Mechanical Engineering / Makina Mühendisliği

Permanent URI for this collectionhttps://hdl.handle.net/11147/4129

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Now showing 1 - 10 of 12
  • Research Project
    Üstüniletken MgB2 tellerin üretimi ve karakterizasyonu
    (TÜBİTAK - Türkiye Bilimsel ve Teknolojik Araştırma Kurumu, 2005) Okur, Salih; Özyüzer, Lütfi; Abukay, Doğan; Emirdağ, Mehtap; Tanoğlu, Metin; Eğilmez, Mehmet
    MgB2 alaşımının 39 K lik Tc kritik sıcaklığına sahip bir üstüniletken olduğunun 2001 de keşfedilmesi çok iyi üstüniletken olduğu bilinen NbTi ve NbsSn malzemelerinin yanısıra uygulamaya daha yakın yeni bir üstüniletken malzeme olma ümidini de artırmıştır. O günden bu güne MgB2 üstüniletken tellerin üretilmesi konusunda çok etkileyici bir aşama kaydedilmiştir. Daha yüksek kritik akım yoğunluğuna ulaşmak için gerekli parametrelerin araştırılması konusunda birkaç teknik geliştirilmiştir. Bunların arasında 'tüp içinde toz ' (TIT) adı verilen metot diğerlerine göre daha pratik ve ümit verici gözükmektedir. Bazı metal ve alaşımların TIT işleminde kılıf malzeme olarak kullanılmaya uygun bulunmuştur. Bunlardan demir ve alaşımları kısmen MgB2 özelliğini bozmadığı gibi manyetik ekranlama yaparak dış manyetik alanların kritik akım üzerindeki yan etkilerini azaltarak daha yüksek değerlere ulaşılmıştır. TIT yöntemi ile MgB2 üretimi sırasında iki farklı teknik vardır. Birisinde reaktif MgB2 tozlar kulanılırken diğerinde belli kimyasal oranlarda karıştırılmış reaktif olmayan Mg+2B tozları kullanılmaktadır. Daha sonra bu tozlar reaksiyon yapmayan bir tüp veya kapsül içine kapatılıp 900 ile 1000 °C civarında belirli bir süre tavlanmaktadır. Bu yöntem ile Demir kılıflı MgB2 üstüniletken tellerinden 15 K de 10 A/cm civarında bir Jc kritik akım yoğunluğuna ulaşılmıştır. Bu projede ilk adım olarak borik asitten M&B2 elde edilmiş ve elde edilen MgB2 in yapısını XRD ve SEM EDX mikroskopu ile karakterize edilmiştir. Uygun bir saflığa sahip MgB2 e ulaşıldığında elektriksel ve manyetik özellikleri pellet haline getirilip incelenmiştir, ikinci adımda ise üretilen MgB2 tozlarından üstüniletken MgB2 tel ve teyplerin TIT yöntemi ile üretilmiştir ve Cu, Fe, ve paslanmaz çelik gibi MgB2 ile etkileşmeyen malzemeler kılıf olarak kullanılanarak üretilmeye çalışılmış ve bu üstüniletken MgB2 tellerin özdirenç ve manyetik alana bağlı olarak kritik akım (Jc) karakteristiğinin sıcaklığa bağımlılığı incelenmiştir.
  • Research Project
    Üstüniletken magnezyum borür (MgB2) tellerinin yüksek akım ve yüksek manyetik alan uygulamaları için geliştirilmesi
    (2008) Okur, Salih; Tarhan, Enver; Büyükköse, Serkan; Özyüzer, Lütfi; Tanoğlu, Metin; Emirdağ, Mehtap
    [No Abstract Available]
  • Research Project
    Nanokompozit malzemelerin polimer ve tabakalı kil yapılardan geliştirilmesi ve karakterizasyonu
    (2009) Tanoğlu, Metin; Okur, Salih
    [No Abstract Available]
  • Article
    Citation - WoS: 15
    Citation - Scopus: 17
    Influence of Crystallographic Orientation on Hydration of Mgo Single Crystals
    (Elsevier Ltd., 2009) Sütçü, Mücahit; Akkurt, Sedat; Okur, Salih
    This study has been performed in order to find out the influence of crystallographic orientation on hydration of MgO single crystal substrates with (1 0 0)-, (1 1 0)-, and (1 1 1)-orientations. The samples were left in a hydration chamber with an 88% relative humidity for 18 h at room temperature. The effect of humidity on the samples was examined by scanning probe microscope (SPM) and scanning electron microscope (SEM) which showed that the degree of hydration was noticeably influenced by the crystallographic orientation. It was found that the MgO with (1 1 1)-orientation has the highest tendency to hydrate than the other orientations. Second most affected sample was (1 1 0) crystal. Loss of MgO on the surface by hydration is most severe when the crystal is oriented in (1 1 1) plane with the maximum hydrate layer thickness of 174 nm after 18 h of exposure.
  • Article
    Citation - WoS: 38
    Citation - Scopus: 42
    Layered Clay/Epoxy Nanocomposites: Thermomechanical, Flame Retardancy, and Optical Properties
    (John Wiley and Sons Inc., 2008) Kaya, Elçin; Tanoğlu, Metin; Okur, Salih
    In this study, layered clay/polymer nano-composites were developed based on epoxy resins and montmorillonite as the nanoplatelet reinforcement. Clay particles were treated with hexadecyltrimethylammonium chloride (HTCA) through an ion exchange reaction. In this way, Na+ interlay er cations of the clay is exchanged with onium cation of the surfactant that turns the hydrophilic clays (MMT) to organophilic (OMMT) characteristics. Thermal analysis results revealed that the glass transition temperature (Tg) and the dynamic mechanical properties including the storage and loss modulus of the neat epoxy resin increases by the incorporation of clay particles. It was also found that flame resistance of the polymer is improved by the addition of the clay particles.
