喷洒到需要清洁的水晶、玻璃、塑胶等硬质透明饰物表面,饰物上的尘埃、油污即可自动随清洁剂脱落。然而,灯具一般位于室内屋顶,如果让尘埃和油污随清洁剂脱落,易导致室内二次污染。此外,水系清洁剂在重力作用下也容易从灯饰表面快速滑落,达不到有效的清洁时间和清洁效果。
发明内容
本发明旨在解决现有技术中存在的问题,提供一种使用方便、去污能力强、附着力适中、不会造成二次污染、适用于复杂清洗面的灯饰用清洁剂。
为了解决上述技术问题,本发明采用了如下技术方案:
一种灯饰用清洁剂,主要由硬脂酸10~15份、橄榄油3~8份、聚山梨醇油酸脂4~10份、二乙醇胺0.5~4份、碳酸钠1~5份、起泡剂2~8份、硝酸银0.1~2份、氧化石墨烯1~3份、钼酸铋0.2~0.8份、柠檬酸钠5~9份、辛苯昔醇7~12份、香精0.2~0.8份、乙醇15~23份、余量的水组成。
进一步地,所述灯饰用清洁剂主要由硬脂酸11~13份、橄榄油5~7份、聚山梨醇油酸脂5~8份、二乙醇胺1~3份、碳酸钠2~4份、起泡剂4~6份、硝酸银0.5~1.5份、氧化石墨烯1.5~2.5份、钼酸铋0.4~0.6份、柠檬酸钠6~8份、辛苯昔醇8~10份、香精0.4~0.6份、乙醇18~22份、余量的水组成。
优选地,所述灯饰用清洁剂主要由硬脂酸12份、橄榄油6份、聚山梨醇油酸脂7份、二乙醇胺2份、碳酸钠3份、起泡剂5份、硝酸银1份、氧化石墨烯2份、钼酸铋0.5份、柠檬酸钠7份、辛苯昔醇9份、香精0.5份、乙醇20份、水25份组成。
进一步地,所述起泡剂为氨基酸起泡剂。
优选地,所述氨基酸起泡剂为中氨基酸起泡剂为十二酰基甘氨酸钠、十六酰基甘氨酸钠或十八酰基甘氨酸钠中的一种或多种。
作为本发明改进的技术方案,所述氧化石墨烯的平面尺寸为50~300nm之间。
优选地,所述氧化石墨烯的平面尺寸为80~150nm之间。
作为本发明另一解决的技术问题,公开了一种灯饰用清洁剂的使用方法:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,然后将前述的灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,随后按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,等待15~60min后,用毛巾将所述灯饰擦拭一遍即可。
作为本发明另一解决的技术问题,公开了另一种灯饰用清洁剂的使用方法:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,随后将前述的灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,再按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,待所述清洁剂中的溶剂蒸发变干后,再利用鸡毛掸轻轻掸掉灯饰表面附着的微粒。
有益效果:
本发明的清洁剂,由于富含表面活性剂,故具备较强的除污除油功能;清洁剂中适量的硝酸银和钼酸铋,使得清洁剂具有一定的杀菌抗菌能力;清洁剂中适量的氧化石墨烯,使得清洁剂具有一定的锁水能力,可以有效防止水系清洁剂在重力作用下快速滑落灯饰表面,保证了本清洁剂除污除油的有效时长;起泡剂可以使本清洁剂具有一定的发泡能力,在清洗过程中可以让灯饰表面的油污脱离灯饰表面而转移到氧化石墨烯片层顶面,从而有效增强本清洁剂的除污除油功能。
具体实施方式
下面结合具体实施例来详细说明本发明。该示意性实施例以及说明主要用于解释本发明,并不作为对本发明的限定。
实施例1
按照如下重量份的配比配制灯饰用清洁剂:
所述氧化石墨烯的平面尺寸为80~150nm。
使用方法1:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,然后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,随后按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,等待60min后,用毛巾将所述灯饰擦拭一遍,灯饰立马光洁如新。与传统方法相比,本发明仅利用抹布擦拭一遍即可,尽量减少抹布与灯饰接触的机会,从而减少灯饰划伤的风险。
使用方法2:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,随后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,再按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,待所述清洁剂中的溶剂蒸发变干后,再利用鸡毛掸轻轻掸掉灯饰表面附着的微粒,待灯饰表面附着的微粒除去后,灯饰立马光洁如新。与传统方法相比,本发明充分利用了氧化石墨烯的吸附附着能力,氧化石墨烯不仅起到防止水滴下滑的作用,还与起泡剂协同作用,起到转移油污的能力。与使用方法1相比,使用方法2更简单便捷,且可以除去抹布够不到的空隙处藏有的油污。
实施例2
按照如下重量份的配比配制灯饰用清洁剂:
所述氧化石墨烯的平面尺寸为80~150nm。
