CN113684083A - 一种涡轮蜗杆齿轮油及其制备方法 - Google Patents
一种涡轮蜗杆齿轮油及其制备方法 Download PDFInfo
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Abstract
本发明公开了一种涡轮蜗杆齿轮油及其制备方法,按质量百分比计,涡轮蜗杆齿轮油包括以下组份:基础油A;石蜡基精制基础油500SN;异辛基酸性磷酸酯十八胺盐;硫化异丁烯;噻二唑衍生物/苯三唑衍生物;酚类抗氧剂;胺类抗氧剂;聚醚类高分子化合物;甲基硅油。本发明利用菜籽油和光亮油150BS制成基础油,减少光亮油的使用量,提高菜籽油的使用量,有助于实现生物降解性,更加有助于保护环境,减少对人体的伤害,制备方法简单、便捷,耐磨,不易乳化,综合性能优良,满足320#涡轮蜗杆齿轮油的需求,避免蜗轮蜗杆铜件腐蚀,具有良好的高低温抗氧化性能及优异的分水特性,能够有效延长油品的使用周期,有效保护工件。
Description
技术领域
本发明属于齿轮油制备技术领域,具体涉及一种涡轮蜗杆齿轮油及其制备方法。
背景技术
传动齿轮的主要工作特点是载荷大、转速高,同时承受各种冲击和振动。润滑对于保证传动齿轮维持良好的工作性能具有十分重要的意义,对提高齿轮的承载能力、降低摩擦、减小磨损、提高齿轮效率以及延长齿轮的使用寿命等作用非凡。但是现有的蜗轮蜗杆齿轮油在大多数情况下直接用普通的齿轮油代替。这导致了很多问题:其一,蜗轮蜗杆齿轮油的摩擦副部件有一部分为铜件,普通齿轮油里有相当大含量的活性硫成分,导致了铜件易腐蚀的情况。大大影响了机械寿命。其二,蜗轮蜗杆齿轮与普通齿轮的工作方式也不尽相同,蜗轮蜗杆齿轮需要更小的摩擦系数,来保证摩擦副产生的热量小以及摩擦副之间减少磨损。
发明内容
为解决现有技术中的问题,本发明的目的在于提供一种涡轮蜗杆齿轮油及其制备方法。
为实现上述目的,达到上述技术效果,本发明采用的技术方案为:
一种涡轮蜗杆齿轮油,按质量百分比计,包括以下组份:
基础油A 78.23998%-85.98499%
石蜡基精制基础油500SN 12%-18%
异辛基酸性磷酸酯十八胺盐0.4%-0.8%
硫化异丁烯1%-1.3%
噻二唑衍生物/苯三唑衍生物0.01%-0.05%
酚类抗氧剂0.4%-1%
胺类抗氧剂0.2%-0.6%
聚醚类高分子化合物0.005%-0.01%
甲基硅油0.00001%-0.00002%。
进一步的,按质量百分比计,包括以下组份:
基础油A80.65198%-83.36399%
石蜡基精制基础油500SN 14%-16%
异辛基酸性磷酸酯十八胺盐0.6%-0.8%
硫化异丁烯1%-1.1%
噻二唑衍生物/苯三唑衍生物0.03%-0.04%
酚类抗氧剂0.5%-0.8%
胺类抗氧剂0.5%-0.6%
聚醚类高分子化合物0.006%-0.008%
甲基硅油0.00001%-0.00002%。
进一步的,所述基础油A由菜籽油和光亮油150BS按1:10质量比制备而成。
进一步的,所述硫化异丁烯的含硫量不小于35%,其中不含活性硫。
进一步的,所述涡轮蜗杆齿轮油的pH值不大于8,40℃下的粘度不小于288mm2/s。
进一步的,所述酚类抗氧剂为2,6-二叔丁基对甲酚、4,4-硫代双(2-叔丁基-6-甲基酚)中的一种。
进一步的,所述胺类抗氧剂为混合二烷基二苯胺、苯乙烯基辛基二苯胺、芳基胺中的一种或者几种的组合。
