CN109517643A - 一种轴承用润滑油及其制备方法 - Google Patents
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Abstract
一种轴承用润滑油,按重量份计算,包括聚α‑烯烃、季戊四醇、高粘度指数精制矿物油、聚丙三醇醚、聚亚烷基乙二醇、硫代磷酸酯、二乙烯三胺五甲叉膦酸、琥珀酸酯、双烯基丁二酰亚胺、双烯基丁二酰亚、氟化铈纳米微粒、聚烷氧聚酚、烷基二苯胺、丁基辛基二苯胺。本发明的轴承用润滑油性能优异,起到抗磨、减摩的效果;本发明的基础油基础之上,又添加了复杂的特定物质组合,这些物质组合起来,能够显著提升润滑效果,有效延长了轴承的使用寿命。
Description
技术领域
本发明涉及润滑油领域,特别涉及一种轴承用润滑油及其制备方法。
背景技术
轴承是当代机械设备的重要零部件,其主要功能是支撑机械旋转体,降低其运动过程中的摩擦系数,并保证其回转精度。按运动元件摩擦性质的不同,轴承可分为滚动轴承和滑动轴承两大类。随着工业制造的发展,对轴承的要求也越来越高,要求轴承材料环保安全不含有有害成分,轴承 材料具有高强度,同时轴承能够适应不同的环境和工况,具有抗应力腐蚀和化学腐蚀的能力。
润滑油用以减少摩擦,保护机械及加工件的液体或半固体润滑剂,主要起润滑、冷却、防锈、清洁、密封和缓冲等作用,石油润滑油的用量占总用量90%以上,润滑油主要用于减少运动部件表面间的摩擦,同时对机器设备具有冷却、密封、防腐、防锈、绝缘、功率传送、清洗杂质等作用。
发明内容
本发明的目的在于提供一种轴承用润滑油及其制备方法,具有良好的润滑效果,能够有限延长轴承的使用寿命。
本发明的技术方案:一种轴承用润滑油,按重量份计算,包括聚α-烯烃30-50份、季戊四醇20-40份、高粘度指数精制矿物油50-70份、聚丙三醇醚30-50份、聚亚烷基乙二醇15-40份、硫代磷酸酯20-50份、二乙烯三胺五甲叉膦酸30-50份、琥珀酸酯30-50份、双烯基丁二酰亚胺30-40份、双烯基丁二酰亚10-20份、氟化铈纳米微粒25-50份、聚烷氧聚酚10-30份、烷基二苯胺10-30份、丁基辛基二苯胺10-30份。
前述轴承用润滑油,按重量分计算,包括聚α-烯烃35-39份、季戊四醇25-30份、高粘度指数精制矿物油55-65份、聚丙三醇醚35-45份、聚亚烷基乙二醇20-30份、硫代磷酸酯30-40份、二乙烯三胺五甲叉膦酸35-45份、琥珀酸酯35-45份、双烯基丁二酰亚胺32-38份、双烯基丁二酰亚12-18份、氟化铈纳米微粒35-45份、聚烷氧聚酚15-25份、烷基二苯胺15-25份、丁基辛基二苯胺15-25份。
前述轴承用润滑油,按重量分计算,其特征在于:包括聚α-烯烃38份、季戊四醇28份、高粘度指数精制矿物油60份、聚丙三醇醚40份、聚亚烷基乙二醇25份、硫代磷酸酯35份、二乙烯三胺五甲叉膦酸40份、琥珀酸酯40份、双烯基丁二酰亚胺35份、双烯基丁二酰亚15份、氟化铈纳米微粒40份、聚烷氧聚酚20份、烷基二苯胺20份、丁基辛基二苯胺20份。
前述轴承用润滑油的制备方法,包括以下步骤:
(1)取括聚α-烯烃、季戊四醇、高粘度指数精制矿物油、聚丙三醇醚、聚亚烷基乙二醇、硫代磷酸酯,搅拌混合均匀,得基础油;
