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1.
以化学还原法从电镀铜废液中回收的纳米铜粉为固体润滑油添加剂,在四球式摩擦磨损试验机上研究纳米铜粉的加入量对润滑油摩擦学性能的影响。采用SEM、EDAX等分析磨斑表面,初步探讨纳米铜粉抗磨减摩机制。结果表明:纳米铜粉的添加显著提高基础油的抗磨减摩性能,当纳米铜粉加入量为0.3%(质量分数)时,其摩擦因数和磨斑直径分别比基础油减小33.4%和19%。含纳米铜粉润滑油在高载荷下具有更好的抗磨减摩性能。纳米铜粉在摩擦过程中抗磨减摩机制主要为填充作用和沉积自修复膜作用机制。  相似文献   

2.
赵修臣  刘颖  王富耻 《润滑与密封》2005,(2):103-104,121
利用化学共沉淀法制备了平均粒径为10nm、油酸表面修饰的Fe3O4粒子,并对其作为润滑油添加剂的摩擦学性能进行了研究。试验结果表明,添加油酸修饰的纳米Fe3O4粒子的润滑油表现出了较好的抗磨减摩性能,但是,纳米粒子的添加量有一最佳值。与基础油相比,添加纳米Fe3O4粒子润滑油的摩擦因数最大降低了26%,磨损量降低了28%。在摩擦磨损过程中,添加纳米Fe3O4粒子润滑油的摩擦力矩的变化表现出了时间效应。添加纳米Fe3O4粒子润滑油摩擦磨损后的磨痕表面比基础油摩擦磨损后的磨痕表面光滑,可以推测,纳米Fe3O4粒子对摩擦表面的抛光作用提高了润滑油的摩擦学性能。  相似文献   

3.
采用均匀沉淀法制备了硬脂酸修饰的纳米ZnS粒子,用四球摩擦磨损试验机考察了其作为润滑油添加剂的摩擦学性能,并用扫描电子显微镜和X射线光电子能谱仪对磨斑进行了表面分析.结果表明:在一定添加量范围内,硬脂酸修饰的纳米ZnS粒子可明显改善基础油的摩擦学性能;在摩擦过程中,纳米ZnS粒子在摩擦表面的沉积和通过摩擦化学反应生成的化学反应膜,显著提高了基础油的抗磨减摩性能.  相似文献   

4.
以纳米WS_2和TiN为添加剂,研究不同纳米材料及含量对基础油500SN减摩抗磨性能的影响。试验结果显示,在添加纳米材料后,润滑油的减摩抗磨性能有了明显提升,磨损类型也发生了明显的改变,其中在添加纳米TiN后的磨损类型由磨粒磨损变为黏着磨损,在添加纳米WS_2变为黏着磨损与磨粒磨损共存;随着纳米粒子质量分数的增加,润滑油的减摩抗磨特性先提升后下降,其中0.3%质量分数的纳米TiN的减摩抗磨效果最好,相比基础油,可以使摩擦因数下降5%~8%,磨斑直径下降26%~32%。  相似文献   

5.
为改善低黏度润滑油的摩擦磨损性能和成膜性能,选用纳米TiO2为添加剂,低黏度的聚α烯烃(PAO8、PAO10)和聚醚(PAG)作为基础油,在四球式摩擦磨损实验机上考察纳米TiO2添加剂对润滑油摩擦磨损性能的影响,利用点接触光弹流润滑试验台,研究不同速度、载荷下和纳米TiO2添加量对润滑油成膜性能的影响。结果表明:加入一定质量分数的纳米TiO2添加剂能够明显提高润滑油的抗磨减摩性能,在PAO8、PAG和PAO10基础油中分别加入质量分数0. 3%、0. 05%和0. 3%的纳米TiO2时,摩擦因数和磨斑直径均最小;综合比较摩擦因数和磨斑直径,纳米TiO2在PAO8基础油中表现出最好的抗磨减摩性能,摩擦因数减小了约54. 5%,磨斑直径降低了约10. 4%;随着卷吸速度的增加,润滑油的最小膜厚也逐渐增加,在相同卷吸速度下,与纯基础油相比,添加一定质量分数纳米TiO2添加剂的最小膜厚明显增加;随着纳米TiO2粒子添加量...  相似文献   

