Fabrication of Hydro-Pneumatic Crane for Automobiles
-
2018-09-01 https://doi.org/10.14419/ijet.v7i3.34.19231 -
Cranes, Hydraulics, Pneumatic, transportation, Jib Crane -
Abstract
This work applies the fabrication of Hydro pneumatic crane (HPC) which can be used for removing and installing heavy objects such as engines and transmissions from vehicles. The intention of using this project work is to gain knowledge in the field of material handling equipment. This work has dealt with the fabrication of the portable jib crane. The main principle of this project is, the hand pump present in the normal hoist crane is replaced with hydraulic cylinder. The hydraulic piston is coupled with pneumatic pistons, and the hydraulic piston is connected to the boom. The pneumatic cylinder is pumped by air compressor. By calculating rated power of HPC and compared with the existing crane we will prove that the system will work under automated condition without compromising the efficiency of the system.
Â
-
References
[1] A.Z.Al-Garni K., A.F. Moustafa S., S.A.K.Javeed Nizami, Optimal control of overhead cranes, Control engineering Practice, 3(9) (1995) 1277-1284.
[2] LRamli, Z.Mohamed Auwalu, M.Abdullahi, H.I.Jaafar Izzuddin, M.Lazim, , Control strategies for crane systems, mechanical system and signal processing, 95 (2017) 1-23.
[3] W S hose, J Vaughan, J Danielson, J Lawrence, Use of Cranes in System Dynamics and Controls Education, IAFC Proceedings Volumes, 41(2) (2008) 9099-9104.
[4] L Schmidt, M Groenk jaer Henrik, C. Pedersen Torben, O.Andersen,J, Position Control of an Overâ€Actuated Direct Hydraulic Cylinder Drive, Control engineering Practice 64 (2017) 1-14.
[5] Wojciech Sochacki, Marta Bold, Damped Vibrations of Hydraulic Cylinder with a Spring-damper System in Supports, Procedia engineering, 177 (2017) 41-48.
[6] ZhongyiQuan, LongQuan, JinmanZhang, Review of energy efficient direct pump controlled cylinder electro-hydraulic technology, Renewable and sustainable energy reviews 35 (2014) 336-346
[7] T Schwarzgruber T ErnstPassenbrunner L delRe, Control design for a multi input single output hydraulic cylinder system, IAFC Proceedings Volumes, 47(3) (2014) . 10946-1095
[8] I Yung, C Vázquez,Leonid B.Freidovich , Robust position control design for a cylinder in mobile hydraulics applications, Control engineering Practice, 69 (2017) 36-49.
[9] V Osipov, B Vorotyntsev, SergeyStazhkov, V Tsvetkov,AlbertKiev, ValentinLavrov, Axial Piston Hydraulic Motor with Heightened Control Range, Procedia Engineering, 100 ( 2015 ) 1455 – 1458
[10] Yuming Yin, Subhash Rakheja, JueYang, Paul-Emile Boileau, Characterization of a hydro-pneumatic suspension strut with gas-oil emulsion. mechanical system and signal processing, 106 (2018) 319-333.
[11] J Olearczyk MohamedAl-Hussein A Bouferguène Evolution of the crane selection and on-site utilization process for modular construction multi lifts, Automation in Construction, 43 (2014) 59-72.
[12] M.Antonelli, M.Ceraolo, U.Desideri, G.Lutzemberger, L.Sani, Hybridization of rubber tired gantry (RTG) cranes, Journal of energy storage, 12 (2017) 186-195
[13] AnttiYlinen, Heikki Marjamäki, Jari Mäkinen, ,A hydraulic cylinder model for multi body simulations, Computers and structures138 (2014) 62-72
[14] TongYi, FeiMa, ChunJin, YanjunHuang, A novel coupled hydro-pneumatic energy storage system for hybrid mining trucks, Energy, 143 (2018) 704-718
[15] HoDuc Tho, RyosukeTasaki, KazuhikoTerashima, MitsuoTsume, KensukeSuzuki, July 2017, Robust Sliding Mode Control of a Rotary Hook, IAF papers Online, 50 (1) (2017) 6060-6066.
-
Downloads
-
How to Cite
P, N., P, T., Kumar S, S., & D, S. (2018). Fabrication of Hydro-Pneumatic Crane for Automobiles. International Journal of Engineering & Technology, 7(3.34), 379-381. https://doi.org/10.14419/ijet.v7i3.34.19231Received date: 2018-09-07
Accepted date: 2018-09-07
Published date: 2018-09-01