CN106010815A - 去污防水上光洗车液 - Google Patents

去污防水上光洗车液 Download PDF

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CN106010815A
CN106010815A CN201610396533.5A CN201610396533A CN106010815A CN 106010815 A CN106010815 A CN 106010815A CN 201610396533 A CN201610396533 A CN 201610396533A CN 106010815 A CN106010815 A CN 106010815A
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陶明海
黄立忠
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Hubei Xin Hai Letter Chemical Co Ltd
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Abstract

本发明提出了一种去污防水上光洗车液,克服了传统洗车液功能单一,洗车打蜡工序多,耗时长,耗力大,耗能耗水多的缺点;该洗车液为中性,对皮肤无刺激,对车身涂层无腐蚀,对环境无污染;洗车后,改性氨基硅油膜紧密地附着在汽车车身表面上,而具有防水性和光亮度,在紫外光作用下不易黄变;该洗车液适用所有外观颜色的汽车,包括白色汽车。

Description

去污防水上光洗车液
技术领域
本发明涉及汽车清洗护理用品领域,尤其涉及一种去污防水上光洗车液。
背景技术
随着人们生活水平的提高,汽车也逐渐走进千家万户,汽车已成为许多家庭成员的代步工具,据资料报导,至2015年6月底,全国汽车拥有量已达1.6亿辆,平均每八个人就有一部汽车。在城市,不少家庭拥有二辆以上汽车。以前洗车打蜡都要到汽车店去,花费少至三十元以上,多至一百多元,对于许多低收入家庭或打工族来说,也是一笔不少的开支。
传统的汽车洗车打蜡工艺包括清洗、晾干或吹干、打蜡、晾干或吹干、揩光多道工序,使用不同溶剂,不但耗时长,而且消耗大量劳力,还有浪费很多溶剂,污染环境。
中国专利CN1195685A,公开了一种护车汽车液,其组成为:聚乙二醇、石蜡、硅油、乳化剂,石蜡乳化需要加热、冷却,耗时耗电,乳液稳定性差,用该含蜡洗车液洗车后,无亮光,无防水功能,去污效果也不见好。
中国专利CN102115638A,公开了一种环保汽车清洗上光剂,采用皂角提取液、甲基硅油、棕榈蜡、乳化剂、丙二醇及水做成环保洗车液,配方中使用棕榈蜡为上光的主要成份,棕榈蜡出自巴西,资源短缺,价格贵,且熔点高,不易乳化。该产品用于汽车清洗打蜡,光亮度并不明显,因为用的是固体蜡,在常温下是固体悬浮物,喷涂到车身上后,又须等其干后,再用抹布用力摩擦才能发亮,由于必须要有揩光这一道工序,所以并不省力。
发明内容
有鉴于此,本发明提出了一种去污效果好、省力的去污防水上光洗车液。
本发明的技术方案是这样实现的:一种去污防水上光洗车液,包括以下组 分,甲基硅油、不黄变氨基硅油、乳化剂、防冻剂和防腐剂。
在以上技术方案的基础上,优选的,各组分质量份数如下:
在以上技术方案的基础上,优选的,所述甲基硅油采用粘度为50~300厘斯的甲基硅油和粘度为500~10000的甲基硅油混合而成。进一步优选的,所述甲基硅油各组分质量份数如下,低粘度甲基硅油0.5~5份;高粘度甲基硅油0.5~5份。
在以上技术方案的基础上,优选的,所述不黄变氨基硅油包括环氧基改性氨基硅油,碳酸酯改性氨基硅油,内酯改性氨基硅油、酰胺氨基硅油或哌嗪改性氨基硅油。改性氨基硅油的特点是不易黄变,可用于白色车身的护理。
本发明所采用的乳化剂可采用非离子表面活性剂,也可是两性离子表面活性剂、某些阴离子表面活性剂和阳离子活性剂。优选的,所述乳化剂包括1~5质量份数的非离子表面活性剂和1~10质量份数的阴离子表面活性剂。优选的,所述非离子表面活性剂包括烷基醇聚氧乙烯醚系列表面活性剂、脂肪酸酯聚乙烯酯系列表面活性剂,或烷基糖苷类表面活性剂;阴离子表面活性剂包括烷基醇聚醚硫酸酯盐。非离子表面活性剂的亲水亲油平衡值HLB值一般在10~16之间,用量一般为硅油总量的10~20%,就能把乳液做得很稳定,包括热稳定性、低温稳定性及电解质稳定性和机械稳定性,还有稀释稳定性。
防腐剂包括防微生物腐败和防金属腐蚀,防腐剂可用季铵盐和三乙醇胺类,本发明包含改性氨基硅油,本身对金属有防腐蚀作用,可以不加三乙醇胺类防腐剂。在以上技术方案的基础上,优选的,所述防腐剂采用季铵盐。
在以上技术方案的基础上,所述防冻剂采用丙二醇、乙二醇或聚乙二醇。
在以上技术方案的基础上,优选的,还包括香精。
本发明的去污防水上光洗车液相对于现有技术具有以下有益效果:
(1)克服了传统洗车液功能单一,洗车打蜡工序多,耗时长,耗力大,耗能耗水多的缺点,采用甲基硅油、不黄变氨基硅油、乳化剂、扩散剂、防冻剂、防腐剂为原料,做成水包油乳液型,使用时兑水5—10倍成洗车工作液,用海绵或毛巾蘸工作液后揩抹车身,或先用喷雾法喷汽车车身,然后用棉布拖把擦洗汽车身,最后用自来水冲洗后,车身就变得干净、光亮、防水了,雨淋在上面,成水珠滚走;
(2)该洗车液为中性,对皮肤无刺激,对车身涂层无腐蚀,对环境无污染;
(3)氨基硅油是带胺基的聚硅氧烷,本身乳化是要加酸成为胺盐,带弱阳电荷,与带负电荷的车身有静电吸附作用,洗车后,成单分子膜紧密地附着在汽车车身表面上,而具有防水性和光亮度;一般冲水时,灰尘油污随洗涤液一起被水带走,而氨基硅油膜不易被水冲走,而且本发明所用的氨基硅油是伯胺基被封闭的改性氨基硅油,在紫外光作用下不易黄变;该洗车液适用所有外观颜色的汽车,包括白色汽车,而使用一般未改性的氨基硅油,就只适用于深色汽车,如红色、灰色、黑色汽车。
具体实施方式
下面将结合本发明实施方式,对本发明实施方式中的技术方案进行清楚、完整地描述,显然,所描述的实施方式仅仅是本发明一部分实施方式,而不是全部的实施方式。基于本发明中的实施方式,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施方式,都属于本发明保护的范围。
实施例1
本实施例的去污防水上光洗车液,各组分配方如下:
在500毫升塑料杯中,将硅油、乳化剂搅拌均匀得到油相物料;将乙酸、丙二醇加入去离子水中得到水相物料;在高速均化机中,开启均化机,将水相物料分次加入油相物料中进行乳化,均化机的转速为2000—4000rpm,均化30分钟后,得到去污防水上光洗车液。
测得乳液的平均粒径为1微米,接着进行机械稳定试验、热稳定试验、低温稳定试验和用自来水稀释试验,都合格。
实施例2
本实施例的去污防水上光洗车液,各组分配方如下:
在500毫升塑料杯中,将硅油、乳化剂搅拌均匀得到油相物料;将乙酸、丙二醇加入去离子水中得到水相物料;在高速均化机中,开启均化机,将水相物料分次加入油相物料中进行乳化,均化机的转速为2000—4000rpm,均化30分钟后,得到去污防水上光洗车液。
测得乳液的平均粒径为1微米,接着进行机械稳定试验、热稳定试验、低温稳定试验和用自来水稀释试验,都合格。
将上述洗车液200克兑水10倍后,得到2升洗车工作液,用棉毛巾在洗工作液打湿后备用,汽车车身泥土太多时,先用自来水冲洗干净后,再用沾饱洗车工作液的毛巾抹擦车身,太约20分钟可以把车身抹遍,然后用自来水冲洗一遍后,车身变得清洁光亮。所用汽车工作液还剩一半,证明100克洗车液就可洗一部车。
将200克的洗车液兑水10倍成2升洗车工作液,用纱布过滤后,用喷枪吸取上述过滤过的工作液,喷于汽车车身上,玻璃先用塑料纸遮好,然后用拖把或电动拖把在喷过洗车工作液的车身上拖一遍,再用高压水冲洗一遍,便得到清洁明亮发光的汽车车身,整个过程为15分钟。
实施例3
以上所述仅为本发明的较佳实施方式而已,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (10)

