Experimental Investigation on SS202 using Tubular and Double D Tubular Electrode Tool in Electrical Discharge Drilling Machining

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6 Prenosov
Izvoz citacije: ABNT
, Manikandaprabu ;, Saravanan .
Experimental Investigation on SS202 using Tubular and Double D Tubular Electrode Tool in Electrical Discharge Drilling Machining. 
Articles in Press, [S.l.], v. 0, n.0, p. , october 2024. 
ISSN 0039-2480.
Available at: <https://www.sv-jme.eu/sl/article/experimental-investigation-on-ss202-using-tubular-and-double-d-tubular-electrode-tool-in-electrical-discharge-drilling-machining/>. Date accessed: 25 oct. 2024. 
doi:http://dx.doi.org/.
, M., & , S.
(0).
Experimental Investigation on SS202 using Tubular and Double D Tubular Electrode Tool in Electrical Discharge Drilling Machining.
Articles in Press, 0(0), .
doi:http://dx.doi.org/
@article{.,
	author = {Manikandaprabu   and Saravanan  },
	title = {Experimental Investigation on SS202 using Tubular and Double D Tubular Electrode Tool in Electrical Discharge Drilling Machining},
	journal = {Articles in Press},
	volume = {0},
	number = {0},
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	abstract = {To meet the demands of the manufacturing industry, a more robust approach is needed for current manufacturing processes. Machining of highly hard materials with excellent dimensional accuracy and surface integrity is a challenging task, Currently Electrical Discharge Machining (EDM) process is the optimal solution for machining such materials. Electrical Discharge Drilling machine finds applications in various sectors such as aerospace, automobile and medical. In this research two different brass electrodes geometry considered such as Tubular Electrode Tool (TET) and Double D Tubular Electrode Tool (DDTET) on SS202 work-piece. The input parameters of Peak Current (PI), Pulse Time ON (PONT), and Pulse Time OFF (POFFT) were varied. The output response measured and compared were Material Removal Rate (MRR) and Over Cut (OC). The Taguchi technique was used to design the L16 Orthogonal Array (OA) experiment, and Analysis of Variance (ANOVA) was employed for result analysis using Minitab20 statistical software package. The results showed that the DDTET method produced significantly better MRR and OC improvements of 21.66% and 2.28% respectively. Additionally, a study was conducted on the formation of the Recast Layer (RL) and the Heat Affected Zone (HAZ).},
	issn = {0039-2480},	pages = {},	doi = {},
	url = {https://www.sv-jme.eu/sl/article/experimental-investigation-on-ss202-using-tubular-and-double-d-tubular-electrode-tool-in-electrical-discharge-drilling-machining/}
}
, M.,, S.
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%U https://www.sv-jme.eu/sl/article/experimental-investigation-on-ss202-using-tubular-and-double-d-tubular-electrode-tool-in-electrical-discharge-drilling-machining/
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, Manikandaprabu, & Saravanan  .
"Experimental Investigation on SS202 using Tubular and Double D Tubular Electrode Tool in Electrical Discharge Drilling Machining." Articles in Press [Online], 0.0 (0): . Web.  25 Oct. 2024
TY  - JOUR
AU  - , Manikandaprabu 
AU  - , Saravanan 
PY  - 0
TI  - Experimental Investigation on SS202 using Tubular and Double D Tubular Electrode Tool in Electrical Discharge Drilling Machining
JF  - Articles in Press
DO  - 
KW  - 
N2  - To meet the demands of the manufacturing industry, a more robust approach is needed for current manufacturing processes. Machining of highly hard materials with excellent dimensional accuracy and surface integrity is a challenging task, Currently Electrical Discharge Machining (EDM) process is the optimal solution for machining such materials. Electrical Discharge Drilling machine finds applications in various sectors such as aerospace, automobile and medical. In this research two different brass electrodes geometry considered such as Tubular Electrode Tool (TET) and Double D Tubular Electrode Tool (DDTET) on SS202 work-piece. The input parameters of Peak Current (PI), Pulse Time ON (PONT), and Pulse Time OFF (POFFT) were varied. The output response measured and compared were Material Removal Rate (MRR) and Over Cut (OC). The Taguchi technique was used to design the L16 Orthogonal Array (OA) experiment, and Analysis of Variance (ANOVA) was employed for result analysis using Minitab20 statistical software package. The results showed that the DDTET method produced significantly better MRR and OC improvements of 21.66% and 2.28% respectively. Additionally, a study was conducted on the formation of the Recast Layer (RL) and the Heat Affected Zone (HAZ).
