CN106118913A - 一种电力半导体釉绝缘子清洗剂 - Google Patents
一种电力半导体釉绝缘子清洗剂 Download PDFInfo
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Abstract
本发明涉及一种电力半导体釉绝缘子清洗剂,由以下质量份数的组分组成:乙二醇丁醚18~22份、辛基酚聚氧乙烯醚14~18份、三氯生12~16份、柠檬酸18~22份、甘油二乙酸酯14~18份、单烷基醚磷酸酯钾盐12~16份、磺基丁二酸钠二辛酯18~22份、硬脂酸酯14~18份、苄基三苯基溴化膦12~16份、辛癸酸甘油酯18~22份、白油14~18份、钛酸酯14~18份、多菌灵12~16份、乙酸薄荷酯18~22份、乙撑双硬脂酰胺14~18份、聚丙烯酰胺12~16份、汉生胶18~22份、橄榄油14~18份、野菊维素12~16份、泊洛沙姆18~22份、蛋白葡聚糖酶14~18份、甜菜碱12~16份、水10000~20000份。本发明中的产品具有较好的清洗效果,并具有较好的灭菌功能。
Description
技术领域
本发明涉及一种电力半导体釉绝缘子清洗剂,属于电力绝缘子清洁处理技术领域。
背景技术
半导体釉绝缘子,特别是在工业区、山区和交通要道等附近运行的绝缘子,常受到工业污染或自然界灰尘、鸟粪等污染。在干燥情况下,这些附着在绝缘子的污染物电阻一般都很大,对运行暂时没有造成什么危险。但当空气湿度较大时,绝缘子表面的污染物被湿润,其表面导电率剧增,使绝缘在工频和操作冲击电压下的闪络电压显著降低,甚至可以使绝缘子在工频电压下就发生闪络,这类闪络通常被称为污闪。在毛毛雨、大雾等不利的天气条件下,绝缘子表面闪络时发出“吱吱”声,在晚上巡查时,可以看到明显的闪光。针对电力绝缘子,有必要采用合适的清洗剂予以清洁处理。
发明内容
本发明的目的在于提供一种电力半导体釉绝缘子清洗剂,以便更好地实现电力半导体釉绝缘子清洗剂的功能。
为了实现上述目的,本发明的技术方案如下。
一种电力半导体釉绝缘子清洗剂,由以下质量份数的组分组成:乙二醇丁醚18~22份、辛基酚聚氧乙烯醚14~18份、三氯生12~16份、柠檬酸18~22份、甘油二乙酸酯14~18份、单烷基醚磷酸酯钾盐12~16份、磺基丁二酸钠二辛酯18~22份、硬脂酸酯14~18份、苄基三苯基溴化膦12~16份、辛癸酸甘油酯18~22份、白油14~18份、钛酸酯14~18份、多菌灵12~16份、乙酸薄荷酯18~22份、乙撑双硬脂酰胺14~18份、聚丙烯酰胺12~16份、汉生胶18~22份、橄榄油14~18份、野菊维素12~16份、泊洛沙姆18~22份、蛋白葡聚糖酶14~18份、甜菜碱12~16份、水10000~20000份。
进一步地,上述电力半导体釉绝缘子清洗剂,由以下质量份数的组分组成:乙二醇丁醚18份、辛基酚聚氧乙烯醚14份、三氯生12份、柠檬酸18份、甘油二乙酸酯14份、单烷基醚磷酸酯钾盐12份、磺基丁二酸钠二辛酯18份、硬脂酸酯14份、苄基三苯基溴化膦12份、辛癸酸甘油酯18份、白油14份、钛酸酯14份、多菌灵12份、乙酸薄荷酯18份、乙撑双硬脂酰胺14份、聚丙烯酰胺12份、汉生胶18份、橄榄油14份、野菊维素12份、泊洛沙姆18份、蛋白葡聚糖酶14份、甜菜碱12份、水10000份。
