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111.
《防务技术》2020,16(1):107-118
The phenomenon of static electricity is unpredictable, particularly when an aircraft flying at high altitude that causes the accumulation of static charges beyond a threshold value leading to the failure of its parts and systems including severe explosion and radio communication failure. The accumulation of static charges on aircraft is generated by the virtue of interaction between the outer surface of aircraft and the external environmental attributes encompasses air particles, ice, hail, dust, volcanic ash in addition to its triboelectric charging. In the recent years, advanced polymer-based composites or nanocomposites are preferred structural constituents for aircrafts due to their light weight and comparable mechanical properties, but such composite systems do not render low impedance path for charge flow and are subsequently vulnerable to effect of lightning strike and precipitation static. In this context, it is essential to develop conductive composite systems from non-conductive polymer matrix by nanofiller embodiments. The advent of carbon-based nanocomposite/nanomaterials have adequately addressed such issues related to the nonconductive polymer matrix and further turned into an avant-garde genre of materials. The current review envisioned to illustrate the detailed exploitation of various polymer nanocomposites in addition to especially mentioned epoxy composites based on carbon fillers like carbon black, carbon nanotube (single walled carbon nanotube and multi walled carbon nanotube) and graphene the development of antistatic application in aircraft in addition to the static charge phenomenon and condition for its prevalence in avionic systems.  相似文献   
112.
提升类金刚石(Diamond-Like Carbon, DLC)膜在被保护基底上的附着能力具有明显的实际应用价值。从微观机理上分析了前期设计的Cu基多层DLC膜有效性的原因。在此基础上,研究了DLC/SiC循环层中两者厚度比例对膜层的附着性能、纳米硬度和耐磨性的影响,以优化结构、进一步提升实际应用所需的膜层性能。纳米划痕和压痕测试结果表明:随着DLC层与SiC层厚度比例的增大,多层DLC膜在Cu基上附着性能逐渐降低,但当厚度比小于2.3时,仍接近厚度400 nm的单层DLC膜在Si基上的附着性能;Cu基多层DLC膜的纳米硬度逐渐提高,同时,耐磨性接近纯DLC膜。  相似文献   
113.
在已建立的应力波传播模型和研究弹、板间作用力所获结果的基础上,为分析复合板应力的变化,对复合板弹板碰撞承受的应力进行了简化处理,根据应力波传播特性,确定了复合板内能量集中区域,研究了应力波在复合板巾的传播和能耗,并讨论了应力波对陶瓷的作用。通过近似计算,发现烧蚀消耗的弹丸动能较大,在复合板中,Al板的塑性变形吸收了19%的弹丸动能。  相似文献   
114.
层向理论是由Reddy提出来的一种用于精确分析复合材料层合结构的三维板壳分析理论.由于不引入任何的变形和应力假设条件,因此相较于传统的等效单层板理论,层向理论在分析大厚度复合材料层合板壳结构的静动态响应及其局部层间效应时具有较大的优势.系统地综述了层向理论近年来的研究进展、数值解法及其应用情况.具体包括:层向理论的基本...  相似文献   
115.
In this study, Al-CuO nanocomposites were fabricated by sol-gel method. As a contrast, the thermite was prepared by physical mixing at the equivalence ratio of 0.5, 1, 2, respectively. The intermediates and samples as prepared were characterized by SEM and XRD. The exothermic properties of the two samples prepared at different equivalence ratios were tested and the reaction products were characterized by XRD. The SEM results show that the sample prepared by the sol-gel method demonstrates a micron-sized agglomerated sphere formed by a mutual wrapping of Al NPs and CuO NPs, and the particles are evenly distributed in the agglomerate. In addition, when the content of Al powder is seriously insufficient, the heat release of the sample prepared by physical mixing is 1.6 times that of by sol-gel method. With the increase of Al powder content, the exothermic properties of Al/CuO NPs prepared by sol-gel method began to increase significantly compared with physical mixing and the difference is 1.5 times when the equivalence ratio increases to 2. It can be concluded that the reason for this result may be attributed to the different mass transfer modes of components due to the different morphologies of samples.  相似文献   
116.
