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HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI

Yıl 2008, Cilt: 23 Sayı: 3, 0 - , 18.02.2013

Öz

Bu çalışmada, durgun çevre şartları altında hareketli ısı kaynağı ile bir yüzeyinden ısıtılan plakadaki sıcaklık ve termal gerilme dağılımlarının sayısal analizi yapılmaktadır. Hareketli ısı akısı profili olarak Gauss dağılımı seçilmiştir. Isı kaynağı z ekseni etrafında sabit açısal bir hızla (Ω) dönerken, plaka da eksenel yönde ilerleme hareketi yapmaktadır. Sayısal çözümler, çeliğin farklı ısı iletim katsayıları (λ = 10’dan 50 W/m-K’ne kadar) ve ısı kaynağının farklı Ω’ları (5 ve 10 rpm) için gerçekleştirilmektedir. Isı kaynağı, plakanın çok küçük bir bölgesine etki etmesinden dolayı uniform olmayan dik sıcaklık gradyantları oluşturmaktadır.

Kaynakça

  • Li J., Li J.C.M., “Temperature distribution in
  • workpiece during scratching and grinding”,
  • Materials Science and Engineering, A 409:
  • –119, 2005.
  • Alilat N, Bairi A, Laraqi N., “Three-dimensional
  • calculation of temperature in a rotating disk
  • subjected to an eccentric circular heat source and
  • surface cooling”, Numerical Heat Transfer, Part
  • A 46: 167–180, 2004.
  • Hou Z.B., Komanduri R., “General solutions for
  • stationary/moving plane heat source problems in
  • manufacturing and tribology”, International
  • Journal Of Heat And Mass Transfer, 43 1679-
  • , 2000.
  • Shuja SZ, Yılbaş BS., “3-Dimensional conjugate
  • laser heating of a moving slab”, Applied Surface
  • Science, 167:134–148, 2000.
  • Cheng PJ, Lin SC., “An analytical model for the
  • temperature field in the laser forming of sheet
  • metal”, Journal of Materials Processing
  • Technology, 101:260-267, 2000.
  • Araya G, Gutierrez G. Analytical solution for a
  • transient, three-dimensional temperature
  • distribution due to a moving laser beam.
  • International Journal of Heat and Mass
  • Transfer 2006; 49:4124–4131.
  • Koç A., “3-D analysis of temperature distribution
  • in the material during pulsed laser and material
  • interaction”, Heat and Mass Transfer, 40:697-
  • , 2004.
  • Moulik PN, Yang HTY, Chandrasekar S.,
  • “Simulation of thermal stresses due to grinding”,
  • International Journal of Mechanical Sciences,
  • :831-851, 2001.
  • Eslam MR., Babaei MH. and Poultangari R.,
  • “Thermal and mechanical stresses in a
  • functionally graded thick sphere”, International
  • Journal of Pressure Vessels and Piping, 82:
  • -527, 2005.
  • Laraqi N., Bairi A., Segui L., “Temperature and
  • thermal resistance in frictional devices”, Applied
  • Thermal Engineering, 24: 2567–2581, 2004.
  • Liu M-S., Dong Q-W., Wang D-B., Ling X.,
  • “Numerical simulation of thermal stress in tubesheet
  • of heat transfer equipment”, International
  • Journal of Pressure Vessels and Piping, 76:
  • –5, 1999.
  • Alzaharnah T, Yilbas BS, Hashmi MS.,
  • “Conjugate heat transfer in fully developed
  • laminar pipe flow and thermally induced
  • stresses”, Computer Methods in Applied
  • Mechanics and Engineering, 190: 1091–104,
  • -
  • Alzaharnah T, Yilbas BS, Hashmi MS,
  • “Pulsating flow in circular pipes––The analysis
  • of thermal stresses”, International Journal of
  • Pressure Vessels and Piping, 78: 567–79, 2001.
  • Alzaharnah T, Hashmi MS, Yilbas BS., “Thermal
  • stresses in thick-walled pipes subjected to fully
  • developed laminar flow”, Journal of Materials
  • Processing Technology, 118: 50–7, 2001.
  • Yapıcı H, Albayrak B., “Numerical solutions of
  • conjugate heat transfer and thermal stresses in a
  • circular pipe externally heated with non-uniform
  • heat flux”, Energy Conversion and
  • Management, 45: 927–37, 2004.
  • Yapıcı H., Baştürk G., Albayrak B., “Numerical
  • study on conjugate heat transfer in laminar fullydeveloped
  • flow with temperature-dependent
  • thermal properties through an externally heated
  • SiC/SiC composite pipe and thermally induced
  • stress”, Energy Conversion and Management,
  • : 633-654, 2005.
  • Yapıcı H, Yalçın Ş., “Transient temperature and
  • thermally induced stress distributions in a partlycircumferentially
  • heated cylindrical workpiece”,
  • Heat Mass Transfer, 41: 104-111, 2004.
  • Yapıcı, H., Baştürk G., “Numerical solutions of
  • transient conjugate heat transfer and thermally
  • induced stress distribution in a heated and
  • rotating hollow disk”, Energy Conversion and
  • Management, 46: 61-84, 2005.
  • Yapıcı H., Baştürk G., “Numerical solutions of
  • transient temperature and thermally induced stress distributions in a solid disk heated with
  • radially periodic expanding and contracting ring
  • heat flux”, Journal of Materials Processing
  • Technology, 159: 99–112, 2005.
  • Yapıcı, H., Baştürk, G., “Reduction of thermally
  • induced stress in a solid disk heated with radially
  • periodic expanding and contracting ring heat
  • flux”, Journal of Materials Processing
  • Technology, 180/1-3: 279-290, 2006.
  • Fauple JH, Fisher FE., E”ngineering design––A
  • Synthesis of stress analysis and materials
  • engineering” New York:Wiley, 1981.
  • Fluent Incorporated, FLUENT User's guide
  • version 6.1, 2003.

