CN106675732A - 一种机械抗磨修复润滑剂及其制备方法 - Google Patents

一种机械抗磨修复润滑剂及其制备方法 Download PDF

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CN106675732A
CN106675732A CN201611238442.5A CN201611238442A CN106675732A CN 106675732 A CN106675732 A CN 106675732A CN 201611238442 A CN201611238442 A CN 201611238442A CN 106675732 A CN106675732 A CN 106675732A
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刘开成
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Chuzhou Pinzhida Electrical Technology Co Ltd
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Abstract

本发明公开了一种机械抗磨修复润滑剂及其制备方法,包括以下重量份的组分:植物油15~20份,矿物质油20~30份,有机硅油10~15份,乙醇20~30份,丙三醇15~25份,碳酸钠3~7份,脂肪醇聚氧乙烯醚1~5份,山梨醇3~8份,硅胶10~20份,纳米材料1~5份,硬脂酸2~5份,微晶石蜡3~6份,硫化异丁烯1~3份,二烷基二硫代磷酸锌1~5份,硫化铁1~5份,抗氧化剂2~6份,消泡剂1~3份,稳定剂3~5份,渗透剂1~5份。本发明提出的润滑剂,原料易得,润滑效果好,抗磨性强,兼具修复作用,能长久保持润滑性能,延长设备的使用寿命,还提出一种简单的制备该清洗剂的方法,条件温和,生产成本低。

