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71.
火箭基组合循环发动机引射模态飞行状态复杂,为了提高发动机的整体性能,研究了火箭出口面积对发动机引射模态的影响规律。通过数值模拟研究,引射流量在低飞行马赫数条件下,主要受引射性能影响,火箭出口面积越大,引射性能越好。然而,随着飞行马赫数的提升,引射空气的动能提升,隔离段内出现壅塞情况,引射流量主要受限于隔离段几何尺寸,与火箭出口面积无关。在亚声速工况下,火箭出口面积越小,发动机比冲越低,且出口无量纲面积为3.15时,火箭羽流膨胀撞壁,会引起性能骤减,需要予以避免;在超声速工况下,选择面积较小的火箭出口面积,燃烧室内压越高,发动机性能提升越明显。  相似文献   
72.
《防务技术》2014,10(3):251-260
The activated TIG (ATIG) welding process mainly focuses on increasing the depth of penetration and the reduction in the width of weld bead has not been paid much attention. The shape of a weld in terms of its width-to-depth ratio known as aspect ratio has a marked influence on its solidification cracking tendency. The major influencing ATIG welding parameters, such as electrode gap, travel speed, current and voltage, that aid in controlling the aspect ratio of DSS joints, must be optimized to obtain desirable aspect ratio for DSS joints. Hence in this study, the above parameters of ATIG welding for aspect ratio of ASTM/UNS S32205 DSS welds are optimized by using Taguchi orthogonal array (OA) experimental design and other statistical tools such as Analysis of Variance (ANOVA) and Pooled ANOVA techniques. The optimum process parameters are found to be 1 mm electrode gap, 130 mm/min travel speed, 140 A current and 12 V voltage. The aspect ratio and the ferrite content for the DSS joints fabricated using the optimized ATIG parameters are found to be well within the acceptable range and there is no macroscopically evident solidification cracking.  相似文献   
73.
《防务技术》2014,10(4):360-370
An attempt is made to develop the tools that are capable enough to withstand the shear, impact and thermal forces that occur during friction stir welding of stainless steels. The atmospheric plasma spray and plasma transferred arc hardfacing processes are employed to deposit refractory ceramic based composite coatings on the Inconel 738 alloy. Five different combinations of self-fluxing alloy powder and 60% ceramic reinforcement particulate mixtures are used for coating. The best friction stir welding tool selected based on tool wear analysis is used to fabricate the austenitic stainless steel joints.  相似文献   
74.
《防务技术》2014,10(1):47-59
Quenched and Tempered (Q&T) steels are widely used in the construction of military vehicles due to its high strength to weight ratio and high hardness. These steels are prone to hydrogen induced cracking (HIC) in the heat affected zone (HAZ) after welding. The use of austenitic stainless steel (ASS) consumables to weld the above steel was the only available remedy because of higher solubility for hydrogen in austenitic phase. The use of stainless steel consumables for a non-stainless steel base metal is not economical. Hence, alternate consumables for welding Q&T steels and their vulnerability to HIC need to be explored. Recent studies proved that low hydrogen ferritic steel (LHF) consumables can be used to weld Q&T steels, which can give very low hydrogen levels in the weld deposits. The use of ASS and LHF consumables will lead to distinct microstructures in their respective welds. This microstructural heterogeneity will have a drastic influence in the fatigue crack growth resistance of armour grade Q&T steel welds. Hence, in this investigation an attempt has been made to study the influence of welding consumables and welding processes on fatigue crack growth behaviour of armour grade Q&T Steel joints. Shielded metal arc welding (SMAW) and Flux cored arc welding (FCAW) were used for fabrication of joints using ASS and LHF consumables. The joints fabricated by SMAW process using LHF consumable exhibited superior fatigue crack growth resistance than all other joints.  相似文献   
75.
