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An Experimental Study on Processing TC4 with Nano Particle Surfactant Mixed Micro EDM
- Source :
- Materials, Volume 14, Issue 20, Materials, Vol 14, Iss 6074, p 6074 (2021)
- Publication Year :
- 2021
-
Abstract
- Micro electrical discharge machining (micro EDM) is able to remove conductive material by non-contact instantaneous high temperature, which is more suitable for machining titanium and its alloys compared with traditional machining methods. To further improve the machining efficiency and machined surface quality of micro EDM, the nano particle surfactant mixed micro EDM method is put forward in this paper. Experiments were conducted to explore the effect of nano particle surfactant on the micro EDM performance of titanium alloy. The results show that the material removal rate of micro EDM in dielectric mixed with TiO2 is the highest when open-circuit voltage is 100 V, followed by Al2O3 and ZrO2. Lower tool wear rate can be produced by using dielectric mixed with nano particle surfactant. The taper ratio of micro EDM in dielectric mixed with nano particle surfactant is higher than that in deionized water. The surface roughness Ra of micro EDM in dielectric mixed with TiO2 can be 50% lower than that in deionized water. It is helpful to improve the machining performance by adding surface surfactant in the dielectric of micro EDM.
- Subjects :
- Technology
Materials science
Nanoparticle
chemistry.chemical_element
Dielectric
Article
Electrical discharge machining
Pulmonary surfactant
Machining
Surface roughness
General Materials Science
surface surfactant
titanium
Composite material
machining performances
Microscopy
QC120-168.85
QH201-278.5
micro EDM
Titanium alloy
nano particle
Engineering (General). Civil engineering (General)
TK1-9971
chemistry
Descriptive and experimental mechanics
Electrical engineering. Electronics. Nuclear engineering
TA1-2040
Titanium
Subjects
Details
- ISSN :
- 19961944
- Volume :
- 14
- Issue :
- 20
- Database :
- OpenAIRE
- Journal :
- Materials (Basel, Switzerland)
- Accession number :
- edsair.doi.dedup.....b508911be0b3013fb6a1f399a7b742ee