(2)取二乙烯三胺五甲叉膦酸、琥珀酸酯、双烯基丁二酰亚胺、双烯基丁二酰亚、氟化铈纳米微粒、聚烷氧聚酚、烷基二苯胺,搅拌混合均匀,得混合物A;之后将混合物A加入到基础油中,搅拌均匀,得混合物B;
(3)搅拌条件下,取丁基辛基二苯胺加入到混合物B中,之后加热至83-88℃,保温2-5h;冷却至常温,即得所述轴承用润滑油。
与现有技术相比,本发明的轴承用润滑油性能优异,起到抗磨、减摩的效果;;本发明的基础油基础之上,又添加了复杂的特定物质组合,这些物质组合起来,能够显著提升润滑效果,有效延长了轴承的使用寿命。
具体实施方式
实施例1
一种轴承用润滑油,按重量份计算,包括聚α-烯烃30份、季戊四醇20份、高粘度指数精制矿物油50份、聚丙三醇醚30份、聚亚烷基乙二醇15份、硫代磷酸酯20份、二乙烯三胺五甲叉膦酸30份、琥珀酸酯30份、双烯基丁二酰亚胺30份、双烯基丁二酰亚10份、氟化铈纳米微粒25份、聚烷氧聚酚10份、烷基二苯胺10份、丁基辛基二苯胺10份。
所述轴承用润滑油的制备方法,其特征在于,包括以下步骤:
(1)取括聚α-烯烃、季戊四醇、高粘度指数精制矿物油、聚丙三醇醚、聚亚烷基乙二醇、硫代磷酸酯,搅拌混合均匀,得基础油;
(2)取二乙烯三胺五甲叉膦酸、琥珀酸酯、双烯基丁二酰亚胺、双烯基丁二酰亚、氟化铈纳米微粒、聚烷氧聚酚、烷基二苯胺,搅拌混合均匀,得混合物A;之后将混合物A加入到基础油中,搅拌均匀,得混合物B;
(3)搅拌条件下,取丁基辛基二苯胺加入到混合物B中,之后加热至83℃,保温2h;冷却至常温,即得所述轴承用润滑油。
实施例2
一种轴承用润滑油,按重量份计算,包括聚α-烯烃38份、季戊四醇28份、高粘度指数精制矿物油60份、聚丙三醇醚40份、聚亚烷基乙二醇25份、硫代磷酸酯35份、二乙烯三胺五甲叉膦酸40份、琥珀酸酯40份、双烯基丁二酰亚胺35份、双烯基丁二酰亚15份、氟化铈纳米微粒40份、聚烷氧聚酚20份、烷基二苯胺20份、丁基辛基二苯胺20份。
所述轴承用润滑油的制备方法,其特征在于,包括以下步骤:
(1)取括聚α-烯烃、季戊四醇、高粘度指数精制矿物油、聚丙三醇醚、聚亚烷基乙二醇、硫代磷酸酯,搅拌混合均匀,得基础油;
(2)取二乙烯三胺五甲叉膦酸、琥珀酸酯、双烯基丁二酰亚胺、双烯基丁二酰亚、氟化铈纳米微粒、聚烷氧聚酚、烷基二苯胺,搅拌混合均匀,得混合物A;之后将混合物A加入到基础油中,搅拌均匀,得混合物B;
(3)搅拌条件下,取丁基辛基二苯胺加入到混合物B中,之后加热至85℃,保温3h;冷却至常温,即得所述轴承用润滑油。
实施例3
一种轴承用润滑油,按重量份计算,包括聚α-烯烃50份、季戊四醇40份、高粘度指数精制矿物油70份、聚丙三醇醚50份、聚亚烷基乙二醇40份、硫代磷酸酯50份、二乙烯三胺五甲叉膦酸50份、琥珀酸酯50份、双烯基丁二酰亚胺40份、双烯基丁二酰亚20份、氟化铈纳米微粒50份、聚烷氧聚酚30份、烷基二苯胺30份、丁基辛基二苯胺30份。
所述轴承用润滑油的制备方法,其特征在于,包括以下步骤:
(1)取括聚α-烯烃、季戊四醇、高粘度指数精制矿物油、聚丙三醇醚、聚亚烷基乙二醇、硫代磷酸酯,搅拌混合均匀,得基础油;
