BibTex RIS Kaynak Göster

POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ

Yıl 2012, Cilt: 27 Sayı: 2, 0 - , 19.02.2013

Öz

Farklı kaynak parametreleri (takım dönme hızı, takım dalma hızı, takım dalma derinliği, takım dönme süresi vetakım bekleme süresi) ile yüksek yoğunluklu polietilen levhaların sürtünme karıştırma nokta kaynakbirleştirmesi gerçekleştirilmiştir. Çekme-makaslama deneyi ile kaynak kopma kuvvetleri tespit edilmiştir.Kaynak takımının dönme hızının, takımın iş parçalarına dalma derinliğinin ve takım dönme süresinin kaynakdikişi oluşumunda ve dolayısıyla kaynak kopma kuvvetinde çok önemli etkileri olduğu tespit edilmiştir. Takımbekleme süresinin kaynak dikişinin kopma kuvvetini arttırdığı tespit edilmiştir. Takım dalma hızının ise kaynakkopma kuvveti üzerinde etkili olmadığı tespit edilmiştir.

Kaynakça

  • Hancock, R., “Friction welding of aluminium
  • cuts energy cost by 99%”,Welding Journal, Cilt
  • , 40, 2004.
  • Mishra, RS., Ma, ZY., “Friction stir welding and
  • processing”, Materials Science and
  • Engineering, Cilt 50, 1–78, 2005.
  • Awang, M., Mucino,VH., Feng,Z., David, S.A.,
  • ”Thermo-Mechanical Modeling of Friction Stir
  • Spot Welding(FSSW) Process: Use of an
  • Explicit Adaptive Meshing Scheme”, SAE
  • International Paper, 01 1251-1256, 2005.
  • Ma, N., Kunugia, A., Hirashima, T., Okubo, K.,
  • Kamioka, M., “FEM Simulation for friction spot
  • joining process”, Welding International, Cilt
  • , No 1, 9-14, 2009.
  • Yang, Q., Mironov, S., Sato, YS., Okamoto, K.,
  • “Material flow during friction stir spot welding”,
  • Materials Science and Engineering A, Cilt
  • , No 16, 4389-4398, 2010.
  • Bozzi, S., Helbert, AL., Baudin, T., Klosek, V.,
  • Kerbiguet, JG., Criqui, B., “Influence of FSSW
  • parameters on fracture mechanisms of 5182
  • aluminium welds”, Journal of Materials
  • Processing Technology, Cilt 210, 1429-1435,
  • -
  • Gerlich, A., Su, P., North, TH., Bendzsak, GJ.,
  • “Friction stir spot welding of aluminum and
  • magnesium alloys”, Materials Forum, Cilt 29,
  • -294, 2005.
  • Tozaki, Y., Uematsu, Y., Tokaji, K.,“Effect of
  • processing parameters on static strength of
  • dissimilar friction stir spot welds between
  • different aluminium alloys”, Fatigue &
  • Fracture Engineering Materials Structures,
  • Cilt 30, 143-148, 2007.
  • Badarinarayan, H., Shi, Y., Li, X., Okamoto, K.,
  • “Effect of tool geometry on hook formation and
  • static strength of friction stir spot welded
  • aluminum 5754-O sheets”, International
  • Journal Machine Tools&Manufacture, Cilt
  • , 814-823, 2009.
  • Badarinarayan, H., Yang, Q., Zhu, S., “Effect of
  • tool geometry on static strength of friction stir
  • spot welded aluminum alloy”, International
  • Journal of Machine Tools &Manufacture,
  • Cilt 49, 142-148, 2009.
  • Karthikeyan, R., Balasubramanian, V.,
  • “Predictions of the optimized friction stir spot
  • welding process parameters for joining AA2024
  • aluminum alloy using RSM”, International
  • Journal Advance Manufacture Technology,
  • Cilt 51, 173-183, 2010.
  • Fratini, L., Barcellona, A., Buffa, G., Palmeri,
