Öpöz, Tahsin Tecelli

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Opoz, T. Tecelli
Ö.,Tahsin Tecelli
T.T.Öpöz
T.T.Opoz
O.,Tahsin Tecelli
T.,Öpöz
Öpöz,T.T.
Öpöz, Tahsin Tecelli
Opoz, Tahsin Tecelli
O., Tahsin Tecelli
Tahsin Tecelli, Öpöz
Tahsin Tecelli, Opoz
T., Opoz
Opoz,T.T.
Job Title
Araştırma Görevlisi
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Main Affiliation
Department of Mechatronics Engineering
Status
Former Staff
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WoS Researcher ID

Sustainable Development Goals

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LIFE BELOW WATER
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2

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11

SUSTAINABLE CITIES AND COMMUNITIES
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12

RESPONSIBLE CONSUMPTION AND PRODUCTION
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7

AFFORDABLE AND CLEAN ENERGY
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5

GENDER EQUALITY
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3

GOOD HEALTH AND WELL-BEING
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9

INDUSTRY, INNOVATION AND INFRASTRUCTURE
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4

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CLIMATE ACTION
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CLEAN WATER AND SANITATION
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10

REDUCED INEQUALITIES
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4

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Scholarly Output

4

Articles

2

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Supervised MSc Theses

1

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0

WoS Citation Count

66

Scopus Citation Count

46

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2

Scopus h-index

2

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WoS Citations per Publication

16.50

Scopus Citations per Publication

11.50

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1

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JournalCount
International Conference on Advances in Materials and Processing Technologies -- NOV 02-05, 2008 -- Manama, BAHRAIN1
Journal of Micromechanics and Microengineering1
Materials and Manufacturing Processes1
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  • Conference Object
    Citation - WoS: 2
    Citation - Scopus: 4
    CHARACTERISTICS OF SURFACE DAMAGE IN MICRO ELECTRIC DISCHARGE MAChinING OF MICRO HOLES
    (Trans Tech Publications Ltd, 2010) Ekmekci, Buelent; Sayar, Atakan; Opoz, T. Tecelli; Erden, Abdulkadir
    Micro Electric Discharge Machining is mostly used micromachining technique for manufacturing of micro holes and mini cavities. It is a thermal material removal process achieved by application of recursive electrical sparks between two conductive materials immersed in dielectric liquid. There are many electrical and technological parameters, which are effective in the machining characteristics and machined material surface integrity. In this study, effects of pulse energy on characteristics of surface damage in micro electric discharge machining of micro holes are investigated. To observe the influences of investigated pulse forms, a series of micro-holes were machined and cut from cross sections for metallurgical examinations. Unconventional etching agents were applied to examine the metallurgical transformations using optical and scanning electron microscopy. It was observed that heat-damaged segment is composed of three distinctive layers, have relatively high thicknesses (0.2 to 10 mu m) when compared with the size of the micro holes and varies noticeably with respect to drilling dept. Different morphological structures and deformations in the subsurface of micro-hole walls at several sections were illustrated. Finally, analyzed machining parameters and variation of hat damaged layer thicknesses were discussed in terms of drilling depth.