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1.
为了解决当前数控加工中通用刀具加工弧齿锥齿轮存在的加工效率低、易切削颤振等问题,提出了中凹盘铣刀数控端铣弧齿锥齿轮的方法.基于对弧齿锥齿轮齿面几何结构的研究,通过选择大直径、刀底内凹的盘形铣刀,主动改变刀具姿态角的设置顺序,并分离了前倾角和侧倾角的功能,可以实现弧齿锥齿轮的齿底无干涉和大切削带宽加工.先以切触点位置确定侧倾角避免过切齿槽底面,再以平底刀加工自由曲面的思想分别确定两侧齿面的前倾角,保证大的切削带宽和高加工效率.结果表明:以一个弧齿锥齿轮大轮为例,中凹盘铣刀端铣轮两侧齿面分别以7次、6次切削完成加工,最大加工误差分别为0.039 4mm和0.041 8mm.采用该方法加工弧齿锥齿轮,具有刀具耐用度高,切削带宽大,走刀次数少和加工精度高等优点.  相似文献   

2.
对C/SiC复合材料沿纤维分布方向超声磨削加工AUAG展开研究,对超声加工C/Si C复合材料的表面微观结构以及机械性能进行了评估,对表面质量随加工参数的变化而变化展开了研究。结果表明通过AUAG超声磨削加工参数的优化设计,可以得到较好的表面质量。  相似文献   

3.
基于动力学仿真技术的TC4整体叶轮铣削参数优化   总被引:3,自引:1,他引:2  
针对某航空发动机TC4整体叶轮在数控加工过程中存在颤振、加工效率低及因加工变形而导致局部超差等问题,提出了相应的铣削参数优化解决方案。在进行切削力系数辨识试验获取TC4材料的切削力系数及锤击试验获取加工系统动力学特性参数的基础上,通过综合使用自行开发的铣削加工动力学仿真软件SimuCut和国外的CutPro软件进行动力学仿真与优化,获得了优化的切削参数。使用优化的切削参数进行加工,有效地消除了颤振和因加工变形引起的局部超差,提高了加工效率。  相似文献   

4.
使用PCD立式铣刀对聚合物浸渍裂解法(PIP)制备的SiC_(f)/SiC复合材料开展单因素铣削试验,通过对加工中产生的切削力和加工后的表面粗糙度进行测量,分析了铣削工艺参数对其的影响;对加工表面、纤维断口进行SEM分析,讨论了SiC_(f)/SiC复合材料加工表面的形成。研究结果表明,表面粗糙度与切削力的变化趋势相同,高主轴转速和小切削宽度有利于得到表面粗糙度较小的加工表面;近孔洞区域与远离孔洞区域的材料去除方式不同;材料中纤维发生面内偏移和层间屈曲,纤维存在多种去除方式。  相似文献   

5.
《中国航空学报》2016,(6):1852-1858
In a milling operation, there must be processes of a cutter entering and exiting the work-piece boundary. The cutter exit is usually in the feed direction and the dynamic response is different from that in the normal cutting process. This paper presents a new time-domain modeling of mechanics and dynamics of the cutter exit process for the slot milling process. The cutter is assumed to exit the workpiece for the first time with one tooth right in the feed direction. The dynamic chip thickness is summed up along the feed direction and compared with the remaining workpiece length in the feed direction to judge whether the cutter is ready to exit the workpiece or not. The developed model is then used for analyzing the cutting force and machining vibration in the cutter exit process. The developed mathematical model is experimentally validated by comparing the simulated forces and vibrations against the measured data collected from real slotting milling tests. The study shows that stable cutting parameters cannot guarantee stable cutting in a cutter exit process and further study can be performed to control the vibration amplitude in this specific process.  相似文献   

6.
采用平均铣削力系数模型对数控加工过程中的铣削力进行仿真预测.在此基础上,综合考虑数控加工过程中机床、刀具以及工件3方面限制加工效率的因素,对主轴转速、进给速度、径向切宽以及轴向切深4个参数进行优化.利用VC与Matlab编程,开发了"中低速数控铣削过程力学仿真与参数优化系统".针对航空难加工材料GH4169,在SandviK推荐参数基础上进行仿真优化.结果表明,基于力学仿真的数控铣削参数优化技术在难加工材料加工中可提高加工效率12%~378%.  相似文献   

7.
In situ formed TiB2 particle reinforced aluminum matrix composites (TiB2/Al MMCs) have some extraordinary properties which make them be a promising material for high performance aero-engine blade. Due to the influence of TiB2 particles, the machinability is still a problem which restricts the application of TiB2/Al MMCs. In order to meet the industrial requirements, the influence of TiB2 particles on the machinability of TiB2/Al MMCs was investigated experimentally. Moreover, the optimal machining conditions for this kind of MMCs were investigated in this study. The major conclusions are: (1) the machining force of TiB2/Al MMCs is bigger than that of non-reinforced alloy and mainly controlled by feed rate; (2) the residual stress of TiB2/Al MMCs is compressive while that of non-reinforced alloy is nearly neutral; (3) the surface roughness of TiB2/Al MMCs is smaller than that of non-reinforced alloy under the same cutting speed, but reverse result was observed when the feed rate increased; (4) a multi-objective optimization model for surface roughness and material removal rate (MRR) was established, and a set of optimal parameter combinations of the machining was obtained. The results show a great difference from SiC particle reinforced MMCs and provide a useful guide for a better control of machining process of this material.  相似文献   

