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1.
为了改善磨削后镍基高温合金GH4169的表面完整性,本文采用磁流变弹性体砂轮对镍基高温合金GH4169进行抛光试验研究。首先,通过模压成型的方法制备了磁流变弹性体砂轮,并对其表面微观形貌及不同磁场强度下的硬度进行了表征。其次将制备出的磁流变弹性体砂轮用于对镍基高温合金GH4169的抛光工艺试验中,并讨论抛光工艺参数中磁场强度对镍基高温合金表面完整性的影响。试验结果表明:在一定的磁场强度范围内,零件抛光后的表面粗糙度和显微硬度随着磁场强度的增大而减小,同时增大磁场强度也有利于改善零件的表面形貌,减少砂轮的磨损量,降低零件磨削后的亚表面损伤层厚度。  相似文献   

2.
为了改善磨削后镍基高温合金GH4169的表面完整性,本文采用磁流变弹性体砂轮对镍基高温合金GH4169进行抛光试验研究。首先,通过模压成型的方法制备了磁流变弹性体砂轮,并对其表面微观形貌及不同磁场强度下的硬度进行了表征。其次,将制备出的磁流变弹性体砂轮用于对镍基高温合金GH4169的抛光工艺试验中,并讨论抛光工艺参数中磁场强度对镍基高温合金表面完整性的影响。试验结果表明:在一定的磁场强度范围内,零件抛光后的表面粗糙度和显微硬度随着磁场强度的增大而减小,同时增大磁场强度也有利于改善零件的表面形貌,减少砂轮的磨损量,降低零件磨削后的亚表面损伤层厚度。  相似文献   

3.
镍基高温合金GH4169磨削参数对表面完整性影响   总被引:4,自引:2,他引:2  
研究了用单晶刚玉砂轮磨削镍基高温合金GH4169时,磨削参数对表面完整性中的表面特征(表面粗糙度、表面形貌、表面显微硬度和表面残余应力)的影响,以期优化磨削参数.砂轮速度依次选择15,20,25m/s,磨削深度分别选择50,100,150μm,工件速度分别选择5,10,15m/min.研究结果表明:表面粗糙度对工件速度的变化最敏感,表面显微硬度对砂轮速度变化最敏感,表面残余应力对砂轮速度变化最敏感;同时表明了磨削参数对磨削表面形貌、显微硬度梯度、微观组织、残余应力梯度的影响,揭示了表面完整性中的变质层形成规律.其塑性变形层在5~10μm,显微硬度变化影响层为80~100μm,残余应力影响层厚度为80~200μm,其为磨削镍基高温合金表面完整性控制研究提供相关的实验数据基础.   相似文献   

4.
电镀砂轮具有优异的成型性和形状保持能力,越来越广泛地应用于复杂曲面的加工,但是磨损对零件表面完整性影响的研究并不充分.在深入分析利用圆环型砂轮在插磨方式下加工GH4169试件所产生的表面形貌形成规律的基础上,对高刚度矩形试件的磨削表面粗糙度随砂轮磨削量的变化进行了详细记录,并对某型号发动机静子叶片进行实际磨削验证.试验结果表明,精磨时适当的砂轮磨损可以使高刚度试件表面粗糙度下降35%,对表面硬度和残余应力影响不大;而叶片的弱刚度会大幅提高磨削粗糙度,但适当的砂轮磨损可以使叶片端部粗糙度下降64%,并降低刚度对粗糙度的影响,进而提高叶片表面磨削质量的一致性.因此,通过磨削粗糙度对砂轮的磨损状况进行大致评估,选择合适磨损量的砂轮用于精加工,以充分降低工件的表面粗糙度并提高磨削质量的一致性.  相似文献   

5.
镍基高温合金的磨削特征   总被引:4,自引:0,他引:4  
以GH4169高温合金为主要研究对象,论述了高温合金的磨削特征。由于高温合金的难磨性以及磨削时砂轮表面存在严重的粘附物,因而使磨削力和磨削温度显着增高,磨削比非常低。  相似文献   

6.
针对难加工镍基高温合金材料GH4169实际切削过程中的加工效率低下、刀具磨损严重、加工表面质量差等问题,本文采用正交试验法,使用新型PVD-TiAlN涂层硬质合金刀具进行高温合金GH4169的高速铣削试验。研究了TiAlN涂层刀具高速铣削GH4169过程中的刀具耐用度和由于刀具磨损引起的试件表面粗糙度的变化规律;建立了高温合金GH4169的刀具寿命经验公式和刀具磨损与试件表面粗糙度之间的变化规律曲线。结果表明:高温合金GH4169高速铣削过程中,切削速度对刀具寿命的影响非常明显,进给量及切削深度的影响较小;TiAlN涂层硬质合金刀片的耐用度随着切削速度的增大而减小;试件的表面粗糙度值随着刀具的磨损总体上呈现增加的趋势。  相似文献   

