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1.
钛合金薄壁件铣削过程中,刀具角度对铣削过程中的工件变形、铣削力、铣削振动等影响显著。为减轻刀具磨损延长刀具寿命,通过ABAQUS软件建立钛合金Ti6Al4V薄壁件铣削过程仿真模型,以铣削力和铣削温度为评价指标,采用单因素和正交法分析了刀具前角、后角及螺旋角对铣削力和铣削温度的影响规律,并对铣削力仿真结果进行试验验证。仿真结果表明:前角增大,铣削力减小,铣削温度呈波动趋势变化;后角增大,铣削力减小,铣削温度先减小后增大;螺旋角增大,最大轴向力增大,最大切向力缓慢减小,最大径向力基本不变,铣削温度先减小后增大。通过正交试验和极差分析,明确不同因素对指标影响程度的主次顺序和因素的最优水平组合。  相似文献   

2.
对切削加工状态进行精准监测,是实现航空航天薄壁件加工变形控制的重要保障。围绕航空航天薄壁件铣削加工状态监测的最新研究进展进行了评述,详细介绍了建立加工状态监测模型的关键技术与方法,包括加工信息采集处理、特征提取和特征融合。归纳了学者们在薄壁件加工过程中对刀具磨破损、铣削颤振、铣削变形等具体状态监测的研究进展。基于数字孪生技术,构建了面向薄壁件铣削加工状态监测的优化系统。最后,根据现阶段本领域发展状况对薄壁件铣削加工状态监测进行了展望。  相似文献   

3.
纤维夹角和铣削参数对CFRP铣削力的影响   总被引:3,自引:3,他引:0  
为探索CFRP铣削加工中出现的分层、崩边等表面缺陷形成机理,对CFRP进行铣削加工实验。基于单因素实验法获得了纤维夹角对CFRP铣削力的影响规律,基于中心复合曲面设计,获得了硬质合金刀具铣削CFRP过程中铣削速度、每齿进给量和铣削深度对铣削力的影响规律,并构建了铣削力的预报模型。实验结果表明:纤维夹角在0°~90°,铣削力随纤维夹角的增大而降低,而在90°~180°,铣削力随纤维夹角的增大而增大。f_z和a_e对三个方向铣削力影响都较为显著。v_c对y向和z向铣削力影响较为显著,而对x向铣削力影响不显著。铣削力随三个铣削参数的升高而增大,其中每齿进给量对铣削力影响最大。  相似文献   

4.
张德远  韩云台  陈鼎昌 《航空学报》1994,15(10):1247-1250
为了通过铣削力或铣削扭矩波形的不均匀程度来识别铣刀是否发生破损,提出了两类识别方法。一类是计算齿周期峰值变化率;一类是计算相对最大切削厚度的偏心率。两类算法均简单、可靠,可用于各种铣削加工过程的铣刀破损监测。  相似文献   

5.
基于KUKA工业机器人开展旋转超声铣削2A12铝合金实验,研究两种铣削方式切削点运动轨迹,为进一步研究铣削力奠定了基础。并分析旋转超声铣削(RUM)实验和普通铣削(CM)主轴转速、进给速度、径向切宽、轴向切深和超声电流对铣削力的影响规律。结果表明旋转超声铣削与普通铣削相比铣削力明显降低。  相似文献   

6.
基于Z-map模型的球头铣刀铣削力建模与仿真   总被引:5,自引:0,他引:5  
对球头铣刀铣削力建模进行了研究。在Z-map仿真模型的基础上,提出了识别加工中参与切削的切削刃单元的方法,通过考虑刀具偏心和刀具变形对瞬时切削厚度的影响,推导出了瞬时切削厚度的表达式,由铣削力和切削负载之间的关系,建立了球头铣刀三轴铣削力仿真模型。铣削力仿真计算与铣削实验的对比表明在考虑刀具偏心和刀具变形后所建立的铣削力模型能够对铣削力进行准确的预测。  相似文献   

7.
使用聚晶金刚石(PCD)刀具并采用正交试验设计法,对含不同体分比的碳化硅颗粒增强铝基复合材料(SiCp/2009Al)进行高速铣削试验。在测量切削力和切屑厚度的基础上,建立了剪切角、剪切应力和摩擦角的预测模型,并结合金属切削基本理论公式建立了切削力的预测模型。该模型包含铣削速度、每齿进给量、径向切宽、增强颗粒体分比等重要参数,模型对进给方向最大铣削力预测值的平均误差为5.9%,对铣刀径向切深方向最大铣削力预测值的平均误差为9.2%,皆高于普通经验公式的预测精度,从而可对SiCp/2009Al复合材料高速铣削时的铣削力进行有效预测。  相似文献   