8.
冷热加工技术在铝合金薄壁零件中的应用   总被引:1,自引:0,他引:1  
通过分析工艺系统动、静误差及工件安装误差,提出了一种铝合金薄壁零件冷热加工方案。该方案通过合理选用刀夹具、切削用量、冷却液及多次走刀、稳定化时效处理,有效地控制了铝合金薄壁零件的加工变形,质量稳定可靠。  相似文献   

9.
A deduced cutting force prediction model for circular end milling process is presented in this paper. Traditional researches on cutting force model usually focus on linear milling process which does not meet other cutting conditions, especially for circular milling process. This paper presents an improved cutting force model for circular end milling process based on the typical linear milling force model. The curvature effects of tool path on chip thickness as well as entry and exit angles are analyzed, and the cutting force model of linear milling process is then corrected to fit circular end milling processes. Instantaneous cutting forces during circular end milling process are predicted according to the proposed model. The deduced cutting force model can be used for both linear and circular end milling processes. Finally, circular end milling experiments with constant and variable radial depth were carried out to verify the availability of the proposed method. Experiment results show that measured results and simulated results corresponds well with each other.  相似文献   

10.
目前环形刀具的刀位算法均未考虑圆刀片安装时存在的俯仰角和偏转角,因而在理论上存在较大的编程误差。针对实际使用刀具为非圆截面环形刀具的情况,通过对环形刀具的截面曲线进行分析,提出了一种基于经线划分的非圆截面环形刀具刀位优化算法。首先利用经线法求解出刀具表面和工件曲面之间的误差分布,然后根据此误差分布来调整刀具位置和姿态,使刀具表面与设计曲面在不发生干涉的情况下实现密切接触,从而得到刀具在指定定位点处的最优刀位。仿真结果表明,传统的五坐标刀位算法会产生较大的加工误差,而本文提出的算法消除了圆刀片安装时存在的俯仰角和偏转角所引起的加工误差,可有效提高复杂曲面的加工精度并获得满足给定编程公差的优化刀位。  相似文献   

11.
铣削过程中误差预测与补偿技术研究进展   总被引:2,自引:1,他引:1  
万敏  张卫红 《航空学报》2008,29(5):1340-1349
 研究铣削过程的机理,对于实现加工过程的精密化与高效化至关重要。介绍了国内外铣削仿真模拟的研究进展,阐述了数值计算方法以及有限元技术在铣削误差控制中的具体应用。对切削力建模方法、表面误差预测方法、材料去除建模方法以及误差补偿等关键技术进行了重点介绍,并对各关键技术所包括的核心思想、算法及仿真流程进行了详细讨论。最后对铣削过程误差控制技术的发展方向做出了展望。  相似文献   

12.
复合材料后加工技术的研究现状及发展趋势   总被引:18,自引:4,他引:14       下载免费PDF全文
分析了国内外复合材料后加工技术的研究现状和发展趋势,重点阐述了复合材料切削力和切削温度、切削刀具材料及结构、特种加工技术、表面质量评价技术研究等方面的研究成果,同时提出了建议。  相似文献   

13.
Predicting the cutting forces required for five-axis flank milling is a challenging task due to the difficulties involved in determining the Undeformed Chip Thickness(UCT) and CutterWorkpiece Engagement(CWE). To solve these problems, this paper presents a new mechanistic cutting force model based on the geometrical analysis of a flank milling process. In the model,the part feature and corresponding cutting location data are taken as input information. The UCT considering cutter runout is calculated according to the instantaneous feed rate of the element cutting edges. A solid-discrete-based method is used to precisely and efficiently identify the CWE between the end mill and the surface being machined. Then, after calibrating the specific force coef-ficients, the mechanistic milling force can be obtained. During the validation process, two practical operations, three-axis flank milling of a vertical surface and five-axis flank milling of a nondevelopable ruled surface, are conducted. Comparisons between predicted and measured cutting forces demonstrate the reliability of the proposed cutting force model.  相似文献   

