Preprint Article Version 2 Preserved in Portico This version is not peer-reviewed

Radiation Effect Modeling for Controlling Heat Transfer in the Shape Memory Alloy

Version 1 : Received: 12 December 2018 / Approved: 13 December 2018 / Online: 13 December 2018 (09:35:33 CET)
Version 2 : Received: 3 September 2022 / Approved: 8 September 2022 / Online: 8 September 2022 (09:02:46 CEST)

How to cite: Riad, A.; Ben Zohra, M.; Alhamany, A.; Mansouri, M. Radiation Effect Modeling for Controlling Heat Transfer in the Shape Memory Alloy. Preprints 2018, 2018120164. https://doi.org/10.20944/preprints201812.0164.v2 Riad, A.; Ben Zohra, M.; Alhamany, A.; Mansouri, M. Radiation Effect Modeling for Controlling Heat Transfer in the Shape Memory Alloy. Preprints 2018, 2018120164. https://doi.org/10.20944/preprints201812.0164.v2

Abstract

The shape memory alloys belong to the smart materials thanks to their thermomechanical proprieties' reply to thermal or to mechanical loading. These materials can change shape, stiffness, displacement, natural frequency, and many mechanical characteristics in response to stress or to heat such as conduction, convection or radiation. However, heating by convection or conduction are the most useful and studied methods unlike radiation. Therefore, this paper aims to study the radiation effect on the shape memory alloy behavior

Keywords

Shape memory alloy; SMA; Smart material; Radiation effect; solar radiation effect; radiation heat

Subject

Engineering, Mechanical Engineering

Comments (1)

Comment 1
Received: 8 September 2022
Commenter: Amine RIAD
Commenter's Conflict of Interests: Author
Comment: -we change and correct the title Title 
-we correct the gramatical errors
-we correct the author names
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