8.
以侧铣可加工微晶陶瓷为对象,建立了瞬时整体铣削力模型,研究了刀具偏心跳动状态下立铣刀侧刃铣削瞬时铣削力。通过铣削刀具与工件的次摆线运动,获得了其瞬时切削厚度、瞬时切削面积。通过线性搜索法确定了刀具偏心量和偏心角的最优解,利用一维搜索算法进行了瞬时铣削力作用点的精确求解,并以刀具偏心跳动状态下的瞬时转角予以表达。以Martellotti模型为基础,建立了新的瞬时铣削力模型。以最小二乘法进行了瞬时铣削力模型系数辨识。并从铣削力作用点(瞬时转角)视角,研究了瞬时铣削力的变化特性。铣削实验验证结果表明,铣削力模型预测值与实验值吻合程度较高,平均相对误差不超过8%,该瞬时铣削力模型具有较高的预测精度。  相似文献   

9.
TC4的铣削加工中铣削力和刀具磨损研究   总被引:2,自引:0,他引:2  
通过TC4铣削加工时的铣削力试验,研究了干切削时和有氮气介质铣削时影响铣削力大小的几个因素,为提高金属去除率优化了切削参数。同时通过刀具磨损试验,对上述两种铣削方式,比较了在不同的切削速度下铣削时铣刀后刀面的磨损,证实了以氮气为切削介质能够大大地改善刀具的磨损状况和提高刀具的寿命。  相似文献   

10.
李刚  张宇  李斯  朱锟鹏 《航空学报》2023,(8):263-277
高速高精密铣削加工中铣削力是最重要的过程参量之一,铣削力信息的准确反馈对保证加工过程中的稳定性具有十分重要的意义。然而,影响铣削力大小的因素有很多种,目前缺乏一种考虑多种因素下的综合铣削力模型。因此,着重研究并综合考虑了刀具磨损、刀具跳动、刀具弹性变形对瞬时切削厚度的影响,同时分析了弹性变形对刀具切入与切出角的影响规律,改进了刀具瞬时切削厚度模型。基于运动学分析,将切削刃位置与预加工工件形态相互统一,建立了综合铣削力模型。为验证所提出综合模型的精确性和通用性,进行铣削实验,实验结果表明,铣削力预测值与实验值吻合较好,铣削力误差值小于1%,并通过分析刀具磨损与铣削力之间的相互变化关系,得出进给方向上的铣削力与Z向的铣削力系数对刀具磨损的影响最大。因此,切向力分量以及Z向的铣削力系数的变化特征可以较好的表征刀具磨损状况,从而提高铣削加工精度和效率。  相似文献   

11.
王珉  张幼桢 《航空学报》1988,9(9):495-498
 在钛合金铣削加工的过程中,伴随着产生各种物理、化学现象,如变形、切削热、切削力、摩擦与磨损等。而它们之间又是相互联系、相互影响、相互作用。同时又以各自独立的物理、化学和机械现象表现出来。因此只有同时从各个方面对它们进行研究,才能深入揭示其本质。弄清其作用机理,从而去指导生产实践。  相似文献   

12.
针对异形螺杆铣削加工特点,阐述了异型螺杆铣削刀具磨损/破损监控原理,采用振动信号和功率信号特征值作为检测刀具磨损的参量,利用自适应神经--模糊推理系统(ANFIS)算法和哈默斯坦非线性系统的辨识,建立刀具状态监控模型,并基于模型进行了监控仪的设计,并对监控系统的设计做了详细的论述.经试验验证,该系统满足了对刀具监控的要求.  相似文献   

13.
超声振动方向对TC4钛合金铣削特性的影响   总被引:1,自引:2,他引:1  
赵波  李鹏涛  张存鹰  王晓博 《航空学报》2020,41(2):623301-623301
为充分发挥超声铣削钛合金的优势,改善钛合金的加工效果,增强表面服役性能,分别对刀具和工件施加超声振动,以寻求合适的振动方向和加工参数。理论推导了侧刃断续切削时的临界速度,试验研究了不同振幅和切削速度对表面形貌、切屑形态、切削力和刀具磨损的影响,同时探究了表面微织构对摩擦特性的影响。试验表明在两种振动方向下,增大振幅均使切屑的锯齿化程度降低,并且增加轴向振幅可使锯齿形切屑转变为带状切屑。轴向振动更有利于表面形成微织构、减小切削力、减缓刀具磨损、减小工件摩擦时的磨合时间,但需合理控制切削速度和超声振幅。同时,对切削力进行频谱分析,为工作状态下超声振动频率的测量提供了一种参考方法。  相似文献   

14.
 实验发现,车刀破损时低频率范围内时域信号的变化总是很明显,而宽频率范围内时域信号的变化则不一定明显。本文提出用低频率范围内时域信号的变化来监测车刀破损,经验证,可在20ms内检测出刀具的破损。  相似文献   

