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排序方式: 共有791条查询结果,搜索用时 62 毫秒
781.
782.
等离子体磁壳制动技术是一种新型的行星探测器制动手段,具有制动阻力可调、可靠性高、结构质量小等优势,具有潜在的应用前景。开展了等离子体磁壳制动产生方式与工作机理的数值仿真研究。首先,以火星探测器的制动为背景,将等离子体磁壳简化为圆柱构型,建立了等离子体磁壳宏观模型,得到了制动阻力、有效捕获面积和探测器速度随轨道高度的变化关系。随后以等离子体磁壳中离子、电子和次中性粒子之间的相互作用为研究对象,建立了等离子体磁壳微观模型,获得了等离子体粒子数密度和温度随时间变化的规律。微观模型与宏观模型计算出的制动阻力一致,验证了两种模型的有效性。  相似文献   
783.
《中国航空学报》2022,35(9):306-313
The hollow-cup Permanent Magnet (PM) motors have the characteristics of low power consumption, and are widely used in the aerospace field. At present, the tile-shaped PMs used by hollow-cup PM motors have poor sinusoidal characteristics of the air gap magnetic flux density waveform, which will cause torque ripple. The existing method for improving the air gap magnetic flux density waveform is not very effective when applied to hollow cup, a special motor with no stator core and large air gap. A bow-shaped PMs structure is designed for the hollow-cup motor in this paper. First, the equivalent surface current method is used to calculate the analytical formula of the static magnetic field of the model. Then, the Finite Element (FE) method is used to calculate the static air gap flux density waveform of conventional tile-shaped PMs and bow-shaped PMs with different bow heights, and the corresponding harmonics and sine distortion are obtained by Fourier decomposition. The simulation results show that the bow-shaped PMs can effectively improve the sinusoidal characteristics of the static air gap flux density waveform. And the suitable bow height is determined. Finally, a prototype is made based on the suitable bow height for experiments, and compared with the analytical result and the FE result, and the accuracy and effectiveness of the bow-shaped PMs with the suitable bow height are verified.  相似文献   
784.
《中国航空学报》2022,35(9):379-388
Material properties play an important role in the performance of electromagnetic mechanism. For an aeronautic Hermetically-Sealed Electromagnetic Relay (HSER), more than 50% parts are made of soft magnetic materials. Therefore, the performance of soft magnetic materials directly determines the static and dynamic characteristics of the HSER. Based on the theory of crystal recrystallization, this paper analyzes cold extrusion and heat treatment in the processing of soft magnetic materials, simulates the grain change process of an armature at different heat treatment temperatures, establishes a correlation model of temperature, grain size, and magnetic energy, and verifies results by scanning electron microscopy. Results of heat treatment temperatures from 800 °C to 920 °C are obtained and compared. A sample soft magnetic material after heat treatment at different temperatures has the largest difference in the initial magnetization range, up to 22%. In order to verify the fluctuation of the overall output characteristics of an HSER caused by the difference between soft magnetic materials, a static and dynamic analysis model of a typical HSER is established, and the accuracy of the model is verified by a set of actual test system. The difference of dynamic characteristics under different heat treatment temperatures is nearly 3%.  相似文献   
785.
《中国航空学报》2023,36(6):446-459
Cubic boron nitride (cBN) superabrasive grinding wheels exhibit unique advantages in the grinding of difficult-to-cut materials with high strength and toughness, such as titanium alloys and superalloys. However, grinding with multilayered metallic cBN superabrasive wheels faces problems in terms of grain wear resistance, the chip storage capability of the working layers and the stability and controllability of the dressing process. Therefore, in this work, novel metallic cBN superabrasive wheels with aggregated cBN (AcBN) grains and open pore structures were fabricated to improve machining efficiency and surface quality. Prior to the grinding trials, the air-borne abrasive blasting process was conducted and the abrasive blasting parameters were optimized in view of wear properties of cBN grains and metallic matrix materials. Subsequently, the comparative experiments were performed and then the variations in grinding force and force ratio, grinding temperature, tool wear morphology and ground surface quality of the multilayered AcBN grinding wheels were investigated during machining Ti–6Al–4V alloys. In consideration of the variations of grain erosion wear volume and material removal rate per unit of pure metallic matrix materials as the abrasive blasting parameters changes, the optimal abrasive blasting parameters were identified as the SiC abrasive mesh size of 60# and the abrasive blasting distance and time of 60 mm and 15 s, respectively. The as-developed AcBN grains exhibited better fracture toughness and impact resistance than monocrystalline cBN (McBN) grains because of the existence of metal-bonded materials amongst multiple cBN particles that decreased crack propagation inside whole grains. The metallic porous AcBN wheels had lower grinding forces and temperature and better ground surface quality than vitrified McBN wheels due to the constant layer-by-layer exposure of cBN particles in the working layer of AcBN wheels.  相似文献   
786.
