Skip to content

Ultra-fine high-carbon steel wire drawing with ultrasonic vibration

MetadataDetails
Publication Date2019-09-01
JournalIOP Conference Series Materials Science and Engineering
AuthorsHengqiang Cao, Xiaobiao Shan, Shen Liu, Yongjun Shi, Tao Xie
InstitutionsHarbin Institute of Technology
Citations2

Abstract Ultra-fine high-carbon steel wires are widely used in the field of diamond wire saws. The traditional method for drawing ultra-fine high-carbon steel brings many drawbacks. This paper designed an ultrasonic transducer whose frequency is 28 kHz to overcome the above drawing problem of ultra-fine steel wire with a diameter 65 μm. Influences of the ultrasonic vibration on the drawing force and the diameter of wire cycle were investigated by experimental methods. The experimental results showed that the drawing force was reduced by up to 16.6% and the diameter of wire cycle was enlarged by up to 9.7%. Besides, the continuous drawing time of the ultra-fine wire was effectively prolonged. This study can contribute to enhancing the productivity of the ultra-fine wire processing in practical production.

  1. 1966 - Effects of Ultrasound on Deformation Characteristics of Metals[J] [Crossref]
  2. 1996 - Wire Drawing with Ultrasonically Oscillating Dies[J] [Crossref]
  3. 2003 - Simulation of Ultrasonic-Vibration Drawing Using the Finite Element Method (Fem)[J] [Crossref]
  4. 2005 - The Influence of Ultrasonic-Vibration on Hot Upsetting of Aluminum Alloy[J] [Crossref]
  5. 2007 - Modelling the Effects of Superimposed Ultrasonic Vibrations on Tension and Compression Tests of Aluminium[J] [Crossref]
  6. 2007 - Investigations on the Effects of Ultrasonic Vibrations in the Extrusion Process[J] [Crossref]
  7. 2015 - A New Piezoelectric Ceramic Longitudinal-Torsional Composite Ultrasonic Vibrator for Wire Drawing[J] [Crossref]
  8. 2017 - A Longitudinal-Torsional Composite Ultrasonic Vibrator with Thread Grooves[J] [Crossref]
  9. 2018 - Study of Longitudinal-Torsional Ultrasonic Vibration Assisted Side Milling Process[J]