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1.
氮化钛沉积膜的摩擦性能研究   总被引:3,自引:3,他引:3  
采用等离子电弧沉积法在9Crl8钢表面制备了厚约0.5μm的TiN薄膜,通过显微硬度测试以及纳米压痕和纳米划痕试验,对比考察了9Crl8钢及其表面T|N薄膜的机械和摩擦性能.结果表明,9Crl8钢及其表面T.N沉积膜的纳米硬度分别为8GPa和38GPa,弹性模量分别为250GPa和580GPa,9Crl8、TiN和有机薄膜的摩擦系数分别为0.40、0.12和0.10;TiN沉积膜可显著提高基体钢的承载和耐磨能力.  相似文献   

2.
镁合金表面磁控溅射CNx/SiC/Ti多层膜的摩擦磨损性能   总被引:2,自引:0,他引:2  
采用室温磁控溅射技术在镁合金(AZ91D)表面制备了CNx/SiC/Ti(氮化碳/碳化硅/钛)多层膜(SiC、Ti为中间层),研究了CNx薄膜的纳米压痕行为和摩擦磨损性能.结果表明:CNx薄膜具有低的纳米硬度(6.67GPa)、低的弹性模量(54.68GPa)和高的硬度与弹性模量比值(0.122);在以氮化硅球为对摩副的室温干摩擦条件下摩擦系数约为0.162,磨损率在10-6mm3/(m.N)级,薄膜经长时间(3.5h)磨损后未出现裂纹和剥落.分析表明,摩擦化学和硬度与弹性模量比值对摩擦系数和磨损率有重要影响.  相似文献   

3.
TA2表面磁控溅射CNx/SiC薄膜的纳米压痕与摩擦磨损性能   总被引:2,自引:0,他引:2  
采用室温磁控溅射技术在工业纯钛(TA2)表面制备出氮化碳/碳化硅(CNx/SiC)双层薄膜,SiC为中间层.研究了CNx薄膜的纳米压痕行为和摩擦磨损性能.试验结果表明:CNx薄膜的纳米硬度(H)为15.80 GPa,杨氏弹性模量(E)为130.88 GPa,硬度与弹性模量比值(H/E)为0.121;与φ4mm的氮化硅球对摩,在载荷1.96 N、室温Kokubo人体模拟体液条件下,CNx薄膜的磨损速率为10-6mm3/(m·N)级,摩擦系数约为0.124,磨损后薄膜未出现裂纹和剥落.分析表明,薄膜具有的良好抗磨性能与其H/E高、抗腐蚀性强以及摩擦系统摩擦系数低相一致.  相似文献   

4.
张泰华  郇勇  王秀兰 《力学学报》2003,35(4):498-502
采用等离子电弧沉积的方法,分别在GT35和40CrNiMo钢上沉积厚约为0.5μm的氮化钛(TiN)膜.为了筛选基材,采用纳米压痕和划痕技术,评价膜基界面结合和固体润滑效果.纳米压痕结果,GT35,40CrNiMo和TiN的纳米硬度/弹性模量的典型值分别约为11.5GPa/330GPa,6.0GPa/210GPa,30GPa/450GPa.纳米划痕结果,GT35有较理想的膜基结合能力;GT35,40CrNiMo,TiN及其有机膜的摩擦系数分别约为0.25,0.45,0.i5,0.i0.同40CrNiMo相比,GT35是较为理想的基体材料.纳米压痕和划痕技术能提供丰富的近表面的弹塑性变形、断裂和摩擦等的信息,是评价亚微米薄膜力学性能的有效手段.  相似文献   

5.
采用磁过滤直流阴极真空弧源沉积技术在Ti6Al4V表面制备C/C多层DLC膜,利用纳米压痕划痕仪测试薄膜的纳米硬度和膜-基结合强度,采用微磨粒磨损试验机对C/C多层DLC膜在模拟体液环境中的磨损性能进行评价,并与Ti6Al4V的耐磨性能进行对比.结果表明:C/C多层DLC膜硬度达54.82 GPa,弹性模量和划痕临界载荷分别为342.27 GPa和0.52 N;在模拟体液环境中DLC膜的耐磨性能显著优于Ti6Al4V合金,DLC膜的磨损机制主要包括二体磨损及混合磨损;随着料浆浓度的增加,DLC膜的磨损机制从二体磨损向混合磨损过渡.  相似文献   