进一步地,上述电力半导体釉绝缘子清洗剂,由以下质量份数的组分组成:乙二醇丁醚20份、辛基酚聚氧乙烯醚16份、三氯生14份、柠檬酸20份、甘油二乙酸酯16份、单烷基醚磷酸酯钾盐14份、磺基丁二酸钠二辛酯20份、硬脂酸酯16份、苄基三苯基溴化膦14份、辛癸酸甘油酯20份、白油16份、钛酸酯16份、多菌灵14份、乙酸薄荷酯20份、乙撑双硬脂酰胺16份、聚丙烯酰胺14份、汉生胶20份、橄榄油16份、野菊维素14份、泊洛沙姆20份、蛋白葡聚糖酶16份、甜菜碱14份、水15000份。
进一步地,上述电力半导体釉绝缘子清洗剂,由以下质量份数的组分组成:乙二醇丁醚22份、辛基酚聚氧乙烯醚18份、三氯生16份、柠檬酸22份、甘油二乙酸酯18份、单烷基醚磷酸酯钾盐16份、磺基丁二酸钠二辛酯22份、硬脂酸酯18份、苄基三苯基溴化膦16份、辛癸酸甘油酯22份、白油18份、钛酸酯18份、多菌灵16份、乙酸薄荷酯22份、乙撑双硬脂酰胺18份、聚丙烯酰胺16份、汉生胶22份、橄榄油18份、野菊维素16份、泊洛沙姆22份、蛋白葡聚糖酶18份、甜菜碱16份、水20000份。
进一步地,所述白油的粘度在25℃为12000~14000mpa.s。
进一步地,所述乙酸薄荷酯的粘度在25℃为10000~12000mpa.s。
进一步地,所述橄榄油的粘度在25℃为8000~10000mpa.s。
进一步地,所述甘油二乙酸酯的粘度在25℃为14000~16000mpa.s。
进一步地,所述辛癸酸甘油酯的粘度在25℃为6000~8000mpa.s。
进一步地,上述电力半导体釉绝缘子清洗剂制备方法步骤如下:
(1)将所述质量份数的乙二醇丁醚、辛基酚聚氧乙烯醚、三氯生、柠檬酸、甘油二乙酸酯、单烷基醚磷酸酯钾盐、磺基丁二酸钠二辛酯、硬脂酸酯、苄基三苯基溴化膦、辛癸酸甘油酯、白油、钛酸酯、泊洛沙姆、蛋白葡聚糖酶、甜菜碱加入上述质量份数的水中,超声高速分散,超声波频率为20~40KHz,分散速度5000~5400r/min,分散时间为30~60min;
(2)加入所述质量份数的乙酸薄荷酯、乙撑双硬脂酰胺、聚丙烯酰胺,超声高速分散,超声波频率为20~35KHz,分散速度4800~5200r/min,分散时间为30~50min;
(3)加入所述质量份数的多菌灵、汉生胶、橄榄油、野菊维素,超声高速分散,超声波频率为20~30KHz,分散速度4600~4800r/min,分散时间为20~40min;混合均匀后制得本品。
该发明的有益效果在于:本电力半导体釉绝缘子清洗剂制备工艺方法简单,本发明中的产品具有较好的清洗效果,并具有较好的灭菌功能,其性能也较为优异.对人体伤害小。
具体实施方式
下面结合实施例对本发明的具体实施方式进行描述,以便更好的理解本发明。
实施例1
本实施例中的电力半导体釉绝缘子清洗剂,由以下质量份数的组分组成:乙二醇丁醚18份、辛基酚聚氧乙烯醚14份、三氯生12份、柠檬酸18份、甘油二乙酸酯14份、单烷基醚磷酸酯钾盐12份、磺基丁二酸钠二辛酯18份、硬脂酸酯14份、苄基三苯基溴化膦12份、辛癸酸甘油酯18份、白油14份、钛酸酯14份、多菌灵12份、乙酸薄荷酯18份、乙撑双硬脂酰胺14份、聚丙烯酰胺12份、汉生胶18份、橄榄油14份、野菊维素12份、泊洛沙姆18份、蛋白葡聚糖酶14份、甜菜碱12份、水10000份。
