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1.
IC10定向凝固高温合金缓进给磨削表面完整性研究   总被引:2,自引:0,他引:2  
通过设计不同磨削工艺参数组合,研究了定向凝固高温合金IC10在缓进给磨削过程中表面完整性的变化,分析了IC10合金在缓进磨削过程中工艺参数对磨削表面粗糙度、显微硬度、三维形貌、显微组织的影响规律。研究表明:IC10合金在缓进给磨削过程中,当砂轮线速度V_s在15~20m/s之间变化,工件进给速度V_w不大于200mm/min,磨削深度a_p不超过0.5mm时,可以获得较好的表面质量。另外,IC10在缓进给磨削过程中会产生较严重的加工硬化现象,硬化程度最大可达26.9%,最大硬化层深度可以达到230μm。同时,IC10在缓进磨削过程中沿磨削深度方向上会产生表面白层和塑性变形层,其深度分别在0.24~3.2μm和0.48~3.8μm之间变化。  相似文献   

2.
颗粒增强钛基复合材料(PTMCs)属于典型的难加工材料,在航空航天领域具有广阔应用前景.本文开展了PTMCs材料的缓进深切磨削研究,揭示了磨削用量和磨削方式(顺磨与逆磨)对磨削力与磨削温度的影响规律,同时利用有限元法分析了磨削温度场特征和材料去除机理.研究发现,缓进深切磨削PTMCs时,磨削力随工件进给速度和切深增加而增加,顺磨时的磨削力比逆磨大10%~20%,而顺磨的磨削温度要比逆磨约低10%.由于逆磨和顺磨工件的温度分布不同,当切深大于0.6mm、工件进给速度大于400mm/min时,顺磨比逆磨更易发生烧伤.在此基础上,提出了顺磨与逆磨条件下磨削温度场仿真计算的不同热源模型与边界条件,分别获得了两种磨削方式的温度分布特征,有限元仿真结果与试验结果相符.颗粒增强钛基复材磨削表面典型加工缺陷是表面涂覆和硬脆增强相破碎和拔出导致的孔洞,单颗磨粒切厚对硬脆增强相的去除行为有显著的影响.  相似文献   

3.
涡轮叶片榫齿缓进磨削过程热力载荷效应对成型表面质量具有重要影响。基于实验研究磨削参数对DD5 单晶高温合金磨削力和温度的影响规律,分析缓进磨削力和温度形成机理,构建 DD5 缓进磨削力、温度与磨削工艺参数的映射模型并进行验证。结果表明:DD5 缓进磨削深度对磨削力和磨削温度的影响最为显著,砂轮线速度次之,工件进给速度对其影响最小;随着砂轮线速度的增大,磨削力降低、磨削温度升高;随着工件进给速度和磨削深度的增大,磨削力和磨削温度均呈升高趋势;满足材料去除速率的前提下提高工件进给速度并降低磨削深度,可以避免 DD5 磨削表面出现较大的磨削热力耦合影响层。  相似文献   

4.
缓进给磨削工艺适合于成型磨削,尤其在复杂型面构件的高效精密磨削中具有广阔应用前景。本文采用钎焊CBN砂轮进行了镍基铸造高温合金K424的缓磨试验,重点研究了工艺参数(砂轮线速度、工件进给速度、切深)对磨削加工性与表面完整性的影响,包括磨削力与磨削温度、磨削比能、尺寸稳定性、加工表面形貌、亚表面层的显微硬度与金相组织变化、残余应力。结果显示,尽管K424合金的磨削比能高达200-300J/mm3,但在钎焊CBN砂轮缓进给磨削K424合金过程中,磨削温度仅约为100℃。采用砂轮线速度22.5m/s、工件进给速度0.1m/min,以及切深0.2mm的工艺参数加工出满足尺寸精度要求的直槽。磨削表面未发现磨削烧伤与显微裂纹,并且呈压应力状态。  相似文献   

