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51.
本文主要阐述了低频电连接器外观检测和电性能测试中的接触电阻、绝缘电阻和介质耐电压的检测方法及其注意事项,提出为满足武器系统对低频电连接器耐恶劣环境、高可靠的特殊需求,有效保证武器型号系统中电连接器的质量,必须规范低频电连接器外观及电性能指标检测标准。本文可为从事低频电连接器检测工作的人员提供参考。  相似文献   
52.
基于一种新的渐近均匀化(AH)实施方法,预测并讨论了单向纤维增强复合材料(FRP)的宏观等效弹性性能及纤维排列方式对等效力学性能的影响。该方法方便地将有限元分析(FEA)软件作为一个工具箱使用,只需在单胞上施加简单位移周期边界条件开展静力学分析,即可经过简单计算得到等效弹性常数,相比传统均匀化实施方法显著降低了实施难度并简化了计算过程。通过对比不同数值方法的结果验证了该方法的有效性和精确性。数值结果表明:六边形排列下单向纤维增强复合材料呈现横观各向同性,而正方形排列下则呈现宏观正交各向异性,经过刚度平均化过程可得到横观各向异性材料性质,纤维体积含量对两种排列方式下材料等效弹性模量影响显著但有所差别。  相似文献   
53.
To predict the thermal and structural responses of the thrust chamber wall under cyclic work,a 3-D fluid-structural coupling computational methodology is developed.The thermal and mechanical loads are determined by a validated 3-D finite volume fluid-thermal coupling computational method.With the specified loads,the nonlinear thermal-structural finite element analysis is applied to obtaining the 3-D thermal and structural responses.The Chaboche nonlinear kinematic hardening model calibrated by experimental data is adopted to predict the cyclic plastic behavior of the inner wall.The methodology is further applied to the thrust chamber of LOX/Methane rocket engines.The results show that both the maximum temperature at hot run phase and the maximum circumferential residual strain of the inner wall appear at the convergent part of the chamber.Struc tural analysis for multiple work cycles reveals that the failure of the inner wall may be controlled by the low-cycle fatigue when the Chaboche model parameter γ3 =0,and the damage caused by the thermal-mechanical ratcheting of the inner wall cannot be ignored when γ3 > 0.The results of sen sitivity analysis indicate that mechanical loads have a strong influence on the strains in the inner wall.  相似文献   
54.
选用新型结构粘接材料中低温固化环氧结构胶膜J-351和改性丙烯酸酯液体胶胶黏剂SY-50s,表征胶黏剂对有机玻璃的粘接性能以及应力-溶剂银纹性能,并研究胶黏剂对有机玻璃力学性能的影响。结果表明:两种胶黏剂对有机玻璃具有良好的粘接性能,J-351抗应力溶剂银纹性能优于SY-50s;有机玻璃表面施胶后力学性能下降,与定向有机玻璃相比,浇注有机玻璃力学性能下降更为明显。通过对拉伸试样断口形貌分析发现,拉伸试样带有胶黏剂的一侧首先发生破坏。因SY-50s与有机玻璃界面结合紧密,导致带有SY-50s胶黏剂的有机玻璃力学性能下降程度较大;而J-351环氧胶膜与有机玻璃界面清晰,对有机玻璃力学性能影响相对较小。因胶黏剂对有机玻璃性能的影响,导致采用SY-50s胶黏剂粘接的试样边缘连接强度低于J-351胶黏剂粘接的试样,新型结构粘接材料J-351环氧胶膜在有机玻璃粘接中应用性能良好。  相似文献   
55.
《中国航空学报》2020,33(10):2589-2601
In this paper, a surrogate-based modeling methodology is developed and presented to predict the elastic properties of three dimensional (3D) four-directional braided composites. Using this approach, the prediction process becomes feasible with only a limited number of training points. The surrogate models constructed using Finite Element (FE) method and Diffuse Approximation, reduce the computational time and cost for preparing experimental samples. In the FE model, multiscale method is applied to couple the computations of elastic properties at microscale and mesoscale. Subsequently, a parametric study is performed to analyze the effects of the three design parameters on the elastic properties. Satisfactory results are obtained via the surrogate-based modeling predictions, which are compared with the experimental measurements. Moreover, the predictions obtained from surrogate models concur well with the FE predictions. This study orients a new direction for predicting the mechanical properties based on surrogate models which can effectively reduce the sample preparation cost and computational efforts.  相似文献   
56.