6.
采用水热反应制备出β-Ni(OH)2,然后通过水热还原得到Ni/β-Ni(OH)2纳米复合粉体材料,采用X射线衍射仪(XRD)和扫描电子显微镜(SEM)对复合材料的相结构、成分及形貌进行表征分析。采用四球摩擦磨损试验机评价制备的Ni/β-Ni(OH)2作为润滑油添加剂的摩擦学性能,基础油为PAO6。摩擦试验后,采用SEM分析典型试验钢球磨斑的表面形貌,利用能谱仪(EDS)研究磨斑表面化学元素的组成,探讨Ni/β-Ni(OH)2纳米复合润滑添加剂的减摩抗磨机制。结果表明:Ni/β-Ni(OH)2纳米复合材料作为润滑添加剂具有极好的减摩抗磨性能,显著优于基础油PAO6和未负载纳米Ni的二维β-Ni(OH)2层状材料;与基础油相比,添加0.1%质量分数Ni/β-Ni(OH)2添加剂的油样的摩擦因数和磨斑直径分别降低了17.6%和41.5%;Ni/β-Ni(OH)2纳米复合粉体综合了纳米Ni及层状β-Ni(OH)2两部分结构特性,在摩擦过程中,复合材料中的纳米金属粒子Ni与层状结构材料β-Ni(OH)2能够相互增强起到协同润滑作用。  相似文献   

7.
利用化学共沉淀法制备了平均粒径为59nm、采用硅烷偶联剂表面修饰的纳米Fe3O4粒子,并对其作为润滑油添加剂的摩擦学性能进行了研究。试验结果表明,添加硅烷偶联剂修饰的纳米Fe3O4粒子的润滑油表现出较好的抗磨减摩效果,能有效提高润滑油的抗磨减摩性能以及承载能力,当纳米Fe3O4的质量分数在1‰~3‰时产生的抗磨减摩效果较好。与空白20#润滑油相比,添加质量分数3‰纳米Fe3O4粒子的润滑油的摩擦因数平均降低了8%,磨损量不仅没有增加,反而出现了负磨损现象,且添加纳米Fe3O4粒子的润滑油摩擦磨损后的磨痕较浅。  相似文献   

8.
共混制备蒙脱土与Cu(MMT/Cu)复合纳米粒子,将其添加到150N基础油中,以45#钢为摩擦副,利用MMU-10G摩擦磨损试验机考察其摩擦学性能,使用EPMA-1600电子探针、金相显微镜、Genesis能谱仪进行试样磨损面形貌观察和组成元素分析。结果表明:MMT/Cu复合纳米粒子作为润滑油添加剂具有优异的减摩效果和抗磨性能,与基础油相比,添加了MMT/Cu复合纳米粒子的油样使摩擦副的平均摩擦因数下降52%,摩擦副试样失重减少55%,这是由于MMT/Cu复合纳米粒子在摩擦表面生成了自修复膜层。  相似文献   

9.
将KH550偶联剂修饰的纳米蒙脱石和纳米坡缕石,分别按质量比3%添加到150N基础油中制备2种纳米润滑油分散体系,用激光粒度分析仪、TEM、IR表征纳米添加剂的分散稳定性,在MMU-10G摩擦磨损试验机上测试2种纳米润滑油对45#钢的减摩抗磨性能,用SEM和EDX等分析摩擦试样表面成分与形貌的变化及影响摩擦学性能的机制。结果表明:纳米蒙脱石平均粒径较小,在150N基础油中分散更稳定;2种纳米润滑油相比纯基础油润滑时的平均摩擦因数和磨损量均明显下降,其中纳米蒙脱石润滑油的抗磨减摩性能最好;2种纳米润滑油润滑时摩擦试样表面分别生成了含蒙脱石和坡缕石特征元素的自修复膜层,其中蒙脱石特征元素含量相对较高,说明纳米蒙脱石摩擦学性能更好。  相似文献   

10.
添加纳米磁性微粒的润滑油摩擦学行为研究   总被引:1,自引:0,他引:1  
冯雪君  杨志伊 《润滑与密封》2007,32(3):122-124,127
用化学方法制备纳米MnZnFe2O4磁性微粒,在四球摩擦磨损试验机和立式万能摩擦磨损试验机上考察了MnZnFe2O4纳米磁性微粒作为润滑油添加剂的抗磨减摩性能及对磨损表面的修复作用,并用扫描电子显微镜观察分析了磨斑表面形貌。实验表明,MnZnFe2O4纳米微粒添加剂可以显著提高基础油的承载能力,减小磨斑直径;磁性颗粒有利于加强吸附在摩擦副表面上形成物理吸附膜,并在摩擦表面形成自修复膜,对磨损表面具有一定的修复作用。  相似文献   