所述白油的粘度在25℃为12000mpa.s。
所述乙酸薄荷酯的粘度在25℃为10000mpa.s。
所述橄榄油的粘度在25℃为8000mpa.s。
所述甘油二乙酸酯的粘度在25℃为14000mpa.s。
所述辛癸酸甘油酯的粘度在25℃为6000mpa.s。
上述电力半导体釉绝缘子清洗剂制备方法步骤如下:
(1)将所述质量份数的乙二醇丁醚、辛基酚聚氧乙烯醚、三氯生、柠檬酸、甘油二乙酸酯、单烷基醚磷酸酯钾盐、磺基丁二酸钠二辛酯、硬脂酸酯、苄基三苯基溴化膦、辛癸酸甘油酯、白油、钛酸酯、泊洛沙姆、蛋白葡聚糖酶、甜菜碱加入上述质量份数的水中,超声高速分散,超声波频率为20kHz,分散速度5400r/min,分散时间为60min;
(2)加入所述质量份数的乙酸薄荷酯、乙撑双硬脂酰胺、聚丙烯酰胺,超声高速分散,超声波频率为20kHz,分散速度5200r/min,分散时间为50min;
(3)加入所述质量份数的多菌灵、汉生胶、橄榄油、野菊维素,超声高速分散,超声波频率为20kHz,分散速度4800r/min,分散时间为40min;混合均匀后制得本品。
实施例2
本实施例中的电力半导体釉绝缘子清洗剂,由以下质量份数的组分组成:乙二醇丁醚20份、辛基酚聚氧乙烯醚16份、三氯生14份、柠檬酸20份、甘油二乙酸酯16份、单烷基醚磷酸酯钾盐14份、磺基丁二酸钠二辛酯20份、硬脂酸酯16份、苄基三苯基溴化膦14份、辛癸酸甘油酯20份、白油16份、钛酸酯16份、多菌灵14份、乙酸薄荷酯20份、乙撑双硬脂酰胺16份、聚丙烯酰胺14份、汉生胶20份、橄榄油16份、野菊维素14份、泊洛沙姆20份、蛋白葡聚糖酶16份、甜菜碱14份、水15000份。
所述白油的粘度在25℃为13000mpa.s。
所述乙酸薄荷酯的粘度在25℃为11000mpa.s。
所述橄榄油的粘度在25℃为9000mpa.s。
所述甘油二乙酸酯的粘度在25℃为15000mpa.s。
所述辛癸酸甘油酯的粘度在25℃为7000mpa.s。
上述电力半导体釉绝缘子清洗剂制备方法步骤如下:
(1)将所述质量份数的乙二醇丁醚、辛基酚聚氧乙烯醚、三氯生、柠檬酸、甘油二乙酸酯、单烷基醚磷酸酯钾盐、磺基丁二酸钠二辛酯、硬脂酸酯、苄基三苯基溴化膦、辛癸酸甘油酯、白油、钛酸酯、泊洛沙姆、蛋白葡聚糖酶、甜菜碱加入上述质量份数的水中,超声高速分散,超声波频率为30kHz,分散速度5200r/min,分散时间为45min;
(2)加入所述质量份数的乙酸薄荷酯、乙撑双硬脂酰胺、聚丙烯酰胺,超声高速分散,超声波频率为27kHz,分散速度5000r/min,分散时间为40min;
(3)加入所述质量份数的多菌灵、汉生胶、橄榄油、野菊维素,超声高速分散,超声波频率为25kHz,分散速度4700r/min,分散时间为30min;混合均匀后制得本品。
实施例3
