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Showing 4 out of a total of 4 results for collection: Mechanical Engineering.
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Contact temperature analysis of the classical Geneva mechanism through numerical methods
Ambaye, Getachew A
;
Lemu, Hirpa G.
;
Tolcha, Mesay A
(
2022-09-22
)
Internal Corrosion Damage Mechanisms of the Underground Water Pipelines
Yeshanew, Desalegn A.
;
Jiru, Moera G.
;
Lemu, Hirpa G.
;
Tolcha, Mesay A
(
2022-05-15
)
Kinematic Modeling and Analysis of a Walking Machine (Robot) Leg Mechanism on a Rough Terrain
Terefe, Tesfaye O.
;
Lemu, Hirpa G.
;
K/Mariam, Addisu
;
Tuli, Tadele B.
(
2019-07-07
)
Review and synthesis of a walking machine (Robot) leg mechanism
Terefe, Tesfaye Olana
;
Lemu, Hirpa G.
;
K/Mariam, Addisu
(
2019-07-30
)
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Type
Article (4)
Author
Lemu, Hirpa G. (4)
K/Mariam, Addisu (2)
Tolcha, Mesay A (2)
Ambaye, Getachew A (1)
Jiru, Moera G. (1)
Terefe, Tesfaye O. (1)
Terefe, Tesfaye Olana (1)
Tuli, Tadele B. (1)
Yeshanew, Desalegn A. (1)
Subject
Active phase (1)
Contact pressure (1)
Contact temperature (1)
corrosion mechanisms (1)
Denavit-Hartenberg (1)
Flash temperature (1)
In this study, the flash temperature of the classical Geneva mechanism has been studied using the numer ical method. An excessive sliding motion between the wheel and pin leads to the generation of heat at the contact surfaces, which raises the surface temperature of the two contacting bodies. The flash tempera ture has been anticipated for different loading cases and coefficients of friction. The analytical Blok equa tion results are compared with the finite element results, and the results are satisfactory for maximum temperature. Based on the simulation results, the maximum contact temperature occurred in the driving crankpin within 10-15 and 70–75 of the angular position, and as the load increased the contact temper ature also increases. In addition, the angular velocity increment produced higher temperatures than the torque load increments. Copyright 2022 Elsevier Ltd. All rights reserved. Selection and peer-review under responsibility of the scientific committee of the Third International Con ference on Aspects of Materials Science and Engineering. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/) (1)
internal corrosion (1)
kinematic analysis (1)
motion analysis (1)
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Date Issued
2019 (2)
2022 (2)
Has File(s)
Yes (4)