Effect of processing parameters on the phase transformation of a high temperature copper-based shape memory alloy

Title Effect of processing parameters on the phase transformation of a high temperature copper-based shape memory alloy
Author Seyedmohammadi, Seyedveghar, Yapıcı, Güney Güven
Publication Date: 2023-11
Publication Place - Springer
Subject Cu-Al-Mn, Homogenization, Remelting, Rolling, Shape memory alloy, Transformation temperature
Type Periodical
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 1059-9495
Record ID 4facc677-e45b-4e19-b844-9ec2748e7f81
Library Location Mechanical Engineering
Date 2023-11
Sample Text In the present study, the influence of the processing parameters on the transformation temperatures and microstructural evolution in a copper-based shape memory alloy was investigated. Five times remelting in identical conditions was conducted to investigate the effect of successive remelting on the microstructural and thermal behavior of the alloy. Samples were hot rolled up to 25, 50, 75, and 90% reduction in thickness after heating at 900 °C. It was demonstrated that one-time remelting is required to achieve a target alloy composition. Thermal hysteresis remained almost constant with elevation in the rolling strain imposed. Furthermore, increased rolling reduction led to decreased enthalpy and entropy levels.
DOI 10.1007/s11665-022-07796-z
Cilt 32
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Effect of processing parameters on the phase transformation of a high temperature copper-based shape memory alloy

Author Seyedmohammadi, Seyedveghar, Yapıcı, Güney Güven
Publication Date 2023-11
Publication Place - Springer
Subject Cu-Al-Mn, Homogenization, Remelting, Rolling, Shape memory alloy, Transformation temperature
Type Periodical
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 1059-9495
Record ID 4facc677-e45b-4e19-b844-9ec2748e7f81
Library Location Mechanical Engineering
Date 2023-11
Sample Text In the present study, the influence of the processing parameters on the transformation temperatures and microstructural evolution in a copper-based shape memory alloy was investigated. Five times remelting in identical conditions was conducted to investigate the effect of successive remelting on the microstructural and thermal behavior of the alloy. Samples were hot rolled up to 25, 50, 75, and 90% reduction in thickness after heating at 900 °C. It was demonstrated that one-time remelting is required to achieve a target alloy composition. Thermal hysteresis remained almost constant with elevation in the rolling strain imposed. Furthermore, increased rolling reduction led to decreased enthalpy and entropy levels.
DOI 10.1007/s11665-022-07796-z
Cilt 32
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