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1.
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   

2.
Nickel-based alloy has been widely used due to its outstanding mechanical properties.However, Nickel-based alloy is a typical difficult-to-machine material, which is a great constrain for its application in the manufacturing field. To improve the surface quality of the ground workpiece, a new high-shear and low-pressure grinding wheel, with high ratio of tangential grinding force to normal grinding force, was fabricated for the grinding of selective laser melting(SLM) manufactured Inconel718 all...  相似文献   

3.
球头模具铣刀刀刃和前刀面成形的研究   总被引:2,自引:0,他引:2  
沈谦  王珉 《航空学报》1994,15(8):942-949
提出了一种使球头模具铣刀具有良好切削性能,可以大大改善球顶点及其附近处切削条件的刀刃构造形式和前刀面形状;根据包络原理详细分析和研究了成形这种球头铣刀刀刃及前刀面的磨削(或铣削)系统的合理运动方式,并导出了各运动间的函数关系;给出了一计算实例。  相似文献   

4.
难加工材料缓进给磨削加工表面完整性的试验研究   总被引:1,自引:0,他引:1  
王威廉  荆长生 《航空学报》1989,10(6):315-323
 利用X射线应力仪、显微硬度计、俄歇电子能谱仪、扫描电镜和金相显微镜系统地研究了难加工材料缓进给磨削的表面完整性,讨论了表面粗糙度、冷作硬化、残余应力及其分布、表面层元素的分布以及试件的疲劳性能。 试验表明,缓进给磨削的表面完整性优于铣削和普通磨削。  相似文献   

5.
钛合金的切削加工   总被引:8,自引:0,他引:8  
分析了钛合金的切削加工性 ;阐述了钛合金切削加工中通常应注意的问题 ;在此基础上 ,提出了在钛合金车、铣、磨、钻、铰、攻丝加工中应采取的工艺措施  相似文献   

6.
Ultrasonic vibration-assisted grinding(UVAG) is an effective and promising method for machining of hard-to-cut materials. This article proposed an ultrasonic vibration plate device enabling the longitudinal full-wave and transverse half-wave(L2T1) vibration mode for UVAG.The characteristics of two-dimensional coupled vibration in different directions were analyzed on the basis of apparent elastic method and finite element method. Furthermore, a correction factor was applied to correct the freque...  相似文献   

7.
介绍了一个基于微机的二维CAD/CAM集成系统,主要讨论了系统总体结构、EDMS网状数据库、绘图及分析、刀位轨迹的计算及后置处理功能等问题.系统主要用于二维数控铣、数控磨、数控车、线切割等自动数控编程.本系统已经推出成熟版本,在推广应用的过程中,显著地提高了数控编程的效率,同时也大大提高了生产的自动化水平.  相似文献   

8.
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   

9.
硬脆材料光滑表面超精磨削的研究   总被引:3,自引:0,他引:3  
利用自行研制的专用小电流低电压脉冲/直流电解电源和非线性弱电解水基磨削液,在MM712OA精密平面磨床上制作了一套ELID磨削装置,对硬脆材料的ELID光滑表面磨削技术进行了系统的研究,获得了砂轮修整参数及磨削参数与光滑表面磨削粗糙度之间的关系。  相似文献   

10.
徐会  康仁科  陈燕 《航空学报》2020,41(2):623505-623505
针对燃油喷嘴大修再制造中积碳难去除的问题。利用扫描电子显微镜(SEM)分析喷嘴表面积碳的微观形貌和成分组成,为磁力研磨技术去除积碳方法的确定和工艺研究奠定基础。从旋转磁场的产生原理、磁针在磁场中受力和磁针在磁场中运动三方面综合分析了磁力研磨法的材料去除机理。采用电磁研磨装置对喷嘴进行积碳去除试验,运用响应面分析法分析旋转磁场转速、磁针的型号尺寸和研磨时间的交互作用对材料去除量和表面粗糙度的影响规律,确定试验的最佳工艺参数。最优的工艺参数为:磁针型号尺寸Ø0.8 mm×5 mm,旋转磁场转速1 000 r/min,研磨时间40 min。通过微观形貌的观测以及表面应力检测分析,综合评价研磨后的喷嘴表面质量。结果表明,研磨后的喷嘴表面积碳基本去除,表面光滑,残余应力明显下降,金相组织完好。经过专业测试,研磨后的残余积碳小于技术要求规定值。采用磁力研磨技术,可以有效去除燃油喷嘴表面积碳,去除效率高,技术环保,满足绿色再制造的要求。  相似文献   

11.
 磨削钛合金时砂轮磨损严重,磨削比很低。为了改善钛合金的磨削加工性,本文着重分析了造成砂轮磨损的主要原因,论述了粘附磨损、扩散磨损以及磨粒破碎、脱落所造成的磨损,并分析了磨削条件对砂轮磨损的影响。  相似文献   

12.
本文以磨削钛合金的粘附现象为基础,分析了磨削力与粘附面积百分率间的关系,并导出了磨削力数学模型。该模型计及由于切削工件材料而产生的力以及由于粘到工作磨粒上的工件材料与工件相互接触而产生的力。试验结果证明该模型对钛合金磨削是适用的。  相似文献   

