陶瓷加工

  • 网络Ceramic processing;Ceramic Machining
陶瓷加工陶瓷加工
  1. 粉尘是主要空气污染物,生产性粉尘来源于矿石开采、陶瓷加工、玻璃制造、皮毛处理等生产性行业,是污染作业环境、损害劳动者健康的重要职业性有害因素。

    Dust is air pollutant . The occupational dusts usually come from industries of mining , ceramic processing and glass manufacturing , which not only pollute the environment atmosphere , but also affect the health of employees .

  2. 纳米陶瓷加工性特性仿真及试验研究

    Simulation and Experiment Research on Nano Ceramic Machining Property

  3. 添加TiN改善Si3N4陶瓷加工性的研究

    The Development in Improvement Si_3N_4 Ceramic Properties of Processing by Adding TiN

  4. 稀土磷酸盐(CePO4)对ZTA陶瓷加工性能的影响

    Effect of Rare-Earth Phosphates ( CePO_4 ) on Machinability of ZTA Ceramics

  5. 目前,常见的工程陶瓷加工方法有金刚石砂轮磨削、PCD等超硬刀具切削、超声波加工、激光加工、等离子弧切割及高压水射流切割。

    At present , the machining method of advanced ceramics have diamond grinding , ultra hard cutters such as PCD , ultrasonic cutting , laser cutting , plasma arc cutting and water-jet cutting .

  6. 电火花线切割加工(WEDM)是一种利用热能去除金属的非接触式特种加工方法,和工件硬度、韧性无关,非常适合材料硬脆、导电率低的工程陶瓷加工。

    WEDM is one of the non-contact non-conventional machining method using the thermal energy to remove the metal material , which is independent with the hardness and ductility of material . The characteristics of WEDM enable the machining of engineering ceramics with high hardness and ductility and low conductivity .

  7. 增韧莫来石陶瓷加工表面的耐磨性分析

    Analysis on the wear resistance of the machined surface of toughened mullite

  8. 陶瓷加工监控MS/TP网络服务延迟性能分析

    Service delay performance analysis of MS / TP network in ceramic process monitoring

  9. 消除陶瓷加工表面微裂纹的新方法

    A new method of microcracks elimination on machining ceramics

  10. 陶瓷加工的研究进展

    Progress of the Investigation of Ceramic Process

  11. 陶瓷加工专用套料钻的研制

    Development of Special Trepanning Drill for Ceramics

  12. 微波在陶瓷加工中的应用

    Application of microwave in pottery - processing

  13. 电火花线切割加工技术在陶瓷加工中的应用

    Application of wire-EDM technology in ceramic incising

  14. 陶瓷加工的新设想

    A New Idea in Ceramics Machining

  15. 在陶瓷加工过程中内孔磨床的磨程分析

    The Analysis of the Grinding-process of Inner - Aperture - Grinding Machine During the Process of Ceramic

  16. 陶瓷加工的新进展

    New Progress of Machining Ceramics

  17. 用添加长链醇的有机磨削液来提高工程陶瓷加工效率是一种非常有效的方法。

    It is an effective method to enhance the engineering ceramic grinding efficiency using organic grinding fluid with addition of long chain alcohol .

  18. 此产品由精密陶瓷加工,超精抛光达Ra0.2,由于硬度较高,表面光滑,漆包线在其表面滑动时顺畅不受损伤。

    It is made of precise ceramic and polished up to Ra0.2high hardness and smooth surface enable the enameled wire free from hurt during surface sliding .

  19. 尽早开发应用于陶瓷加工的各种激光新技术,对推动陶瓷的应用发展和激光技术的发展应用都有着深远的意义。

    It is very important to research new laser technology applied to ceramics machining . It would promote the application of ceramics and developing of laser technology .

  20. 目前陶瓷加工主要采用普通磨削和高速浅磨加工方法,加工效率低、成本高。

    At present , there are always two methods used in the ceramics machining , generally grinding and high-speed superficial grinding , which are inefficient and high costed .

  21. 该仿真系统可以较高精度预测工程陶瓷加工后的性能,并能实现加工参数的优化及进行优势因素分析。

    The system can forecast the machined quality of engineering ceramics with higher precision . In addition , the system can optimize machining parameters and analyze the dominant factors .

  22. 工程陶瓷加工作为数控磨削加工的重要应用领域,其加工工艺参数是影响加工效果的主要因素,也是工程陶瓷数控磨削加工发展水平的重要标志。

    Process parameters are the important factor to machining effect and the important symbol to the development level of engineering ceramics CNC grinding in the CNC grinding for engineering ceramics .

  23. 结果表明,超声振动磨削可明显地提高陶瓷加工效率,能有效地消除普通磨削产生的表面裂纹和崩坑,是陶瓷深孔精密高效加工的一种新方法。

    The result shows that the surface guality of the ceramic can be obviously improved by the vibration grinding , and the microcracks and fragments caused by the conventional grinding will be eliminated .

  24. 根据陶瓷加工的材料去除原理,通过相应的组分设计和热处理工艺,可控制材料的显微结构及晶界应力,使陶瓷内部产生弱结合面,进而获得陶瓷材料的可加工性。

    On the foundation of the material remove principle of ceramic machining , by corresponding component design and heat treatment techniques , we can make weak bond plane in the ceramic and realize its machinability through controlling the microstructure and boundary stress .

  25. Al2O3陶瓷表面加工残余应力的研究

    Residual Stress Analysis of Differently Machined Al_2O_3 Ceramics

  26. 本法对Al2O3陶瓷零件加工有普遍实行意义。

    Therefore this method has practical significance in the processing of Al_2O_3 ceramic parts .

  27. Al2O3/TiB2/SiCw陶瓷刀具加工镍基合金时的磨损机理研究

    Wear mechanism in machining nickel based alloys by Al 2O 3 / tib 2 / sic w ceramic cutting tool

  28. 基于LIF技术的功能陶瓷CMP加工过程研究

    Research on Chemical-Mechanical Palarization Process of Functional Ceramics Based on LIF Technology

  29. 铬基合金与钴基合金性能好,硬度高,难加工.通过采用LT55陶瓷刀片加工铬基合金,SG4陶瓷刀片加工钴基合金的试验研究,得出了比较理想的切削参数。

    Chromium - base alloys and cobalt - base alloys are of good properties , high hardness , and they are difficult in processing .

  30. 氮化硅陶瓷球加工缺陷分析与无损检测技术研究

    Processing Defect Analysis and Nondestructive Evaluation Technology for Si_3N_4 Bearing Ball