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1.
《中国航空学报》2020,33(3):1074-1084
Marciniack–Kuczinski (M–K) model is widely used to predict material’s forming limit curve (FLC). The prediction of FLC traditionally neglected through-thickness normal stress. However, it cannot be neglected in some forming processes. Much work has been done to study the effect of through-thickness normal stress on FLC with constant through-thickness normal stress or constant ratio of through-thickness normal stress and maximum principal stress. In addition, based on Nakazima test process, the ratio of through-thickness normal stress and maximum principal stress has been derived, which was a function of instantaneous thickness and loading path. Here, initial groove angle in M–K model was not considered. In this paper, uniaxial tension tests and Nakazima tests were performed on 7B04 aluminum alloy. Based on Hill 48 yield criterion and M–K model, the prediction model of FLC was established. The increase of thickness can enhance FLC. Meanwhile, it is necessary to consider through-thickness normal stress and initial groove angle in prediction model. On the left side of FLC, the effect of initial groove angle on FLC is weakened by increasing sheet thickness. On the right side of FLC, the effect of initial groove angle on FLC is strengthened by increasing sheet thickness. On the right side of FLC, the relation between limit strain points with different thicknesses is linear under one certain loading path. Thickness has decisive effect on through-thickness normal stress level and the changing trendy of through-thickness normal stress during calculation is different under different stress condition.  相似文献   
2.
分析了单刻线样板检定装置的测量不确定度,并分析了用该检定装置检定的单刻线样板的不确定度。  相似文献   
3.
侧载及加热方位对槽道内临界热流密度影响   总被引:1,自引:0,他引:1  
为了研究侧载以及加热方位对矩形窄缝槽道内临界热流密度特性的影响,在旋转平台上进行了两相流的超重力实验.以蒸馏水为工质,通过改变质量流速、入口温度、侧载大小以及加热方位,获得了发生临界换热现象时的质量流速、实验段压降和壁温的变化趋势,考察了侧载和加热方位对临界热流密度的影响规律,并对侧载下两相流不稳定性进行了简析.实验表明:发生临界换热时,壁温迅速上升,有效加热热流开始减少,关闭加热电源后,实验段压降下降、质量流速回升较明显;侧载以及不同的加热方位对临界热流密度有明显影响;临界热流密度发生前后,蒸汽回流导致进口温度上升,增加了流动的不稳定性.   相似文献   
4.
《中国航空学报》2020,33(6):1799-1811
The bent double-ridged rectangular tube (DRRT) with high forming quality is helpful to improve the microwave transmission accuracy. For reducing the cross-sectional deformation in the H-typed bending process, in addition to using rigid mandrel to support the inside of tube, ridge groove fillers are also added to restrict the deformation of ridge grooves. Because of the change of stress and strain state of bent tube in bending, rigid mandrel retracting and specially twice-springback stages, and the springback of fillers, the cross-sectional deformation of tube in each stage may be different. Therefore, based on the ABAQUS platform, the finite element models (FEM) for H-typed bending, mandrel retracting and twice-springback stages of H96 DRRT with fillers were established and validated. It is found that, for the height and width deformation of tube and spacing deformation of ridge grooves, retraction of mandrel can make the distribution of these deformations more uniform along the bending direction. The first springback can reduce these deformations significantly, which should be emphasized. But the second springback only increases them by less amount, which can be ignored. The smaller height deformation of ridge groove and filler can be neglected.  相似文献   
5.
This paper performs a series of ground experiments (on the Earth) to obtain optimum parameter matching for a future core drill on the Moon. Three common stages, I, II, III, are recognized with respect to the cut per revolution (CPR), which is defined as the ratio between the feeding speed and the rotating speed. The optimum matching between the feeding speed and the rotating speed for drills locates at the boundary position between Stage II and Stage III, where the coring rate saturates and the weight on the bit and the driving torque are still low. Further data analysis of the ground experiments reveals that the optimum matching signifies a proportional relation between the maximum conveying rate (MCR) by the groove of the auger and its rotating speed. The kinetic analysis in an ideal condition without gravity, the friction from the auger groove and the pressure at the bit confirm a similar proportion. The correlation between the proportions needs further study to determine whether the optimum matching obtained on the ground can be directly applied to future drills on the Moon.  相似文献   
6.