11.
Jianqi Ma  Yufei Mo  Mingwu Bai 《Wear》2009,266(7-8):627-631
Monodisperse Ag nanoparticles with a particle size of about 6–7 nm and low volatile multialkylated cyclopentanes (MACs) lubricant were prepared. The effect of Ag nanoparticles as additive in MACs base oil on the friction and wear behavior of MACs was investigated. The friction and wear test of a steel disc sliding against the same steel counterpart ball was carried out on an Optimal SRV oscillating friction and wear tester. The morphology and elemental distribution of the worn surface of both the steel ball and steel disc and the chemical feature of typical element thereof were examined using a JEM-1200EX scanning electron microscope (SEM) equipped with a Kevex energy dispersive X-ray analyzer attachment (EDS) and X-ray photoelectron spectroscope (XPS), respectively. Friction and wear test indicates that the wear resistance and load-carrying capacity of MACs base oil were markedly raised and its friction coefficient changed little when 2% Ag nanoparticles were added in it. Results of SEM/EDS and XPS show that Ag nanoparticles were deposited on the friction pair surfaces to form low shearing stress metal Ag protective film in rubbing process.  相似文献   

12.
纳米Al/Sn金属颗粒对润滑油抗磨极压性能的影响   总被引:6,自引:2,他引:6  
利用四球试验机分别对添加有纳米铅粉、锡粉以及Al Sn金属粉的润滑油进行极压和抗磨性能实验。采用SEM(扫描电子显微镜)对摩擦表面进行观察,采用EDS(能量色散谱仪)对表面进行元素测定。测试结果表明.纳米Al Sn金属粉可在较宽的载荷范围内明显改善润滑油的极压抗磨性能。其作用机理是锡粉在低载荷阶段沉积到摩擦表面起到抗磨剂作用,铝粉在高载荷阶段沉积到摩擦表面起到极压剂作用.从而实现了在低载荷到高载荷范围内对润滑油抗磨极压性能的提高.  相似文献   

13.
Muscovite/La2O3 composite powders were prepared by ball-milling solid-state chemical reaction at room temperature. The phase composition and micromorphology of the composite powders were characterized by X-ray diffraction (XRD), scanning electron microscopy (SEM), and energy dispersive X-ray spectroscopy (EDX). The tribological properties of different samples were tested and compared using four-ball wear testing on an MMW-1A multifunctional friction and wear testing machine. The SEM micrography and energy spectrum of the composite powders illustrated that La2O3 particles were coated on the surface of muscovite particles. The results of the friction tests indicated that lubrication oil with muscovite/La2O3 composite powders presents better friction reducing and antiwear properties than that of the base oil, and the friction coefficients and diameters of wear scars decreased by 47.6 and 11.2% using 500SN base oil with 0.6g/L of muscovite/La2O3 composite powders as additives, respectively. The composite powders with 5 wt% La2O3 present the best comprehensive tribological properties. The micromorphology and chemical composition of the worn surface were analyzed by SEM and EDX, which confirm that the composite powders directly participate in the complicated physicochemical process of reactions on the worn surfaces, therefore improving the tribological properties of the base oil.  相似文献   

14.
In this article, wear and friction characteristics of a magnetorheological (MR) fluid were studied under different magnetic fields. Using a pin-on-disc tribometer, the wear loss and friction coefficient were obtained with and without a magnetic field. The friction and wear of three typical materials under magnetic field were investigated at various normal loads and rotating speeds. After the wear tests, the worn surfaces of specimens were observed using a scanning electron microscope (SEM) in order to investigate the wear mechanisms, and the contacting surfaces were analyzed by energy-dispersive X-ray spectroscopy (EDS) to investigate the variation of elemental composition on the worn surface. Test results showed that the MR fluid exhibits better tribological characteristics under a magnetic field compared to the case without a magnetic field. The general morphology of the MR particles and wear debris was observed to assist with the analysis of friction and wear. The SEM micrographs and EDS spectra of the worn surfaces showed that the predominant wear mechanism in the case of the steel and brass specimens was abrasive wear by asperities and MR particles on the worn surfaces, whereas a mixed wear mechanism that included adhesive wear and abrasive wear was observed in the case of the aluminum specimen.  相似文献   

