Production of Fe-W-B in-situ composite materials and investigations of their properties
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Abstract (EN)
Powder metallurgy is one of the methods which is used in many industrial areas. In this study, it is aimed that production of Fe-W-B in-situ composite materials via powder metallurgy and mechanical alloying. In the first step, ferro-tunsgten, ferro-boron and iron powders are mixed in different ratios and subjected to mechanical alloying process under protective atmosphere for 20 hours using a Attritor. Pre-alloyed powder mixtures are shaped as cylindrical coupons (ø15-5mm in size) under the pressure of 115 MPa. And that coupons are sintered at 1200 °C and 1250 °C for 120, 240 and 360 minutes under the argon atmosphere. And, characterization of the produced in-situ composite materials are realized by using optical and scanning electron microscope, energy dispersive spectroscopy, x-ray diffraction analysis, Vickers micro-hardness and density measurement and wear tests. As a results of studies, in-situ composite materials produced with MD2 (20%W+30%B+50%Fe, by atomic) composition are dense, hard, wear-resistant and it consist of Fe, Fe2B and FeWB phases.
Author
Mustafa Durmaz
Institution
How to Cite
Mustafa Durmaz (Master Thesis). Production of Fe-W-B in-situ composite materials and investigations of their properties, 2015, Sakarya University.
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