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国家自然科学基金(51227804)

作品数:6 被引量:56H指数:4
相关作者:许佼王鹏柴利强张晓琴乔丽更多>>
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Oil-soluble ionic liquids as antiwear and extreme pressure additives in poly-α-olefin for steel/steel contacts被引量:16
2019年
To enhance the lubricating and extreme pressure(EP) performance of base oils, two types of oil-soluble ionic liquids(ILs) with similar anion albeit dissimilar cations were synthesized. The physical properties of the prepared ILs were measured. The anticorrosion properties of ILs were assessed by conducting corrosion tests on steel discs and copper strips, which revealed the remarkable anticorrosion properties of the ILs in comparison with those of the commercial additive zinc dialkyldithiophosphate(ZDDP). The tribological properties of the two ILs as additives for poly-α-olefin-10(PAO10) with various mass concentrations were investigated. The tribological test results indicate that these ILs as additives are capable of reducing friction and wear of sliding contacts remarkably as well as enhance the EP performance of blank PAO10. Under similar test conditions, these IL additives exhibit higher lubricating and anti-wear(AW) performances than those of ZDDP based additive package in PAO10. Subsequently, X-ray photoelectron spectroscopy(XPS) and energy dispersive spectrometer(EDS) were conducted to study the lubricating mechanism of the two ILs. The results indicate that the formation of tribochemical film plays the most crucial role in enhancing the lubricating and AW behavior of the mixture lubricants.
Guowei HUANGQiangliang YUZhengfeng MAMeirong CAIFeng ZHOUWeimin LIU
关键词:ANTI-WEAR
Rational construction and triethylamine sensing performance of foam shapedα-MoO_(3)@SnS_(2) nanosheets
2022年
Owing to their high surface area,stable structure and easy fabrication,composite nanomaterials with encapsulation structures have attracted considerable research interest as sensing materials to detect volatile organic compounds.Herein,a hydrothermal route is designed to prepare foam shapedα-MoO_(3)@SnS_(2)nanosheets that exhibit excellent sensing performance for triethylamine(TEA).The developed sensor,based onα-MoO_(3)@SnS_(2)nanosheets,displays a high response of 114.9 for 100 ppm TEA at a low working temperature of 175℃with sensitivity higher than many other reported sensors.In addition,the device shows a wide concentration detection range(from 500 ppb to 500 ppm),good stability after exposure to air for 80 days,and excellent selectivity.The superior sensing characteristics of the developed sensor are attributed to the high crystallinity ofα-MoO_(3)/SnS_(2),excessive and accessible active sites provided by the good permeability of porous SnS_(2)shells,and the excellent conductivity of the encapsulation heterojunction structure.Thus,the foam shapedα-MoO_(3)@SnS_(2)nanosheets presented herein have promising practical applications in TEA gas sensing devices.
Xianhui DongQing HanYaru KangHaidong LiXinyu HuangZhengtao FangHuimin YuanAhmed A.ElzatahryZongtao ChiGuanglei WuWanfeng Xie
关键词:TRIETHYLAMINE
掺杂对MoS_2基薄膜微观结构及力学性能的影响被引量:4
2017年
采用磁控溅射沉积技术制备Ti、Si、C和N掺杂的复合MoS_2薄膜,通过X射线能谱仪、扫描电子显微镜Xray衍射、拉曼光谱研究了不同掺杂元素对MoS_2基薄膜成分及微观组织结构的影响,利用纳米压痕仪、球盘式摩擦磨损实验机对比分析了掺杂金属元素及不同非金属元素对MoS_2薄膜力学性能和摩擦磨损性能的影响。结果表明:MoS_2薄膜中掺杂均可有效抑制MoS_2柱状晶的形成,N原子的添加抑制了MoS_2(002)晶面生长,薄膜向无定型结构转变;Ti原子的掺入使MoS_2薄膜硬度增加,且呈现出良好的摩擦磨损性能;非金属元素Si的掺入有效地提高了MoS_2薄膜硬度,但对薄膜的摩擦性能具有负面影响.