酚类抗氧剂和胺类抗氧剂的主要作用为:为齿轮油提供优异的氧化安定性,延长齿轮油使用寿命及抑制其粘度增长。
聚醚类高分子化合物为齿轮油提供优异的抗乳化性能,避免齿轮油因为在使用过程中因为水分的混入导致性能下降。
本发明公开了一种涡轮蜗杆齿轮油的制备方法,包括以下步骤:
按照配比称取光亮油150BS和菜籽油、石蜡基精制基础油500SN并进行加热搅拌混匀,加热温度55-65℃,加热时间40-60min,得到基础油A;
按照配比称取异辛基酸性磷酸酯十八胺盐、硫化异丁烯、噻二唑衍生物/苯三唑衍生物、酚类抗氧剂、胺类抗氧剂、聚醚类高分子化合物和甲基硅油,再加入基础油A,加热搅拌混匀,加热温度55-65℃,加热时间60-90min,得到所需涡轮蜗杆齿轮油。
与现有技术相比,本发明的有益效果为:
本发明公开了一种涡轮蜗杆齿轮油及其制备方法,按质量百分比计,涡轮蜗杆齿轮油包括以下组份:基础油A 78.23998%-85.98499%、石蜡基精制基础油500SN 12%-18%、异辛基酸性磷酸酯十八胺盐0.4%-0.8%、硫化异丁烯1%-1.3%、噻二唑衍生物/苯三唑衍生物0.01%-0.05%、酚类抗氧剂0.4%-1%、胺类抗氧剂0.2%-0.6%、聚醚类高分子化合物0.005%-0.01%、甲基硅油0.00001%-0.00002%。本发明利用菜籽油和光亮油150BS制成基础油,减少光亮油的使用量,提高菜籽油的使用量,有助于实现生物降解性,更加有助于保护环境,减少对人体的伤害,制备方法简单、便捷,耐磨,不易乳化,综合性能优良,满足320#涡轮蜗杆齿轮油的需求;采用市场上容易采购的基础油作基础油,添加低硫含量添加剂,辅以抗氧剂、腐蚀抑制剂、抗磨减摩剂、抗泡剂以及抗乳化剂,针对蜗轮蜗杆齿轮的实际工况进行设计,避免蜗轮蜗杆铜件腐蚀,具有良好的高低温抗氧化性能,能够有效延长油品的使用周期,具有优异的分水特性,使得该产品在实际应用过程中即使混入了少量水分也不会导致产品润滑失效的问题,有效保护工件。
具体实施方式
下面对本发明的实施例进行详细阐述,以使本发明的优点和特征能更易于被本领域技术人员理解,从而对本发明的保护范围做出更为清楚明确的界定。
一种涡轮蜗杆齿轮油,按质量百分比计,包括以下组份:
基础油A 78.23998%-85.98499%
石蜡基精制基础油500SN 12%-18%
异辛基酸性磷酸酯十八胺盐0.4%-0.8%
硫化异丁烯1%-1.3%
噻二唑衍生物/苯三唑衍生物0.01%-0.05%
酚类抗氧剂0.4%-1%
胺类抗氧剂0.2%-0.6%
聚醚类高分子化合物0.005%-0.01%
甲基硅油0.00001%-0.00002%。
优选的,一种涡轮蜗杆齿轮油,按质量百分比计,包括以下组份:
基础油A 80.65198%-83.36399%
石蜡基精制基础油500SN 14%-16%
异辛基酸性磷酸酯十八胺盐0.6%-0.8%
硫化异丁烯1%-1.1%
噻二唑衍生物/苯三唑衍生物0.03%-0.04%
酚类抗氧剂0.5%-0.8%
胺类抗氧剂0.5%-0.6%
聚醚类高分子化合物0.006%-0.008%
甲基硅油0.00001%-0.00002%。
基础油A由菜籽油和光亮油150BS按1:10质量比制备而成。
硫化异丁烯的含硫量不小于35%,其中不含活性硫。
涡轮蜗杆齿轮油的pH值不大于8,40℃下的粘度不小于288mm2/s。
酚类抗氧剂为2,6-二叔丁基对甲酚、4,4-硫代双(2-叔丁基-6-甲基酚)中的一种。
