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- W2019432886 abstract "ABSTRACT A friction limit moment (torque) is derived for a one-bolt, two-member structural joint. Once the structural load reaches the limit moment, the frictional resistance in the joint is overcome and relative rotation of the structural members can occur. A framework based on the kinematical approach of limit analysis is proposed to calculate the limit torque. While only the simple case of calculations is presented in this paper, more complex joints can be analyzed using the approach proposed. The friction limit loads derived using this approach can be represented as a surface in a generalized stress space, analogously to the yield condition of plasticity. Upon the structural load reaching the threshold (limit) friction load, the process of relative movement of structural elements (rotation and translation) becomes possible until the joint locks up due to structural constraints. Results have application in analysis of structures with gaps in their joints, particularly structures with deliberately introduced gaps. The response of such structures to loads can differ significantly from those where gaps are not present, and some benefits can be gained, e.g., an increase in the range of the elastic response. Application also can be envisioned in systems that are required to dissipate energy." @default.
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- W2019432886 modified "2023-10-14" @default.
- W2019432886 title "Limit Torque for a Frictional Joint*" @default.
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- W2019432886 doi "https://doi.org/10.1080/08905459608905275" @default.
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