于富成张晓琴柴利强许佼贺腾飞王鹏
关键词:磁控溅射微观结构摩擦磨损性能
MoS_2基复合薄膜制备及其结构与摩擦学性能研究被引量:21
2016年
利用多靶磁控溅射法制备MoS_2基系列复合薄膜,通过扫描电子显微镜、X-ray衍射、拉曼光谱对薄膜微观形貌及晶体结构进行表征,利用纳米压入表征薄膜硬度及弹性模量,通过微动摩擦磨损试验对比分析了该系列薄膜在大气环境下的润滑性能.研究结果表明:MoS_2薄膜中复合C、Ti元素可有效抑制薄膜生长过程中柱状结构的形成,薄膜更为致密;复合薄膜的摩擦系数及磨损率显著降低.其中,MoS_2+C+Ti三元复合薄膜硬度为7.43 GPa,其弹性模量及弹性恢复量分别为98.1 GPa和61.7%.在大气环境(RH 35%~50%)下,法向载荷10 N时MoS_2+C+Ti薄膜具有最低的磨损率4.67×10–17 m^3/(N·m),该薄膜在不同载荷的微动摩擦试验中均具有最好的承载力.
柴利强张晓琴许佼乔丽张小龙王鹏
关键词:力学性能摩擦学性能
Cobalt monosulfide nanofibers:ethanol sensing and magnetic properties被引量:1
2021年
Metal sulfide nanomaterials have attracted great interest because of their excellent properties and promising applications in sensing,energy harvesting,magnetic and optoelectronic devices,especially their well-aligned crystalline nanostructures are highly desirable for the enhanced performance and novel applications.In this study,the cobalt monosulfide(CoS)nanofibers with uniform shape and good crystallinity were firstly obtained via electrospinning and atmospheric calcination routes under controllable conditions.It was found that the CoS nanofibers exhibited ethanol sensing properties at the optimum working temperature of 200℃,the response was 11.6 toward 100×10^(-6) ethanol gas,and the CoS nanofibersbased sensor exhibits a short response time and recovery time of 5 and 6 s at the optimum temperature,respectively,the result also shows that the sensor has good stability after 50 days,which would be a favorable characteristic as a promising sensor.In addition,the Pauli paramagnetic property of CoS nanofibers was also investigated at room temperature.
Zhi-Da HuXi-Yu SunHang-Fei LiYa-Ru KangXian-Qiang SongPeng WangQiao-Tong LuanXue-Dong WangZong-Tao ChiWan-Feng Xie
关键词:ELECTROSPINNINGNANOFIBERPARAMAGNETIC
不同调制周期MoS_2/DLC多层薄膜结构及摩擦学性能被引量:14
2017年
采用多靶射频磁控溅射方法,在Si(100)衬底上制备不同调制周期(Λ分别为54 nm、30 nm、18 nm)MoS_2/类金刚石(DLC)多层薄膜.利用扫描电子显微镜、拉曼光谱仪、X射线衍射仪、透射电子显微镜、纳米压痕仪研究多层膜的形貌、微观结构及力学性能受调制周期的影响规律;利用球-盘摩擦试验机考察薄膜在大气环境下的润滑性能.结果表明:采用交替沉积MoS_2/DLC多层膜可有效抑制溅射MoS_2中柱状结构生长,制备的薄膜结构致密;多层膜硬度随调制周期的增加而增大.透射断面分析表明:多层膜层间界面不平整但周期性结构清晰且致密,其调制周期厚度与试验设定值基本一致.与纯MoS_2薄膜相比,调制周期为54 nm的薄膜具有较好的法向承载及弹性恢复能力,其硬度最高,达7.15 GPa;法向载荷为5 N时,该薄膜在大气环境(相对湿度约30%)下具有最低的摩擦系数(0.09)和最低的磨损率[1.34×10^(–7) mm^3/(N·m)].
贺腾飞吴有智许佼慕波柴利强张晓琴王鹏
关键词:微观结构摩擦学性能
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