15.
This paper presents results of experiments to enhance antiwear/extreme pressure (AW/EP) properties of a lubricant oil by adding metal nano particles. In this experiment, Al, Sn and Al + Sn nano-particles were selected as trial additives. The AW and EP properties were evaluated on Four-Ball test machine, while the feature and composition of the wear scar surface were investigated by scan electron microscope (SEM) and energy dispersion spectrum (EDS). The test results show that the AW and EP performance can be improved within a wide load range by adding Al + Sn nanoparticles. Analysis of the enhancement mechanism has also been conducted in this experiment and presented in this paper. It is found that nano-Sn particles can be deposited on the friction surface when the pressure was moderate and act as AW additive. It is also found that the nano-Al particles can be deposited under the condition of high load pressure and act as EP additive. Thus, the AW and EP properties of tested lubricant oil have been improved at the same time due to adding both Al and Sn.  相似文献   

16.
《Wear》2007,262(7-8):819-825
This study examined the tribological properties of two lubricating oils, an API-SF engine oil and a Base oil, with CuO, TiO2, and Nano-Diamond nanoparticles used as additives. The friction and wear experiments were performed using a reciprocating sliding tribotester. The experimental results show that nanoparticles, especially CuO, added to standard oils exhibit good friction-reduction and anti-wear properties. The addition of CuO nanoparticles in the API-SF engine oil and the Base oil decreased the friction coefficient by 18.4 and 5.8%, respectively, and reduced the worn scar depth by 16.7 and 78.8%, respectively, as compared to the standard oils without CuO nanoparticles. In addition, investigations were performed using TEM, OM, SEM, and EDX to interpret the possible mechanisms of anti-friction and anti-wear with nanoparticles.  相似文献   

17.
This paper reports the tribological behavior of CaCO3 nanoparticles as a green additive in poly-alpha-olefin (PAO) base oil under variable applied load, sliding speed, sliding duration, and temperature. The tribological properties and the electrical contact resistance between the tribo-pairs lubricated with PAO alone, and PAO containing CaCO3 nanoparticles, were determined using an Optimol-SRV 4 oscillating friction and wear tester (SRV). The morphology and wear volume of the worn scar were measured simultaneously using a surface profilometer. The results showed that CaCO3 nanoparticles can dramatically improve the load-carrying capacity, as well as the anti-wear and friction-reduction properties of a PAO base oil. In addition, higher applied load, moderate frequency, longer duration time, and lower temperatures are beneficial to the deposition of CaCO3 nanoparticles accumulating on rubbing surfaces. X-ray photoelectron spectroscopy (XPS) reveals a boundary film composed of CaCO3, CaO, iron oxide, and some organic compounds on the worn surfaces.  相似文献   

18.
在球盘式摩擦磨损试验机上考察了有机物修饰的纳米铜颗粒作为50CC润滑油添加剂的摩擦学性能;采用SEM和EDS分析了磨损表面形貌和表面膜元素组成。探讨了纳米铜颗粒的摩擦学作用机制:结果表明:有机物修饰的纳米铜颗粒作为添加剂能显著改善50CC润滑油的抗磨减摩性能,含0.05%纳米铜油样润滑下的摩擦因数与磨损量同基础油润滑下相比分别降低了27.6%与60%。分析后认为,纳米铜颗粒通过对摩擦表面进行修复及在摩擦表面成膜两种作用有效地改善了摩擦磨损性能。  相似文献   

19.
《Lubrication Science》2017,29(7):475-484
Two kinds of Mo/B oleic diethanolamide derivatives (coded as YXM and YXB) were synthesised, and their tribological properties were evaluated using a 4‐ball machine. Results indicate that the 2 novel additives show excellent antiwear and extreme pressure properties. When 2.5 wt% YXM was added into the base oil, the wear scar diameter was reduced by 42.2%, and the P B value was increased by 170.4%; when 2.5 wt% YXB was added into the base oil, the wear scar diameter was reduced by 23.1%, and the P B value was increased by 167.1%. The worn surfaces of the lubricated GCr15 steel were analysed by using scanning electron microscopy and X‐ray photoelectron spectroscopy. It is indicated that the variation of tribofilm species produced by a chemical reaction between the additives and the steel surface plays an important role in inhibiting wear and friction. A model was used to analyse the action mechanism. According to the analysis, the tribofilm is composed of an adsorption layer and a reaction layer, and it could effectively protect the steel surfaces from direct contact.  相似文献   

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