7.
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   

8.
针对航空发动机叶片材料GH4169高温合金,采用CBN砂轮磨削后进行羊毛毡轮数控抛光.首先,研究了抛光预压量对抛光轮寿命和工件表面粗糙度的影响,找到了抛光轮寿命的评价方法和优化的预压量;然后,研究了抛光深度对磨削后GH4169表面完整性的影响.结果表明:表面粗糙度Ra随抛光深度的增加先减小后稳定,表面显微硬度HV随抛光深度的增加呈显著下降趋势,进给方向表面残余正应力随深度增加先升高后下降,而垂直进给方向表面残余正应力先基本不变后下降.最终试验优选出了深度参数为2μm,预压量0.5~1.0mm.采用羊毛毡轮对GH4169磨削表面进行抛光,既能达到较小的表面粗糙度值(Ra=0.3μm),又可以有效维持CBN砂轮磨削形成的两个方向较大的表面残余应力.  相似文献   

9.
本文通过对陶瓷刀片车削镍基高温合金GH4169机理的研究,得到了切削速度、进给量和切削深度对切削力及切削温度和表面粗糙度的影响,进而优化切削工艺。借助olympus的3D测量激光共焦显微镜,得到了刀片的磨损形貌,并对其做了简要分析。  相似文献   

10.
马爽  李勋  崔伟  苏帅 《航空制造技术》2016,(18):102-108
利用超硬磨料砂轮进行GH4169叶片型面的精密磨削加工是提高其几何精度的有效手段.通过对GH4169材料进行悬臂插磨试验发现在精磨参数下磨削表面硬度在44~47HRC之间,叶片表面双方向均获得较大的残余压应力,进给方向上的残余压应力大于线速度方向上的残余压应力,且磨削参数对磨削表面硬度和残余压应力的影响不显著.在此基础上,基于磨削表面粗糙度小于Ra0.5μm的要求,提出叶片插磨的参数优化原则,为了降低磨削粗糙度推荐插磨参数:砂轮线速度26.8m/s,进给速度1000mm/min,型面磨削残高2μm;为了减小磨削力引起叶片的弹性变形所造成的加工误差,推荐磨削深度为0.005mm.在推荐参数下所加工叶片的形状精度可达到20μm以内,磨削表面以下没有明显的拉应力层,压应力层深度约为70μm,最大残余压应力位于表面下5μm处.以上研究为GH4169叶片的悬臂插磨工艺提供了一种基于表面完整性的参数优化方法和一组经过优化的精磨参数.  相似文献   

11.
K444 nickel-based superalloy is an important material to manufacture the gas turbine due to its excellent mechanical properties at high temperatures and corrosion resistance. Currently,grinding is the mostly used method for the surface finish of the K444 alloy components. However,few studies worked on the effects of the abrasive tool wear on the ground surface characteristics and corrosion properties of K444 alloy. This study uses two different-type alumina abrasive tools, i.e.,white alumina(WA)...  相似文献   

12.
GH4169磨削表面粗糙度影响参数的敏感性研究   总被引:1,自引:0,他引:1  
通过GH4169高温合金平面切入磨削实验,建立了表面粗糙度的经验公式,分析了表面粗糙度对磨削参数的灵敏度,获得了磨削参数稳定域和非稳定域。结合正交试验法中的极差分析方法获得了不同磨削参数对表面粗糙度的影响曲线,进行了磨削参数区间的优选。研究结果表明:表面粗糙度对磨削深度的变化最为敏感,对工件速度的变化敏感次之,对砂轮速度的变化最不敏感;磨削深度优选范围为0.01~0.015mm,工件速度优选范围为10~15m/min,砂轮速度优选范围为20~30m/s,可控制表面粗糙度在0.7μm以内。为高温合金材料磨削表面粗糙度控制提供理论方法和试验依据。  相似文献   

