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Featured researches published by Bülent Bostan.


Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology | 2014

Effect of T7 heat treatment on the dry sliding friction and wear properties of the SiC-reinforced AA 2014 aluminium matrix composites produced by vacuum infiltration:

Sinan Aksöz; Osman Bican; Recep Çalın; Bülent Bostan

Dry sliding wear properties of SiC-reinforced AA 2014 aluminium matrix composites produced by vacuum infiltration method were investigated using a pin-on-disc test machine after examining their microstructural and mechanical properties. It was observed that the porosity of the composites decreased with increasing volume ratio up to 2% SiC; above this level, porosity of the composites reached almost constant levels. The hardness of the composites increased continuously with increasing SiC content. It was observed that T7 heat treatment increased the wear resistance and removed the dendritic structure of the produced composites. The highest wear resistance was obtained from AA 2014-2%SiC composite both as-cast and heat-treated conditions. Wear resistance of the composites tested was observed to be strongly dependent on their porosity rather than their other properties.


Archive | 2014

Characteric Proporties of NiTi Shape Memory Alloy Powders with Powder Injection Molding

Sinan Aksöz; Bülent Bostan

In this paper, NiTi Shape Memory Powders were investigated on producticability with powder injection moulding. Powders which are used in this study were sized respectively; 10 and 35.6 \(\upmu \)m. Characteristics proporties of Powders (Powders characteristic features) were researched by SEM (Scanning Electron Microscopy), EDS (Element Diffraction Spectrometer), DSC (Differential Scanning Calorimetry) and powder size analizing method. For injection moulding, two types of binder were determined which wasn’t used for this type of powders. TG (Gravimetrik Analysis), DTA (Differantial Thermal Analysis) and DTG (Differential Transformation Gravimeter) analize system were used for analizing the binders. Analizing results showed that spherical and transformation temperetures of powders were were good enough.


Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering | 2017

Fabrication and characterization of nanoparticle MgO/B4C composite by mechanochemical method:

Hakan Gökmeşe; Bülent Bostan

In this study, nanoparticle boron carbide was produced after the reduction of boron oxide with magnesium under the presence of carbon by using mechanochemical synthesis method. During the synthesis processing, microstructure and phase transformations of powders were performed by using X-ray diffraction (XRD), Fourier-transform infrared spectrum (FT-IR), scanning electron microscope (SEM), and high-resolution transmission electron microscopy (HRTEM). At the end of 2 h, reaction products (MgO, B4C) were determined by XRD and FT-IR examinations. Nanoparticle B4C single-phase crystalline structure from the MgO/B4C composite powder mixture, which was the reaction product, was obtained by leaching process. With the increase in the synthesis period, starting material peaks diminished and Fe peak intensity became evident. After the HRTEM examinations, it was determined that synthesized B4C particles were within range of 10–200 nm especially in the activation of leaching process. Additionally, by using spot pattern analysis method, planes represented by B4C particles were calculated.


Inorganic and Nano-Metal Chemistry | 2017

Fabrication and characterization of nanoceramic particle Al2O3/B4C composite by mechanochemical approach

Hakan Gökmeşe; Bülent Bostan; Mustafa Baris

ABSTRACT Al2O3/B4C ceramic phase composite structure was produced by solid-state method. Transformations of ceramic phases, micromorphology were determined by employing X-ray diffraction, FT-IR, scanning electron microscopy and transmission electron microscopy (TEM). Transformation of ceramic phases was completed in a short time (6 h). Formation of Al2O3/B4C ceramic-phase powder mixtures was specified after leaching. As a result of the increase of mechanical energy and the amount of ceramic phase, reduction in powder particle size (50–350 nm) and increase in agglomeration tendency were observed. The impurities were removed after leaching and the distribution in which the ceramic phases are effective was obtained with the TEM study.


Çukurova Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi | 2016

API 5L X65 Çeliklerinin MAG Kaynak Yöntemi ile Birleştirilmesinde, Kaynak İşleminin Mikroyapı ve Mekanik Özelliklere Etkisinin İncelenmesi

Hakan Ada; Sinan Aksöz; Tayfun Findik; Cemil Çetinkaya; Bülent Bostan; İlhan Candan

Bu calismada; dogalgaz ve petrol boru hatlarinda kullanilan API 5L X65 kalitesindeki celik malzemeler, MAG kaynak yontemiyle ozlu rutil tel ile birlestirilmistir. Birlestirmelerden alinan numunelerin mikroyapi ve mekanik ozelliklere etkileri incelenmistir. Deneysel calismalarda makro ve mikroyapisal olarak, ana malzeme, ITAB) ve kaynak metali incelenmis, olusan yapilarin tipik kaynak islem ozelliklerine sahip yapilar oldugu tespit edilmistir. Cekme, centik darbe, sertlik ve egme testlerinde kaynak islemi kusursuz ozellikler sergilemistir. Elde edilen tum sonuclar, kaynak isleminin mikroyapisal ve mekanik olarak kendinden beklenen lokal ozellikleri karsilayabilecek bir tavir sergiledigini gostermistir.


Scientific Research and Essays | 2013

Improvements of dry sliding wear behaviour and mechanical properties in 2014 Al alloy by age-hardening

Hakan Gökmeşe; Bülent Bostan

In this study AA 2014 powder metal alloy was produced by using the vertical gas atomization method. In the post-production stage, by unidirectional pressure in the steel mould, the powders were converted into powder metal samples. The derived powder metal particles from the micro structural point were subjected to sintering process for 1 h at the temperature range of 550 and 620°C. Next, the samples were exposed to heat treatment at the temperature interval of 2 to 192 h in 500 and 600°C. For aging heat treatment, water quenching process post-solution treatment at 520˚C was applied to these samples. Afterwards, these samples were applied to aging process at 150°C on the condition of the range of 4 to 24 h, and up to 70% increase in hardness was determined. Finally, through an examination of dry fictional wear behaviours of samples processed at 550 and 600°C, oxide occurrence with increasing heat was observed to effect wear loss and wear loss was identified not to be linear as the distance raised. Key words: Wear, age-hardening, 2014 Al alloy.


Journal of Polytechnic | 2018

Mekanik Olarak Sentezlenen NiTi + Zn Tozlarının Karakterizasyonu ve Sinterlenelebilirliğinin Araştırılması

Sinan Aksöz; Bülent Bostan


Journal of Boron | 2018

AA2014 - B4C MMK’nın Döküm ve Döküm + 600 °C’de 2 saat Sinterleme Sonrası Aşınma Davranışlarının İncelenmesi

Sinan Aksöz; Bülent Bostan


International Advanced Researches and Engineering Journal | 2018

Effect of Cu addition on microstructure and mechanical properties of NiTi based shape memory alloy

Hakan Gökmeşe; Naci Arda Tanış; Bülent Bostan


Gazi Üniversitesi Fen Bilimleri Dergisi Part C: Tasarım ve Teknoloji | 2018

NiTi ŞBA Tozlarında B2-R-B19' Fazlarına Sıcaklık ve Deformasyonun Etkilerinin İncelenmesi

Sinan Aksöz; Gülizar Altinişik; Ekrem Emre Elverişli; Bülent Bostan

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Osman Bican

Kırıkkale University

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