随着重力、电磁场等科学探测任务需求的日益增强,对航天器整器的磁洁净度要求日益严格,尤其是光照条件下太阳电池电路的磁洁净度。本文基于国内外重大科学探测型号任务,梳理了国内外磁洁净太阳电池电路技术的发展历程、实现方式以及型号应用情况,并从正面布局、背面线缆以及基板厚度方向等方面系统分析了实现磁洁净太阳电池电路的关键技术:选用低磁材料、镜像对称布局与自由端线缆控制、补偿电缆,为后续磁洁净太阳电池电路技术的进一步突破提供参考。  相似文献   
787.
谭睿  于博  王平阳 《上海航天》2023,40(4):128-135
随着航天技术的发展,新型嵌套式霍尔推进器解决了传统单通道霍尔推进器功率不高和运行模式单一的问题,在航天领域发挥着愈加重要的作用。为了研究质量流量和磁场强度对嵌套型霍尔推进器性能的影响,本文采用PIC-DSMC算法,追踪和模拟等离子体粒子在电磁场作用下的运动和碰撞过程,对羽流场进行仿真。模拟结果表明:质量流量和磁场强度对推力贡献成正相关,推进器的比冲和羽流发散角则会受到双通道的综合影响。适当增大内通道的运行功率能够提升推进器整体效率。本文的模拟结果初步证明了嵌套霍尔推进器运行工况和磁场设计的可行性,并进一步为推进器的实验和优化提供了数据支持。  相似文献   
788.
航空磁探中潜艇磁场建模方法分析   总被引:3,自引:1,他引:2       下载免费PDF全文
为提高航空磁探中潜艇磁场模型精度,分析现有潜艇磁场建模方法,对边界积分法、有限元法、积分方程法、磁体模拟法等主要潜艇磁场建模方法的基本原理和推导过程进行分析。通过数值分析比较各方法的建模精度,最后归纳潜艇低空磁场建模方法的基本要点。  相似文献   
789.
核磁共振陀螺仪内嵌三维原子磁强计是实现核磁共振陀螺仪小型化的一种有效途径,故介绍了一种基于三维原子磁强计的核磁共振陀螺仪.对影响三维原子磁强计性能的重要参数进行了优化,得到了较优的x轴、yy轴和z轴磁强计信号标度因子,进而实现了更灵敏的三维原子磁强计.在三维磁场闭环锁定6000 s后,测得核磁共振陀螺仪的角度随机游走和零偏稳定性分别为0.038(°)/h1/2和0.94(°)/h.  相似文献   
790.
为研究磨粒流光整加工不锈钢闭式整体叶环的表面完整性,通过对电火花制备的不锈钢试样进行加工时间、加工压强及磨料目数的单因素试验,研究3个因素对加工后表面完整性的影响。结果表明:表面粗糙度Ra随着加工时间的增加而降低,从初始时的1.459μm降至60 min时的0.193μm,降低速率越来越慢,最后趋于稳定。磨粒流加工有效去除了加工表面再铸层。显微硬度在加工后明显降低,由450~950 HV降至270~350 HV且分布均匀性得到改善。显微硬度随着加工时间的增加整体上呈降低趋势,并出现了一定的加工硬化现象。在使用不同目数的磨料进行磨粒流加工后,残余应力由拉应力变为压应力。随着加工时间和加工压强的增加,试样表面越平整,抛光效果越好。  相似文献   
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