1.一种去污防水上光洗车液,其特征在于:包括以下组分,甲基硅油、不黄变氨基硅油、乳化剂、防冻剂和防腐剂。
2.如权利要求1所述的去污防水上光洗车液,其特征在于:各组分质量份数如下:
3.如权利要求1所述的去污防水上光洗车液,其特征在于:所述甲基硅油采用粘度为50~300厘斯的甲基硅油和粘度为500~10000的甲基硅油混合而成。
4.如权利要求3所述的去污防水上光洗车液,其特征在于:所述甲基硅油各组分质量份数如下,
低粘度甲基硅油 0.5~5份
高粘度甲基硅油 0.5~5份。
5.如权利要求1所述的去污防水上光洗车液,其特征在于:所述不黄变氨基硅油包括环氧基改性氨基硅油,碳酸酯改性氨基硅油,内酯改性氨基硅油、酰胺氨基硅油或哌嗪改性氨基硅油。
6.如权利要求1所述的去污防水上光洗车液,其特征在于:所述乳化剂包括1~5质量份数的非离子表面活性剂和1~10质量份数的阴离子表面活性剂。
7.如权利要求6所述的去污防水上光洗车液,其特征在于:所述非离子表面活性剂包括烷基醇聚氧乙烯醚系列表面活性剂、脂肪酸酯聚乙烯酯系列表面活性剂,或烷基糖苷类表面活性剂;阴离子表面活性剂包括烷基醇聚醚硫酸酯盐。
8.如权利要求1所述的去污防水上光洗车液,其特征在于:所述防冻剂采用季铵盐。
9.如权利要求1所述的去污防水上光洗车液,其特征在于:所述防腐剂采用丙二醇、乙二醇或聚乙二醇。
10.如权利要求1所述的去污防水上光洗车液,其特征在于:还包括香精。
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