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2017 Design and Simulation of an Apparatus for the PostWeld Controlled Accelerated Cooling of R350HT Head Hardened Rail Joints

Controlled accelerated cooling of R350HT head hardened rail joints immediately after their welding is critical in order to secure that these joints have similar mechanical properties with the rest of the rail. In practice this accelerated cooling can be achieved by sending forced air through an apparatus placed over the welded area of the rail joint just after welding operation. The apparatus should be designed in a way to create homogenous and effective cooling around the railhead. For this purpose, airflow and cooling simulations were performed in order to optimize the design of such apparatus. Number and diameter of air nozzles, their positions, nozzle-to-rail surface distance and airflow rate were employed as the main input parameters for the simulations performed using ANSYS 15 (thermal and fluid flow). The main focus was on finding the design and operation parameters that give homogenous air flow around the rail head which in turn would produce uniform cooling. In this publication, the results of the simulations run under various conditions will be compared and an optimum set of design and operating parameters will be offered.

International Iron & Steel Symposium
UDCS

Nizar Ramadan Kazım Tur Erkan Konca

220 311
Subject Area: Materials Science Broadcast Area: International Type: Oral Paper Language: English
2017 Effects of Alloying Elements (Mo, Ni and Cu) on the Austemperability of GGG-60 Ductile Cast Iron

The interest in austempered ductile irons (ADI) is continuously increasing due to their various advantageous properties over conventional ductile irons and some steels. This study aimed at finding the roles of alloying elements, namely Ni, Cu and Mo, on the austemperability of GGG-60 ductile cast iron. Two different sets of GGG-60 (EN-GJS-600-3) ductile iron samples, where one set was alloyed with Ni and Cu and the other set was alloyed with Mo, Ni and Cu, were subjected to austempering treatments at 290-350°C. A custom design heat treatment setup, consisting of two units where the top unit (furnace) serving for austenitizing and the 200-liter capacity bottom unit (stirred NaNO2-KNO3 salt bath) serving for isothermal treatment, was used for the experiments. It has been found that austempering treatment at 290°C increased the hardness of the Ni-Cu alloyed GGG-60 sample by about 44% without causing a loss in its ductility. In the case of Mo-Ni-Cu alloyed sample, the increase in hardness due to austempering reached to 80% at the same austempering temperature while some ductility was lost. Here, the microstructural investigation and mechanical testing results of the austempered samples are presented and the role of alloying elements (Mo, Ni, and Cu) on the austemperability of GGG-60 is discussed.

International Iron & Steel Symposium
UDCS

Erkan Konca Kazım Tur Erkin KOÇ

274 400
Subject Area: Materials Science Broadcast Area: International Type: Oral Paper Language: English