5.
为探索利用简单形状砂轮对陶瓷材料进行数控展成型面超声磨削,通过对Al2O3陶瓷进行蠕动进给超声磨削和机械磨削对比试验研究,探索各加工参数对磨削表面质量的影响规律.结果表明:超声振动方向与蠕动进给方向平行时可降低表面粗糙度值,而超声振动方向与蠕动进给方向垂直时则不利于改善加工表面质量;在超声磨削条件下,为了提高加工表面质量,应采取较小的磨削深度、较低的进给速度和适当高的磨削速度以及复合进给磨削方式.结合试验结果理论分析了蠕动进给超声磨削和蠕动进给机械磨削加工机理,并根据试验结果选择磨削参数进行了陶瓷叶片型面超声磨削的可行性试验.  相似文献   

6.
TC4钛合金高效磨削加工用环形热管砂轮的研制   总被引:1,自引:1,他引:0  
赫青山  傅玉灿  徐鸿钧  马可  陈琛 《航空学报》2013,34(7):1740-1747
针对航空航天高强韧性难加工材料TC4钛合金在磨削加工中存在磨削温度高而导致工件表面烧伤的问题,提出利用热管换热技术冷却磨削弧区的新方法.分析了环形热管砂轮在加工中对磨削弧区的强化换热原理,并设计制作出能够用于磨削加工的环形热管砂轮,同时实现了对砂轮基体内环形管腔的密封、抽真空、精确注液与机械式真空封口.最后,在相同磨削工艺条件下,使用环形热管砂轮和无热管砂轮进行TC4钛合金缓进给深切磨削对比试验,验证了环形热管砂轮对磨削弧区温度的控制效果.试验结果表明:设计制作的环形热管砂轮在TC4钛合金高效磨削过程中可以有效降低磨削温度,避免工件表面出现烧伤.  相似文献   

7.
本文综述了缓进给强力磨削的优点及存在的问题,概要介绍了国外使用镶块式砂轮进行缓进给强力磨削的工艺方法.  相似文献   

8.
高效抗疲劳磨削加工技术研究   总被引:2,自引:0,他引:2  
通过对航空领域难加工材料磨削加工技术的分析,给出了高效抗疲劳磨削加工技术的概念和意义,并结合高效抗疲劳磨削中的关键技术,以及高效抗疲劳对现代磨削加工技术的要求,阐述了磨削加工过程中的新技术和新工艺,提出了表面完整性高效磨削技术:即在保证零件表面完整性的同时实现对磨削参数的优化选择,从而实现高效磨削,为表面完整性高效抗疲...  相似文献   

9.
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   

10.
磨削磨料加工技术的最新发展   总被引:10,自引:0,他引:10  
概述了近年来磨削技术及其理论研究领域的最新进展 ,其中包括超精密磨削、研磨、抛光以及超精密复合磨削 ,重负荷荒磨、砂带磨削、超高速磨削、高效深磨技术 ,磨削自动化、数控化、智能化和虚拟化等方面的发展 ;另外 ,还介绍了砂轮修整、磨削液注入、绿色磨削、表面完整性和磨削淬硬等方面的技术进步与最新成果  相似文献   

11.
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   

12.
缓磨烧伤过程的计算机仿真研究   总被引:1,自引:0,他引:1  
在关于缓磨时的磨削热 ,接触弧区换热过程以及工件表层非稳态温度场的深入研究的基础上 ,构造了一可用于计算缓磨烧伤前后工件表层温度场畸变历程的数学模型 ,并据此完成了关于缓磨烧伤过程的计算机仿真研究 ,仿真结果与实际吻合良好 ,它率先阐明了缓磨烧伤的热机理并且证明了缓磨烧伤是一具有明显前兆特征的典型渐变过程  相似文献   