使用方法1:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,然后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,随后按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,等待30min后,用毛巾将所述灯饰擦拭一遍,灯饰立马光洁如新。与传统方法相比,本发明仅利用抹布擦拭一遍即可,尽量减少抹布与灯饰接触的机会,从而减少灯饰划伤的风险。
使用方法2:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,随后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,再按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,待所述清洁剂中的溶剂蒸发变干后,再利用鸡毛掸轻轻掸掉灯饰表面附着的微粒,待灯饰表面附着的微粒除去后,灯饰立马光洁如新。与传统方法相比,本发明充分利用了氧化石墨烯的吸附附着能力,氧化石墨烯不仅起到防止水滴下滑的作用,还与起泡剂协同作用,起到转移油污的能力。与使用方法1相比,使用方法2更简单便捷,且可以除去抹布够不到的空隙处藏有的油污。
实施例3
按照如下重量份的配比配制灯饰用清洁剂:
所述氧化石墨烯的平面尺寸为80~150nm。
使用方法1:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,然后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,随后按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,等待15min后,用毛巾将所述灯饰擦拭一遍,灯饰立马光洁如新。与传统方法相比,本发明仅利用抹布擦拭一遍即可,尽量减少抹布与灯饰接触的机会,从而减少灯饰划伤的风险。
使用方法2:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,随后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,再按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,待所述清洁剂中的溶剂蒸发变干后,再利用鸡毛掸轻轻掸掉灯饰表面附着的微粒,待灯饰表面附着的微粒除去后,灯饰立马光洁如新。与传统方法相比,本发明充分利用了氧化石墨烯的吸附附着能力,氧化石墨烯不仅起到防止水滴下滑的作用,还与起泡剂协同作用,起到转移油污的能力。与使用方法1相比,使用方法2更简单便捷,且可以除去抹布够不到的空隙处藏有的油污。
实施例4
本实施例与实施例3中清洁剂的配方重量份相同,不同的是氧化石墨烯的平面尺寸为120nm~200nm。本实施例制得的清洁剂也具有较强的除污除油功能。
实施例5
本实施例与实施例3中清洁剂的配方重量份相同,不同的是氧化石墨烯的平面尺寸为200nm~300nm。本实施例制得的清洁剂也具有较强的除污除油功能。但是氧化石墨烯的平面尺寸过大,溶剂导致喷雾头堵塞。
实施例6
本实施例与实施例3中清洁剂的配方重量份相同,不同的是氧化石墨烯的平面尺寸为50nm~80nm。本实施例制得的清洁剂也具有较强的除污除油功能。但是氧化石墨烯的平面尺寸过小,待清洁剂中的溶剂蒸发变干后利用吹风机不易除去附着在灯饰表面的微粒。这可能是微粒尺寸小,则与灯饰表面的附着力强所致。
实施例7
本实施例按照如下重量份的配比配制灯饰用清洁剂:
所述氧化石墨烯的平面尺寸为80~150nm。
使用方法1:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,然后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,随后按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,等待30min后,用毛巾将所述灯饰擦拭一遍,灯饰立马光洁如新。与传统方法相比,本发明仅利用抹布擦拭一遍即可,尽量减少抹布与灯饰接触的机会,从而减少灯饰划伤的风险。
使用方法2:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,随后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,再按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,待所述清洁剂中的溶剂蒸发变干后,再利用鸡毛掸轻轻掸掉灯饰表面附着的微粒,待灯饰表面附着的微粒除去后,灯饰立马光洁如新。与传统方法相比,本发明充分利用了氧化石墨烯的吸附附着能力,氧化石墨烯不仅起到防止水滴下滑的作用,还与起泡剂协同作用,起到转移油污的能力。与使用方法1相比,使用方法2更简单便捷,且可以除去抹布够不到的空隙处藏有的油污。
实施例8
本实施例按照如下重量份的配比配制灯饰用清洁剂:
所述氧化石墨烯的平面尺寸为80~150nm。
