首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到18条相似文献,搜索用时 187 毫秒
1.
针对航空铝合金薄壁工件铣削加工时易出现的颤振以及切削效率低的问题,从动力学角度出发进行了深入的分析研究,提出了通过采用保持工艺系统高刚性的加工过程工艺优化与铣削加工动力学仿真结合的方法进行铣削加工.试验结果证明本法可以收到很好的效果,较好地解决了航空铝合金薄壁结构工件加工的颤振问题,提高了工件的加工表面质量和切削效率.  相似文献   

2.
针对薄壁件在铣削过程中极易出现颤振,且动力学特性快速变化导致切削稳定性多变的特点,研究基于粘弹性材料的被动阻尼技术,以增加薄壁零件阻尼、提升切削稳定性。提出阻尼层、约束层以及质量层的设计方案,模态试验表明该技术能大幅提升薄壁件阻尼,且对多阶振动模态有抑制作用。最后,将其应用于薄壁S样件的五轴铣削加工试验,多组切削参数下的试验结果表明,工件切削振动幅值最大可下降约97%。  相似文献   

3.
薄壁件铣削是航空工业中最常见的加工方式。航空薄壁件铣削工艺系统固有的弱刚性特点易引起切削颤振和变形,极大影响加工质量和效率。研究航空薄壁件铣削加工动力学仿真技术,指导工艺、刀具参数优选,对高质高效加工技术具有重要意义。围绕薄壁件铣削加工动力学仿真中的刀具-主轴系统动力学建模、切削瞬时薄壁件动力学建模及铣削过程动力学建模等技术进行介绍。  相似文献   

4.
铣削过程中引起的加工变形和切削振动是影响航空发动机薄壁件加工精度与质量的主要因素,通过分析加工过程中工件的动态响应特性,从切削动力学角度,基于知识型数控加工过程仿真成为航空发动机薄壁件颤振抑制的一种灵活通用的物理仿真方法。目前,关于航空发动机薄壁件的动力学物理仿真研究主要包括航空发动机薄壁件铣削力建模与试验方法研究、铣削动力学建模和铣削动力学模型仿真与工艺参数优化。  相似文献   

5.
飞机蒙皮镜像铣加工稳定性分析   总被引:1,自引:1,他引:0  
王昌瑞  康仁科  鲍岩  朱祥龙  董志刚  郭东明 《航空学报》2018,39(11):422109-422121
镜像铣技术是近年来提出的一种针对大尺寸薄壁件的加工方法,其加工环保、高效,具有逐步取代传统化铣加工的趋势。针对飞机蒙皮镜像铣加工过程中的颤振问题,首先,根据镜像铣加工特点,建立工艺系统颤振稳定性极限的预测模型;其次,通过有限元方法对蒙皮工件进行模态分析,分析蒙皮不同加工位置动力学特性变化导致的铣削稳定性变化,并通过实验测量获取工件动力学参数,对不同加工位置的稳定性做出预测;最后,开展加工实验,基于非接触测量方法,在线监测镜像铣加工区域的振动位移,通过时、频域信号对加工状态进行辨识,揭示了镜像铣加工过程的稳定性变化及失稳机制,验证了所提方法的准确性,在工程领域具有较高的实用价值。  相似文献   

6.
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   

7.
针对一类典型流线型曲面——叶片的高效数控铣削加工方法研究,提出了基于加工系统动力学仿真分析的高效切削参数优化技术,该方法是提高切削加工效率,保证零件加工精度和表面质量的有效手段.首先,辨识得到加工零件材料的铣削力系数;其次,利用锤击试验分别得到机床-刀具系统及弱刚性零件结构的动态特性,同时利用有限元方法进行模态分析,并与试验结果进行对比分析,可辅助验证锤击试验结果的正确性,在此基础上仿真得到铣削颤振稳定域曲线,然后对建立了基于加工系统动态稳定性的高效数控铣削加工参数优化系统进行高效铣削参数优化;最后,依据优化的铣削参数制定零件铣削加工工艺,试验得到了加工质量合格的叶片,其加工效率较传统方法有显著的提高.  相似文献   

