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101.
为了研究碳纤维、聚酯纤维对混凝土在自由条件下的约束作用,通过设计对碳纤维混凝土、聚酯纤维混凝土和素混凝土加热放热试验,比较掺入不同纤维体积分数的纤维混凝土在大温差条件下无约束自由变形的差异,并用温度线膨胀系数表达。对试验数据进行分析,得到体积分数为1%的碳纤维混凝土比素混凝土抗自由变形能力提高了38.8%,在本试验的各种体积分数中效果最好。结果表明碳纤维与混凝土,虽然热力学性能不同,但是二者结合之后碳纤维因其高弹性模量的特性,反而可以更好地抑制混凝土自由变形。试验效果也表明,随着施工工艺的完善,碳纤维体积分数可能会超过1%,碳纤维对混凝土性能的提升仍然有很大的帮助。  相似文献   
102.
光纤陀螺仪(FOG)技术及发展应用   总被引:5,自引:0,他引:5  
介绍了当前惯性导航领域一门新型技术光纤陀螺仪(FOG)的基本原理、类型及两种典型光纤陀螺仪的结构,分析了光纤陀螺仪的误差及消除误差的方法,通过介绍光纤陀螺技术发展的过程及世界各主要国家在光纤陀螺实用化方面取得的进展,指出了光纤陀螺仪与其它光学陀螺相比具有的优点及良好的发展前景。  相似文献   
103.
无线电引信多普勒信号光纤传输系统设计   总被引:1,自引:1,他引:0  
论述一种光纤传输装置 ,适用于各型无线电引信杆试验多普勒信号传输。该系统采用光介质从电磁场中传递信号 ,克服了电缆传输对电磁场分布的影响 ,大大提高了无线电引信杆试验的精度。  相似文献   
104.
就现代地面防空作战中通信技术进行了研究,利用光纤、ADSL(不对称数字用户线)宽带技术解决在地面防空通信网中数据传输的瓶颈问题。  相似文献   
105.
智能控制在光纤陀螺光源稳定控制中的应用   总被引:2,自引:0,他引:2  
根据光纤陀螺(FOG)对超辐射发光二极管(SLD)光源输出光功率的稳定性要求,针对目前SLD光源一致性差的特点,提出Fuzzy PID控制的光控实现方案。经验证,该智能光功率闭环控制能灵活调整SLD期望输出光功率值,不仅能实现SLD在宽温度范围内保持较高的光功率稳定性,且系统具有较强的鲁棒性。  相似文献   
106.
为了提高 DFB(分布反馈式)光纤激光水听器的声压灵敏度,改善其动态特性,设计了一种曲伸式DFB 光纤激光水听器探头结构.该结构在保持激光器原有优点的同时,通过增大声压作用面积并将压力转化为对激光腔的轴向应变,有效地实现了声压增敏,同时通过机械结构改善了水听器的动态特性.利用有限元软件 ANSYS 对该结构进行了优化设计,加工制作了备构件并对 DFB 光纤激光器进行了封装,制作出长度约80 mm、直径仅6 mm的水听器原型样品并进行了实验研究.实验结果表明,采取该种形式的结构对 DFB光纤激光器进行封装后,探头的声压灵敏度提高了约17.5 dB,在500~1 500 Hz频率范围内具有较平坦的灵敏度响应.  相似文献   
107.
《防务技术》2020,16(4):787-801
The woven basalt fiber composites (WBFC) and the unidirectional [0°/90°/45°/-45°]s basalt fiber composites (UBFC) were prepared by hot-pressing. Three-point bending test, low velocity impact test, and ballistic test were performed to the prepared composites. After the tests, the specimens were recovered and analyzed for micromorphology. Three-point bending tests show that both the bending strength and stiffness of the WBFC surpass those of the UBFC. Low velocity impact test results show that the low velocity impact resistance to hemispherical impactor of the UBFC is higher than that of the WBFC, but the low velocity impact resistance to sharp impactor of the UBFC is lower than that of the WBFC. For the ballistic test, it can be found that the ballistic property of the UBFC is higher than that of the WBFC. After the tests, microscopic analysis of the specimens was applied, and their failure mechanism was discussed. The main failure modes of the UBFC are delamination and fibers breakage under the above loading conditions while the main failure mode of the WBFC is fibers breakage. Although delamination damage can be found in the WBFC under the above loading conditions, the degree of delamination is far less than that of the UBFC.  相似文献   
108.
目前飞机结构静强度应变现场主要的测试手段为使用电阻应变计测量系统,但电阻应变计测量系统存在抗电磁干扰差、引线过多以及一致性难以保证等问题,测试效果难以保证。近年来,光纤传感以及非接触光学测量手段的迅速发展,为飞机结构静强度应变现场测试提供了多种选择。本文通过分析以数字图像相关法技术为代表的新技术的特点,如通过进行非接触操作消除安装过程中所带来的分散性误差以及不确定性,在应对某些需要定性分析的飞机静强度试验场合时可以实时给出三维应变和位移场数据,使测量技术更加直观,以及可溯源性更好、更容易保证计量特性的稳定等,对未来飞机结构静强度应变现场测试手段进行了展望,以期为相关部门和机构提供参考。  相似文献   
109.
《防务技术》2020,16(1):29-34
The paper presents the investigation of the effect of alkaline treatment of sodium hydroxide (NaOH) on physical and dynamic mechanical analysis (DMA) viscoelastic properties of kenaf fibre filled natural rubber (NR)/thermoplastic polyurethane (TPU) composites. The treated kenaf fiber, NR and TPU were weighed and proportioned according to the required compositions and were blended using hot mixed Brabender machine. The polymer composites were then fabricated using the hot press to form a sample board. The sample was cut and prepared and water absorption, density, thickness swelling and DMA tests were performed. As far as physical properties are concerned, composites with the highest NR amount of shows the best results, which indicates good fiber bonding adhesion. The polymer composites with the highest amount of TPU shows the highest damping properties at high temperature.  相似文献   
110.
《防务技术》2020,16(4):762-776
The cellulosic bast fibers are recognized as a justifiable and biodegradable substitute for producing moderate strength polymer composite materials because of their characteristics of renewability, eco-friendliness, and higher specific strength. Hence the aim of this research work is to fabricate Himalayan bast fibers (Nettle fiber (NF)/bauhinia vahlii fiber (BF)) based mono/hybrid epoxy composites at varying weight percentage of 2–6 wt% and evaluate the physical (void fraction and water absorption), mechanical (tensile strength, flexural strength, hardness) and sliding wear properties of as-fabricated composites. The 6 wt% NBF reinforced composites exhibited higher mechanical properties as compared to NF and BF composites with tensile strength of 34.04 MPa, flexural strength of 42.45 MPa, and hardness of 37.01 Hv respectively. The influence of various control factors (sliding velocity, NF/BF/NBF contents, normal load and sliding distance) on specific sliding wear rate of composites was evaluated by Taguchi (three factors at three levels) experimental design and the percentage contribution of these selected parameters on sliding wear performance was examined by Analysis of variance (ANOVA). The sliding wear property of as-developed composites was found to be greatly influenced by sliding velocity and the wear resistance was observed to be improved with the NF/BF/NBF contents. The wear mechanism of the as-fabricated composites has been elucidated by scanning electron microscopy analysis. The research outcomes demonstrated that the hybridization of Bauhinia vahlii fiber with Nettle fiber led to improve the mechanical and wear properties of epoxy composites.  相似文献   
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