Description

一种机械抗磨修复润滑剂及其制备方法
技术领域
本发明涉及精细化工领域,尤其涉及一种机械抗磨修复润滑剂及其制备方法。
背景技术
机械设备在运转使用时,各零件间会产生摩擦作用,长时间的摩擦会使零件造成磨损,影响零件的精密度和机械性能,所以在一定时间内常在设备摩擦出添加润滑剂,以减小机械零件间的摩擦,延长设备的使用寿命,所以润滑剂的使用需求量日趋增长。然而对于一些尺寸较大,运行时间较长的机械设备而言,传统的润滑剂作用并不明显,只能维持短时间内的润滑作用,由于传统的润滑剂的耐磨性能不强,致使设备进行长时间运转时仍会造成磨损。
发明内容
本发明的目的是为了解决现有技术中存在的缺点,而提出的一种机械抗磨修复润滑剂及其制备方法。
一种机械抗磨修复润滑剂,包括以下重量份的组分:植物油15~20份,矿物质油20~30份,有机硅油10~15份,乙醇20~30份,丙三醇15~25份,碳酸钠3~7份,脂肪醇聚氧乙烯醚1~5份,山梨醇3~8份,硅胶10~20份,纳米材料1~5份,硬脂酸2~5份,微晶石蜡3~6份,硫化异丁烯1~3份,二烷基二硫代磷酸锌1~5份,硫化铁1~5份,抗氧化剂2~6份,消泡剂1~3份,稳定剂3~5份,渗透剂1~5份。
一种机械抗磨修复润滑剂,包括以下重量份的组分:植物油17份,矿物质油25份,有机硅油13份,乙醇25份,丙三醇20份,碳酸钠5份,脂肪醇聚氧乙烯醚3份,山梨醇5份,硅胶15份,纳米材料3份,硬脂酸3份,微晶石蜡4份,硫化异丁烯2份,二烷基二硫代磷酸锌3份,硫化铁3份,抗氧化剂4份,消泡剂2份,稳定剂4份,渗透剂3份。
优选的,所述纳米材料为纳米氧化铜与纳米氧化锌或纳米氧化银的混合物,且纳米氧化铜与纳米氧化锌或纳米氧化银的重量份比为1~2:1。
优选的,所述抗氧化剂为苯酚和亚磷酸二乙酯的混合物。
一种机械抗磨修复润滑剂的制备方法,包括以下步骤:
S1:将相应重量份的植物油,矿物质油和有机硅油溶于相应重量份的乙醇中,得混合物A;
S2:将相应重量份的碳酸钠加入到装有相应重量份丙三醇的容器内,并进行机械搅拌,至固体溶解,得到混合溶液B;
S3:将混合溶液A加入到混合溶液B中,并加入相应重量份的脂肪醇聚氧乙烯醚,山梨醇,硬脂酸,微晶石蜡,硫化异丁烯,二烷基二硫代磷酸锌,硫化铁,抗氧化剂,消泡剂,稳定剂和渗透剂,机械搅拌10~20min,再加入相应重量份的硅胶和纳米材料即得抗磨修复润滑剂,再经灌装、包装即为成品。
本发明提出的一种机械抗磨修复润滑剂,使用的廉价易得的多种油作为主要组成部分,起到润滑剂的基础润滑作用,同时添加硬脂酸和微晶石蜡增强其润滑作用,并添加脂肪醇聚氧乙烯醚和山梨醇使润滑剂中的各组分分布均匀,硅胶、纳米材料、硫化异丁烯以及二烷基二硫代磷酸锌和硫化铁的组合可以增强其抗磨性,并使其具有一定的修复作用,延长设备的使用寿命,而且还提出一种简单的,制备条件温和的,生产成本低的制备该润滑剂的方法。
具体实施方式
下面结合具体实施例对本发明作进一步解说。
实施例一
本发明提出的一种机械抗磨修复润滑剂,包括以下重量份的组分:植物油17份,矿物质油25份,有机硅油13份,乙醇25份,丙三醇20份,碳酸钠5份,脂肪醇聚氧乙烯醚3份,山梨醇5份,硅胶15份,纳米氧化铜2份,纳米氧化锌1份,硬脂酸3份,微晶石蜡4份,硫化异丁烯2份,二烷基二硫代磷酸锌3份,硫化铁3份,苯酚2份,亚磷酸二乙酯2份,消泡剂2份,稳定剂4份,渗透剂3份。
其制备方法,包括以下步骤:
S1:将相应重量份的植物油,矿物质油和有机硅油溶于相应重量份的乙醇中,得混合物A;
S2:将相应重量份的碳酸钠加入到装有相应重量份丙三醇的容器内,并进行机械搅拌,至固体溶解,得到混合溶液B;
S3:将混合溶液A加入到混合溶液B中,并加入相应重量份的脂肪醇聚氧乙烯醚,山梨醇,硬脂酸,微晶石蜡,硫化异丁烯,二烷基二硫代磷酸锌,硫化铁,苯酚,亚磷酸二乙酯,消泡剂,稳定剂和渗透剂,机械搅拌15min,再加入相应重量份的硅胶,纳米氧化铜和纳米氧化锌即得抗磨修复润滑剂,再经灌装、包装即为成品。
实施例二
本发明提出的一种机械抗磨修复润滑剂,包括以下重量份的组分:植物油15份,矿物质油30份,有机硅油10份,乙醇30份,丙三醇15份,碳酸钠3份,脂肪醇聚氧乙烯醚5份,山梨醇8份,硅胶10份,纳米氧化铜1份,纳米氧化银1份,硬脂酸2份,微晶石蜡6份,硫化异丁烯1份,二烷基二硫代磷酸锌5份,硫化铁5份,苯酚1份,亚磷酸二乙酯1份,消泡剂3份,稳定剂3份,渗透剂1份。
其制备方法,包括以下步骤:
S1:将相应重量份的植物油,矿物质油和有机硅油溶于相应重量份的乙醇中,得混合物A;
S2:将相应重量份的碳酸钠加入到装有相应重量份丙三醇的容器内,并进行机械搅拌,至固体溶解,得到混合溶液B;
S3:将混合溶液A加入到混合溶液B中,并加入相应重量份的脂肪醇聚氧乙烯醚,山梨醇,硬脂酸,微晶石蜡,硫化异丁烯,二烷基二硫代磷酸锌,硫化铁,苯酚,亚磷酸二乙酯,消泡剂,稳定剂和渗透剂,机械搅拌10min,再加入相应重量份的硅胶,纳米氧化铜和纳米氧化银即得抗磨修复润滑剂,再经灌装、包装即为成品。
实施例三
本发明提出的一种机械抗磨修复润滑剂,包括以下重量份的组分:植物油20份,矿物质油20份,有机硅油15份,乙醇20份,丙三醇25份,碳酸钠7份,脂肪醇聚氧乙烯醚1份,山梨醇3份,硅胶20份,纳米氧化铜2份,纳米氧化银1份,硬脂酸5份,微晶石蜡3份,硫化异丁烯3份,二烷基二硫代磷酸锌1份,硫化铁1份,苯酚3份,亚磷酸二乙酯3份,消泡剂1份,稳定剂5份,渗透剂5份。
其制备方法,包括以下步骤:
S1:将相应重量份的植物油,矿物质油和有机硅油溶于相应重量份的乙醇中,得混合物A;
S2:将相应重量份的碳酸钠加入到装有相应重量份丙三醇的容器内,并进行机械搅拌,至固体溶解,得到混合溶液B;
S3:将混合溶液A加入到混合溶液B中,并加入相应重量份的脂肪醇聚氧乙烯醚,山梨醇,硬脂酸,微晶石蜡,硫化异丁烯,二烷基二硫代磷酸锌,硫化铁,苯酚,亚磷酸二乙酯,消泡剂,稳定剂和渗透剂,机械搅拌20min,再加入相应重量份的硅胶,纳米氧化铜和纳米氧化银即得抗磨修复润滑剂,再经灌装、包装即为成品。
实施例四
本发明提出的一种机械抗磨修复润滑剂,包括以下重量份的组分:植物油18份,矿物质油23份,有机硅油11份,乙醇26份,丙三醇20份,碳酸钠4份,脂肪醇聚氧乙烯醚4份,山梨醇4份,硅胶18份,纳米氧化铜2份,纳米氧化锌1份,硬脂酸4份,微晶石蜡6份,硫化异丁烯2份,二烷基二硫代磷酸锌3份,硫化铁4份,苯酚1份,亚磷酸二乙酯2份,消泡剂2份,稳定剂4份,渗透剂4份。
其制备方法,包括以下步骤:
S1:将相应重量份的植物油,矿物质油和有机硅油溶于相应重量份的乙醇中,得混合物A;
S2:将相应重量份的碳酸钠加入到装有相应重量份丙三醇的容器内,并进行机械搅拌,至固体溶解,得到混合溶液B;
S3:将混合溶液A加入到混合溶液B中,并加入相应重量份的脂肪醇聚氧乙烯醚,山梨醇,硬脂酸,微晶石蜡,硫化异丁烯,二烷基二硫代磷酸锌,硫化铁,苯酚,亚磷酸二乙酯,消泡剂,稳定剂和渗透剂,机械搅拌10min,再加入相应重量份的硅胶,纳米氧化铜和纳米氧化锌即得抗磨修复润滑剂,再经灌装、包装即为成品。
本发明提出的一种机械抗磨修复润滑剂,使用的廉价易得的多种油作为主要组成部分,起到润滑剂的基础润滑作用,同时添加硬脂酸和微晶石蜡增强其润滑作用,并添加脂肪醇聚氧乙烯醚和山梨醇使润滑剂中的各组分分布均匀,硅胶、纳米材料、硫化异丁烯以及二烷基二硫代磷酸锌和硫化铁的组合可以增强其抗磨性,并使其具有一定的修复作用,延长设备的使用寿命,而且还提出一种简单的,制备条件温和的,生产成本低的制备该润滑剂的方法。
以上所述,仅为本发明较佳的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,根据本发明的技术方案及其发明构思加以等同替换或改变,都应涵盖在本发明的保护范围之内。