本实施例中的电力半导体釉绝缘子清洗剂,由以下质量份数的组分组成:乙二醇丁醚22份、辛基酚聚氧乙烯醚18份、三氯生16份、柠檬酸22份、甘油二乙酸酯18份、单烷基醚磷酸酯钾盐16份、磺基丁二酸钠二辛酯22份、硬脂酸酯18份、苄基三苯基溴化膦16份、辛癸酸甘油酯22份、白油18份、钛酸酯18份、多菌灵16份、乙酸薄荷酯22份、乙撑双硬脂酰胺18份、聚丙烯酰胺16份、汉生胶22份、橄榄油18份、野菊维素16份、泊洛沙姆22份、蛋白葡聚糖酶18份、甜菜碱16份、水20000份。
所述白油的粘度在25℃为14000mpa.s。
所述乙酸薄荷酯的粘度在25℃为12000mpa.s。
所述橄榄油的粘度在25℃为10000mpa.s。
所述甘油二乙酸酯的粘度在25℃为16000mpa.s。
所述辛癸酸甘油酯的粘度在25℃为8000mpa.s。
上述电力半导体釉绝缘子清洗剂制备方法步骤如下:
(1)将所述质量份数的乙二醇丁醚、辛基酚聚氧乙烯醚、三氯生、柠檬酸、甘油二乙酸酯、单烷基醚磷酸酯钾盐、磺基丁二酸钠二辛酯、硬脂酸酯、苄基三苯基溴化膦、辛癸酸甘油酯、白油、钛酸酯、泊洛沙姆、蛋白葡聚糖酶、甜菜碱加入上述质量份数的水中,超声高速分散,超声波频率为40kHz,分散速度5000r/min,分散时间为30min;
(2)加入所述质量份数的乙酸薄荷酯、乙撑双硬脂酰胺、聚丙烯酰胺,超声高速分散,超声波频率为35kHz,分散速度4800r/min,分散时间为30min;
(3)加入所述质量份数的多菌灵、汉生胶、橄榄油、野菊维素,超声高速分散,超声波频率为30kHz,分散速度4600r/min,分散时间为20min;混合均匀后制得本品。
对上述实施例样品进行效果对比,对比样品为某市售清洗液,对比结果如表1所示。
表1本发明实施例产品效果对比
其中,清洗效果打分:4表示好,3表示较好,2表示合格,1表示差。
可见,本发明中的产品,具有较好的清洗效果,并具有较好的灭菌功能,其性能也较为优异,对人体伤害小。
以上所述是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本发明的保护范围。
Claims (10)
1.一种电力半导体釉绝缘子清洗剂,其特征在于:由以下质量份数的组分组成:乙二醇丁醚18~22份、辛基酚聚氧乙烯醚14~18份、三氯生12~16份、柠檬酸18~22份、甘油二乙酸酯14~18份、单烷基醚磷酸酯钾盐12~16份、磺基丁二酸钠二辛酯18~22份、硬脂酸酯14~18份、苄基三苯基溴化膦12~16份、辛癸酸甘油酯18~22份、白油14~18份、钛酸酯14~18份、多菌灵12~16份、乙酸薄荷酯18~22份、乙撑双硬脂酰胺14~18份、聚丙烯酰胺12~16份、汉生胶18~22份、橄榄油14~18份、野菊维素12~16份、泊洛沙姆18~22份、蛋白葡聚糖酶14~18份、甜菜碱12~16份、水10000~20000份。
2.根据权利要求1所述的电力半导体釉绝缘子清洗剂,其特征在于:所述电力半导体釉绝缘子清洗剂由以下质量份数的组分组成:乙二醇丁醚18份、辛基酚聚氧乙烯醚14份、三氯生12份、柠檬酸18份、甘油二乙酸酯14份、单烷基醚磷酸酯钾盐12份、磺基丁二酸钠二辛酯18份、硬脂酸酯14份、苄基三苯基溴化膦12份、辛癸酸甘油酯18份、白油14份、钛酸酯14份、多菌灵12份、乙酸薄荷酯18份、乙撑双硬脂酰胺14份、聚丙烯酰胺12份、汉生胶18份、橄榄油14份、野菊维素12份、泊洛沙姆18份、蛋白葡聚糖酶14份、甜菜碱12份、水10000份。