The effectiveness of grinding fluid supply has a crucial impact on grinding quality and efficiency in high speed grinding. In order to improve the cooling and lubrication, through in-depth research of self-inhaling internal cooling method and intermittent grinding mechanism, a new spray cooling method used in high speed grinding is proposed. By referring to the structure of bowl- shaped dispersion disk, the grinding wheel matrix with atomization ability is designed; through studying heat transfer of droplet collision and the influence of micro-groove on the boiling heat transfer, grinding segment with micro-groove is designed to enhance the heat flux of coolant and achieve maximum heat transfer between droplets and grinding contact zone. High-speed grinding experiments on GH4169 with the developed grinding wheel are carried out. The results show that with the micro-groove grinding wheel just 5.4% of pump outlet flow rate and 0.5% of spindle energy is needed to reduce the grinding temperature to 200℃, which means the developed grinding wheel makes cooling high efficient and low energy consuming.  相似文献   
7.
文章介绍了钢球连接方式火工装置中,钢球连接处的结构强度校核。通过经典的接触应力计算公式,结合钢球在火工装置上的具体使用情况,利用微变形理论,归纳出了火工装置上起连接承载作用的钢球连接方式新的强度校核判断法则。试验结果表明,该判据能够较为真实地反映火工装置上钢球连接方式的结构承载能力。  相似文献   
8.
抑波槽宽度对水陆两栖飞机喷溅性能影响对比试验研究   总被引:1,自引:0,他引:1  
抑波槽宽度合理性直接影响抑制喷溅的效果。通过两个抑波槽宽度的单船身模型拖曳水池对比试验,比较同一状态两者喷溅包络线,分析抑波槽宽度变化对飞机喷溅性能影响,表明减小抑波槽宽度使螺旋桨处喷溅高度增加19%以上,使襟翼处喷溅高度降低54%。  相似文献   
9.
赵晨彦  魏佐君  倪明  任光明 《推进技术》2022,43(10):119-128
本文通过对某微型涡喷发动机的单级轴流式涡轮进行机匣设计,采用剪切应力输运(SST)模型求解定常黏性雷诺平均Navier-Stokes方程,研究了不同机匣沟槽结构对其叶尖泄漏流动的影响。计算结果说明:当全机匣沟槽结构的叶顶浸入沟槽即d/c>1.0时,封严效果较好;相较于全机匣沟槽结构,后开式机匣沟槽结构的封严效果更好, 随着沟槽前缘间隙的增大,封严效果减弱;沟槽深度a/c=1时,封严效果最佳,即泄漏流明显减弱,同时效率减小量较小。  相似文献   
10.
    
为了强化涡轮叶顶间隙泄漏抑制,提出了将被动式气动封严与叶尖几何改型方法相结合用于抑制叶尖泄漏及其损失的流动调控新方案。对叶顶凹槽与自发射流耦合的3种典型方案进行了模型试验和数值模拟,探讨了2种被动式抑制方法的耦合机理。研究表明,叶顶凹槽与自发射流(STI)之间存在明显耦合作用,当自发射流出口位于凹槽底部时,自发射流与凹槽涡(GV)预先掺混,导致2种抑制效应相互抵消,无法对泄漏流形成有效抑制,为不良耦合。而当自发射流出口位于凹槽压力边或吸力边时,自发射流的反吹阻滞效应与凹槽涡的动能耗散效应相叠加,对泄漏流形成2次有效封堵,为有效的耦合方案,而且以自发射流出口位于凹槽吸力边时,对泄漏流的抑制效果最佳。  相似文献   
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