14.
《中国航空学报》2019,32(8):2009-2016
The Blade Integrated Disk (Blisk) is one of the key components in the aero-engine, it is generally manufactured by the multi-axis milling and almost 90% raw materials are removed. To avoid the full immersion of a cutter in the rough machining of a blisk channel, the trochoidal milling is a promising strategy since it can keep a small immersion angle in the rough milling process while maintaining the high machining efficiency. However, while toolpaths are being planned for the trochoidal milling process, the conventional methods are mainly for the planar machining area with fixed tool orientations, which cannot be used for complex channels where the multi-axis machining should be employed. To this end, this paper presents a four-axis trochoidal toolpath planning method with a ball-end cutter, and thus the blisk channel can be machined efficiently. For this to happen, the trochoidal paths are planned in the parametric domain and then mapped into the physical domain, with tool orientations controlled by the quaternion interpolation method to have smooth tool movement along the toolpaths. Both geometric simulation and physical milling experiments of the proposed method have convincingly demonstrated the validation of the proposed method.  相似文献   

15.
铣槽是复合材料较常用的机械加工形式之一。为研究玻璃纤维增强复合材料(Glass Fiber Reinforced Plastic,GFRP)铣槽加工中各加工参数对铣削力和表面粗糙度的影响,开展了以主轴转速、进给速度和轴向切深为因素的正交试验,研究铣削力和表面粗糙度的变化规律。并用Matlab软件对铣削力和表面粗糙度的试验数据进行回归分析,建立了铣削力和粗糙度的经验公式,最后通过试验验证铣削力和表面粗糙度经验公式的正确性。结果表明:轴向切深对铣削力影响最大,其次是主轴转速,进给速度对铣削力影响最小;主轴转速对粗糙度的影响最大,其次是进给速度,轴向切深对粗糙度的影响最小。试验结果与铣削力、表面粗糙度经验公式算得的数值对比,误差范围都在20%以内。  相似文献   

16.
采用硬质合金(YG6X)和PCD刀具分别对CFRP进行齿槽加工试验,探究刀具材料对齿槽加工质量的影响。结果表明:随着每齿进给量f_z的增大,撕裂因子F_(sl)呈明显的增大趋势;采用PCD铣刀铣制齿槽,其加工质量较为稳定,加工质量较理想。  相似文献   

17.
薄壁件加工变形主动补偿方法   总被引:3,自引:1,他引:2  
陈蔚芳  楼佩煌  陈华 《航空学报》2009,30(3):570-576
研究薄壁件加工过程中受力变形产生的回弹误差控制,提出了分层完全补偿和优化补偿两种加工路径补偿方法,建立了加工路径补偿优化模型,考虑了多次走刀间加工变形和切削力的耦合作用,并应用迭代算法求解路径补偿优化模型。以航空薄壁件单刃端铣加工为例,对完全补偿、分层完全补偿和优化补偿进行了仿真分析和试验分析。结果表明,分层完全补偿和优化补偿能更好地减少加工误差,为薄壁件受力变形控制提供了参考依据。  相似文献   

18.
直纹面叶轮刀具轨迹规划的研究(英文)   总被引:2,自引:1,他引:1  
At present, most commercial computer-aided manufacturing (CAM) systems are deficient in efficiency and performances on generating tool path during machining impellers. To solve the problem, this article develops a special software to plan cutting path for ruled surface impellers. An approximation algorithm to generate cutting path for machining integral ruled surface impellers is proposed. By fitting sampling data points of an impeller blade into a curve, a model of ruled surface blade of an impeller is built up. Furthermore, by calculating the points where the cutter axis vector intersects the free-form hub surface of an impeller, problems about, for instance, the ambiguity in calculation and machining the wide blade surface with a short flute cutter are solved. Finally, an integral impeller cutting path is planned by way of an integrated cutter location control algorithm. Simulation and machining tests with an impeller are performed on a 5-axis computer numerically controlled (CNC) mill machine, which shows the feasibility of the proposed algorithm.  相似文献   

19.
提出一种新的雕塑曲面数控粗加工刀位规划方法。被加工曲面用多面体模型来描述 ,采用分层切削方法加工。在各切削层分别用一个参考平面与毛坯和曲面模型求交 ,根据各相交环之间的拓扑关系 ,求出有效加工区域 ,利用数控编程自动生成粗加工刀具轨迹 ,并进行干涉检查和修正。该方法成功地解决了层切法加工雕塑曲面时不能处理岛中岛的难题。  相似文献   

20.
端点误差控制刀位算法的改进   总被引:1,自引:0,他引:1  
 对端点误差控制数控加工刀位算法进行了改进:采用2个端点间偏置距离代替它们的参数差值用于衡量加工带宽和进行加工误差控制,提出了一种新的采用循环迭代计算刀具旋转角度的方法,并给出了格点法对偏置方向角进行优化的过程;使得算法不受具体的曲面参数化方式影响,简化了刀具定位时计算量,刀位得到了充分的优化。利用UG二次开发技术进行的实例计算表明:设置走刀方向沿着曲面的最小主曲率方向比沿着曲面的最大主曲率方向加工带宽更宽,前者应该是该算法的最优走刀方向,而且沿着最优方向走刀的优化刀位和多点切触加工算法得到的加工刀位一致,该算法也比多点切触加工算法有更大的适应性。  相似文献   

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