  • Article
    Citation - WoS: 3
    Citation - Scopus: 3
    Thermostable Tensoresistors of Co Doped Gasb-Fega1.3 Eutectic Composites
    (Elsevier Ltd., 2008) Rahimov, R. N.; Khalilova, A. A.; Arasly, D. H.; Aliyev, M. I.; Tanoğlu, Metin; Özyüzer, Lütfi
    The microstructure and tensoresistive properties of GaSb-FeGa1.3 eutectic composites doped with 0.1% Co have been investigated. It was found that the Co impurity atoms mainly accumulate in the metallic inclusions. The length of the inclusions in GaSb-FeGa1.3〈Co〉 was measured to be about half of those in undoped GaSb-FeGa1.3 eutectics. The tensometric characteristics of gauges based on GaSb-FeGa1.3〈Co〉 have been found to be more thermostable than undoped samples. © 2008 Elsevier B.V. All rights reserved.
  • Article
    Citation - WoS: 6
    Citation - Scopus: 11
    Electrical and Mechanical Properties of Superconducting Mgb2/Mg Metal Matrix Composites
    (IOP Publishing Ltd., 2006) Eğilmez, Mehmet; Özyüzer, Lütfi; Tanoğlu, Metin; Okur, Salih; Kamer, Orhan; Öner, Yıldırhan
    MgB2/Mg composites were prepared using a metal matrix composite fabrication method that offers the potential to produce superconducting wires as an alternative approach to the powder in tube process. To obtain composites, MgB2 and Mg powders were mixed at different weight fractions and uniaxially pressed in a cylindrical die under the pressure of 0.5 and 1.0GPa for two hours at various temperatures. The x-ray diffraction technique was used for phase identification. Temperature dependence of resistivity and magnetization measurements were carried out to determine superconducting properties. The effects of composite fabrication temperature and the addition of the Mg on the mechanical properties of MgB2/Mg composites were investigated. For this purpose, the compressive mechanical testing was performed to measure the elastic modulus and fracture strength values of the composites. It was found that the relative weight fraction of the Mg and the fabrication conditions of the composites have considerable effect on the superconducting and mechanical properties of the composites.
  • Article
    Citation - WoS: 13
    Citation - Scopus: 12
    Mgb2 Superconducting Thin Films Sequentially Fabricated Using Dc Magnetron Sputtering and Thermionic Vacuum Arc Method
    (Elsevier Ltd., 2007) Okur, Salih; Kalkancı, M.; Pat, Suat; Ekem, Naci; Akan, Tamer; Balbağ, Zafer; Musa, G.; Tanoğlu, Metin
    In this work, we discuss fabrication and characterization of MgB2 thin films obtained by sequential deposition and annealing of sandwich like Mg/B/Mg thin films on glass substrates. Mg and B films were prepared using DC magnetron sputtering and thermionic vacuum arc techniques, respectively. The MgB2 thin films showed superconducting critical transition at 33 K after annealing at 650 °C.
  • Conference Object
    Citation - WoS: 39
    Citation - Scopus: 48
    Temperature Dependence of Electrical Conductivity in Double-Wall and Multi-Wall Carbon Nanotube/Polyester Nanocomposites
    (Springer Verlag, 2007) Şimşek, Yılmaz; Özyüzer, Lütfi; Seyhan, Abdullah Tuğrul; Tanoğlu, Metin; Schulte, Karl
    The aim of this study is to investigate temperature dependence of electrical conductivity of carbon nanotube (CNT)/polyester nanocomposites from room temperature to 77 K using four-point probe test method. To produce nanocomposites, various types and amounts of CNTs (0.1, 0.3 and 0.5 wt.%) were dispersed via 3-roll mill technique within a specially formulized resin blend of thermoset polyesters. CNTs used in the study include multi walled carbon nanotubes (MWCNT) and double-walled carbon nanotubes (DWCNT) with and without amine functional groups (-NH2). It was observed that the incorporation of carbon nanotubes into resin blend yields electrically percolating networks and electrical conductivity of the resulting nanocomposites increases with increasing amount of nanotubes. However, nanocomposites containing amino functionalized carbon nanotubes exhibit relatively lower electrical conductivity compared to those with non-functionalized carbon nanotubes. To get better interpretation of the mechanism leading to conductive network via CNTs with and without amine functional groups, the experimental results were fitted to fluctuation-induced tunneling through the barriers between the metallic regions model. It was found that the results are in good agreement with prediction of proposed model.
  • Conference Object
    Citation - WoS: 6
    Citation - Scopus: 5
    Electrical and Microstructural Properties of Superconducting Mgb 2/Mg Composites
    (Trans Tech Publications, 2004) Eğilmez, Mehmet; Günel, Aylin; Okur, Salih; Tanoğlu, Metin; Özyüzer, Lütfi
    MgB2/Mg composites were prepared to improve mechanical properties of brittle superconducting MgB2. MgB2 and Mg powders were mixed at different weight ratios and uniaxially pressed in a cylindrical dye at 0.5 GPa and at various temperatures for two hours to prepare MgB2/Mg composites. X-ray diffraction, SEM and EDX were used for phase identification and microstructural characterization. In addition to the main MgB2 and Mg phases, the microstructural studies have indicated the presence of a minor amounts of second phases, namely MgO and B-rich compounds. The surface morphology, grain size and porosity ratio of the samples prepared under various temperatures were also investigated. The resistivity measurements were performed in the range of room temperature to 15 K. The effect of excess Mg and secondary phases on critical temperature of MgB2/Mg composites were studied.