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241.
《中国航空学报》2020,33(4):1349-1360
Aviation fuel pumps of the future are required to be highly efficient and lightweight. As such, this work presents the designs of various mechanisms and structures of advanced two-dimensional piston pumps for aero-engines, and their universal kinematic design methods are detailed herein. The efficiency of various piston pump prototypes was experimentally tested at various speeds in an open circuit. The experimental results indicate that two-dimensional piston pumps have a volumetric efficiency >91% and a higher power–mass ratio than conventional fuel pumps under all the conditions studied. Furthermore, the structural and material problems encountered during testing can provide a blueprint for further improvement of the design and processing of two-dimensional piston fuel pumps. 相似文献
242.
《中国航空学报》2021,34(5):438-451
Requirements for the service performance of aeronautic microelectronic components are increasingly strict. However, sever issues, that the acquisition of the service performance such as micro-mechanical properties is destructive, limit the subsequent application of the tested components. Addressing this issue, this paper proposes a nondestructive acquisition method of the micro-mechanical properties of the accelerometer micro-components, based on analyzing surface traits. To select qualified components without damage, we firstly developed a quasi-static micro-tensile tester and then established a combination prediction model of mechanical properties based on micro-milled surface traits. The model works due to the thin-walled structure, which makes the machined surface traits have significant influences on the mechanical properties such as Young’s modulus, yield strength, tensile strength, and elongation at break. Surface roughness, surface structure, and surface anisotropy are extracted to comprehensively present surface traits from different aspects. For improving the practicability of the model, the principal component analysis (PCA) is adopted to reduce high-dimensional traits explanatory variable space into two dimensions, and regression analysis models are comparative established in predicting the mechanical properties. Residuals analysis and error analysis are carried out to show the prediction accuracy. The maximum prediction error is about 10.62%, but the significance levels in the t-test of the predicted Young’s modulus and yield strength are not ideal. Therefore, kernel support vector regression (SVR) is imported to improve the prediction ability of the combination prediction model. The residuals analysis result shows that SVR is effective in enhancing the prediction ability of this model. 相似文献
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构件振动可靠性设计方法初探 总被引:9,自引:4,他引:5
本文提出一种进行构件振动可靠性设计的方法,建立了激振力频率与构件固有频率干涉的概率模型,并利用Goodman曲线,给出了将导致构件损坏的强迫共振响应的概率计算公式及其使用条件。原则上,本文方法对其固有频率相对不太密集的构件更为适用,如航空发动机中的叶片。 相似文献
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贾德昌%金日梅%周玉 《宇航材料工艺》2000,30(4):45-49
研究了三种助烧剂MgO、Al2O3+AlN和Y2O3+AlN对1800℃×3h工艺下无压烧结Si3N4力学性能的影响情况。发现材料力学性能主要决定于助烧剂的种类,其次取决于含量。其Y2O3+AlN虽使最终生成的β-Si3N4长径比较小,线度尺寸最短,但最利于致密化,因而使材料力学性能最佳,添加量(质量分数)为12%Y2O3+6%AlN时,陶瓷的抗弯强度、断裂韧性和维氏硬度分别达到431.6MPa、5.10MPa*m1/2和14.52GPa。 相似文献
247.
辐照对蜂窝夹层结构力学性能的影响 总被引:1,自引:0,他引:1
通过对一种碳纤维复合材料面板铝蜂窝夹层结构辐照前后力学性能的试验 ,得到了辐照影响该种蜂窝夹层结构力学性能的变化规律。在试验的基础上 ,讨论分析了空间辐照对碳纤维面板铝蜂窝夹层结构力学性能的影响机理。通过试验和比对 ,从中找出了具有一定普遍性的规律 ,提出了如何提高该蜂窝夹层结构抗空间辐照的研究方向。 相似文献
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