Design and analysis of a hexapod with upur structure
Is this your thesis?
This record came from a bulk archive import. If it’s yours, link it to your profile.
Abstract (EN)
In this study, a hexapod with universal- prismatic- universal- revolute (UPUR) structure is designed and analyzed. Parallel manipulators have high stiffness and accuracy, and they are used in medical, aviation and astronomy. Universal joints, parallel motion actuators (linear actuators) and revolute joints (rolling element bearings) are available in the market with competitive prices and thus, hexapods with UPUR structure can be produced with low costs.SolidWorks is used for modeling and assembly, CosmosMotion is used for rigid body dynamics and ANSYS is used for the finite element rigidity analysis. A program developed in MATLAB is also used for the rigid body dynamics analysis. A control system is developed for the system having linear actuators with step motors. PC-based motion control is used.It is observed that MATLAB results are in agreement with CosmosMotion results. The natural frequencies and the static deflections of the system are given for various positions. Hexapod motions are analyzed considering kinematic, kinetic and rigidity limits.Keywords: Hexapod, simulation, parallel manipulators, CosmosMotion, ANSYS, SolidWorks.
Author
Okan Tonga
How to Cite
Okan Tonga (Master Thesis). Design and analysis of a hexapod with upur structure, 2010, Dokuz Eylül University.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Dokuz Eylül University
- Analysis of speech clarity parameters in open plans offices(2021)
- The characteristic of rural architectural heritage and the conservation problem in Urla region(2019)
- AFAD gönüllülük sisteminin etkin müdahale açısından analiz(2020)
- Examination of martian habitats from the viewpoint ofstructure(2022)
- Environmental graphic design and public installation in the context of 21st century postmodernism(2022)
- Critics against Muawiyah ibn Abi Sufyan(2019)
