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1.
In this paper, a multi-delay milling system considering helix angle and run-out effects is firstly established. An exponential cutting force model is used to model the interaction between a work-piece and a cutting tool, and a new approach is presented for accurately calibrating exponential cutting force coefficients and cutter run-out parameters. Furthermore, based on an implicit multi-step Adams formula and an improved precise time-integration algorithm, a novel stability prediction method is proposed to predict the stability of the system. The involved time delay term and periodic coefficient term are integrated as a comprehensive state term in the integral response which is approximated by the Adams formula. Then, a Floquet transition matrix with an arbitrary-order form is constructed by using a series of matrix multiplication, and the stability of the system is determined by the Floquet theory. Compared to classical semi-discretization methods and full-discretization methods, the developed method shows a good performance in convergence, efficiency, accuracy, and multi-order complexity. A series of cutting tests is further carried out to validate the practicability and effectiveness of the proposed method. The results show that the calibration process needs a time of less than 5 min, and the stability prediction method is effective.  相似文献   
2.
通过分析碳纤维复合材料的性能特点及对切削加工性能的影响,提出了铣削刀具材料和几何结构形式的选用原则,介绍了几种适于碳纤维复合材料铣削的加工刀具。针对碳纤维复合材料中常用的M40/4211复合材料层合板进行加工缺陷试验和切削试验,总结出影响M40/4211复合材料层合板加工质量的因素及规律,得到每种刀具加工M40/4211复合材料层合板的最佳加工参数,较高的切削速度配合恰当的进给速度可以有效提高M40/4211复合材料层合板的加工质量和加工效率。  相似文献   
3.
针对某型号飞机机身蒙皮精准外形需求,研制了一套机身蒙皮精准铣切系统.详细分析了机身蒙皮精准铣切系统的结构和工作原理,重点讨论了铣切系统刀具设计及其气动控制系统回路方案.机身蒙皮精准铣切系统经过安装、调试和现场应用验证,在保证安全的同时,实现了对飞机蒙皮进行切割的功能.结果表明,该系统能高效准确地完成机身蒙皮的铣切工作,保证飞机产品的制造准确度.  相似文献   
4.
针对硬质合金刀具高速内冷铣削AISI304不锈钢时,切削力大、切削温度高及加工表面质量低的问题。基于响应曲面中心复合设计方法进行高速内冷铣削实验,建立了铣削力分量二阶回归预测模型,并进行了实验验证。对比了干式与内冷铣削后的加工表面质量,分析了铣削参数对铣削力分量的影响规律,以铣削力分量最小为目标优化了铣削参数。结果表明:进给力和径向力的预测值与实验值的误差分别为4. 77%和6. 16%;内冷铣削的Ra为0. 193~0. 327μm;对铣削力分量的影响是铣削深度转速进给量,随着铣削深度和转速的增加,进给力先升高后降低,径向力逐步增加,铣削深度与转速的交互作用对进给力和径向力的影响显著;转速11 643. 63 r/min、铣削深度1 mm、进给量0. 08 mm/r为最优铣削参数组合。  相似文献   
5.
随着机床加工性能和刀具切削性能的提升,航空结构件的高效高精加工成为可能。航空结构件薄壁加工特征多,在铣削过程中易发生变形,因此预测与控制航空结构件的加工变形是切削加工领域内亟待解决的难题。通过总结了航空结构件的特点及加工难点,对加工变形形成机理进行深入分析;对加工变形影响最为关键的铣削力模型进行归纳;阐述了航空结构件残余应力变形预测的研究进展,以及利用加工工艺优化、数控补偿技术和高速切削加工技术等实现航空结构件加工变形控制的主要策略,最后对其未来研究方向进行了展望。  相似文献   
6.
采用有限元分析软件AdvantEdge模拟了航空铝合金7055高速铣削过程,获得了单个刀齿高速加工中铣削力变化曲线,预测了不同切削时间下工件及刀具上的温度分布,获得了刀具前刀面和后刀面的温度分布曲线;建立了高速铣削参数对铝合金7055铣削力和铣削温度的影响曲线,可辅助优化切削加工参数,有助于减小切削过程中刀具的磨损,改善刀具切削状态,提高刀具使用寿命.  相似文献   
7.