使用方法1:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,然后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,随后按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,等待30min后,用毛巾将所述灯饰擦拭一遍,灯饰立马光洁如新。与传统方法相比,本发明仅利用抹布擦拭一遍即可,尽量减少抹布与灯饰接触的机会,从而减少灯饰划伤的风险。
使用方法2:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,随后将所述灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,再按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,待所述清洁剂中的溶剂蒸发变干后,再利用鸡毛掸轻轻掸掉灯饰表面附着的微粒,待灯饰表面附着的微粒除去后,灯饰立马光洁如新。与传统方法相比,本发明充分利用了氧化石墨烯的吸附附着能力,氧化石墨烯不仅起到防止水滴下滑的作用,还与起泡剂协同作用,起到转移油污的能力。与使用方法1相比,使用方法2更简单便捷,且可以除去抹布够不到的空隙处藏有的油污。
为了使本发明不污染室内环境,在以上实施例中,最好在灯饰下方放置一个置污盒,防止喷雾头将清洁剂喷洒到地面。或者将喷雾头靠近灯饰清洁面3~6cm,有效控制清洁剂的扩展与散落。
Claims (9)
1.一种灯饰用清洁剂,主要由如下组分组成:硬脂酸10~15份、橄榄油3~8份、聚山梨醇油酸脂4~10份、二乙醇胺0.5~4份、碳酸钠1~5份、起泡剂2~8份、硝酸银0.1~2份、氧化石墨烯1~3份、钼酸铋0.2~0.8份、柠檬酸钠5~9份、辛苯昔醇7~12份、香精0.2~0.8份、乙醇15~23份、余量的水。
2.根据权利要求1所述的灯饰用清洁剂,主要由如下组分组成:硬脂酸11~13份、橄榄油5~7份、聚山梨醇油酸脂5~8份、二乙醇胺1~3份、碳酸钠2~4份、起泡剂4~6份、硝酸银0.5~1.5份、氧化石墨烯1.5~2.5份、钼酸铋0.4~0.6份、柠檬酸钠6~8份、辛苯昔醇8~10份、香精0.4~0.6份、乙醇18~22份、余量的水。
3.根据权利要求2所述的灯饰用清洁剂,主要由如下组分组成:硬脂酸12份、橄榄油6份、聚山梨醇油酸脂7份、二乙醇胺2份、碳酸钠3份、起泡剂5份、硝酸银1份、氧化石墨烯2份、钼酸铋0.5份、柠檬酸钠7份、辛苯昔醇9份、香精0.5份、乙醇20份、水25份。
4.根据权利要求1-3任一项所述的灯饰用清洁剂,其特征在于:所述起泡剂为氨基酸起泡剂。
5.根据权利要求4所述的灯饰用清洁剂,其特征在于:所述氨基酸起泡剂为十二酰基甘氨酸钠、十六酰基甘氨酸钠或十八酰基甘氨酸钠中的一种或多种。
6.根据权利要求1-3任一项所述的灯饰用清洁剂,其特征在于:所述氧化石墨烯的平面尺寸为50~300nm之间。
7.根据权利要求6所述的灯饰用清洁剂,其特征在于:所述氧化石墨烯的平面尺寸为80~150nm之间。
8.一种灯饰用清洁剂的使用方法:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,然后将权利要求1所述的灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,随后按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,等待15~60min后,用毛巾将所述灯饰擦拭一遍即可。
9.一种灯饰用清洁剂的使用方法:首先利用鸡毛掸或吹风机将灯饰表面的大多数灰尘除去,随后将权利要求1所述的灯饰用清洁剂装入带喷雾头的罐体中,使用前先摇匀,再按压喷雾头,对准灯饰喷涂,将需要清洁的灯饰表面均喷上一层薄雾,待所述清洁剂中的溶剂蒸发变干后,再利用鸡毛掸或吹风机除去灯饰表面附着的微粒。
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CN101139545A (zh) * | 2007-10-24 | 2008-03-12 | 江门市中意灯饰水晶有限公司 | 一种装饰灯清洁剂 |
CN103045388A (zh) * | 2012-12-06 | 2013-04-17 | 青岛海芬海洋生物科技有限公司 | 一种水晶灯清洗剂 |
CN104560458A (zh) * | 2014-12-16 | 2015-04-29 | 江门市赛宁灯饰有限公司 | 一种用于灯具及光镜清洁剂的组合物 |
CN106118920A (zh) * | 2016-06-20 | 2016-11-16 | 苏州科斯曼照明工程有限公司 | 一种路灯清洗剂及其制备方法 |
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US10212932B2 (en) | 2016-07-28 | 2019-02-26 | eXion labs Inc. | Antimicrobial photoreactive composition comprising organic and inorganic multijunction composite |
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