  • D., “Friction stir spot welding of AA6082-T6:
  • Influence of the most relevant process
  • parameters and comparison with classic
  • mechanical fastening techniques”, Engineering
  • Manufacture, Cilt 221, 1111-1118, 2007.
  • Yin, YH., Sun, N., North, TH., Hu, SS.,“Hook
  • formation and mechanical properties in AZ31
  • friction stir Spot welds”, Journal Materials
  • Proccessing Technology, Cilt 210, 2062-2070,
  • -
  • Khan, MI., Kuntz, ML., Su, P., Gerlich, A.,
  • North, T., Zhou, Y., “Resistance and friction stir
  • spot welding of DP 600: A comparative study”,
  • Science and Technology of Welding and
  • Joining, Cilt 12, 175-182, 2007.
  • Arıcı, A., Sınmaz, T., “Effect of double passes
  • of the tool on friction stir welding of
  • polyethylene”, Journal of Materials Science,
  • Cilt 40, 3313-3316, 2005.
  • Arıcı, A., Şelale, S., “Effects of tool tilt angle on
  • tensile strenght and fracture locations of friction
  • stir welding of polyethylene, Science and
  • Technology of Welding and Joining, Cilt 12,
  • -539, 2007.
  • Squeoi, EA., Brunoi, G., Guglielmott, A.,
  • Quadrini, F., “Friction stir welding of
  • polyethylene sheets”, The Annals of Dunarea de
  • Jos University of Galati,Technologies in
  • Machine Building, Cilt 5, 241-246, 2009.
  • Aydın, M., “Effects of welding parameters and
  • preheating on the friction stir welding of
  • UHMW-polyethylene”, Polymer-Plastics
  • Technology and Engineering, Cilt 49, 595-
  • , 2010.
  • Arıcı, A., Mert, S., “Friction stir spot welding of
  • polypropylene”, Journal of Reinforced Plastics
  • and Composites, Cilt 1, 1-4, 2008.
  • Oliveria, PHF., Filho, STA., Santos, JF., Hage,
  • E., “Preliminary study on the feasibility of
  • friction spot welding in PMMA”, Materials
  • Letters, Cilt 64, 2098-2101, 2010.
  • Bilici MK., Yükler, AI., Kurtulmuş, M.,“The
  • optimization of welding parameters for friction
  • stir spot welding of high density polyethylene
  • sheets”, Materials Design, 32, 4074- 4079,
  • -
  • Peacock, AJ., “Handbook of Polyethylene,
  • Marcel Decker Inc, New York, A.B.D., 2000.
  • Santella, ML., Grant, GJ., Feng, Z., Hovanski,
  • Y., “Friction stir spot welding of advanced high
  • strength steel”, FY Progress Report, Oak Ridge
  • National Laboratory, 2006.
  • Costa, HM., Ramos, VD., Rocha, MCG.,
  • “Rheological properties polypropylene during
  • multiple extrusion”, Polymer Testing, Cilt 24,
  • -93, 2005.
  • Smith, AP., Spontek, RJ., Ade, H., “On the
  • similarity of macromoleculer responses to high
  • energy processes: mechanical milling v.s.
  • irradiation”, Polymer Degradation and
  • Stability, Cilt 72, 519-524, 2001.
  • Capone, C., Landro, LD., Inzoli, F., Penco, M.,
  • Sartore, L., “Thermal and mechanical
  • degradation during polymer extrusion
  • processing”, Polymer Engineering and
  • Science, Cilt 47, 1813-1819, 2007.
  • Gan, YX., Solomon, D., Reinbolt, M.,”Friction
  • stir processing of particle reinforced composite
  • materials”, Materials, Cilt 3, 329-350, 2010.
Yıl 2012, Cilt: 27 Sayı: 2, 0 - , 19.02.2013

