A high speed abrasive electrical discharge machining (AEDM-HS) process has been developed to improve the performance and save the machining energy of the conventional EDM process in machining particulate reinforced metal matrix composites (MMCs). The AEDM-HS process functions under a combined action of spark erosion and direct mechanical grinding. A set of experiments was conducted and the results showed that the material removal rate (MRR) of AEDM-HS was much higher than that of EDM under the experimental conditions of this study. Moreover, the surface roughness value (Ra) measured for the AEDM-HS specimen was about six times smaller than that of the specimen machined without high speed abrasive action (i.e., EDM alone). The material remov...
The main objective of this investigation is to study the influence of the processing medium and gap ...
The present study reports on the method used to obtain the reliable outcomes for different responses...
There is a great demand for new machining methods in today's ever-changing world. In this Electro di...
An electrical discharge machining process with a high electrode rotation speed (EDM-HS) has been dev...
A grinding-aided electrochemical discharge machining (G-ECDM) process has been developed to improve ...
Electrochemical discharge machining (ECDM) is a well-known process for machining of particulate rein...
Following a review on the classification and applications of metal matrix composites (MMCs) and the ...
Following a review on the classification and applications of metal matrix composites (MMCs) and the ...
Following a review on the classification and applications of metal matrix composites (MMCs) and the ...
The objective of this paper was to determine the optimum process parameters of an electric discharge...
The objective of this paper was to determine the optimum process parameters of an electric discharge...
The use of unconventional machining techniques in shaping metal matrix composites (MMCs) has generat...
364-367In this paper, the machinability behavior of hybrid metal matrix composites (HMMCs) has been ...
281-290Wire electrical discharge machining (WEDM) is a very efficient process for machining composit...
© 2018 Elsevier Ltd. Electric discharge machining is a non-conventional thermal erosion process. In ...
The main objective of this investigation is to study the influence of the processing medium and gap ...
The present study reports on the method used to obtain the reliable outcomes for different responses...
There is a great demand for new machining methods in today's ever-changing world. In this Electro di...
An electrical discharge machining process with a high electrode rotation speed (EDM-HS) has been dev...
A grinding-aided electrochemical discharge machining (G-ECDM) process has been developed to improve ...
Electrochemical discharge machining (ECDM) is a well-known process for machining of particulate rein...
Following a review on the classification and applications of metal matrix composites (MMCs) and the ...
Following a review on the classification and applications of metal matrix composites (MMCs) and the ...
Following a review on the classification and applications of metal matrix composites (MMCs) and the ...
The objective of this paper was to determine the optimum process parameters of an electric discharge...
The objective of this paper was to determine the optimum process parameters of an electric discharge...
The use of unconventional machining techniques in shaping metal matrix composites (MMCs) has generat...
364-367In this paper, the machinability behavior of hybrid metal matrix composites (HMMCs) has been ...
281-290Wire electrical discharge machining (WEDM) is a very efficient process for machining composit...
© 2018 Elsevier Ltd. Electric discharge machining is a non-conventional thermal erosion process. In ...
The main objective of this investigation is to study the influence of the processing medium and gap ...
The present study reports on the method used to obtain the reliable outcomes for different responses...
There is a great demand for new machining methods in today's ever-changing world. In this Electro di...