结构件数控铣削加工技术广泛应用于航空航天工业中。铣削加工中,不合理工艺参数下的切削力会引起较大刀具-工件变形及加工颤振,极大影响着加工精度和质量。深入研究工艺过程的力学机理,进而采用建模仿真技术来优选工艺参数,对高效高精度加工技术的实现具有重要意义。本研究围绕切削力建模、动力学建模与颤振稳定性分析以及变形误差预测与控制技术等相关工作进行介绍。  相似文献   
8.
In high speed milling aeronautical part, tool condition monitoring(TCM) is very important, because it is prone to get a chatter owing to the low stiffness of thin-walled structures. And the TCM is key technology for automated machining. In this paper, aiming to chatter monitoring in thin-walled structure milling, a variational mode decomposition – energy distribution(VMD-ED)method is proposed to improve the identification accuracy. And a moving average root mean square – mean value(MARMS-MV) ide...  相似文献   
9.
《中国航空学报》2021,34(4):160-173
Ultrasonic vibration-assisted milling has been widely applied in machining the difficult-to-cut materials owing to the remarkable improvements in reducing the cutting force. However, analytical models to reveal the mechanism and predict the cutting force of ultrasonic vibration-assisted milling metal matrix composites are still needed to be developed. In this paper, an analytical model of cutting force was established for ultrasonic vibration-assisted milling in-situ TiB2/7050Al metal matrix composites. During modeling, change of motion of the cutting tool, contact of tool-chip-workpiece and acceleration of the chip caused by ultrasonic vibration was considered based on equivalent oblique cutting model. Meanwhile, material properties, tool geometry, cutting parameters and vibration parameters were taken into consideration. Furthermore, the developed analytical force model was validated with and without ultrasonic vibration milling experiments on in-situ TiB2/7050Al metal matrix composites. The predicted cutting forces show to be consistent well with the measured cutting forces. Besides, the relative error of instantaneous maximum forces between the predicted and measured data is from 0.4% to 15.1%. The analytical model is significant for cutting force prediction not only in ultrasonic-vibration assisted milling but also in conventional milling in-situ TiB2/7050Al metal matrix composites, which was proved with general applicability.  相似文献   
10.
《中国航空学报》2021,34(6):33-53
In nanofluid minimum quantity lubrication (NMQL) milling of aviation aluminum alloy, it is the bottleneck problem to adjust the position parameters (target distance, incidence angle, and elevation angle) of the nozzle to improve the surface roughness of milling, which has large and uncontrollable errors. In this paper, the influence law of milling cutter speed, helical angle, and cavity shape on the flow field around the milling cutter was studied, and the optimal nozzle profile parameters were obtained. Using 7050 aluminum alloy as the workpiece material, the milling experiment of the NMQL cavity was conducted by utilizing cottonseed oil-based Al2O3 nanofluid. Results show that the high velocity of the surrounding air flow field and the strong gas barrier could be attributed to high rotating velocities of the milling cutter. The incidence angle of the nozzle was consistent with the helical angle of the milling cutter, the target distance was appropriate at 25–30 mm, and the elevation angle was suitable at 60°–65°. The range and variance analyses of the signal-to-noise ratio of milling force and roughness were performed, and the chip morphology was observed and analyzed. The results show that the optimal combination of nozzle position parameters was the target distance of 30 mm, the incidence angle of 35°, and the elevation angle of 60°. Among these parameters, target distance had the largest impact on cutting performance with a contribution rate of more than 55%, followed by incidence angle and elevation contribution rate. Analysis by orthogonal experiment revealed that the nozzle position parameters were appropriate, and Ra (0.087 μm) was reduced by 30.4% from the maximum value (0.125 μm). Moreover, Rsm (0.05 mm) was minimum, which was 36% lower than that of the seventh group (Rsm = 0.078 mm).  相似文献   
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