Yıl 2008, Cilt: 23 Sayı: 3, 0 - , 18.02.2013

Öz

Kaynakça

  • Li J., Li J.C.M., “Temperature distribution in
  • workpiece during scratching and grinding”,
  • Materials Science and Engineering, A 409:
  • –119, 2005.
  • Alilat N, Bairi A, Laraqi N., “Three-dimensional
  • calculation of temperature in a rotating disk
  • subjected to an eccentric circular heat source and
  • surface cooling”, Numerical Heat Transfer, Part
  • A 46: 167–180, 2004.
  • Hou Z.B., Komanduri R., “General solutions for
  • stationary/moving plane heat source problems in
  • manufacturing and tribology”, International
  • Journal Of Heat And Mass Transfer, 43 1679-
  • , 2000.
  • Shuja SZ, Yılbaş BS., “3-Dimensional conjugate
  • laser heating of a moving slab”, Applied Surface
  • Science, 167:134–148, 2000.
  • Cheng PJ, Lin SC., “An analytical model for the
  • temperature field in the laser forming of sheet
  • metal”, Journal of Materials Processing
  • Technology, 101:260-267, 2000.
  • Araya G, Gutierrez G. Analytical solution for a
  • transient, three-dimensional temperature
  • distribution due to a moving laser beam.
  • International Journal of Heat and Mass
  • Transfer 2006; 49:4124–4131.
  • Koç A., “3-D analysis of temperature distribution
  • in the material during pulsed laser and material
  • interaction”, Heat and Mass Transfer, 40:697-
  • , 2004.
  • Moulik PN, Yang HTY, Chandrasekar S.,
  • “Simulation of thermal stresses due to grinding”,
  • International Journal of Mechanical Sciences,
  • :831-851, 2001.
  • Eslam MR., Babaei MH. and Poultangari R.,
  • “Thermal and mechanical stresses in a
  • functionally graded thick sphere”, International
  • Journal of Pressure Vessels and Piping, 82:
  • -527, 2005.
  • Laraqi N., Bairi A., Segui L., “Temperature and
  • thermal resistance in frictional devices”, Applied
  • Thermal Engineering, 24: 2567–2581, 2004.
  • Liu M-S., Dong Q-W., Wang D-B., Ling X.,
  • “Numerical simulation of thermal stress in tubesheet
  • of heat transfer equipment”, International
  • Journal of Pressure Vessels and Piping, 76:
  • –5, 1999.
  • Alzaharnah T, Yilbas BS, Hashmi MS.,
  • “Conjugate heat transfer in fully developed
  • laminar pipe flow and thermally induced
  • stresses”, Computer Methods in Applied
  • Mechanics and Engineering, 190: 1091–104,
  • -
  • Alzaharnah T, Yilbas BS, Hashmi MS,
  • “Pulsating flow in circular pipes––The analysis
  • of thermal stresses”, International Journal of
  • Pressure Vessels and Piping, 78: 567–79, 2001.
  • Alzaharnah T, Hashmi MS, Yilbas BS., “Thermal
  • stresses in thick-walled pipes subjected to fully
  • developed laminar flow”, Journal of Materials
  • Processing Technology, 118: 50–7, 2001.
  • Yapıcı H, Albayrak B., “Numerical solutions of
  • conjugate heat transfer and thermal stresses in a
