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Magnesium (Mg) alloys have broad application prospects in the fields of aerospace, national defense, and military industries, owing to their advantages of high specific strength and stiffness, good damping properties, and excellent castabilities. However, defects such as oxidation inclusions, shrinkage cavities and porosities, and hot cracks are readily generated in Mg alloy components, which seriously reduce the performance stability of the products. Related repair welding technologies for Mg alloys can greatly reduce the rejection rate and production cost, and exhibit significant value in scientific research and engineering application. In this review, the weldability of Mg alloys is introduced firstly according to their physical and chemical properties. Then, various repair welding technologies and pre-weld treatments applicable to Mg alloys are systematically summarized, and the effects of welding parameters as well as heat treatments on the microstructure and performance of the repaired joints are clarified. Finally, the existing problems and development trends of repair welding technologies for Mg alloys are summarized based on the actual engineering application requirements. 相似文献
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基于流量法的齿轮传动涡扇发动机动态建模 总被引:2,自引:1,他引:1
从热力学、气体动力学和发动机基本原理出发,对基于流量法的齿轮传动涡扇发动机动态性能建模技术展开了研究,并推导出了基于流量法的齿轮传动涡扇发动机动态数学模型的求解方程组.基于该模型方程组,利用C++面向对象编程语言,建立起了某齿轮传动涡扇发动机的动态模型.该发动机动态模型与著名的商业化发动机性能计算软件Gasturb 10进行的比对显示:该模型的运算结果与Gasturb 10的运算结果具有良好的一致性,最大误差不大于1.5%.证明了基于流量法的齿轮传动涡扇发动机动态数学模型求解方程组的正确性和适用性. 相似文献
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Efficient and accurate strength analysis of bolted connections is essential in analyzing the integral thermal protection system(ITPS) of hypersonic vehicles, since the system bears severe loads and structural failures usually occur at the connections. Investigations of composite mechanical properties used in ITPS are still in progress as the architecture of the composites is complex. A new method is proposed in this paper for strength analysis of bolted connections by investigating the elastic behavior and failure strength of three-dimensional C/C orthogonal composites used in ITPS. In this method a multi-scale finite element method incorporating the global–local method is established to ensure high efficiency in macro-scale and precision in meso-scale in analysis.Simulation results reveal that predictions of material properties show reasonable accuracy compared with test results. And the multi-scale method can analyze the strength of connections efficiently and accurately. 相似文献