15.
Titanium alloys are widely used in aeronautics that demand a good combination of high strength, good corrosion resistance and low mass. The mechanical properties lead to challenges in machining operations such as high process temperature as well as rapidly increasing tool wear. The conventional tool materials are not able to maintain their hardness and other mechanical properties at higher cutting temperatures encountered in high speed machining. In this work, the new material tools, which are polycrystalline diamond (PCD) and polycrystalline cubic boron nitride (PCBN) tools, are used in high-speed milling of Ti-6.5Al-2Zr-1Mo-1V (TA15) alloy. The performance and wear mechanism of the tools are investigated. Compared to PCBN tool, PCD tool has a much longer tool life, especially at higher cutting speeds. Analyses based on the SEM and EDX suggest that attrition, adhesion and diffusion are the main wear mechanisms of PCD and PCBN tools in high-speed milling of TA15. Oxidation wear is also observed at PCBN tool/workpiece interface. Roughness, defects, micro-hardness and microstructure of the machined surface are investigated. The recorded surface roughness values with PCD/PCBN tools are bellow 0.3 μm at initial and steady cutting stage. Micro-hardness analysis shows that the machined surface hardening depth with PCD and PCBN tools is small. There is no evidence of sub-surface defects with PCD and PCBN tools. It is concluded that for TA15 alloy, high-speed milling can be carried out with PCD/PCBN tools.  相似文献   

16.
《中国航空学报》2023,36(2):388-401
Electrochemical milling is a modified technique of traditional electrochemical machining (ECM) that can be used to manufacture some helicopter transmission system parts. The use of rotary tools and an inner-jet electrolyte supply pattern can greatly improve the material removal rate (MRR) in a single pass. However, the feed speed is generally limited to minimize the tool wear. To increase the MRR, electrical discharge machining (EDM) is introduced into the electrochemical milling process. The tool rotation is employed to interrupt the discharge and the high-conductivity salt solution and non-pulsed direct current power supply are also adopted to increase ECM, eventually, a new machining method is proposed, which can be called rotary sinking electrochemical discharge milling (RSECD milling). The mechanism of it is explored in this study by analyzing the machined current, MRR, surface morphology, and tool wear at different applied voltages and feed speeds. Besides, the RSECD milling using the tool with a larger diameter is also conducted to further verify the effectiveness. In particular, the MRR can be increased by 742.5% when using the tool with a diameter of 20 mm at the applied voltage of 20 V.  相似文献   

17.
《中国航空学报》2021,34(4):465-475
Severe tool wear and poor surface quality are the main problems during micro machining of cemented carbide. In this work, an innovative hybrid process of laser-induced oxidation assisted micro milling (LOMM) was proposed to solve the problems. A nanosecond laser was utilized to induce oxidation of the WC-20%Co material, producing loose oxide which was easy to remove. The micro machinability of the material was improved by laser-induced oxidation. The oxidation mechanisms of cemented carbide were studied. A microgroove with a depth of 2.5 mm and aspect ratio of 5 was fabricated successfully. The milling force, surface quality and tool wear mechanisms were investigated. For comparison, a microgroove was also fabricated with conventional micro milling (COMM) using identical milling parameters. Results revealed that in LOMM the milling force and tool wear rate were extremely low during removing the oxide. The machined surface quality and dimensional accuracy achieved by LOMM were superior to those obtained by COMM. The surface roughness Sa of the microgroove bottom reached 88 nm in LOMM, while the cross-sectional geometry of the microgroove was a trapezoid. Perpendicularity of the microgroove sidewall machined by LOMM was better than that by COMM. The tool wear forms in LOMM were coating spalling and slight tool nose breakage. Compared with COMM, the tool life in LOMM was prolonged significantly. It indicates that the proposed hybrid process is an effective and efficient way to fabricate high aspect ratio micro-features with high dimensional accuracy.  相似文献   

18.
杨梦媛  李迎光  许可 《航空学报》2021,42(10):524979-524979
框、梁、壁板、蒙皮等飞机关键零部件中包含大量型腔特征,其加工效率直接影响零件的整体加工效率。高速铣削机床的发展为此类零件的高效加工奠定了很好的硬件基础,也给型腔铣削刀具轨迹生成带来了新的问题。例如蒙皮镜像铣由于其特殊的设计,对刀具轨迹提出平滑无抬刀、步距变化严格控制在一定范围内等更严苛的要求,从而保证蒙皮高质量加工。结构件高速加工中为了保持刀具的高进给和高转速,也要求刀具轨迹平滑且步距平稳变化。然而现有的型腔铣削刀轨生成方法大多基于局部优化解决加工残余和刀轨不平滑问题,难以生成同时满足多工艺约束尤其是步距约束的刀具轨迹,无法完全发挥高速机床的性能。针对此问题,本文提出基于中轴变换的型腔高速铣削刀具轨迹生成及优化方法。该方法首先基于中轴变换提取型腔骨架线,并进一步修正从而生成刀轨偏置基准和初始刀轨。其次利用图像变形算法对初始刀轨进行迭代变形优化,使最终优化刀轨与目标型腔区域吻合,且满足高速加工的工艺约束条件。该方法在离散的图像域内从整体角度优化刀具轨迹,不仅保证轨迹平滑无抬刀,还能保证步距在容许范围内平稳变化。实验证明本文提出的方法在保证轨迹平滑和步距平稳变化等方面的有效性,能够满足高性能加工的要求。  相似文献   

19.
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   

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