共查询到20条相似文献,搜索用时 203 毫秒
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我厂生产的板式液压千斤顶系列产品,其特点是板金件较多,因而生产中使用的落料、压延和复合模具也较多。板金件中又以厚度为6~8mm的碳素钢板占多数,故在大批量生产中,模具的消耗量很大。所以提高模具质量,延长使用寿命,是摆在我们面前一个紧迫的课题。为此,我们以其中较复杂的三角臂零件整体落料模为攻关对象,从冷热加工等多方面对制造工艺加以改进,并严格按改进后的工艺制造模具,从而杜绝了在模具制造过程中产生废品,并成倍延长了使用寿命。至今已冲压零件7万多件,模具仍完好无损,获得了良好的综合经济效益。 相似文献
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支承座三工序复合冲压模具 总被引:1,自引:0,他引:1
黄春峰 《航空精密制造技术》1999,35(1):0
介绍一种新型支承座三工步复合冲压模具的结构、工作原理、主要工作部件的设计技术和参数计算。使用此种模具,可以在一个工步中完成支承座毛坯的落料、冲孔和弯曲成形,生产效率高,工艺质量好。 相似文献
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为加工某航天器高性能承力支架零件,本文对不同玻璃纤维含量的短切玻璃纤维增强聚醚醚酮(SGF/PEEK)的力学性能进行了分析,利用Moldflow分析软件对承力支架注塑模具、注塑工艺参数进行了优化。结果表明,30wt%的SGF/PEEK作为承力支架材料时力学性能最优,模流分析有效预测注塑过程,改善主流道及二级流道尺寸可有效提升保压效果,保压压力和模具温度对承力支架翘曲变形的影响最为显著,得出一组优化的工艺参数,采用该参数成型的零件已成功应用于某航天器燃料贮箱中并通过了飞行考核。 相似文献
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通过分析复杂多拐曲轴零件的锻造工艺特点,确定了成型工艺方案;运用UG对曲轴进行三维建模,完成了滚挤、弯曲、预锻和终锻模具的设计;实现了曲轴模具的数字化设计,达到模具设计要求、试模一次成功。 相似文献
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复杂异形截面薄壁环形件动模液压成形研究 总被引:3,自引:0,他引:3
液压成形技术是成形薄壁零件的一种有效的解决方法。针对具有异形截面结构的某型发动机高温合金薄壁环形件,提出了液压成形结合动模轴向加载的复合成形方法,依据塑性力学方法和增量理论对成形过程进行了应力应变特征分析,并建立了有限元模型。基于有限元模拟和工艺试验,研究了筒坯成形区高度和型腔液压加载路径等关键工艺参数对零件成形结果的影响,探讨了成形过程中壁厚过度减薄、材料堆积"折叠"、形状不对称等失效形式,提出了优化的工艺参数。结果表明,提出的工艺方法可实现复杂异形截面薄壁环形件的整体精确成形,采用优化的筒坯成形区高度和液压加载路径可获得壁厚分布均匀、成形质量较好的零件。 相似文献
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《中国航空学报》2023,36(5):582-594
The Large-size Conical Cylinders with Inner Transverse High Ribs (LCCWITHR) can reduce the weight of the parts while maintaining high rigidity and strength. Radially Loading Rotary Extrusion (RLRE) forming technology can achieve integral forming of LCCWITHR through the synergy of radial and rotary movements of dies. The flow law of the material during the forming process is the key to forming large-size inner ribs. At present, there is no unified understanding of the metal flow law of RLRE forming technology. An analytical expression was derived to predict the Radial Direction (RD) deformation loads. The FE simulation and process experiment were carried out to investigate the effects of the inclination angle, thickness factor and transition arc radius of the split top dies on the spacing of the metal diversion plane, the metal flow velocity of the rib area and the final radius of the inner rib. The influence of the split top dies loading distance and the bottom die rotation angle of each pass on the inner radius of the inner rib was verified. And the optimal combination of dies shape parameters and loading paths which can make the metal flow orderly was obtained: the inclination angle is 140°, the thickness factor is 3.64, the transition arc radius is 16 mm; the top dies loading distance is 15 mm, the bottom die rotation angle is 45°. The FE simulation results have been found to be in close agreement with physics experiment. The research results reveal the metal flow law of rib growth in the RLRE of LCCWITHR, which lays a theoretical foundation for subsequent thorough research and process optimization. 相似文献
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液压成形是复杂薄壁零件制造的一种有效方法。针对某航空发动机的薄壁高温合金W形封严环构件,提出动模外压成形方法,并建立了有限元模型。基于数值模拟和工艺实验,分析了不同成形阶段的变形规律和压缩失稳的控制机理,在此基础上研究了毛坯成形区高度和型腔液压加载路径等关键工艺参数对零件成形结果的影响,探讨了成形过程中环向失稳起皱、型面不对称、材料堆叠等失效形式,提出了优化的参数。结果表明,提出的工艺方法可实现W形封严环的整体精确成形,采用优化的毛坯成形区高度和液压加载路径可获得成形精度较高、表面平滑无褶皱的试件。 相似文献
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《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
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介绍一种直接驱动阀(DDV)式作动器的余度数字式伺服系统设计与实现,描述了系统的余度配置、设计思想及组成,建立了DDV作动器的结构参数化模型及数字伺服回路的模型,并进行了仿真,分析了作动器动静态特性、采样频率及监控器的设计性能。最后,采用快速原型实时仿真,对余度数字式伺服系统完成了的性能试验验证,结果表明系统性能令人满意。 相似文献