(2)取二乙烯三胺五甲叉膦酸、琥珀酸酯、双烯基丁二酰亚胺、双烯基丁二酰亚、氟化铈纳米微粒、聚烷氧聚酚、烷基二苯胺,搅拌混合均匀,得混合物A;之后将混合物A加入到基础油中,搅拌均匀,得混合物B;
(3)搅拌条件下,取丁基辛基二苯胺加入到混合物B中,之后加热至88℃,保温5h;冷却至常温,即得所述轴承用润滑油。
Claims (4)
1.一种轴承用润滑油,按重量份计算,其特征在于:包括聚α-烯烃30-50份、季戊四醇20-40份、高粘度指数精制矿物油50-70份、聚丙三醇醚30-50份、聚亚烷基乙二醇15-40份、硫代磷酸酯20-50份、二乙烯三胺五甲叉膦酸30-50份、琥珀酸酯30-50份、双烯基丁二酰亚胺30-40份、双烯基丁二酰亚10-20份、氟化铈纳米微粒25-50份、聚烷氧聚酚10-30份、烷基二苯胺10-30份、丁基辛基二苯胺10-30份。
2.根据权利要求1所述轴承用润滑油,按重量分计算,其特征在于:包括聚α-烯烃35-39份、季戊四醇25-30份、高粘度指数精制矿物油55-65份、聚丙三醇醚35-45份、聚亚烷基乙二醇20-30份、硫代磷酸酯30-40份、二乙烯三胺五甲叉膦酸35-45份、琥珀酸酯35-45份、双烯基丁二酰亚胺32-38份、双烯基丁二酰亚12-18份、氟化铈纳米微粒35-45份、聚烷氧聚酚15-25份、烷基二苯胺15-25份、丁基辛基二苯胺15-25份。
3.根据权利要求1所述轴承用润滑油,按重量分计算,其特征在于:包括聚α-烯烃38份、季戊四醇28份、高粘度指数精制矿物油60份、聚丙三醇醚40份、聚亚烷基乙二醇25份、硫代磷酸酯35份、二乙烯三胺五甲叉膦酸40份、琥珀酸酯40份、双烯基丁二酰亚胺35份、双烯基丁二酰亚15份、氟化铈纳米微粒40份、聚烷氧聚酚20份、烷基二苯胺20份、丁基辛基二苯胺20份。
4.根据权利要求1-3任意一项所述轴承用润滑油的制备方法,其特征在于,包括以下步骤:
(1)取括聚α-烯烃、季戊四醇、高粘度指数精制矿物油、聚丙三醇醚、聚亚烷基乙二醇、硫代磷酸酯,搅拌混合均匀,得基础油;
(2)取二乙烯三胺五甲叉膦酸、琥珀酸酯、双烯基丁二酰亚胺、双烯基丁二酰亚、氟化铈纳米微粒、聚烷氧聚酚、烷基二苯胺,搅拌混合均匀,得混合物A;之后将混合物A加入到基础油中,搅拌均匀,得混合物B;
(3)搅拌条件下,取丁基辛基二苯胺加入到混合物B中,之后加热至83-88℃,保温2-5h;冷却至常温,即得所述轴承用润滑油。
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CN103642570A (zh) * | 2013-12-04 | 2014-03-19 | 杜峰 | 一种油膜轴承润滑油组合物 |
CN104804800A (zh) * | 2015-05-05 | 2015-07-29 | 南通莱必特轴承有限公司 | 轴承用润滑油的制备方法 |
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CN103642570A (zh) * | 2013-12-04 | 2014-03-19 | 杜峰 | 一种油膜轴承润滑油组合物 |
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