稀土元素作为重要的镁合金强化相元素,其多元添加产生的影响并未得到充分研究。在Mg-Sc二元系的基础上将Y作为第三元加入,制备了Mg-5Sc二元合金及Mg-5Sc-0.5Y,Mg-5Sc-1Y,Mg-5Sc-2Y,Mg-5Sc-3Y,Mg-5Sc-3.5Y(质量分数,%)5种三元合金,并通过光学显微镜(OM)、扫描电子显微镜(SEM)、X射线衍射(XRD)及室温拉伸等试验,研究了Y元素的加入对Mg-Sc二元合金微观组织和力学性能的影响。结果表明:Y元素在合金中的主要存在形式为固溶态,富集于晶界处。随着Y元素含量的提升,合金晶粒度显著减小,屈服强度和硬度大幅提升,Mg-5Sc-3.5Y的屈服强度相比Mg-5Sc提升了约50%。该强度的提升主要是由细晶强化和固溶强化引起的。  相似文献   
57.
《中国航空学报》2020,33(7):2043-2054
Finite element modeling (FEM), microscopy, X-ray computed tomography (CT) and mechanical property tests were used to study the microstructure, porosity and mechanical properties of an AlSi10Mg alloy produced by selective laser melting (SLM). The simulation of the melt pool and thermal history under different energy densities produced an optimized result with an energy density of 44.5 J·mm−3. The high cooling rate during the SLM process significantly refined the previous α-Al dendrites. The growth direction of the network-like Al-Si eutectic structure at different orientations confirmed the anisotropic nature of the microstructure. Furthermore, the microhardness, tensile testing and fracture analysis results proved that there were no obvious distinctions in the strength between the transverse and longitudinal directions, and that the ductility was anisotropic, possibly due to the shape and distribution of the pores. The pores measured by X-ray CT at different energy densities confirmed that the sphericity of the pores was inversely related to pores volumes. With optimized processing conditions, the porosity of the selective laser melted sample decreased leading to the improved fabricated fuel system component via SLM.  相似文献   
58.
作为一种功能性钛合金,Ti40阻燃钛合金的热物理性能数据首次被报道。采用真空自耗电弧熔炼技术制备的Ti40合金铸锭成分均匀,利用热挤压开坯+包套保护锻造方法制备的板坯组织均匀。性能测试结果表明:Ti40合金的室温抗拉强度为950 MPa级,且在500℃下具有良好的热暴露性能、高温蠕变性能和高温持久性能。在室温到600℃范围内,合金的杨氏模量和剪切模量随着温度的升高呈线性下降,泊松比随着温度升高而缓慢增加;线性热膨胀曲线随着温度升高呈抛物线增加,平均线膨胀系数随着温度的升高呈线性增加。  相似文献   
59.
《中国航空学报》2016,(1):268-273
It is well-known that the application of ultrasound during liquid to solid transitions for alloys can refine the solidification microstructure and thus improves the mechanical properties. How-ever, most published work focuses on single phase dendritic growth, whereas little has been con-ducted on the multiphase alloys with complicated phase transformations during solidification. In this work, the solidification process of ternary Cu40Sn45Sb15 alloy was realized within intensive ultra-sonic field with a resonant frequency of 20 kHz and ultrasound power from 0 W to 1000 W. The ultrasound refines the size of the primary e(Cu3Sn) intermetallic compound by two orders of mag-nitudes. If the ultrasound power increases to 1000 W, g(Cu6Sn5) phase nucleates and grows directly from parent liquid phase without the occurrence of peri-eutectic reaction on the top of the alloy sam-ple where the ultrasound intensity is sufficiently high. These microstructural variations lead to the enhancement of compressive strength and elasticity modulus of ternary Cu40Sn45Sb15 alloy.  相似文献   
60.
A cathode mandrel with translational and rotational motion, which was supposed to obtain uniform friction effect on surface, was employed in abrasive-assisted electroforming for revolving parts with complex profile. The effects of current density, translational speed and rotational speed on the deposit properties were studied by orthogonal test. The tensile strength, elongation and micro hardness value were measured to find out how the factors affected the properties. The optimized results show that changes of current density affect the tensile strength of nickel layer most, while translational speed has the most remarkable influences on both elonga-tion and micro hardness. The low rotational speed affects the properties least. In this experiment, a smooth nickel layer with tensile strength 581 MPa, elongation 17%and micro hardness 248HV is obtained by the orthogonal test.  相似文献   
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