Affiliation of Author(s):机电学院
Journal:SCIENTIFIC REPORTS
Key Words:NICKEL-BASED SUPERALLOY BLISK CHANNELS SURFACE OPTIMIZATION BEHAVIOR FLOW
Abstract:Electrochemical grinding (ECG) is a low-cost and highly efficient process for application to difficult-tomachine materials. In this process, the electrolyte supply mode directly affects machining stability and efficiency. This paper proposes a flow channel structure for an abrasive tool to be used for inner-jet ECG of GH4169 alloy. The tool is based on a dead-end tube with electrolyte outlet holes located in the sidewall. The diameter and number of outlet holes are determined through numerical simulation with the aim of achieving uniform electrolyte flow in the inter-electrode gap. Experiments show that the maximum feed rate and material removal rate are both improved by increasing the diamond grain size, applied voltage, electrolyte temperature and pressure. For a machining depth of 3 mm in a single pass, a feed rate of 2.4 mm min(-1) is achieved experimentally. At this feed rate and machining depth, a sample is produced along a feed path under computer numerical control, with the feed direction changing four times. Inner-jet ECG with the proposed abrasive tool shows good efficiency and flexibility for processing hard-to-cut metals with a large removal depth.
ISSN No.:2045-2322
Translation or Not:no
Date of Publication:2017-06-14
Co-author:Niu, Shen,Zhang, Qingliang,Fu, Shuxing,qns
Correspondence Author:Li Jack
Professor
Alma Mater:西安交通大学
Education Level:西安交通大学
Degree:Doctoral Degree in Engineering
School/Department:College of Mechanical and Electrical Engineering
Discipline:Mechanical Manufacture and Automation
Business Address:明故宫校区4307
Contact Information:13851851611
Open time:..
The Last Update Time:..