13.
在改装成的超声磨削机床上进行了陶瓷超声磨削与普通磨削的对比试验,以揭示蠕动进给超声磨削加工的磨削特性及其材料去除机理。结果表明:当超声振动方向与磨削进给方向相同时,超声振动所引起的抛磨作用非常显著,超声磨削的表面粗糙度比机械磨削的低;Al2O3陶瓷在一般条件下超声磨削的去除方式仍属于脆性断裂,以晶粒粉碎、穿晶断裂为主,但伴随有沿晶断裂、弹性划擦、塑性流动等现象。  相似文献   

14.
The ultrahigh strength 300M steel has been commonly used in the manufacture of aircraft landing gear and rotor shaft parts due to its excellent mechanical properties. Creep feed grinding is one of the essential operations during the whole component manufacturing processes. In this work, the feasibility of creep feed grinding of 300M steel by using the hard zirconium corundum wheel was theoretically and experimentally evaluated. A variety of responses including grinding forces, temperature fields...  相似文献   

15.
断续缓磨射流冲击强化磨削弧区换热的实验研究   总被引:4,自引:0,他引:4  
通过深切缓磨时磨削烧伤机理的分析,提出高压射流冲击强化磨削弧区换热新构想,并通过断续缓磨射流侧向冲击弧区的磨削实验显示其换热效果.  相似文献   

16.
《中国航空学报》2021,34(1):438-448
Ni3Al-based superalloy IC10 is widely used in high temperature components of aero-engines because of its superior mechanical properties. In this paper, the creep feed grinding properties of IC10 were investigated experimentally. The effects of grinding parameters on the grinding forces and temperature were examined. Moreover, the influences of surface roughness and hardening on the high-cycle fatigue life of IC10 specimens were studied. To control the creep feed grinding parameters and enhance the fatigue life of IC10 components, the experimental results were summarized to offer a useful reference point. It is concluded that, the grinding depth is the most important factor which influencing the grinding forces and temperature; the surface roughness is the main and unfavorable factor on the fatigue life of IC10, while the surface hardening has a positive influence on the fatigue life; to obtain a better surface quality and improve the fatigue life of IC 10, the recommended grinding parameter domain involves wheel speed ∈ [15, 20] m/s, feed rate ∈ [150, 200] mm/min, and grinding depth ∈ [0.4, 0.5] mm.  相似文献   

17.
 利用扫描电镜、电子探针、x射线光电子谱仪等测试分析手段,按照传统的烧伤分档标准对K417铸造镍基高温合金缓进磨削时烧伤表面的形成机理及烧伤表面层物理性态所发生的种种变化进行了系统的研究。文中针对高温合金本身的特点,结合性态测试与疲劳试验结果指出:仅有紫色档才可能对零件的使用寿命构成实质性损伤。  相似文献   

18.
《中国航空学报》2021,34(6):100-109
This paper evaluates the performance of creep feed grinding γ-TiAl intermetallic (Ti-45Al-2Mn-2Nb) using electroplated diamond wheels. Firstly, a comparative analysis with the grinding results by using electroplated CBN wheels was conducted, mainly involving abrasive wheel wear behavior and maximum material removal rate below surface burn limit. It was found that the diamond wheel would produce much better grinding results including lower wheel wear rate and higher maximum material removal rate. Then the surface integrity obtained at different level of material removal rate was characterized with the utilization of the diamond wheel. The poor ductility of this γ-TiAl intermetallic material was found to have a marginal effect on the surface integrity, as no severe surface defects such as material pullout were generated during the stable wheel wear stage. For the involved operating parameters, a deformation layer was produced with ∼10 μm or more in thickness depending on the material removal rate used. Meanwhile, a work-hardened layer extending to more than 100 μm was produced with a maximum microhardness of above 520 HV0.05 (bulk value 360 HV0.05). The residual stress remained compressive, with a value of above −100 MPa and even up to −500 MPa for an elevated material removal rate. Shearing chip was the main chip type, indicating good wheel sharpness in the grinding process.  相似文献   

19.
《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   

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