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1.
ELID磨削硬脆材料精密和超精密加工的新技术   总被引:12,自引:0,他引:12  
金属基超硬磨料砂轮在线电解修整(ElectrolyticInprocesDresing,简称ELID)磨削技术是国外近年发展起来的一种硬脆材料精密和超精密加工新技术。本文介绍了ELID磨削技术的基本原理、工艺特点和国内外研究应用情况。应用ELID磨削技术,可对工程陶瓷等硬脆材料实现高效率磨削和精密镜面磨削  相似文献   

2.
铸铁结合剂微粉金刚石砂轮的在线电解修整的试验研究   总被引:1,自引:0,他引:1  
针对硬脆材料光滑磨削表面的要求,在MM7120A精密平面磨床上自行制作了一套ELID磨削装置,并对铸铁结合剂微粉金刚石砂轮在线电解修整技术进行了试验研究。建立了电解参数对微粉砂轮表面修整形貌的影响关系,提出了ELID的双重作用特性,即微量修锐和精密整形,并发现了电解膜在硬脆材料磨削过程中的重要功效。  相似文献   

3.
为了探究ELID成型磨削中磨削参数和电解参数对表面粗糙度的影响规律,基于未变形切屑厚度模型,考虑砂轮上磨粒出刃高度的随机性以及ELID磨削中氧化膜的影响,建立了针对ELID磨削的表面粗糙度预测模型。单因素实验研究了ELID成形磨削电源参数对表面粗糙度的影响规律,并探讨了电解电流与氧化膜厚度之间的关系。全因子实验以工件转速、砂轮转速和进给切深为影响因素,研究了磨削参数对表面粗糙度的影响规律,并对预测模型进行了验证。结果表明:磨削参数中,其他条件一定时,表面粗糙度随砂轮转速的增大而减小,随工件转速和切深的增大而增大;同时对于粗糙度的预测误差达到了8.75%,预测模型有效可靠。  相似文献   

4.
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   

5.
根据ELID磨削的特点,设计了专门用于研究ELID磨削的试验台。其电极间隙、电极面积和砂轮切向力可以根据要求进行调整,并且设计了专门的砂轮取样机构以方便对钝化膜状态的观测。结果表明该试验台上可以较好地模拟砂轮电解预修锐和ELID磨削过程。  相似文献   

6.
为解决普通加工方式易出现工程陶瓷边缘碎裂的问题,本文对超声内圆磨削工程陶瓷边界损伤预测系统进行了研究。在35 kHz轴向超声磨削与普通磨削两种条件下独立进行试验,运用支持向量机研究工艺参数与边界损伤影响规律,采用改进的粒子群算法优化支持向量机,建立采用混合核函数的AHPSO-SVM预测模型。研究结果表明,超声激励下试件边界损伤降幅为10.05%~21.23%,AHPSO-SVM预测模型MSE为0.378 4、平均相对误差为1.369 0%、30次适应度值标准差为0.020 2。相比于普通磨削,超声磨削可使ZTA陶瓷边界损伤值显著降低;建立的AHPSO-SVM模型具有较好的学习能力、泛化性能与良好的稳定性。  相似文献   

7.
超声ELID 复合磨削磨削力模型研究   总被引:1,自引:1,他引:0       下载免费PDF全文
以ELID 电解原理为基础,结合超声振动辅助磨削过程中单颗磨粒的运动学分析,建立了超声 ELID 复合磨削条件下的磨削力数学解析模型,并对模型进行了分析和仿真。对模型的分析表明:超声振动改 变了磨粒的运动轨迹,使同等条件下的未变形切屑厚度减小,砂轮的在线电解修整使磨粒始终处于锋锐状态, 而且影响砂轮的实际切削深度,进而对磨削力产生影响。磨削力随着超声振动频率、振幅、电解电压、脉冲比、 电解液电阻率的增大而减小;随着切削深度、工件速度的增大而增大。  相似文献   

8.
硅微晶玻璃超精密磨削技术的研究   总被引:1,自引:0,他引:1  
介绍了应用铸铁结合剂金刚石微粉砂轮和在线电解修整(ElectrolyticIn-procesDresing,简称ELID)磨削技术对硅微晶玻璃材料零件进行的超精密磨削实验。通过改变磨削参数并用力和声发射信号对磨削过程进行在线检测,对硅微晶玻璃材料的磨削进行了分析研究。实验结果表明用ELID磨削方法磨削硅微晶玻璃可以达到良好的镜面磨削效果  相似文献   

9.
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   

10.
氧化物陶瓷的微波烧结   总被引:2,自引:0,他引:2  
利用自行研制的微波烧结装置,进行了氧化锆(Y-TZP)、氧化锆增韧氧化铝(ZTA)和氧化铝陶瓷的微波烧结实验研究。重点讨论了烧结温度、保温时间对烧结密度的影响。另外,还从烧结工艺、烧结结果等方面与常规烧结方法进行了比较。  相似文献   