13.
原位自生TiB_2/Al复合材料具有密度小,比强度高,比模量大等特点,在航空航天领域具有广泛的应用前景。为探索原位自生TiB_2/Al复合材料的磨削加工性能,选用单晶刚玉SA砂轮、白刚玉WA砂轮和CBN砂轮在不同磨削参数下对TiB_2/Al复合材料进行磨削试验。首先研究了砂轮材质、转速、工件速度、磨削深度对工件表面粗糙度的影响规律;其次通过对工件表面形貌、磨屑形态、砂轮磨损的观测分析,探索了原位自生TiB_2/Al复合材料磨削表面成形机制;最后基于试验数据,给出了TiB_2/Al复合材料磨削工艺参数优选域。本研究可为颗粒增强金属基复合材料磨削加工提供基础理论支撑。  相似文献   

14.
在加工过程中,相反的两相特性增加了SiC_p/Al复合材料加工难度,难以获得良好的表面质量。层和TiAlSiN涂层两种铣刀的切削性能。结果表明,在低温条件下,两种刀具的切削力增加,铣削后表面铝基体的开裂及剥落等缺陷均显著改善,加工表面损伤减小且粗糙度降低,低温铣削能获得更好的表面质量。此外,在常温与低温条件下TiAlSiN涂层比TiAlN涂层铣刀的切削力小,低温条件下TiAlSiN涂层铣刀表面完整性和切屑形貌优于TiAlN涂层铣刀。  相似文献   

15.
设计了接触平面法向振动的静摩擦系数测定实验台,分别进行了平面摩擦副干摩擦时振动条件下的不同材料(45#钢、QT80-2、HT35-61)、不同加工方法(铣削、磨削)、不同表面粗糙度、不同激振振幅、不同激振频率、不同激振波形等情况的静摩擦系数测量,最后给出了各种影响因素对静摩擦系数的影响关系。  相似文献   

16.
Based on analysis of surface average temperature and burn degree, this article obtains the threshold temperature of surface burn in grinding titanium alloy with cup wheels. Meanwhile, the impact of the burn degree on the metallographic structure of workpiece surface and metallurgical phase transformations is investigated. In order to reduce the grinding temperature and improve the grinding efficiency, a self-inhaling structure cup segmented wheel is developed to generate internal cooling effect. The internal cooling technology is compared with traditional cooling conditions in the grinding experiments on TC4 (Ti-6Al-4V). The results indicate that the self-inhaling internal cooling wheel can reduce the grinding surface temperature by 30% or more, and the grinding efficiency doubles. Utilizing water-based semi-synthetic coolant, the segmented wheel with the self-inhaling structure can further reduce the grinding temperature by about 50%.  相似文献   

17.
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   

18.
Surface topography of superalloy GH4169 workpieces machined by milling and grinding is different significantly. Meanwhile, surface roughness, as one of the main indicators of machined surface integrity, has a great influence on the fatigue behavior of workpieces. Based on analyzing the formation mechanism and characteristics of surface roughness utilizing different machining processes and parameters, the machined surface roughness curve can be decoupled into two parts utilizing frequency spectrum analysis, which are kinematic surface roughness curve and stochastic surface roughness curve. The kinematic surface roughness curve is influenced by machining process,parameters, geometry of the cutting tool or wheel, the maximum height of which is expressed as R'_z.By subtracting the kinematic part from the measurement curve, the stochastic surface roughness curve and its maximum height R'_zcan be obtained, which is influenced by the defects of cutting tool edge or abrasive grains, built-up edges(BUE), cracks, high frequency vibration and so on. On the other hand, the results of decoupling analysis of surface roughness curves indicate that Raand Rz values of milling GH4169 are 2–5 times and 1–3 times as high as those of grinding, while R'_zvalue of milling is 13.85%–37.7% as high as that of grinding. According to the results of fatigue life tests of specimens machined by milling and grinding, it can be concluded that fatigue behavior of GH4169 decreases with the increase of R'_zmonotonically, even utilizing different machining processes.  相似文献   

19.
For high-efficiency grinding of difficult-to-cut materials such as titanium and nickel alloys, a high porosity is expected and also a sufficient mechanical strength to satisfy the function.However, the porosity increase is a disadvantage to the mechanical strength. As a promising pore forming agent, alumina bubbles are firstly induced into the abrasive layer to fabricate porous cubic boron nitride(CBN) wheels. When the wheel porosity reaches 45%, the bending strength is still high up to 50 MPa with modified orderly pore distribution. A porous CBN wheel was fabricated with a total porosity around 30%. The grinding performance of the porous composite-bonded CBN wheel was evaluated in terms of specific force, specific grinding energy, and grinding temperature, which were better than those of the vitrified one under the same grinding conditions. Compared to the vitrified CBN wheel, clear straight cutting grooves and less chip adhesion are observed on the ground surface and there is also no extensive loading on the wheel surface after grinding.  相似文献   

20.
A problem of optimization of cutting parameters with respect to the criteria of maximum efficiency and maximum tool resistance is formulated. To solve the problem, a method is developed and applied for determining the Pareto-optimal values of machining conditions in milling the present-day GTE monoimpeller blade passages with a circular milling cutter.  相似文献   

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