3.根据权利要求1至2所述的电力半导体釉绝缘子清洗剂,其特征在于:所述电力半导体釉绝缘子清洗剂由以下质量份数的组分组成:乙二醇丁醚20份、辛基酚聚氧乙烯醚16份、三氯生14份、柠檬酸20份、甘油二乙酸酯16份、单烷基醚磷酸酯钾盐14份、磺基丁二酸钠二辛酯20份、硬脂酸酯16份、苄基三苯基溴化膦14份、辛癸酸甘油酯20份、白油16份、钛酸酯16份、多菌灵14份、乙酸薄荷酯20份、乙撑双硬脂酰胺16份、聚丙烯酰胺14份、汉生胶20份、橄榄油16份、野菊维素14份、泊洛沙姆20份、蛋白葡聚糖酶16份、甜菜碱14份、水15000份。
4.根据权利要求1至3所述的电力半导体釉绝缘子清洗剂,其特征在于:所述电力半导体釉绝缘子清洗剂由以下质量份数的组分组成:乙二醇丁醚22份、辛基酚聚氧乙烯醚18份、三氯生16份、柠檬酸22份、甘油二乙酸酯18份、单烷基醚磷酸酯钾盐16份、磺基丁二酸钠二辛酯22份、硬脂酸酯18份、苄基三苯基溴化膦16份、辛癸酸甘油酯22份、白油18份、钛酸酯18份、多菌灵16份、乙酸薄荷酯22份、乙撑双硬脂酰胺18份、聚丙烯酰胺16份、汉生胶22份、橄榄油18份、野菊维素16份、泊洛沙姆22份、蛋白葡聚糖酶18份、甜菜碱16份、水20000份。
5.根据权利要求1所述的电力半导体釉绝缘子清洗剂,其特征在于:所述白油的粘度在25℃为12000~14000mpa.s。
6.根据权利要求1所述的电力半导体釉绝缘子清洗剂,其特征在于:所述乙酸薄荷酯的粘度在25℃为10000~12000mpa.s。
7.根据权利要求1所述的电力半导体釉绝缘子清洗剂,其特征在于:所述橄榄油的粘度在25℃为8000~10000mpa.s。
8.根据权利要求1所述的电力半导体釉绝缘子清洗剂,其特征在于:所述甘油二乙酸酯的粘度在25℃为14000~16000mpa.s。
9.根据权利要求1所述的电力半导体釉绝缘子清洗剂,其特征在于:所述辛癸酸甘油酯的粘度在25℃为6000~8000mpa.s。
10.根据权利要求1至9所述的电力半导体釉绝缘子清洗剂,其特征在于:所述电力半导体釉绝缘子清洗剂制备方法步骤如下:
(1)将所述质量份数的乙二醇丁醚、辛基酚聚氧乙烯醚、三氯生、柠檬酸、甘油二乙酸酯、单烷基醚磷酸酯钾盐、磺基丁二酸钠二辛酯、硬脂酸酯、苄基三苯基溴化膦、辛癸酸甘油酯、白油、钛酸酯、泊洛沙姆、蛋白葡聚糖酶、甜菜碱加入上述质量份数的水中,超声高速分散,超声波频率为20~40KHz,分散速度5000~5400r/min,分散时间为30~60min;
(2)加入所述质量份数的乙酸薄荷酯、乙撑双硬脂酰胺、聚丙烯酰胺,超声高速分散,超声波频率为20~35KHz,分散速度4800~5200r/min,分散时间为30~50min;
(3)加入所述质量份数的多菌灵、汉生胶、橄榄油、野菊维素,超声高速分散,超声波频率为20~30KHz,分散速度4600~4800r/min,分散时间为20~40min;混合均匀后制得本品。
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