UR  - https://www.sv-jme.eu/sl/article/experimental-investigation-on-ss202-using-tubular-and-double-d-tubular-electrode-tool-in-electrical-discharge-drilling-machining/
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	author = {, M., , S.},
	title = {Experimental Investigation on SS202 using Tubular and Double D Tubular Electrode Tool in Electrical Discharge Drilling Machining},
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TY  - JOUR
AU  - , Manikandaprabu 
AU  - , Saravanan 
PY  - 2024/10/04
TI  - Experimental Investigation on SS202 using Tubular and Double D Tubular Electrode Tool in Electrical Discharge Drilling Machining
JF  - Articles in Press; Vol 0, No 0 (0): Articles in Press
DO  - 
KW  - 
N2  - To meet the demands of the manufacturing industry, a more robust approach is needed for current manufacturing processes. Machining of highly hard materials with excellent dimensional accuracy and surface integrity is a challenging task, Currently Electrical Discharge Machining (EDM) process is the optimal solution for machining such materials. Electrical Discharge Drilling machine finds applications in various sectors such as aerospace, automobile and medical. In this research two different brass electrodes geometry considered such as Tubular Electrode Tool (TET) and Double D Tubular Electrode Tool (DDTET) on SS202 work-piece. The input parameters of Peak Current (PI), Pulse Time ON (PONT), and Pulse Time OFF (POFFT) were varied. The output response measured and compared were Material Removal Rate (MRR) and Over Cut (OC). The Taguchi technique was used to design the L16 Orthogonal Array (OA) experiment, and Analysis of Variance (ANOVA) was employed for result analysis using Minitab20 statistical software package. The results showed that the DDTET method produced significantly better MRR and OC improvements of 21.66% and 2.28% respectively. Additionally, a study was conducted on the formation of the Recast Layer (RL) and the Heat Affected Zone (HAZ).
UR  - https://www.sv-jme.eu/sl/article/experimental-investigation-on-ss202-using-tubular-and-double-d-tubular-electrode-tool-in-electrical-discharge-drilling-machining/
, Manikandaprabu, AND , Saravanan.
"Experimental Investigation on SS202 using Tubular and Double D Tubular Electrode Tool in Electrical Discharge Drilling Machining" Articles in Press [Online], Volume 0 Number 0 (04 October 2024)

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Articles in Press

To meet the demands of the manufacturing industry, a more robust approach is needed for current manufacturing processes. Machining of highly hard materials with excellent dimensional accuracy and surface integrity is a challenging task, Currently Electrical Discharge Machining (EDM) process is the optimal solution for machining such materials. Electrical Discharge Drilling machine finds applications in various sectors such as aerospace, automobile and medical. In this research two different brass electrodes geometry considered such as Tubular Electrode Tool (TET) and Double D Tubular Electrode Tool (DDTET) on SS202 work-piece. The input parameters of Peak Current (PI), Pulse Time ON (PONT), and Pulse Time OFF (POFFT) were varied. The output response measured and compared were Material Removal Rate (MRR) and Over Cut (OC). The Taguchi technique was used to design the L16 Orthogonal Array (OA) experiment, and Analysis of Variance (ANOVA) was employed for result analysis using Minitab20 statistical software package. The results showed that the DDTET method produced significantly better MRR and OC improvements of 21.66% and 2.28% respectively. Additionally, a study was conducted on the formation of the Recast Layer (RL) and the Heat Affected Zone (HAZ).