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Öğe A Review of and Current State-of-the-Art in Laser Beam Welding in the Automotive Industry(OLD CITY PUBLISHING INC, 2016) Kacar, I.; Ozturk, F.; Yilbas, B. S.Laser beam welding is an indispensable and preferable method which is widely used in the automotive industry. It satisfies the requirements of low cost, short processing time, and high quality. Although laser welding finds applications in different industries, its application in the automotive industry requires further investigation. In this paper, the current status of laser beam welding applications in automotive industry is reviewed and recent developments are discussed. This review study reveals that LASER BEAM WELDING is an important process for automotive industry, therefore it will become a more prominent method in upcoming years.Öğe A review of and current state-of-the-art in laser beam welding in the automotive industry(Old City Publishing, 2016) Kacar, I.; Ozturk, F.; Yilbas, B.S.Laser beam welding is an indispensable and preferable method which is widely used in the automotive industry. It satisfies the requirements of low cost, short processing time, and high quality. Although laser welding finds applications in different industries, its application in the automotive industry requires further investigation. In this paper, the current status of laser beam welding applications in automotive industry is reviewed and recent developments are discussed. This review study reveals that LASER BEAM WELDING is an important process for automotive industry, therefore it will become a more prominent method in upcoming years. © 2016 Old City Publishing, Inc. Published by license under the OCP Science imprint, a member of the Old City Publishing Group.Öğe Exact elasticity solutions to rotating pressurized axisymmetric vessels made of functionally graded materials (FGM)Genaue Elastizitatslosungen fur rotierende achsensymmetrische Druckbehalter aus funktional gradierten Werkstoffen(Wiley-V C H Verlag Gmbh, 2020) Kacar, I.In this study the plane elasticity equations of pressurized and rotating structures, generalized analytical closed-form solutions are presented for hollow cylinders, spheres and thin disks. Three well known material pairs are graded in radial direction by using the power rule for various boundary and load conditions. Stress and displacement solutions are obtained. The effect of a constant rotational velocity is also investigated separately in absence of the internal and external pressures. Crucial results are also presented in tabular form.