Claims (5)

1.一种机械抗磨修复润滑剂,其特征在于,包括以下重量份的组分:植物油15~20份,矿物质油20~30份,有机硅油10~15份,乙醇20~30份,丙三醇15~25份,碳酸钠3~7份,脂肪醇聚氧乙烯醚1~5份,山梨醇3~8份,硅胶10~20份,纳米材料1~5份,硬脂酸2~5份,微晶石蜡3~6份,硫化异丁烯1~3份,二烷基二硫代磷酸锌1~5份,硫化铁1~5份,抗氧化剂2~6份,消泡剂1~3份,稳定剂3~5份,渗透剂1~5份。
2.一种机械抗磨修复润滑剂,其特征在于,包括以下重量份的组分:植物油17份,矿物质油25份,有机硅油13份,乙醇25份,丙三醇20份,碳酸钠5份,脂肪醇聚氧乙烯醚3份,山梨醇5份,硅胶15份,纳米材料3份,硬脂酸3份,微晶石蜡4份,硫化异丁烯2份,二烷基二硫代磷酸锌3份,硫化铁3份,抗氧化剂4份,消泡剂2份,稳定剂4份,渗透剂3份。
3.根据权利要求1所述的一种机械抗磨修复润滑剂,其特征在于,所述纳米材料为纳米氧化铜与纳米氧化锌或纳米氧化银的混合物,且纳米氧化铜与纳米氧化锌或纳米氧化银的重量份比为1~2:1。
4.根据权利要求1所述的一种机械抗磨修复润滑剂,其特征在于,所述抗氧化剂为苯酚和亚磷酸二乙酯的混合物。
5.一种机械抗磨修复润滑剂的制备方法,其特征在于,包括以下步骤:
S1:将相应重量份的植物油,矿物质油和有机硅油溶于相应重量份的乙醇中,得混合物A;
S2:将相应重量份的碳酸钠加入到装有相应重量份丙三醇的容器内,并进行机械搅拌,至固体溶解,得到混合溶液B;
S3:将混合溶液A加入到混合溶液B中,并加入相应重量份的脂肪醇聚氧乙烯醚,山梨醇,硬脂酸,微晶石蜡,硫化异丁烯,二烷基二硫代磷酸锌,硫化铁,抗氧化剂,消泡剂,稳定剂和渗透剂,机械搅拌10~20min,再加入相应重量份的硅胶和纳米材料即得抗磨修复润滑剂,再经灌装、包装即为成品。
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