6.
采用真空磁过滤电弧离子镀法分别在9Cr18和40CrNiMo钢上沉积厚约为0.2μm的类金刚石(DLC)膜。为了检测成膜质量,分别使用纳米压痕和纳米划痕技术表征钢基材和DLC/基材的机械性能,对这种亚微米厚的膜,纳米压痕技术和纳米划痕技术能提供丰富的近表面的弹塑性变形,断裂和摩擦等的信息。同DLC/40CrNiMo相比。DLC/9Cr18的硬度高和固体润滑效果显著,9Cr18是较为理想的基体材料。  相似文献   

7.
PZT压电薄膜的力学性能如弹性模量、硬度等对于MEMS器件的结构设计、结构响应特性、服役性能等尤为重要。薄膜材料由于尺寸效应、表面效应等的作用,力学性能与宏观块体材料有显著差异。本文用纳米压痕法获得了PZT压电薄膜的弹性模量和硬度,考察了基底的影响,分析了退火时间对于其力学性能的影响,以及硬度和压入深度之间的压痕尺度效应。  相似文献   

8.
杨燕勤  潘家祯 《力学季刊》2008,29(1):166-172
采用纳米压痕技术和数值模拟研究灵芝孢子孢壁的弹性模量和硬度.利用原位纳米力学测试与分析系统,测试灵芝孢子孢壁的弹性模量和硬度.得到了载荷--位移曲线图和硬度、弹性模量随压痕深度变化的值.并用有限元方法模拟压痕过程,利用ANSYS软件,按照灵芝孢子孢壁和Berkovich压头的结构,建立了二维计算模型,得到纳米压痕的等效应力分布以及压痕过程中加载和卸载时的载荷--位移曲线.考察了摩擦、压头尖端半径对模拟结果的影响.结果显示:灵芝孢子孢壁的平均弹性模量为2.0GPa,硬度为0.13GPa.模拟结果在趋势上与实验结果有较好的吻合,与理论分析的载荷--位移关系基本一致.摩擦、压头尖端半径小于100nm时对模拟结果不会造成明显影响.研究结果为分析孢子的破壁机理提供必要参数.  相似文献   

9.
采用电刷镀技术在45#钢表面制备了纳米SiO2颗粒增强镍基复合镀层,用扫描电子显微镜和透射电子显微镜观察分析了复合镀层的表面形貌和微观组织形貌,用纳米压痕仪测试了复合镀层的微观力学性能,并采用PLINT型高温微动疲劳试验机考察了复合镀层在室温至500 ℃下的微动磨损行为.结果表明:纳米SiO2颗粒促进了镀层的晶粒细化,提高了镀层的力学性能,复合镀层的硬度和弹性模量分别比镍镀层提高了2.01GPa和5 GPa,从而改善了镀层的微动磨损性能;复合镀层的耐磨性能约为镍镀层的2倍,这是由于纳米SiO2颗粒对复合镀层具有超细晶强化、硬质点弥散强化以及高密度位错强化机制所致.  相似文献   

10.
采用磁过滤直流阴极真空弧源沉积技术在Si基体和GCr15基体表面制备了C/C多层DLC膜,通过X射线光电子能谱仪分析薄膜结构特征;用原子力显微镜观察C/C多层DLC膜的表面形貌;采用台阶仪测试薄膜厚度;利用纳米硬度仪测试薄膜纳米硬度;在销盘式摩擦磨损试验机上进行C/C多层DLC膜在大气下的摩擦性能评价,同时比较了单层DLC膜、TiN膜和C/C多层DLC膜的耐磨性能.结果表明:C/C多层DLC膜表面光滑、致密,厚度达0.7 μm,硬度高达68 GPa,与SiC球对摩时的摩擦系数为0.10左右,耐磨性明显优于单层DLC膜和TiN膜.  相似文献   

11.
正http://www.icfm7.org First Announcement and Call for PapersThe objective of International Conference on Fluid Mechanics(ICFM)is to provide a forum for researchers to exchange new ideas and recent advances in the fields of theoretical,experimental,computational Fluid Mechanics as well as interdisciplinary subjects.It was successfully convened by the Chinese Society of Theoretical and Applied Mechanics(CSTAM)in Beijing(1987,  相似文献   

