• CN:11-2187/TH
  • ISSN:0577-6686

机械工程学报 ›› 2017, Vol. 53 ›› Issue (7): 189-199.doi: 10.3901/JME.2017.07.189

• 制造工艺与装备 • 上一篇    下一篇

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基于热管技术的磨削弧区强化换热研究*

傅玉灿1, 陈佳佳1, 赫青山2, 马可1, 徐鸿钧1, 朱延斌1, 沈厚法1, 顾志斌1   

  1. 1. 南京航空航天大学机电学院 南京 210016;
    2. 河南工业大学机电工程学院 郑州 450007
  • 出版日期:2017-04-05 发布日期:2017-04-05
  • 作者简介:

    傅玉灿(通信作者),男,1972年出生,教授。主要研究方向为高效精密加工、绿色加工。

    E-mail:yucanfu@nuaa.edu.cn

  • 基金资助:
    * 国家自然科学基金资助项目(51175254); 20160412收到初稿,20160919收到修改稿;

Investigation of Enhancing Heat Transfer in the Grinding Contact Zone Based on Heat Pipe

FU Yucan1, CHEN Jiajia1, HE Qingshan2, MA Ke1, XU Hongjun1, ZHU Yanbin1, SHEN Houfa1, GU Zhibin1   

  1. 1. College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016;
    2. Mechanical and Electrical Engineering, Henan University of Technology, Zhengzhou 450007
  • Online:2017-04-05 Published:2017-04-05

摘要:

针对高效磨削中存在的磨削弧区热问题,有学者提出借鉴热工领域高效传热的热管技术来实现强化磨削弧区换热的构想。通过对热管砂轮结构的设计以及传热过程的理论分析,确定了影响热管砂轮传热性能的主要因素为工质种类、工质注液量和砂轮转速。并在搭建的传热性能试验平台上完成了热管砂轮基体的传热性能试验,探索了这些因素对热管砂轮传热性能的影响规律,确定了热管砂轮可用于缓进给深切磨削。在热管砂轮中注入18 g蒸馏水进行了电镀CBN热管砂轮与无热管砂轮缓进给深切磨削高温合金GH4169的对比试验,通过对比两种砂轮磨削条件下磨削弧区的平均温度、工件表面质量、工件表层金相组织、显微硬度以及磨削后砂轮表面形貌等,证实了热管砂轮的确具有优良的强化换热效果,可在无热管砂轮磨削发生严重烧伤的情况下将磨削弧区的温度控制在60 ℃以下的较低水平。

关键词: 传热性能, 高温合金, 缓进给深切磨削, 热管砂轮

Abstract:

In order to figure out the burnout problem during grinding process, a novel method about enhancing heat transferring in the contact zone by incorporating a revolving heat pipe inside the wheel disk has been proposed. By designing the structure and analyzing the heat transfer process of heat pipe grinding wheel (HPGW), factors as working fluid kind, fluid loading and rotating speed are determined to be the main factors that may affect its heat transfer capacity. Heat transfer analysis experiments were complemented on a self-designed experiment platform, on which the influences of different factors are investigated. According to the results of the heat transfer analysis experiments, a CBN HPGW injected with 18 g distilled water is fabricated and applied in creep feed grinding of Inconel 718. The results are compared with non-HPGW in terms of the average temperature in the contact zone, workpiece surface quality, microstructure and micro-hardness of the ground workpiece surface and the grinding wheel surface. Results show that the temperature in the contact zone can be controlled below 60 ℃ when using HPGW, while sever burnout happened when using non-HPGW at the same conditions, which confirmed the excellent heat transfer performance of HPGW.

Key words: creep feed grinding, heat transfer performance, supper alloy, heat pipe grinding wheel