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A cathode mandrel with translational and rotational motion, which was supposed to obtain uniform friction effect on surface, was employed in abrasive-assisted electroforming for revolving parts with complex profile. The effects of current density, translational speed and rotational speed on the deposit properties were studied by orthogonal test. The tensile strength, elongation and micro hardness value were measured to find out how the factors affected the properties. The optimized results show that changes of current density affect the tensile strength of nickel layer most, while translational speed has the most remarkable influences on both elonga-tion and micro hardness. The low rotational speed affects the properties least. In this experiment, a smooth nickel layer with tensile strength 581 MPa, elongation 17%and micro hardness 248HV is obtained by the orthogonal test. 相似文献
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Leakage due to wear is one of the main failure modes of aero-hydraulic spool valves. This paper established a practical coupling wear model for aero-hydraulic spool valves based on dynamic system modelling theory. Firstly, the experiment for wear mechanism verification proved that adhesive wear and abrasive wear did coexist during the working process of spool valves. Sec-ondly coupling behavior of each wear mechanism was characterized by analyzing actual time-variation of model parameters during wear evolution process. Meanwhile, Archard model and three-body abrasive wear model were utilized for adhesive wear and abrasive wear, respectively. Furthermore, their coupling wear model was established by calculating the actual wear volume. Finally, from the result of formal test, all the required parameters for our model were obtained. The relative error between model prediction and data of pre-test was also presented to verify the accuracy of model, which demonstrated that our model was useful for providing accurate prediction of spool valve’s wear life. 相似文献
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针对航空发动机整体叶盘结构复杂、材料难加工,铣削加工后粗糙度无法达到设计要求,铣削纹理明显,目前的手工抛光难以满足整体叶盘表面质量和型面精度要求的现状,提出了整体叶盘数控砂带磨削技术及其工艺试验。概述了整体叶盘砂带磨削研究进展,分别从新型砂带磨削技术和自适应砂带磨削技术等方面阐述了整体叶盘全型面数控砂带磨削技术。介绍了整体叶盘全型面数控砂带磨削试验装置及其数控磨削加工软件,利用该装置完成了4种不同级别的整体叶盘精密磨削加工试验。结果表明:整体叶盘磨削后,表面粗糙度小于0.4μm,型线精度小于0.05mm,同时型面精度一致性显著提高。 相似文献
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旋转超声钻削碳纤维复合材料钻削力和扭矩的研究 总被引:1,自引:0,他引:1
针对碳纤维增强树脂基复合材料(CFRP)加工过程中的问题,对金刚石套料钻旋转超声钻削CFRP-T700型复合材料展开了研究。研究发现,钻削力随主轴转速的增加具有减小的趋势,而扭矩则随着主轴转速的增加,呈现增大的趋势;与传统加工相比,旋转超声振动钻削可降低切削力及扭矩达56.6%和39.1%,有效抑制加工缺陷的产生。初步建立了切削力和扭矩之间的数学模型,并通过试验对切削力和扭矩之间的比例常数k加以验证。研究结果表明,旋转超声钻削CFRP在降低切削力和扭矩方面有较大优势。 相似文献
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应用现代设计技术和现代设计手段,恰当地使用数值计算可理解和揭示试验,指导生产工艺规程,改善产品的综合性能。利用CFD软件FLUENT对磨粒流加工共轨管流道及小孔结构进行三维数值分析,获得稳态压强、湍流动能、湍流强度及速度图像,为磨粒流加工工艺的制定提供参考。 相似文献
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叶片最终成形一直是航空发动机制造中的瓶颈技术,叶片自动化抛光技术研究可以解决国内叶片主要依靠手工抛光所带来的一系列问题。本文对砂轮磨削、砂带磨削的工艺特点进行了介绍,并结合国内外抛光技术现状,针对叶片抛光的技术难点,总结出了叶片抛光技术的发展趋势,给叶片抛光技术从业人员指出了一个研究方向。 相似文献
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镍基高温合金是航空发动机部件的常用材料,其磨削加工存在工具损耗严重、寿命短等难题。针对3种新研制的刚玉砂轮(分别为粒度60#的微晶和单晶混合磨料砂轮、粒度60#的单晶刚玉砂轮,以及粒度70#的单晶刚玉砂轮),开展了GH4169镍基高温合金材料的磨削试验,从磨削力、磨削温度、砂轮磨损以及表面粗糙度等方面对3种砂轮的磨削性能进行了评价。结果表明,3种砂轮磨削GH4169材料在砂轮磨损和表面粗糙度方面未表现出明显差异,而通过对磨削力和磨削温度的综合评价发现粒度60#的单晶刚玉砂轮的磨削性能更优。3种砂轮磨削GH4169材料的磨削比在0.5~3之间。在正常磨削条件下,3种砂轮的磨削表面粗糙度Ra小于0.4μm。同时发现,砂轮磨损(主要包括磨粒的破碎和脱落)是造成磨削表面缺陷形成的重要原因。 相似文献