12.
Contributions: The Journal, Acta Mechanica Solida Sinica, is pleased to receive papers from engineers and scientists working in various aspects of solid mechanics. All contributions are subject to critical review prior to acceptance and publication.  相似文献   

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Preface     
This special issue of PARTICUOLOGY is devoted to the first UK-China Particle Technology Forum taking place in Leeds, UK, on 1-3 April 2007. The forum was initiated by a number of UK and Chinese leading academics and organised by the University of Leeds in collaboration with Chinese Society of Particuology, Particle Technology Subject Group (PTSG) of the Institution of Chemical Engineers (IChemE), Particle Characterisation Interest Group (PCIG) of the Royal Society of Chemistry (RSC) and International Fine Particle Research Institute (IFPRI). The forum was supported financially by the Engineering and Physics Sciences Research Council (EPSRC) of United Kingdom,  相似文献   

18.
针对捷联导引头无法直接获取视线角速度等信息的问题,研究了鲁棒滤波在大气层外飞行器捷联导引头视线角速度估计中的应用。为了建立非线性滤波估计模型,考虑目标视线角速度的慢变特性,采用一阶马尔科夫模型建立了状态方程;推导了视线角速度的解耦模型,并建立了量测方程;考虑到实际应用中存在系统噪声统计特性失准的问题,基于Huber-Based鲁棒滤波方法,设计了视线角速度滤波器,并完成了基于Huber-Based滤波方法和扩展卡尔曼滤波方法的数学仿真。仿真结果表明Huber-Based滤波方法的视线角、视线角速度及视线角加速度估计精度分别达到0.1140'、0.1423'/s、0.0203'/s2,而扩展卡尔曼滤波方法的视线角、视线角速度及视线角加速度估计精度仅分别为0.6577'、0.6415'/s、0.0979'/s~2。仿真结果证明了该方法可以有效地估计出相对视线角速度等信息,并且在非高斯噪声的条件下,依然可获得较高的估计精度,具有一定的鲁棒性。  相似文献   

19.
《Acta Mechanica Sinica》2014,(3):F0003-F0003
正Each of the sections below provides essential information for authors.We recommend that you take the time to read them before submitting a contribution to Acta Mechanica Sinica.We hope our guide to authors may help you navigate to the appropriate section.How to prepare a submission This document provides an outline of the editorial process involved in publishing a scientific paper in Acta Mechanica  相似文献   

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Multiscale material intends to enhance the strength and life of mechanical systems by matching the transmitted spatiotemporal energy distribution to the constituents at the different scale, say—macro, micro, nano, and pico,—, depending on the needs. Lower scale entities are, particularly, critical to small size systems. Large structures are less sensitive to microscopic effects. Scale shifting laws will be developed for relating test data from nano-, micro-, and macro-specimens. The benefit of reinforcement at the lower scale constituents needs to be justified at the macroscopic scale. Filling the void and space in regions of high energy density is considered.Material inhomogeneity interacts with specimen size. Their combined effect is non-equilibrium. Energy exchange between the environment and specimen becomes increasingly more significant as the specimen size is reduced. Perturbation of the operational conditions can further aggravate the situation. Scale transitional functions and/or fj/j+1 are introduced to quantify these characteristics. They are represented, respectively, by , and (fmi/ma,fna/mi,fpi/na). The abbreviations pi, na, mi, and ma refer to pico, nano, micro and macro.Local damage is assumed to initiate at a small scale, grows to a larger scale, and terminate at an even larger scale. The mechanism of energy absorption and dissipation will be introduced to develop a consistent book keeping system. Compaction of mass density for constituents of size 10−12, 10−9, 10−6, 10−3 m, will be considered. Energy dissipation at all scales must be accounted for. Dissipations at the smaller scale must not only be included but they must abide by the same physical and mathematical interpretation, in order to avoid inconsistencies when making connections with those at the larger scale where dissipations are eminent.Three fundamental Problems I, II, and III are stated. They correspond to the commonly used service conditions. Reference is made to a Representative Tip (RT), the location where energy absorption and dissipation takes place. The RT can be a crack tip or a particle. At the larger size scales, RT can refer to a region. Scale shifting of results from the very small to the very large is needed to identify the benefit of using multiscale materials.  相似文献   

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