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从加工方法,加工参数,工装夹具等方面对薄壁、薄板类零件的加工进行深入探讨,有效地解决了薄壁、薄板类零件的加工,为今后进行此类零件的加工进行了有益的技术储备。 相似文献
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导读:分析了未来信息化技术对航空武器装备和作战方式的影响,提出了机载计算技术的发展方向,并对国际的最新研究情况,包括跨平台分布式计算系统、分布式综合化模块化结构、高组装/功率密度技术、多核处理器应用、高安全机载操作系统、高安全无线网络等,进行了总结,对国内机载计算技术的发展具有一定的参考价值. 相似文献
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In the face of harsh natural environment applications such as earth-orbiting and deep space satellites, underwater sea vehicles, strong electromagnetic interference and temperature stress,the circuits faults appear easily. Circuit faults will inevitably lead to serious losses of availability or impeded mission success without self-repair over the mission duration. Traditional fault-repair methods based on redundant fault-tolerant technique are straightforward to implement, yet their area, power and weight cost can be excessive. Moreover they utilize all plug-in or component level circuits to realize redundant backup, such that their applicability is limited. Hence, a novel selfrepair technology based on evolvable hardware(EHW) and reparation balance technology(RBT) is proposed. Its cost is low, and fault self-repair of various circuits and devices can be realized through dynamic configuration. Making full use of the fault signals, correcting circuit can be found through EHW technique to realize the balance and compensation of the fault output-signals. In this paper, the self-repair model was analyzed which based on EHW and RBT technique, the specific self-repair strategy was studied, the corresponding self-repair circuit fault system was designed, and the typical faults were simulated and analyzed which combined with the actual electronic devices. Simulation results demonstrated that the proposed fault self-repair strategy was feasible. Compared to traditional techniques, fault self-repair based on EHW consumes fewer hardware resources, and the scope of fault self-repair was expanded significantly. 相似文献
236.
Topology optimization was developed as an advanced structural design methodology to generate innovative lightweight and high-performance configurations that are difficult to obtain with conventional ideas. Additive manufacturing is an advanced manufacturing technique building as-designed structures via layer-by-layer joining material, providing an alternative pattern for complex components. The integration of topology optimization and additive manufacturing can make the most of their advantages and potentials, and has wide application prospects in modern manufacturing. This article reviews the main content and applications of the research on the integration of topology optimization and additive manufacturing in recent years, including multi-scale or hierarchical structural optimization design and topology optimization considering additive manufacturing constraints. Meanwhile, some challenges of structural design approaches for additive manufacturing are discussed, such as the performance characterization and scale effects of additively manufactured lattice structures, the anisotropy and fatigue performance of additively manufactured material, and additively manufactured functionally graded material issues, etc. It is shown that in the research of topology optimization for additive manufacturing, the integration of material, structure, process and performance is important to pursue high-performance, multi-functional and lightweight production. This article provides a reference for further related research and aerospace applications. 相似文献
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随着我国经济的高速发展,生态问题日渐凸显.通过技术创新处理好经济发展和生态效益的关系成为实现绿色发展的内在要求.本文利用94家创业板制造业上市公司2014-2017年的数据,采用广义最小二乘法对绿色技术创新、研发投入强度与企业成长绩效之间的关系进行实证分析,探讨了绿色技术创新对企业成长绩效的直接影响,并对研发投入强度的... 相似文献
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