8.
基于动力学仿真技术的TC4整体叶轮铣削参数优化   总被引:2,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   

9.
针对薄壁筒类工件的切削颤振问题,采用理论建模、数值仿真和实验测试相结合的方法,研究切削过程中时变工件厚度和切削位置对薄壁筒振动特性的影响规律.利用有限元法建立主轴-卡盘-工件工艺系统模型,分析不同壁厚、切削力位置对薄壁筒切削系统的固有模态、频率响应函数的影响.结合模态实验与切削振动实验表明:薄壁筒周向壳体模态对于壁厚的...  相似文献   

10.
为研究不分离型超声复合铣削系统的稳定性,讨论了超声复合铣削运动特性,建立了不分离型超声复合铣削稳定性模型。利用半离散法对超声复合铣削稳定性进行研究,应用MATLAB软件进行数值分析并得出了超声铣削稳定性叶瓣图。研究表明,不分离型超声复合铣削能提高普通铣削系统的稳定性,最大极限切削深度提高约13.8%。利用钛合金材料进行超声复合铣削的试验验证,试验结果验证了理论模型与稳定性叶瓣图的正确性,同时也验证了利用半离散法分析超声复合铣削系统稳定性的可行性。  相似文献   

11.
Assembly interfaces, the joint surfaces between the vertical tail and rear fuselage of a large aircraft, are thin-wall components. Their machining quality are seriously restricted by the machining vibration. To address this problem, an in-process adaptive milling method is proposed for the large-scale assembly interface driven by real-time machining vibration data. Within this context, the milling operation is first divided into several process steps, and the machining vibration data in each pro...  相似文献   

12.
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   

13.
立铣加工颤振稳定性时域求解与分析研究(英文)   总被引:7,自引:0,他引:7  
Li  Liu   《中国航空学报》2008,21(2):169-178
In this paper, the instantaneous undeformed chip thickness is modeled to include the dynamic modulation caused by the tool vibration while the dynamic regenerative effects are taken into account. The numerical method is used to solve the differential equations goveming the dynamics of the milling system. Several chatter detection criteria are applied synthetically to the simulated signals and the stability diagram is obtained in time-domain. The simulation results in time-domain show a good agreement with the analytical prediction, which is validated by the cutting experiments. By simulating the chatter stability lobes in the time-domain and analyzing the influences of different spindle speeds on the vibration amplitudes of the tool under a Fixed chip-load condition, conclusions could be drawn as follows: In rough milling, higher machining efficiency can be achieved by selecting a spindle speed corresponding to the axial depth of cut in accordance with the simulated chatter stability lobes, and in Fmish milling, lower surface roughness can be achieved by selecting a spindle speed well beyond the resonant frequency of machining system.  相似文献   

14.
An analytical model for chatter stability prediction in bull-nose end milling of aero-engine casings is presented in this paper. And the mechanics and dynamics variations due to the complex cutter and workpiece geometry are considered by analyzing the effects of the lead angle on the milling process. Firstly, the tool-workpiece engagement region is obtained by using a previously developed method and divided into several disk elements along the tool-axis direction.Secondly, a 3D dynamic model for stability limit calculation is developed and simplified into a 1D model in normal direction considering only the dominant mode of the workpiece. Then the cutting force coefficients, the start and exit angles corresponding to each disk element are determined. And the total stability lobe diagram is calculated using an iterative algorithm. Finally, several experimental tests are carried out to validate the feasibility and effectiveness of the proposed prediction approach.  相似文献   