  • circular pipe externally heated with non-uniform
  • heat flux”, Energy Conversion and
  • Management, 45: 927–37, 2004.
  • Yapıcı H., Baştürk G., Albayrak B., “Numerical
  • study on conjugate heat transfer in laminar fullydeveloped
  • flow with temperature-dependent
  • thermal properties through an externally heated
  • SiC/SiC composite pipe and thermally induced
  • stress”, Energy Conversion and Management,
  • : 633-654, 2005.
  • Yapıcı H, Yalçın Ş., “Transient temperature and
  • thermally induced stress distributions in a partlycircumferentially
  • heated cylindrical workpiece”,
  • Heat Mass Transfer, 41: 104-111, 2004.
  • Yapıcı, H., Baştürk G., “Numerical solutions of
  • transient conjugate heat transfer and thermally
  • induced stress distribution in a heated and
  • rotating hollow disk”, Energy Conversion and
  • Management, 46: 61-84, 2005.
  • Yapıcı H., Baştürk G., “Numerical solutions of
  • transient temperature and thermally induced stress distributions in a solid disk heated with
  • radially periodic expanding and contracting ring
  • heat flux”, Journal of Materials Processing
  • Technology, 159: 99–112, 2005.
  • Yapıcı, H., Baştürk, G., “Reduction of thermally
  • induced stress in a solid disk heated with radially
  • periodic expanding and contracting ring heat
  • flux”, Journal of Materials Processing
  • Technology, 180/1-3: 279-290, 2006.
  • Fauple JH, Fisher FE., E”ngineering design––A
  • Synthesis of stress analysis and materials
  • engineering” New York:Wiley, 1981.
  • Fluent Incorporated, FLUENT User's guide
  • version 6.1, 2003.
Toplam 97 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Yazarlar

Gülşah Özışık Bu kişi benim

M. Serdar Genç Bu kişi benim

Gönderilme Tarihi 18 Şubat 2013
Yayımlanma Tarihi 18 Şubat 2013
Yayımlandığı Sayı Yıl 2008 Cilt: 23 Sayı: 3

Kaynak Göster

APA Özışık, G., & Genç, M. S. (2013). HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 23(3).
AMA Özışık G, Genç MS. HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI. GUMMFD. Mart 2013;23(3).
Chicago Özışık, Gülşah, ve M. Serdar Genç. “HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 23, sy. 3 (Mart 2013).
EndNote Özışık G, Genç MS (01 Mart 2013) HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 23 3
IEEE G. Özışık ve M. S. Genç, “HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI”, GUMMFD, c. 23, sy. 3, 2013.
ISNAD Özışık, Gülşah - Genç, M. Serdar. “HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 23/3 (Mart2013).
JAMA Özışık G, Genç MS. HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI. GUMMFD. 2013;23.
MLA Özışık, Gülşah ve M. Serdar Genç. “HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, c. 23, sy. 3, 2013.
Vancouver Özışık G, Genç MS. HAREKETLİ ISI KAYNAĞI İLE BİR YÜZEYİNDEN ISITILAN PLAKADA SICAKLIK VE TERMAL GERİLME DAĞILIMLARI. GUMMFD. 2013;23(3).