胺类抗氧剂为混合二烷基二苯胺、苯乙烯基辛基二苯胺、芳基胺中的一种或者几种的组合。
一种涡轮蜗杆齿轮油的制备方法,包括以下步骤:
按照配比称取光亮油150BS和菜籽油、石蜡基精制基础油500SN并进行加热搅拌混匀,加热温度55-65℃,加热时间40-60min,得到基础油A;
按照配比称取异辛基酸性磷酸酯十八胺盐、硫化异丁烯、噻二唑衍生物/苯三唑衍生物、酚类抗氧剂、胺类抗氧剂、聚醚类高分子化合物和甲基硅油,再加入基础油A,加热搅拌混匀,加热温度55-65℃,加热时间60-90min,得到所需涡轮蜗杆齿轮油。
实施例1
一种涡轮蜗杆齿轮油,按质量百分比计,包括以下组份:
基础油A 78.23998%
石蜡基精制基础油500SN 18%
异辛基酸性磷酸酯十八胺盐0.8%
硫化异丁烯1.3%
噻二唑衍生物/苯三唑衍生物0.05%
酚类抗氧剂1%
胺类抗氧剂0.6%
聚醚类高分子化合物0.01%
甲基硅油0.00002%。
基础油A由菜籽油和光亮油150BS按1:10质量比制备而成。
硫化异丁烯的含硫量为55%,其中不含活性硫。
涡轮蜗杆齿轮油的pH值不大于8,40℃下的粘度不小于288mm2/s。
酚类抗氧剂为2,6-二叔丁基对甲酚。
胺类抗氧剂为苯乙烯基辛基二苯胺。
一种涡轮蜗杆齿轮油的制备方法,包括以下步骤:
按照配比称取光亮油150BS和菜籽油、石蜡基精制基础油500SN并进行加热搅拌混匀,加热温度60℃,加热时间40min,得到基础油A;
按照配比称取异辛基酸性磷酸酯十八胺盐、硫化异丁烯、噻二唑衍生物/苯三唑衍生物、酚类抗氧剂、胺类抗氧剂、聚醚类高分子化合物和甲基硅油,再加入基础油A,加热搅拌混匀,加热温度60℃,加热时间66min,得到所需涡轮蜗杆齿轮油。
实施例2
一种涡轮蜗杆齿轮油,按质量百分比计,包括以下组份:
基础油A 80.65198%
石蜡基精制基础油500SN 16%
异辛基酸性磷酸酯十八胺盐0.8%
硫化异丁烯1.1%
噻二唑衍生物/苯三唑衍生物0.04%
酚类抗氧剂0.8%
胺类抗氧剂0.6%
聚醚类高分子化合物0.008%
甲基硅油0.00002%。
酚类抗氧剂为4,4-硫代双(2-叔丁基-6-甲基酚)。
胺类抗氧剂为芳基胺。
一种涡轮蜗杆齿轮油的制备方法,包括以下步骤:
按照配比称取光亮油150BS和菜籽油、石蜡基精制基础油500SN并进行加热搅拌混匀,加热温度55℃,加热时间40min,得到基础油A;
按照配比称取异辛基酸性磷酸酯十八胺盐、硫化异丁烯、噻二唑衍生物/苯三唑衍生物、酚类抗氧剂、胺类抗氧剂、聚醚类高分子化合物和甲基硅油,再加入基础油A,加热搅拌混匀,加热温度65℃,加热时间70min,得到所需涡轮蜗杆齿轮油。
余同实施例1。
实施例3
一种涡轮蜗杆齿轮油,按质量百分比计,包括以下组份:
基础油A 83.36399%
石蜡基精制基础油500SN 14%
异辛基酸性磷酸酯十八胺盐0.6%
硫化异丁烯1%
噻二唑衍生物/苯三唑衍生物0.03%
酚类抗氧剂0.5%
胺类抗氧剂0.5%
聚醚类高分子化合物0.006%
甲基硅油0.00001%。
酚类抗氧剂为2,6-二叔丁基对甲酚。
胺类抗氧剂为苯乙烯基辛基二苯胺。
一种涡轮蜗杆齿轮油的制备方法,包括以下步骤:
按照配比称取光亮油150BS和菜籽油、石蜡基精制基础油500SN并进行加热搅拌混匀,加热温度60℃,加热时间40min,得到基础油A;
