Results 131 to 140 of about 960 (181)

WEDM Used for Machining High Entropy Alloys [PDF]

open access: yesMaterials, 2020
Unconventional wire electrical discharge machining technology (WEDM) is a key machining process, especially for machining newly emerging materials, as there are almost no restrictions (only at least minimal electrical conductivity) in terms of demands on the mechanical properties of the workpiece or the need to develop new tool geometry.
Jiří Fries   +2 more
exaly   +5 more sources

A Scenario on Dry-WEDM and WEDM for Industrial Applications

Advanced Materials Research, 2019
In present day manufacturing industries playing the major role in the machining of new materials with complex shapes, intricate structure and difficult profiles. The improvement of industries and machines is accountable for product quality and accuracy, which are not satisfied in conventional machining techniques. The WEDM is advanced machining process,
P.S. Gowthaman   +2 more
openaire   +1 more source

Dry WEDM in Improving LS-WEDMed Surface Quality

Advanced Materials Research, 2008
Utilizing gas as the dielectric instead of dielectric liquid has enabled the development of dry wire electrical discharge machining (dry WEDM) technology for finishing cut. Experiment results showed that Low-Speed WEDM (LS-WEDM) in gas offers advantages such as better straightness, and shorter discharge gap. This paper studies on influence of different
Tong Wang   +4 more
openaire   +1 more source

Dry WEDM in Improving HS-WEDMed Surface Quality

Key Engineering Materials, 2008
This paper studies the surface quality of mould steel with high-speed wire electrical discharge machining (WEDM) method, which is conducted in gas to improve the accuracy of finish cut, and compares the surface quality in atmosphere and in emulsion dielectric.
Tong Wang   +5 more
openaire   +1 more source

Study of WEDM parameter phenomena for microfabrication

International Journal of Manufacturing Technology and Management, 2008
Microfabrication technology is perceived by many as the critical requirement for the future technological development in manufacturing industry. Among many technologies utilised in microfabrication micro- Electro Discharge Machining (EDM) holds great prospect which is yet to be explored completely.
Sadiq M. Alam   +2 more
openaire   +1 more source

WEDM of K390 Tool Steel

2022
Wire electrodischarge machining (WEDM) is a vital nontraditionalmachining method when die/mould production is considered. The selection ofoptimum machining parameters affects the die/mould life time which is one ofthe major outputs in today’s manufacturing operation.
Umut Yıldız   +2 more
openaire   +2 more sources

Analysis of the Corner Error in WEDM

Applied Mechanics and Materials, 2010
This paper introduced some current researches on the corner error in WEDM and put forward the factors that have an influence on the corner error. The deflection of the wire-electrode that has been caused by discharge force, feeding directions of the wire-electrode and radial flops of the guide pulley was analyzed in detail.
Li Jun Yang, Xi Nan Dang
openaire   +1 more source

Analysis of kerf width in micro-WEDM

International Journal of Machine Tools and Manufacture, 2009
In micro-wire electrical discharge machining (micro-WEDM), the machined kerf width varies with different machining parameters, which greatly influences the machining precision. In order to study the kerf variations in micro-WEDM, the mathematical model of wire lateral vibration in machining process is established and its analytical solution is obtained
Xuyang Chu, Di Shichun, Dongbo Wei
exaly   +2 more sources

Evaluation of WEDM Surface Quality

Advanced Materials Research, 2010
The formation of WEDM surface is a complicated process. There are many factors which make machined surface topography have the characteristics of complex and irregular, and impact using performance of parts. The work investigated microscopic features of the WEDM surface topography based on power spectral density and fractal theory, and proposed power ...
Lei Geng, Hua Yan Zhong
openaire   +1 more source

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