Öz

Kaynakça

  • Hancock, R., “Friction welding of aluminium
  • cuts energy cost by 99%”,Welding Journal, Cilt
  • , 40, 2004.
  • Mishra, RS., Ma, ZY., “Friction stir welding and
  • processing”, Materials Science and
  • Engineering, Cilt 50, 1–78, 2005.
  • Awang, M., Mucino,VH., Feng,Z., David, S.A.,
  • ”Thermo-Mechanical Modeling of Friction Stir
  • Spot Welding(FSSW) Process: Use of an
  • Explicit Adaptive Meshing Scheme”, SAE
  • International Paper, 01 1251-1256, 2005.
  • Ma, N., Kunugia, A., Hirashima, T., Okubo, K.,
  • Kamioka, M., “FEM Simulation for friction spot
  • joining process”, Welding International, Cilt
  • , No 1, 9-14, 2009.
  • Yang, Q., Mironov, S., Sato, YS., Okamoto, K.,
  • “Material flow during friction stir spot welding”,
  • Materials Science and Engineering A, Cilt
  • , No 16, 4389-4398, 2010.
  • Bozzi, S., Helbert, AL., Baudin, T., Klosek, V.,
  • Kerbiguet, JG., Criqui, B., “Influence of FSSW
  • parameters on fracture mechanisms of 5182
  • aluminium welds”, Journal of Materials
  • Processing Technology, Cilt 210, 1429-1435,
  • -
  • Gerlich, A., Su, P., North, TH., Bendzsak, GJ.,
  • “Friction stir spot welding of aluminum and
  • magnesium alloys”, Materials Forum, Cilt 29,
  • -294, 2005.
  • Tozaki, Y., Uematsu, Y., Tokaji, K.,“Effect of
  • processing parameters on static strength of
  • dissimilar friction stir spot welds between
  • different aluminium alloys”, Fatigue &
  • Fracture Engineering Materials Structures,
  • Cilt 30, 143-148, 2007.
  • Badarinarayan, H., Shi, Y., Li, X., Okamoto, K.,
  • “Effect of tool geometry on hook formation and
  • static strength of friction stir spot welded
  • aluminum 5754-O sheets”, International
  • Journal Machine Tools&Manufacture, Cilt
  • , 814-823, 2009.
  • Badarinarayan, H., Yang, Q., Zhu, S., “Effect of
  • tool geometry on static strength of friction stir
  • spot welded aluminum alloy”, International
  • Journal of Machine Tools &Manufacture,
  • Cilt 49, 142-148, 2009.
  • Karthikeyan, R., Balasubramanian, V.,
  • “Predictions of the optimized friction stir spot
  • welding process parameters for joining AA2024
  • aluminum alloy using RSM”, International
  • Journal Advance Manufacture Technology,
  • Cilt 51, 173-183, 2010.
  • Fratini, L., Barcellona, A., Buffa, G., Palmeri,
  • D., “Friction stir spot welding of AA6082-T6:
  • Influence of the most relevant process
  • parameters and comparison with classic
  • mechanical fastening techniques”, Engineering
  • Manufacture, Cilt 221, 1111-1118, 2007.
  • Yin, YH., Sun, N., North, TH., Hu, SS.,“Hook
  • formation and mechanical properties in AZ31
  • friction stir Spot welds”, Journal Materials
  • Proccessing Technology, Cilt 210, 2062-2070,
  • -
  • Khan, MI., Kuntz, ML., Su, P., Gerlich, A.,
  • North, T., Zhou, Y., “Resistance and friction stir
  • spot welding of DP 600: A comparative study”,
  • Science and Technology of Welding and
  • Joining, Cilt 12, 175-182, 2007.
  • Arıcı, A., Sınmaz, T., “Effect of double passes
  • of the tool on friction stir welding of
  • polyethylene”, Journal of Materials Science,
  • Cilt 40, 3313-3316, 2005.
  • Arıcı, A., Şelale, S., “Effects of tool tilt angle on
  • tensile strenght and fracture locations of friction
  • stir welding of polyethylene, Science and
  • Technology of Welding and Joining, Cilt 12,
  • -539, 2007.
  • Squeoi, EA., Brunoi, G., Guglielmott, A.,
  • Quadrini, F., “Friction stir welding of
  • polyethylene sheets”, The Annals of Dunarea de
  • Jos University of Galati,Technologies in
  • Machine Building, Cilt 5, 241-246, 2009.
  • Aydın, M., “Effects of welding parameters and
  • preheating on the friction stir welding of
  • UHMW-polyethylene”, Polymer-Plastics
  • Technology and Engineering, Cilt 49, 595-
  • , 2010.
  • Arıcı, A., Mert, S., “Friction stir spot welding of
  • polypropylene”, Journal of Reinforced Plastics
  • and Composites, Cilt 1, 1-4, 2008.
  • Oliveria, PHF., Filho, STA., Santos, JF., Hage,
  • E., “Preliminary study on the feasibility of
  • friction spot welding in PMMA”, Materials
  • Letters, Cilt 64, 2098-2101, 2010.
  • Bilici MK., Yükler, AI., Kurtulmuş, M.,“The
  • optimization of welding parameters for friction
  • stir spot welding of high density polyethylene
  • sheets”, Materials Design, 32, 4074- 4079,
  • -
  • Peacock, AJ., “Handbook of Polyethylene,
  • Marcel Decker Inc, New York, A.B.D., 2000.
  • Santella, ML., Grant, GJ., Feng, Z., Hovanski,
  • Y., “Friction stir spot welding of advanced high
  • strength steel”, FY Progress Report, Oak Ridge
  • National Laboratory, 2006.
  • Costa, HM., Ramos, VD., Rocha, MCG.,
  • “Rheological properties polypropylene during
  • multiple extrusion”, Polymer Testing, Cilt 24,
  • -93, 2005.
  • Smith, AP., Spontek, RJ., Ade, H., “On the
  • similarity of macromoleculer responses to high
  • energy processes: mechanical milling v.s.
  • irradiation”, Polymer Degradation and
  • Stability, Cilt 72, 519-524, 2001.
  • Capone, C., Landro, LD., Inzoli, F., Penco, M.,
  • Sartore, L., “Thermal and mechanical
  • degradation during polymer extrusion
  • processing”, Polymer Engineering and
  • Science, Cilt 47, 1813-1819, 2007.
  • Gan, YX., Solomon, D., Reinbolt, M.,”Friction
  • stir processing of particle reinforced composite
  • materials”, Materials, Cilt 3, 329-350, 2010.
Toplam 122 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Bölüm Makaleler
Yazarlar

