Abstract
Disclosed is a new design of a preventer with a brake assembly, in which the pusher interacting with the sealing ring is made with teeth on the end surface. The size of the O-ring and the parameters of the gear pusher were optimized. Mathematical model of stress–strain state of sealing ring at interaction with support and piston is built, with the help of which more advanced operational parameters of preventer are achieved. The proposed mathematical model of the stressed-strain state allows optimizing the power and geometric parameters of the braking device: (a) values of the deformation of the ring depending on its dimensions; (b) axial compression force of the ring required to achieve the value of the specified braking moment of the piston; (c) select ring dimensions; adjust its deformation. Claimed design of braking device in combination with created mathematical model of sealing ring can be used in constructions of machines and equipment using sealing parts.
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Kaderov, H., Kireev, S., Lebedev, A., Sperling, J. (2022). Optimization of Parameters of Parts of Brake Device of Piston of Circular. In: Shamtsyan, M., Pasetti, M., Beskopylny, A. (eds) Robotics, Machinery and Engineering Technology for Precision Agriculture. Smart Innovation, Systems and Technologies, vol 247. Springer, Singapore. https://doi.org/10.1007/978-981-16-3844-2_12
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DOI: https://doi.org/10.1007/978-981-16-3844-2_12
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