11.
通过对ELID磨削过程中磨削力变化规律的试验分析,并对试验结果进行了讨论,得出ELID磨削力与磨削深度、磨粒粒度、磨削时间等之间的变化规律。  相似文献   

12.
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   

13.
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   

14.
Too high grinding force will lead to a large increase in specific grinding energy, resulting in high temperature in grinding zone, especially for the aerospace difficult cutting metal materials,seriously affecting the surface quality and accuracy. At present, the theoretical models of grinding force are mostly based on the assumption of uniform or simplified morphological characteristics of grains, which is inconsistent with the actual grains. Especially for non-engineering grinding wheel,most g...  相似文献   

15.
引入金属基超硬磨料砂轮在线电解修整(ELID)技术,对陶瓷喷涂层进行精密镜面磨削的实验研究。结果表明,该技术加工精度高、表面质量好,极具应用前景。  相似文献   

16.
为了研究砂轮表面结构化对砂轮磨削性能的影响,利用脉冲激光对树脂结合剂金刚石砂轮进行了表面宏观结构化。采用6种不同类型的金刚石砂轮表面宏观结构进行了氧化铝的磨削实验,建立了激光宏观结构化金刚石砂轮的磨削力模型,比较了6种不同激光宏观结构化金刚石砂轮与非结构化砂轮在不同磨削参数下磨削力的差异,分析了砂轮制造后的表面形貌与结构化砂轮的磨损特性。实验结果表明,砂轮宏观结构化对磨削性能有很大影响,激光宏观结构化砂轮的磨削力可以减小2. 5%~24. 5%,砂轮结构化后的表面形貌出现石墨化现象;宏观结构化砂轮沟槽边缘磨损加剧,但沟槽磨损并没有明显加快宏观结构化砂轮的磨损。  相似文献   

17.
《中国航空学报》2016,(5):1414-1424
In order to develop the high-efficiency and precision machining technique of Ti Cp/Ti–6Al–4V particulate reinforced titanium matrix composites(PTMCs), high-speed grinding experiments were conducted using the single-layer electroplated cubic boron nitride(CBN) wheel and brazed CBN wheel, respectively. The comparative grinding performance was studied in terms of grinding force, grinding temperature, grinding-induced surface features and defects. The results display that the grinding forces and grinding temperature obtained with the brazed CBN wheel are always lower than those with the electroplated CBN wheel. Though the voids and microcracks are the dominant grinding-induced surface defects, the brazed CBN wheel produces less surface defects compared to the electroplated wheel according to the statistical analysis results. The maximum materials removal rate with the brazed CBN wheel is much higher than that with the electroplated one. All above indicate that the single-layer brazed CBN super-abrasive wheel is more suitable for high-speed grinding of PTMCs than the electroplated counterpart.  相似文献   

18.
镍基高温合金是航空发动机部件的常用材料,其磨削加工存在工具损耗严重、寿命短等难题.针对3种新研制的刚玉砂轮(分别为粒度60#的微晶和单晶混合磨料砂轮、粒度60#的单晶刚玉砂轮,以及粒度70#的单晶刚玉砂轮),开展了GH4169镍基高温合金材料的磨削试验,从磨削力、磨削温度、砂轮磨损以及表面粗糙度等方面对3种砂轮的磨削性...  相似文献   

19.
The effectiveness of grinding fluid supply has a crucial impact on grinding quality and efficiency in high speed grinding. In order to improve the cooling and lubrication, through in-depth research of self-inhaling internal cooling method and intermittent grinding mechanism, a new spray cooling method used in high speed grinding is proposed. By referring to the structure of bowl- shaped dispersion disk, the grinding wheel matrix with atomization ability is designed; through studying heat transfer of droplet collision and the influence of micro-groove on the boiling heat transfer, grinding segment with micro-groove is designed to enhance the heat flux of coolant and achieve maximum heat transfer between droplets and grinding contact zone. High-speed grinding experiments on GH4169 with the developed grinding wheel are carried out. The results show that with the micro-groove grinding wheel just 5.4% of pump outlet flow rate and 0.5% of spindle energy is needed to reduce the grinding temperature to 200℃, which means the developed grinding wheel makes cooling high efficient and low energy consuming.  相似文献   

20.
ELID超精密镜面磨削钝化膜状态变化的研究   总被引:1,自引:0,他引:1  
建立了ELID磨削系统的电解反应回路等效模型,提出用极间电流表征金属结合剂砂轮表面的钝化膜状态,分析了钝化膜在ELID超精密镜面磨削电解预修锐阶段、在线电解修整动态磨削阶段和光磨阶段的状态变化。  相似文献   

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