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1.
The architecture of digital sheet metal manufacturing system is proposed based on the classification of sheet metal manufacturing information.The essence of digital manufacturing is the definition,management and transfer of information,and the key technologies are brought forward and described.It is pointed out that knowledge-based manufacturing elements design is necessary to make digital technology efficient.The management of all kinds of sheet metal manufacturing element information is to build single source of manufacturing data.Multi-state model-based digital transfer and coordination method is designed to provide a foundation for digital manufacturing of aircraft sheet metal part.The application of digital sheet metal manufacturing is exemplified with an aircraft sheet metal part.The application result is compared to that of the traditional analog transfer technology.It is shown that the developed technology can improve part quality,shorten manufacturing time and lower manufacturing cost.  相似文献   
2.
制造误差对气体静压轴承涡流力矩影响分析方法研究   总被引:5,自引:0,他引:5  
 采用有限元方法研究了制造误差对狭缝节流气体静压轴颈—止推轴承的涡流力矩的影响。对于轴颈—止推相连结构的气体轴承,通过相容变换进行统一编程计算;在离散化过程中,利用加权余量法将二阶偏微分方程降低一阶,放松了对插值函数连续度的要求,便于借助有限元技术分析狭缝节流气体静压轴承的流场参数。分析了狭缝气膜宽度误差和轴颈圆度误差对涡流力矩的影响,以及轴颈的不同安装角度、偏心等因素对涡流力矩的影响。经对比验证,有限元计算结果与实测结果基本一致,研究结果对于气体静压轴颈—止推轴承的设计、装配优化和性能预测有重要指导意义。  相似文献   
3.
旨在提高点阵结构部件增材制造的加工效率.点阵结构经分层切片后,每层将产生大量待填充多边形,通过将这些多边形抽象为离散点,并在切片层面内求解旅行商问题,进行连接路径的规划,进而获得高效率的点阵模型填充路径.算法综合考虑到旅行商问题的计算效率以及连接路径的计算总长:采用蚁群算法可获得无交叉连接轨迹,计算2000个点的连接规...  相似文献   
4.
针对有多个加工和装备设备的柔性制造系统,提出了一种调度方法.首先根据产品装配结构对问题进行分解,得到多个易于调度的简单问题,形成对应的agent.然后应用合作博弈理论,根据各agent重要性和装配约束获得agent的排序.以此顺序在机器上按照规则进行生产安排,故能够得到满足产品加工约束的近似最优调度结果.最后通过实验对算法进行了验证.  相似文献   
5.
《中国航空学报》2021,34(2):104-123
Plastic forming is one of enabling and fundamental technologies in advanced manufacturing chains. Design optimization is a critical way to improve the performance of the forming system, exploit the advantages of high productivity, high product quality, low production cost and short time to market and develop precise, accurate, green, and intelligent (smart) plastic forming technology. However, plastic forming is quite complicated, relating to multi-physics field coupling, multi-factor influence, multi-defect constraint, and triple nonlinear, etc., and the design optimization for plastic forming involves multi-objective, multi-parameter, multi-constraint, nonlinear, high-dimensionality, non-continuity, time-varying, and uncertainty, etc. Therefore, how to achieve accurate and efficient design optimization of products, equipment, tools/dies, and processing as well as materials characterization has always been the research frontier and focus in the field of engineering and manufacturing. In recent years, with the rapid development of computing science, data science and internet of things (IoT), the theories and technologies of design optimization have attracted more and more attention, and developed rapidly in forming process. Accordingly, this paper first introduced the framework of design optimization for plastic forming. Then, focusing on the key problems of design optimization, such as numerical model and optimization algorithm, this paper summarized the research progress on the development and application of the theories and technologies about design optimization in forming process, including deterministic and uncertain optimization. Moreover, the applicability of various modeling methods and optimization algorithms was elaborated in solving the design optimization problems of plastic forming. Finally, considering the development trends of forming technology, this paper discusses some challenges of design optimization that may need to be solved and faced in forming process.  相似文献   
6.
通过研究产品(零件)制造过程、方法、参数等工艺因素,给零件表面及表层带来(留下)特有的微观特征性,首次在高精度惯性仪表和高可靠电磁继电器(机电类)产品制造体系中引入了零件表面微观工艺特征性概念,提出了制造阶段的产品工艺可靠性设计和微观工艺特征(性)分析方法,提出了该类产品制造中的工艺设计更应该关注零件与产品设计原理匹配性和性能特性符合性观点,提出零件制造要从单纯的控制几何精度向控制性能特性转变,从宏观、单一采标的几何参数评价向微观、综合采标的非几何(非尺寸)参数评价模式为主转变的建议.零件表面存在的这种微观特征现象与零件几何精度一样,将对产品制造的合格率、稳定性、可靠性的实现起到至关重要的作用,尤其对产品的合格率影响极大,有必要开展更深入、更系统的研究,以建立起我国自主的高端产品(或零件)制造基准工艺平台.  相似文献   
7.
民机制造环节的重量控制和减重措施研究   总被引:1,自引:1,他引:0       下载免费PDF全文
重量控制贯穿民用飞机从设计、制造到运营的全生命周期。尽管飞机重量的决定性因素主要在设计环节,但从国内外飞机制造商的经验来看,在飞机量产阶段仍有优化的余地。对国内外飞机制造商在飞机制造环节的减重经验进行总结,并重点阐述波音公司在制造过程中的重量预警项目(Manufacturing Weight Awareness Process,简称MWAP),以期有所启发。  相似文献   
8.
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   
9.
基于大型民用飞机燃油箱常见污染物,对其进行分类,研究其来源,分析其对飞机及系统功能、性能、安全、经济性等的影响。针对飞机研制、生产阶段,从材料选用、燃油箱结构、燃油系统及相关系统设计上提出污染防护设计要求,从生产制造各环节与要素上提出污染防护控制要求。针对飞机运营阶段,对其勤务与维护维修提出污染防护监控要求。通过对飞机生命周期内燃油箱污染物的持续监控管理,实现支持飞机高效生产、安全运行的目标。  相似文献   
10.
航天先进轻合金材料及成形技术研究综述   总被引:9,自引:7,他引:2       下载免费PDF全文
轻合金是现代航天装备轻量化首选材料,高性能轻合金构件制造能力决定了我国航天装备的功能水平与竞争力。为推动先进轻合金材料及成形技术在航天领域的应用,对高性能轻合金材料、铸造、钣金成形、增材制造等技术领域在基础理论、工艺开发、装备研制、工程应用等方面的发展现状进行了梳理,提出了高强耐热铸造镁合金材料、高性能钛铝合金材料、高性能镁合金熔模精密铸造、数字化铸造、旋压成形、超塑成形、钛/铝合金电弧熔丝增材制造等相关技术的后续发展方向。  相似文献   
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