按照配比称取异辛基酸性磷酸酯十八胺盐、硫化异丁烯、噻二唑衍生物/苯三唑衍生物、酚类抗氧剂、胺类抗氧剂、聚醚类高分子化合物和甲基硅油,再加入基础油A,加热搅拌混匀,加热温度60℃,加热时间60min,得到所需涡轮蜗杆齿轮油。
余同实施例1。
实施例4
一种涡轮蜗杆齿轮油,按质量百分比计,包括以下组份:
基础油A 80%
石蜡基精制基础油500SN 17.271985%
异辛基酸性磷酸酯十八胺盐0.5%
硫化异丁烯1.2%
噻二唑衍生物/苯三唑衍生物0.02%
酚类抗氧剂0.6%
胺类抗氧剂0.4%
聚醚类高分子化合物0.008%
甲基硅油0.000015%。
余同实施例1。
本发明未具体描述的部分采用现有技术即可,在此不做赘述。
以上所述仅为本发明的实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (8)
1.一种涡轮蜗杆齿轮油,其特征在于,按质量百分比计,包括以下组份:
基础油A 78.23998%-85.98499%
石蜡基精制基础油500SN 12%-18%
异辛基酸性磷酸酯十八胺盐 0.4%-0.8%
硫化异丁烯 1%-1.3%
噻二唑衍生物/苯三唑衍生物 0.01%-0.05%
酚类抗氧剂 0.4%-1%
胺类抗氧剂 0.2%-0.6%
聚醚类高分子化合物 0.005%-0.01%
甲基硅油 0.00001%-0.00002%。
2.根据权利要求1所述的一种涡轮蜗杆齿轮油,其特征在于,按质量百分比计,包括以下组份:
基础油A 80.65198%-83.36399%
石蜡基精制基础油500SN 14%-16%
异辛基酸性磷酸酯十八胺盐 0.6%-0.8%
硫化异丁烯 1%-1.1%
噻二唑衍生物/苯三唑衍生物 0.03%-0.04%
酚类抗氧剂 0.5%-0.8%
胺类抗氧剂 0.5%-0.6%
聚醚类高分子化合物 0.006%-0.008%
甲基硅油 0.00001%-0.00002%。
3.根据权利要求1或2所述的一种涡轮蜗杆齿轮油,其特征在于,所述基础油A由菜籽油和光亮油150BS按1:10质量比制备而成。
4.根据权利要求1或2所述的一种涡轮蜗杆齿轮油,其特征在于,所述硫化异丁烯的含硫量不小于35%,其中不含活性硫。
5.根据权利要求1或2所述的一种涡轮蜗杆齿轮油,其特征在于,所述涡轮蜗杆齿轮油的pH值不大于8,40℃下的粘度不小于288mm2/s。
6.根据权利要求1或2所述的一种涡轮蜗杆齿轮油,其特征在于,所述酚类抗氧剂为2,6-二叔丁基对甲酚、4,4-硫代双(2-叔丁基-6-甲基酚)中的一种。
7.根据权利要求1或2所述的一种涡轮蜗杆齿轮油,其特征在于,所述胺类抗氧剂为混合二烷基二苯胺、苯乙烯基辛基二苯胺、芳基胺中的一种或者几种的组合。
8.根据权利要求1-6任一所述的一种涡轮蜗杆齿轮油的制备方法,其特征在于,包括以下步骤:
按照配比称取光亮油150BS和菜籽油、石蜡基精制基础油500SN并进行加热搅拌混匀,加热温度55-65℃,加热时间40-60min,得到基础油A;
按照配比称取异辛基酸性磷酸酯十八胺盐、硫化异丁烯、噻二唑衍生物/苯三唑衍生物、酚类抗氧剂、胺类抗氧剂、聚醚类高分子化合物和甲基硅油,再加入基础油A,加热搅拌混匀,加热温度55-65℃,加热时间60-90min,得到所需涡轮蜗杆齿轮油。
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