《防务技术》2014,10(4):334-342
An artificial neural network (ANN) constitutive model is developed for high strength armor steel tempered at 500 °C, 600 °C and 650 °C based on high strain rate data generated from split Hopkinson pressure bar (SHPB) experiments. A new neural network configuration consisting of both training and validation is effectively employed to predict flow stress. Tempering temperature, strain rate and strain are considered as inputs, whereas flow stress is taken as output of the neural network. A comparative study on Johnson–Cook (J–C) model and neural network model is performed. It was observed that the developed neural network model could predict flow stress under various strain rates and tempering temperatures. The experimental stress–strain data obtained from high strain rate compression tests using SHPB, over a range of tempering temperatures (500–650 °C), strains (0.05–0.2) and strain rates (1000–5500/s) are employed to formulate J–C model to predict the high strain rate deformation behavior of high strength armor steels. The J-C model and the back-propagation ANN model were developed to predict the high strain rate deformation behavior of high strength armor steel and their predictability is evaluated in terms of correlation coefficient (R) and average absolute relative error (AARE). R and AARE for the J–C model are found to be 0.7461 and 27.624%, respectively, while R and AARE for the ANN model are 0.9995 and 2.58%, respectively. It was observed that the predictions by ANN model are in consistence with the experimental data for all tempering temperatures.  相似文献   
76.
石小刚 《国防科技》2013,(5):107-109
推动训练向基于信息系统训练模式转变,是当前开展信息化条件下训练亟待解决的问题.文章从训练理念、训练设计、训练组织和训练考评等方面进行了探讨,以积极稳妥推进合成营战术训练深入发展,实现作战能力整体跃升.  相似文献   
77.
《Arms and Armour》2013,10(2):149-162
Firth’s were the first of the Sheffield steel makers to enter the field armaments. Their involvement with Colt has been outlined in an article in the journal of the Colt Collectors Association in America and their activities as steelmakers to the small-arms industries has been covered in a previous issue of this Journal. This article gives a brief overview of their involvement as manufacturers in the field of heavy armaments, being the first to make all-steel guns and their evolving role in the use of steel for ordnance, culminating in the displacement of wrought iron by the adoption of steel for ordnance manufacture by the Royal Gun Factory in the 1880s. It also highlights their development of stainless steel in this context.  相似文献   
78.
选用两种新型试验用钢,分析测定了它们的化学成分、金相组织特征及夹杂物分布形态;通过高频疲劳测定试验比较了它们之间疲劳寿命差异。结果表明:对同种钢而言,缺口系数对疲劳寿命的影响非常大,缺口系数越大,疲劳寿命越小;不同钢之间的疲劳寿命的差异取决于钢中的化学成分及钢中夹杂物,合理地提高材料的合金元素,有效地改善材料的化学成分的配比及适当的热处理工艺可以明显提高材料的强度极限;纯净的钢质量及合理的高强度是提高钢的疲劳寿命的最合理、有效的手段。  相似文献   
79.
利用高速微粒轰击技术在45钢表面制备了纳米晶,利用透射电镜(TEM)和X射线衍射(XRD)等分析技术对距表面不同深度的微观结构进行分析,研究铁素体相晶粒细化过程。结果显示:随着距表面距离的减小结构尺寸逐渐减小,在最表面形成了纳米晶层,平均晶粒尺寸约为15 nm。通过不同尺寸位错胞的逐步形成,以及位错墙不断向晶界演化,晶粒被细化为细小的纳米晶。  相似文献   
80.
通过对变结构导引下升力式飞行器直接撞击目标和制导炸弹攻击目标两种攻击方式的仿真计算,发现升力式飞行器直接撞击时虽然能够进行大范围机动,但是攻击目标单一、命中速度低,而制导炸弹攻击时,虽然能够攻击多个目标,命中速度高,但是打击范围小。综合两种方式的优点,对一种组合方式攻击进行仿真计算,发现采用该方式攻击不但能够通过大范围机动对多目标实施打击,而且还能保证较高的命中速度,验证了该组合攻击方式的可行性。  相似文献   
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