Mechanical Engineering / Makina Mühendisliği

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

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  • Research Project
    Kompozit aluminyum köpük malzemesinin hazırlanması ve mekanik özelliklerinin karakterizasyonu
    (TÜBİTAK - Türkiye Bilimsel ve Teknolojik Araştırma Kurumu, 2001) Yılmaz, Selahattin; Güden, Mustafa; Elbir, Semih
    Bu projede SiC tozları (SiCt), Sic viskerları (SiCv kıl kristal) ve granule Al2O3 tozları (Al2O3g) ayrı ayrı Alüminyum ile karşılaştırılarak metal matriks kompozit (MMK) köpükler hazırlanmıştır. Matriks malzemesi olarak Alüminyum seçilmiştir. TiH2 tozları şişirici ajan olarak kullanılmışlardır.MMK köpükler toz metallurji tekniği ile hazırlanmıştır. Matriks, şişirici alan (%0.5%)ve takviye malzemesi (SiCt veya SiCv veya Al2O3g) iyice karıştırıldıktan sonra, sıcak preste 450circ C ve 200 MPa basınç altında sıkıştırılmaktadır. (%99 Relative yoğunluk) Burda yarı mamül olarak tanımlayabileceğimiz tabletler elde edilmketedir. Yarı mamül matriks malzemesinin erime sıcaklığının üstünde bir sıcaklığa (750 - 850circ C) kadar ısıtılmış bir fırına konmaktadır. Bu sıcaklıklarda, TiH2 bozunması ile açığa çıkan H2 gazları metal içerisinde genleşmekte ve metalin içinde gaz hücrelerinin oluşmasını (köpükleşme) sağlamaktadır. Köpükleşen malzeme fırından çıkarılarak hızlıca soğutulmaktadır. Bu yöntem izlenerek MMK köpükler üretilmiştir. Fırın sıcaklığı ve fırında kalma süresi parametre olarak çalışılmıştır. MMK köpükler malzemeler darbe enerjisini emme için kullanılabilirler. Sonuç olarak Aluminyum köpüklerden daha yüksek enerji emme kapasitesine sahip MMK köpükler hazırlanmıştır.
  • Conference Object
    Citation - WoS: 8
    Citation - Scopus: 12
    Mechanical Properties of Hydroxyapatite Composites Reinforced With Hydroxyapatite Whiskers
    (Trans Tech Publications, 2004) Şimşek, Deniz; Çiftçioğlu, Rukiye; Güden, Mustafa; Çiftçioğlu, Muhsin; Harsa, Hayriye Şebnem
    Sintering and mechanical behavior of pure and hydroxyapatite (HA) whisker reinforced HA composites were investigated in this work. Pure and composite samples were prepared by using a commercial powder and whiskers prepared by molten salt synthesis. The dry-pressed samples were sintered in the 800 and 1300°C range. The effect of whisker-addition on the mechanical properties of HA was investigated through compression and hardness testing. Compressive strength and fracture strain were observed to increase by the addition of whiskers.
  • Article
    Citation - WoS: 54
    Citation - Scopus: 62
    Sic-Particulate Aluminum Composite Foams Produced by Powder Compacts: Foaming and Compression Behavior
    (Springer Verlag, 2003) Elbir, Semih; Yılmaz, Selahattin; Toksoy, Ahmet Kaan; Güden, Mustafa; Hall, Ian W.
    The foaming behavior of SiC-particulate (8.6% by volume) aluminum composite powder compacts contained Titanium Hydride blowing agent was investigated by heating above the melting temperature (750°C) in a pre-heated furnace. Aluminum powder compacts were also prepared and foamed using similar compaction and foaming parameters in order to determine the effect of SiC-particulate addition on foaming and compression behavior. The linear expansions of the compacts at various furnace holding times were ex situ determined. Optical and scanning electron microscopy techniques were used to characterize prepared and deformed foams microstructures. The SiC-particulate addition was found to increase the linear expansion and reduce the extent of the liquid metal drainage and cell coarsening of the aluminum compacts. The composite foam samples also showed higher compressive stresses, but a more brittle behavior as compared with aluminum foams.
  • Conference Object
    Citation - WoS: 5
    Citation - Scopus: 5
    Preparation and Microstuructural Development of Nanocrystalline Titania and Alumina
    (Trans Tech Publications, 2004) Çağlar Duvarcı, Özlem; Çiftçioğlu, Muhsin; Güden, Mustafa; Arıkut, G.
    The preparation of nanocrystalline titania and alumina was investigated by sol-gel methods using titanium isopropoxide, boehmite and aluminum isopropoxide. Various drying control chemical additives like oxalic acid, acetic acid and polyacrylic acid were used for modifying the drying behaviour and shrinkage of the gels. The sintered densities of the ceramics prepared by sol-gel processing and the dried gels were in the 79-99% of theoretical density for rutile. The green and sintered densities of the pellets prepared by uniaxial pressing of powders derived from sols, gels and precipitation techniques for titania were in the 40-52% and 55-83% respectively. The titania ceramics were observed to experience anatase-rutile phase transformation upon heat treatment at 650oC. The grain size of the sintered ceramics at 650oC was determined to be about 26 nm. Grain size of titania increased to 213 nm. at 850oC. The mechanical properties of these nanocrystalline ceramics were investigated by using microhardness testing.