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11.
表面等离子体共振生物传感器在分析生物分子相互作用方面,具有灵敏度高、实时在线、简单快捷和抗干扰能力强等优点,被广泛应用于临床检验、药物筛选等研究领域;因其能满足空间特殊环境下的使用要求,在航天医学领域具有广阔的应用前景.本文综述了表面等离子体共振生物传感器的原理、特点、在生命科学研究中的应用及在航天医学中的应用前景.  相似文献   
12.
飞机液压能源管路系统的振动特性分析   总被引:9,自引:2,他引:9  
论述了液压能源管路网络系统的建模,着重建立了液体输管路及有关元件的传递矩阵,并给出了如何用特性阻抗法对系统进行求解,最后对飞机液压能源管路系统的动态特性进行了仿真,并指出了一些重要的影响因素。  相似文献   
13.
《中国航空学报》2020,33(12):3058-3072
Experimental and numerical methods were used to investigate the Magnus phenomena over a spinning projectile. The pressure force acting on the surface of a spinning projectile was measured for various cases by employing a relatively novel experimental technique. A set of miniature pressure sensors along with a data acquisition board, battery and storage memory were placed inside a spinning model and the surface pressure were obtained through a remotely controlled system. Circumferential pressures of the model for both rotational and static conditions were obtained at two different free stream Mach numbers of 0.4 and 0.8 and at different angles of attack. The results showed the ability of this new test method to measure the very small Magnus force via surface pressures over the projectile. The results provide a deep insight into the flow structure and illustrate changes in the cross-flow separation locations as a result of rotation. Similar results were obtained by the numerical simulations and were compared with the experimental data.  相似文献   
14.
An aerodynamic optimization method for axial flow compressor blades available for engineering is developed in this paper. Bezier surface is adopted as parameterization method to control the suction surface of the blades, which brings the following advantages:(A) significantly reducing design variables;(B) easy to ensure the mechanical strength of rotating blades;(C) better physical understanding;(D) easy to achieve smooth surface. The Improved Artificial Bee Colony(IABC) algorithm, which significantly increases the convergence speed and global optimization ability, is adopted to find the optimal result. A new engineering optimization tool is constructed by combining the surface parametric control method, the IABC algorithm, with a verified Computational Fluid Dynamics(CFD) simulation method, and it has been successfully applied in the aerodynamic optimization for a single-row transonic rotor(Rotor 37) and a single-stage transonic axialflow compressor(Stage 35). With the constraint that the relative change in the flow rate is less than0.5% and the total pressure ratio does not decrease, within the acceptable time in engineering, the adiabatic efficiency of Rotor 37 at design point increases by 1.02%, while its surge margin 0.84%,and the adiabatic efficiency of Stage 35 0.54%, while its surge margin 1.11% after optimization, to verify the effectiveness and potential in engineering of this new tool for optimization of axial compressor blade.  相似文献   
15.
某空间相机镜头在光学设计时,因透过率、吸收率等原因,为了满足光学系统要求,经过各方面平衡后,其中有一片透镜比正常径厚比设计的偏薄些。在镜头总体结构设计时,单独对该镜片及与之相配的结构件进行了有限元分析和实验检测,发现不同的结构形式对镜片面形影响不同。为了解决这一问题,在实验中进行了探讨,以保证整个相机系统满足空间相机的实用要求。  相似文献   
16.
高灵敏度卫星定位接收机的迅速发展是未来定位导航产业的必然趋势。本文主要介绍高灵敏度卫星导航接收机的组成和设计概要。分析了数字电路设计中常遇到的信号完整性问题。着重对高速数字系统定义和传输线阻抗进行了理论分析,运用Cadence公司的ALLEGROPCBSIGXL软件给出了层叠等的设置方法和一些重要信号的分析仿真。将高速数字设计的理论分析与实际应用相结合,在卫星定位接收机主板设计中得到了验证。  相似文献   
17.
基于响应面近似技术的平流层飞艇协同设计优化   总被引:1,自引:0,他引:1       下载免费PDF全文
针对平流层飞艇多学科设计优化问题,引入协同优化算法,分析基于响应面近似模型的协同优化方法CO/RSA的执行步骤和特点,并介绍响应面近似模型的构建方法;建立平流层飞艇各学科模型,并对学科间耦合关系进行分析;运用建立的气动/推进、结构、能源三个耦合子系统的学科分析模型和系统优化模型,以平流层飞艇总质量最小为优化目标,综合考虑浮重、推阻和能源平衡,采用CO/RSA方法对平流层飞艇进行设计优化.结果表明:所建立的平流层飞艇的MDO模型是合理的,CO/RSA算法应用于飞艇总体设计优化是有效的,研究结果可为平流层飞艇方案论证和方案设计提供参考.  相似文献   
18.
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   
19.
A100钢外螺纹椭圆超声滚压强化试验研究   总被引:1,自引:0,他引:1  
A100钢有较高的疲劳抗力和显著的减重效果.在航空工业中,飞机起落架主要承力件正逐步采用A100钢,且主要承力件多采用螺纹联接.为了提高螺纹疲劳寿命,提出了超声振动滚压强化工艺方法,设计了外螺纹超声滚压强化装置,进行了螺纹超声滚压强化前后性能对比试验.利用X射线分析仪、维式硬度计、粗糙度仪和疲劳试验机,分别测量了螺纹超声滚压强化前后的残余应力、维氏硬度、表面粗糙度以及疲劳寿命.结果表明,超声滚压强化后牙底残余应力提高了70%,显微硬度提高了14%,粗糙度降低了51%,600MPa应力条件下寿命提高了5倍.  相似文献   
20.
原位自生TiB2/Al复合材料具有密度小、比强度高、高耐磨等特点,在航空航天领域具有广泛的应用前景.主要针对TiB2/Al复合材料车削参数对表面粗糙度的影响进行探索性研究.首先,以车削速度、进给速度、车削深度为对象,基于单因素试验研究了车削参数控制域.进一步在控制域内设计正交试验,并基于试验结果研究了表面粗糙度与车削参数的映射关系,推导了材料去除率模型.最后,以表面粗糙度和材料去除率为优化目标,提出并研究了基于GA-Pareto的车削参数多目标优化方法,并通过试验验证了该方法的可行性和有效性.  相似文献   
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