Mobil Platform Sabitlendirici Ayaklarının Statik, Dinamik Ve Yorulma Analizlerinin Sonlu Elemanlar Simülasyonu
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Stabilizer legs in mobile platforms are being used in many different fields. They take two tasks at the same time; load carrying and mobile platform immobilization when needed. In transport industry, they fix the elevator mechanism, is used to carry household goods from building balcony, to the ground. In building trade, they fix mobile concrete pumps to whereabout. In military applications, they fix missile launchers and electronic – communication related platforms assembled to truck to the ground. In mobile cranes assembled to truck chassis, these legs both stabilize the whole system to the ground and prevent overturn under different load carrying conditions. In all systems mentioned, stabilizer legs both carry load and also stabilize the mobile system. These systems can operate up to certain load levels. Aim of the thesis is to design a system that can endure up to 40 tons of load and perform static, Quasi-Static and fatigue analyses of the design and repeat the analyses until desired goals are achieved. ANSYS, finite element software, will be used for all analyses. Unique value of the thesis gained by the design and analyses had been done is to create stabilizer legs that can carry and endure loads more than the stabilizer legs already in use.