Mustafa Bilici Bu kişi benim

Ahmet Yükler Bu kişi benim

Memduh Kurtulmuş Bu kişi benim

Yayımlanma Tarihi 19 Şubat 2013
Gönderilme Tarihi 19 Şubat 2013
Yayımlandığı Sayı Yıl 2012 Cilt: 27 Sayı: 2

Kaynak Göster

APA Bilici, M., Yükler, A., & Kurtulmuş, M. (2013). POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, 27(2).
AMA Bilici M, Yükler A, Kurtulmuş M. POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ. GUMMFD. Mart 2013;27(2).
Chicago Bilici, Mustafa, Ahmet Yükler, ve Memduh Kurtulmuş. “POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 27, sy. 2 (Mart 2013).
EndNote Bilici M, Yükler A, Kurtulmuş M (01 Mart 2013) POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 27 2
IEEE M. Bilici, A. Yükler, ve M. Kurtulmuş, “POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ”, GUMMFD, c. 27, sy. 2, 2013.
ISNAD Bilici, Mustafa vd. “POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi 27/2 (Mart 2013).
JAMA Bilici M, Yükler A, Kurtulmuş M. POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ. GUMMFD. 2013;27.
MLA Bilici, Mustafa vd. “POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ”. Gazi Üniversitesi Mühendislik Mimarlık Fakültesi Dergisi, c. 27, sy. 2, 2013.
Vancouver Bilici M, Yükler A, Kurtulmuş M. POLİETİLEN LEVHALARIN SÜRTÜNME KARIŞTIRMA NOKTA KAYNAĞINDA KAYNAK PARAMETRELERİNİN BAĞLANTININ PERFORMANSINA ETKİLERİ. GUMMFD. 2013;27(2).