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591.
《中国航空学报》2022,35(8):295-303
Flow field is a crucial factor to influence the stability and surface quality in the electrochemical machining (ECM) of blisks. A four-way flow mode was proposed to eliminate mixing regions of electrolyte at the leading and tailing edges. Two flow field models were described separately in this report: a W-shaped flow mode and a four-way flow mode. The flow field was analyzed through a finite element method. The results showed that, in comparison with the W-shaped flow mode, the distribution of electrolyte flow was more uniformed and the mixed region in the flow channel was improved. The pressure of the leading and tailing edges inlets was optimized, and optimal pressure of 0.6 MPa was determined. In addition, verification experiments were performed, and the results showed that the stability, efficiency, and quality of the profiles of the blisk blade manufactured by ECM were enhanced in the new flow mode.  相似文献   
592.
A novel co-rotating electrochemical machining method is proposed for fabricating convex structures on the inner surface of a revolving part. The electrodes motion and material removal method of co-rotating electrochemical machining are different from traditional electrochemical machining. An equivalent kinematic model is established to analyze the novel electrodes motion,since the anode and cathode rotate in the same direction while the cathode simultaneously feeds along the line of centres. Acc...  相似文献   
593.
工业机器人工作空间大、姿态灵活、可配置性高,且成本低,广泛应用于搬运、装配、喷涂和焊接等多个领域。但由于机器人末端轨迹精度不高,低速波动大,在电化学加工领域的应用很少。根据电化学加工低速、高轨迹精度特点,提出采用象限法设定电化学加工机器人工作区域,建立电化学加工机器人动力学优化函数,采用第三代非支配遗传算法NSGA-Ⅲ求解各设计参数最优Pareto解集,通过仿真和实验进行了动态性能测试验证。结果表明在设定工作区域内,电化学加工机器人直线轨迹精度可达0.073 mm,圆弧轨迹精度可达0.145 mm,低速工况下轨迹精度相比传统工业机器人提高近10倍。  相似文献   
594.
综合考虑了大型复杂设备生产厂家各种类型的部件来源与需求,构建了复杂设备部件生产库存控制模型。模型以费用作为目标,通过权衡生产成本、库存成本以及缺货成本,从而确定合理的部件生产库存控制策略。  相似文献   
595.
对超声辅助加工技术及WPT技术进行了分析归纳,总结了国内外目前有关WPT超声辅助加工系统的研究成果,提出共振式无线电能传输技术可能是超声辅助加工领域一种更为灵活、更为理想的供电模式的想法。  相似文献   
596.
为研究磨粒流光整加工不锈钢闭式整体叶环的表面完整性,通过对电火花制备的不锈钢试样进行加工时间、加工压强及磨料目数的单因素试验,研究3个因素对加工后表面完整性的影响。结果表明:表面粗糙度Ra随着加工时间的增加而降低,从初始时的1.459μm降至60 min时的0.193μm,降低速率越来越慢,最后趋于稳定。磨粒流加工有效去除了加工表面再铸层。显微硬度在加工后明显降低,由450~950 HV降至270~350 HV且分布均匀性得到改善。显微硬度随着加工时间的增加整体上呈降低趋势,并出现了一定的加工硬化现象。在使用不同目数的磨料进行磨粒流加工后,残余应力由拉应力变为压应力。随着加工时间和加工压强的增加,试样表面越平整,抛光效果越好。  相似文献   
597.
电液压力伺服阀是电液压力伺服控制系统的核心控制元件,广泛应用于航空、航天、军事等领域。区别于流量伺服阀,压力伺服阀在滑阀放大器的设计上多采用带有压力控制容腔的三通阀结构,不同的滑阀结构使得现有的偏转射流流量伺服阀仿真模型难以满足压力伺服阀性能预测的需求。本文基于AMESim平台建立了偏转射流压力伺服阀的仿真模型,并通过实验对仿真模型进行了验证,验证结果表明仿真模型能够准确地描述压力伺服阀的静态特性。最后,通过仿真模型分析了加工装配误差影响下压力伺服阀输出性能差异,仿真结果可为偏转射流压力伺服阀的性能预测和结构设计提供参考。  相似文献   
598.
《中国航空学报》2022,35(8):280-294
Electrolyte jet machining (EJM) is a promising method for shaping titanium alloys due to its lack of tool wear, thermal and residual stress, and cracks and burrs. Recently, macro-EJM has attracted increasing attention for its high efficiency in machining wide grooves or planes. However, macro-EJM generates large amounts of electrolytic products, thereby increasing the difficulty of rapid product removal with a standard tool and reducing the surface quality. Therefore, for enhanced product transport, a novel tool with a back inclined end face was proposed for macro-EJM of TC4 titanium alloy. For comparison, also proposed were ones with a standard flat end face, a front inclined end face, and both front and back inclined end faces. The flow field distributions of all proposed tools were simulated numerically, and experiments were also conducted to validate the simulation results. The results show that one with a 5° back inclined end face can decrease the low-velocity flow zone in the machining area and increase the high-velocity flow zone at the back end of tool, thereby promoting rapid product removal. A relatively smooth bright-white groove surface was obtained. The same tool also resulted in the highest machining depth and material removal rate among the tested ones. In addition, rapid product removal was beneficial to the subsequent processing. Because of its rapid product removal, the machining depth and material removal rate during deep groove machining using the tool with a 5° back inclined end face were respectively 7% and 14% higher than those produced using a standard one. Moreover, the lowest bottom height difference of 0.027 mm can be obtained when the step-over value was 8.2 mm, and a plane with a depth of 0.285 mm and a bottom height difference of 0.03 mm was fabricated using the tool with a 5° back inclined end face.  相似文献   
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