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31.
为了能够提高钛合金薄壁筒的加工效率,利用热等静压工艺制备了两个具有不同结构的Ti-6Al-4V薄壁筒,研究了夹具、填充泥浆和筒结构对Ti-6Al-4V薄壁筒的外圆表面粗糙度和精度的影响。结果显示,Ti-6Al-4V热等静压薄壁筒经过切削加工能够达到精度要求,填充泥浆降低了弹性回弹,提高了薄壁筒外圆精度;筒结构的内圆环和粗大端能够提高刚度,有效降低了外圆表面粗糙度值;夹具尺寸误差对圆度和同轴度影响较大,较大的尺寸误差显著降低了筒的外圆精度。 相似文献
32.
电镀砂轮具有优异的成型性和形状保持能力,越来越广泛地应用于复杂曲面的加工,但是磨损对零件表面完整性影响的研究并不充分.在深入分析利用圆环型砂轮在插磨方式下加工GH4169试件所产生的表面形貌形成规律的基础上,对高刚度矩形试件的磨削表面粗糙度随砂轮磨削量的变化进行了详细记录,并对某型号发动机静子叶片进行实际磨削验证.试验结果表明,精磨时适当的砂轮磨损可以使高刚度试件表面粗糙度下降35%,对表面硬度和残余应力影响不大;而叶片的弱刚度会大幅提高磨削粗糙度,但适当的砂轮磨损可以使叶片端部粗糙度下降64%,并降低刚度对粗糙度的影响,进而提高叶片表面磨削质量的一致性.因此,通过磨削粗糙度对砂轮的磨损状况进行大致评估,选择合适磨损量的砂轮用于精加工,以充分降低工件的表面粗糙度并提高磨削质量的一致性. 相似文献
33.
本文作者所设计的实验是利用光学中全反射衰减特性方法测量在介质上蒸镀的金属薄膜的厚度和各种频率下的复介电常数等物理性质,它可以精确测定100~1000范围内金属膜层的厚度和ε(ω)值,以及一些其它性质,是研究固体表面物理的一种有效的方法和技术。 相似文献
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35.
Specific grinding energy and surface roughness of nanoparticle jet minimum quantity lubrication in grinding 总被引:1,自引:1,他引:0
Nanoparticles with the anti-wear and friction reducing features were applied as cooling lubricant in the grinding fluid. Dry grinding, flood grinding, minimal quantity of lubrication(MQL), and nanoparticle jet MQL were used in the grinding experiments. The specific grinding energy of dry grinding, flood grinding and MQL were 84, 29.8, 45.5 J/mm3, respectively. The specific grinding energy significantly decreased to 32.7 J/mm3 in nanoparticle MQL. Compared with dry grinding, the surface roughness values of flood grinding, MQL, and nanoparticle jet MQL were significantly reduced with the surface topography profile values reduced by 11%, 2.5%, and 10%,respectively, and the ten point height of microcosmic unflatness values reduced by 1.5%, 0.5%,and 1.3%, respectively. These results verified the satisfactory lubrication effects of nanoparticle MQL. MoS2, carbon nanotube(CNT), and ZrO2 nanoparticles were also added in the grinding fluid of nanoparticle jet MQL to analyze their grinding surface lubrication effects. The specific grinding energy of MoS2 nanoparticle was only 32.7 J/mm3, which was 8.22% and 10.39% lower than those of the other two nanoparticles. Moreover, the surface roughness of workpiece was also smaller with MoS2 nanoparticle, which indicated its remarkable lubrication effects. Furthermore,the role of MoS2 particles in the grinding surface lubrication at different nanoparticle volume concentrations was analyzed. MoS2 volume concentrations of 1%, 2%, and 3% were used.Experimental results revealed that the specific grinding energy and the workpiece surface roughness initially increased and then decreased as MoS2 nanoparticle volume concentration increased.Satisfactory grinding surface lubrication effects were obtained with 2% MoS2 nanoparticle volume concentration. 相似文献
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37.
The performance of a small and low-cost metal chamber built to simulate the pressure and temperature conditions of lunar surface was assessed and the results are presented. This chamber is intended for studying the physical properties of lunar surface and subsurface (using soil simulants) and also to validate the technology readiness of certain newly developed payloads planned for future lunar surface missions (Lander/Rover). It is possible to reach down to ∼10−7 Pa under specific conditions and maintain the temperature of the sample under investigation to lunar day and night temperatures. The designed system has been subjected to various tests to evaluate its performance and suitability for carrying out experiments in a simulated lunar environment. 相似文献
38.
This paper focuses on the stability of capillary forced flow.In space,open capillary channels are widely used as the liquid and gas separation devices to manage liquid positioning and transportation.Surface collapse happens when the flow rate exceeds the critical value,leading to a failure of propellant management.Knowledge of flow rate limitation is of great significance in design and optimization of propellant management devices(PMDs).However,the capillary flow rate limitation in an asymmetry channel has not been studied yet in the literature.In this paper,by introducing an equivalent angle to convert the asymmetry corner to a symmetry one,the one-dimensional theoretical model is developed.The flow rate limitation can then be investigated as a function of the channel geometry as well as liquid property based on the model.Comparisons between the asymmetry and symmetry channels bring forth the characteristics of the two kinds of channels,and demonstrate good accordance between the new advanced model and the existing one in the literature.This theoretical model can provide valuable reference for PMD designers. 相似文献
39.
U71Mn干线钢轨开裂原因及热处理工艺分析 总被引:1,自引:0,他引:1
针对U71Mn60Kg/m干线钢轨使用过程中轨端发生开裂损伤现象,采用硬度检测分析及金相显微技术等手段对所取试样进行了宏观和微观的组织分析。探讨了一些新的淬火技术在高速铁路用钢轨轨端表面淬火中的应用。结果表明:原钢轨轨端表面淬火工艺不当,淬硬层厚度不够,层深不均且表层硬度相差较大,使钢轨轨端机械性能尤其是疲劳强度无法满足干线铁路高速运行列车对钢轨的使用要求,造成开裂损伤。较合理的工艺应采用多喷嘴式仿形喷头加热,并控制好加热后的冷却及回火工艺。采用工频感应热处理工艺也能得到较好的显微组织和性能。 相似文献
40.
一种非接触光外差轮廓仪 总被引:1,自引:0,他引:1
介绍了一种纳米级非接触超高精度光外差轮廓仪。该量仪是基于普通光路的外差干涉仪,两束具有微小频差的激光束照射到制件表面:其中一束光被会聚后作为测量光针扫瞄制件表面;另一束光则被用作参考光束。这两束光经反射后形成干涉,所得信号的光程差与制件表面高度变化成正比。量仪的横向分辩力小于2μm,垂直分辩力小于1nm。制件不需要进行大的调整。制件表面同时亦被作为测量参考面。经光电转换后,信号由微机处理,从而快速完成测量、计算、显示与打印各种参数与图形。 相似文献