15.
Milling the free-end of cylindrical parts, which are vertically fixed on the machine table,often suffers from large chatter vibrations. This kind of phenomenon is harmful to the cutting process. Therefore, it is of great importance to develop means to suppress these undesirable chatters.This paper proposes a new idea for designing a tunable mass damper(TMD) to reduce vibrations in milling of cylindrical parts. Frequency response function(FRF) of the milling system is derived to comprehensively reveal the influence of both the dynamic response of the machine tools and the TMD. Critical axial depth of cut, which is usually used to characterize the process stability, is formulated by considering the FRFs of both the milling system itself and the TMD. Maximization of critical axial depth of cut is taken as objective function, while kernel dynamic parameters of TMD,which are involved in the derived expression of critical axial depth of cut, are extracted as designable variables. Optimization procedure is carried out to adjust the parameters of TMD by using sequential quadratic programming algorithm. A series of experiments with a designed passive TMD validate that the design has a good performance in reducing vibrations and improving stability of milling process.  相似文献   

16.
万敏  杜宇轩  张卫红  杨昀 《航空学报》2021,42(10):524134-524134
螺旋铣削加工工艺具有降低轴向力,改善排屑、散热条件等优点,螺旋铣削力是其重要过程指标之一。对单向CFRP螺旋铣削力建模方法展开研究,预测给定加工参数下的螺旋铣削力。首先,通过对螺旋铣削过程进行运动学分析和切屑几何分析,建立了螺旋铣削过程中侧刃、底刃动态切屑层模型,纤维切削方向角度模型和动态切削力计算模型。然后,分别通过侧刃直线槽铣实验和底刃半齿插铣实验,对各个切削方向角度下侧刃、底刃切削力系数进行了标定,并利用人工神经网络对切削力系数进行拟合。最后,将标定所得的切削力系数代入动态切削力计算模型中,建立了单向CFRP螺旋铣削过程动态切削力预测模型,并通过实验验证了模型的准确性。与现有模型相比,该模型不仅能够预测刀具螺旋运动周期内的切削力变化情况,还可以对每个刀具自转周期内的细节进行预测,通过考虑纤维切削方向角度对切削力系数的影响,反映了单向CFRP材料的各向异性,较为准确地预测了螺旋铣削力。  相似文献   

17.
A review of chatter vibration research in milling   总被引:6,自引:6,他引:0  
Chatter is a self-excited vibration of parts in machining systems. It is widely present across a range of cutting processes, and has an impact upon both efficiency and quality in production processing. A great deal of research has been dedicated to the development of technologies that are able to predict and detect chatter. The purpose of these technologies is to facilitate the avoidance of chatter during cutting processes, which leads to better surface precision, higher productivity, and longer tool life. This paper summarizes the current state of the art in research regarding the problems of how to arrive at stable chatter prediction, chatter identification, and chatter control/suppression, with a focus on milling processes. Particular focus is placed on the theoretical relationship between cutting chatter and process damping, tool runout, and gyroscopic effect, as well as the importance of this for chatter prediction. The paper concludes with some reflections regarding possible directions for future research in this field.  相似文献   

18.
Milling of the thin-walled workpiece in the aerospace industry is a critical process due to the high flexibility of the workpiece. In this paper, a flexible fixture based on the magnetorheological(MR) fluids is designed to investigate the regenerative chatter suppression during the machining.Based on the analysis of typical structural components in the aerospace industry, a general complex thin-walled workpiece with fixture and damping constraint can be equivalent as a rectangular cantilever beam. On the basis of the equivalent models, natural frequency and mode shape function of the thin-walled workpiece is obtained according to the Euler–Bernoulli beam assumptions. Then,the displacement response function of the bending vibration of the beam is represented by the product of all the mode shape function and the generalized coordinate. Furthermore, a dynamic equation of the workpiece-fixture system considering the external damping factor is proposed using the Lagrangian method in terms of all the mode shape function and the generalized coordinate, and the response of system under the dynamic cutting force is calculated to evaluate the stability of the milling process under damping control. Finally, the feasibility and effectiveness of the proposed approach are validated by the impact hammer experiments and several machining tests.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号