Compared with the conventionally gaseous or liquid working media, the specific internal energy of supercritical carbon dioxide (SCD) is higher at the same temperature and pressure, and the critical temperature of carbon dioxide is close to room temperature, making SCD a potential new working medium for pneumatic launch. To analyze the feasibility of this conception, an analytical model of a pneumatic catapult is established on basis of the conservations of mass and energy. The model consists of a high-pressure chamber and a low-pressure chamber connected by multiple valves, and there is a movable piston in the low-pressure chamber that can push an aircraft to accelerate. The effects of the launch readiness state of SCD in the high-pressure chamber, the initial volume of the low-pressure chamber and the valve control on the movement of the aircraft are analyzed. It is found that there is a restrictive relation between the temperature and pressure of the launch readiness state of SCD, i.e., there is a maximum allowable launch readiness pressure when the launch readiness temperature is fixed. If this restrictive relation is not satisfied, the working medium in the low-pressure chamber will drop to its triple point within a few milliseconds, leading to a launch failure. Owing to this restrictive relation, there is an optimal launch readiness state of SCD with the highest working capacity for any allowable launch readiness temperature. The pressure of the low-pressure chamber will decrease significantly as the initial volume increases, leading to a decreased acceleration of the aircraft. The ac-celeration can be controlled below a critical value by a designed sequential blasting technique of multiple valves. The calculated results show that a 500 kg aircraft can be accelerated from 0 to 58 m/s in 0.9 s with 36 kg of carbon dioxide. This research provides a new technique for the controllable cold launch of an aircraft.  相似文献   
117.
装备物资混装配载效益化特征聚类分析   总被引:4,自引:0,他引:4  
提出了通过对物资聚类分组来分步解决混装配载问题的思想,分析了装备物资混装配载中物资分类的办法,讨论了使用聚类分析法研究分类问题的特点,给出了一种基于系统聚类法的物资效益化特征分组方法。  相似文献   
118.
自蔓延高温合成技术的研究动态   总被引:3,自引:0,他引:3  
对自蔓延高温合成技术(SHS)的最新研究动态进行了介绍,指出SHS技术作为一种制备和合成材料的新技术,以其高效、节能、经济、材料性能优良等优点,现已成为制备新材料的崭新途径,并提出自蔓延高温合成技术今后的研究方向。  相似文献   
119.
采用溶胶-凝胶法将纳米TiO2负载在活性碳纤维上,制备出一种新型甲醛气体清除材料。在制备中依次掺杂Fe3+和十二烷基苯磺酸钠(SDBS)对纳米TiO2进行改性,研究了纳米TiO2光催化活性的变化,并测试了自制材料的甲醛清除效率。结果表明:Fe3+和SDBS的添加不会改变纳米TiO2的晶型结构,但有利于晶粒的成长和负载膜的光催化活性;添加体积分数分别为0.8%的Fe3+和3%的SDBS时,材料的甲醛清除效率最高。  相似文献   
120.
高硬热喷涂层的缓进给切削试验   总被引:1,自引:0,他引:1  
采用高硬材料切削过程中常用的2种刀具材料CBN和YG610,应用缓进给的模式对高硬喷涂层进行切削试验。试验结果表明:采用小进给切削模式YG610刀具切削高硬热喷涂层可以获得较理想的刀具耐用度,并且加工表面质量可以达到Ra1以下,具备了以车代磨的基本条件。高硬材料切削常用的刀具CBN在切削过程中出现了较严重的非正常破损现象。通过对试验现象的分析,可以认为冲击性和高硬度的同时存在是喷涂层切削的最重要特性。因此,喷涂层切削刀具需要同时具备较高的韧性和硬度。  相似文献   
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