13.
《中国航空学报》2023,36(6):446-459
Cubic boron nitride (cBN) superabrasive grinding wheels exhibit unique advantages in the grinding of difficult-to-cut materials with high strength and toughness, such as titanium alloys and superalloys. However, grinding with multilayered metallic cBN superabrasive wheels faces problems in terms of grain wear resistance, the chip storage capability of the working layers and the stability and controllability of the dressing process. Therefore, in this work, novel metallic cBN superabrasive wheels with aggregated cBN (AcBN) grains and open pore structures were fabricated to improve machining efficiency and surface quality. Prior to the grinding trials, the air-borne abrasive blasting process was conducted and the abrasive blasting parameters were optimized in view of wear properties of cBN grains and metallic matrix materials. Subsequently, the comparative experiments were performed and then the variations in grinding force and force ratio, grinding temperature, tool wear morphology and ground surface quality of the multilayered AcBN grinding wheels were investigated during machining Ti–6Al–4V alloys. In consideration of the variations of grain erosion wear volume and material removal rate per unit of pure metallic matrix materials as the abrasive blasting parameters changes, the optimal abrasive blasting parameters were identified as the SiC abrasive mesh size of 60# and the abrasive blasting distance and time of 60 mm and 15 s, respectively. The as-developed AcBN grains exhibited better fracture toughness and impact resistance than monocrystalline cBN (McBN) grains because of the existence of metal-bonded materials amongst multiple cBN particles that decreased crack propagation inside whole grains. The metallic porous AcBN wheels had lower grinding forces and temperature and better ground surface quality than vitrified McBN wheels due to the constant layer-by-layer exposure of cBN particles in the working layer of AcBN wheels.  相似文献   

14.
《中国航空学报》2021,34(8):65-74
In this article, a grinding force model, which is on the basis of cutting process of single abrasive grains combined with the method of theoretical derivation and empirical formula by analyzing the formation mechanism of grinding force, was established. Three key factors have been taken into accounts in this model, such as the contact friction force between abrasive grains and materials, the plastic deformation of material in the process of abrasive plowing, and the shear strain effect of material during the process of cutting chips formation. The model was finally validated by the orthogonal grinding experiment of powder metallurgy nickel-based superalloy FGH96 by using the electroplated CBN abrasive wheel. Grinding force values of prediction and experiment were in good consistency. The errors of tangential grinding force and normal grinding force were 9.8% and 13.6%, respectively. The contributions of sliding force, plowing force and chip formation force were also analyzed. In addition, the tangential forces of sliding, plowing and chip formation are 14%, 19% and 11% of the normal forces on average, respectively. The pro-posed grinding force model is not only in favor of optimizing the grinding parameters and improving grinding efficiency, but also contributes to study some other grinding subjects (e.g. abrasive wheel wear, grinding heat, residual stress).  相似文献   

15.
《中国航空学报》2021,34(2):576-585
Creep feed profile grinding of the fir-tree blade root forms of single crystal nickel-based superalloy was conducted using microcrystalline alumina abrasive wheels in the present study. The grinding force and the surface quality in terms of surface topography, subsurface microstructure, microhardness and residual stress obtained under different grinding conditions were evaluated comparatively. Experimental results indicated that the grinding force was influenced significantly by the competing predominance between the grinding parameters and the cross-sectional root workpiece profile. In addition, the root workpiece surface, including the root peak and valley regions, was produced with the large difference in surface quality due to the nonuniform grinding loads along the root workpiece profile in normal section. Detailed results showed that the surface roughness, subsurface plastic deformation and work hardening level of the root valley region were higher by up to 25%, 20% and 7% in average than those obtained in the root peak region, respectively, in the current investigation. Finally, the superior parameters were recommended in the creep feed profile grinding of the fir-tree blade root forms. This study is helpful to provide industry guidance to optimize the machining process for the high-valued parts with complicated profiles.  相似文献   

16.
The technique of creep feed grinding is most suitable for geometrical shaping, and therefore has been expected to improve effectively material removal rate and surface quality of components with complex profile. This article studies experimentally the effects of process parameters (i.e. wheel speed, workpiece speed and depth of cut) on the grindability and surface integrity of cast nickel-based superalloys, i.e. K424, during creep feed grinding with brazed cubic boron nitride (CBN) abrasive wheels. Some important factors, such as grinding force and temperature, specific grinding energy, size stability, surface topography, microhardness and microstructure alteration of the sub-surface, residual stresses, are investigated in detail. The results show that during creep feed grinding with brazed CBN wheels, low grinding temperature at about 100 °C is obtained though the specific grinding energy of nickel-based superalloys is high up to 200-300 J/mm3. A combination of wheel speed 22.5 m/s, workpiece speed 0.1 m/min, depth of cut 0.2 mm accomplishes the straight grooves with the expected dimensional accuracy. Moreover, the compressive residual stresses are formed in the burn-free and crack-free ground surface.  相似文献   

17.
单晶硅脆性材料塑性域超精密磨削加工的研究   总被引:8,自引:0,他引:8  
对单晶硅脆性材料的超精密磨削加工作了大量的实验研究.研究结果表明,对于单晶硅等脆性材料,其表面粗糙度主要与砂轮的平均磨粒尺寸、进给量等因素有关.当采用超精密磨床并在V  相似文献   

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