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Study on Manufacturing Technology of Ag-8.5Au-3.5Pd Fine Alloy Wire

The performance of Ag-8.5Au-3.5Pd alloy wire after cold deformation and annealing were analyzed by SEM (scanning electron microscope), strength tester and resistivity tester. The processing process and performance change characteristics of Ag-8.5Au-3.5Pd alloy wire were studied. The results show tha...

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Autores principales: Cao, Jun, Zhang, Junchao, Wu, Baoan, Tang, Huiyi, Lv, Changchun, Song, Kexing, Yang, Guannan, Cui, Chengqiang, Gao, Yangguang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8399038/
https://www.ncbi.nlm.nih.gov/pubmed/34442560
http://dx.doi.org/10.3390/mi12080938
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author Cao, Jun
Zhang, Junchao
Wu, Baoan
Tang, Huiyi
Lv, Changchun
Song, Kexing
Yang, Guannan
Cui, Chengqiang
Gao, Yangguang
author_facet Cao, Jun
Zhang, Junchao
Wu, Baoan
Tang, Huiyi
Lv, Changchun
Song, Kexing
Yang, Guannan
Cui, Chengqiang
Gao, Yangguang
author_sort Cao, Jun
collection PubMed
description The performance of Ag-8.5Au-3.5Pd alloy wire after cold deformation and annealing were analyzed by SEM (scanning electron microscope), strength tester and resistivity tester. The processing process and performance change characteristics of Ag-8.5Au-3.5Pd alloy wire were studied. The results show that alloy wire grains gradually form a fibrous structure along with the increase in deformation. The strength of the wire increases with the increase in deformation rate, but the increase trend becomes flat once the deformation rate is higher than 92.78%; the resistivity of Ag-8.5Au-3.5Pd alloy wire decreases with the increase in annealing temperature, reaching minimum (2.395 × 10(−)(8) Ω·m) when the annealing temperature is 500 °C; the strength of Ag-8.5Au-3.5Pd alloy wire decreases with the increase in annealing temperature. When the annealing temperature is 500 °C, the strength and elongation of the φ0.2070 mm Ag-8.5Au-3.5Pd alloy wire are 287 MPa and 25.7%, respectively; the fracture force and elongation of φ0.020 mm Ag-8.5Au-3.5Pd alloy wire are 0.0876 N and 14.8%, respectively. When the annealing temperature is 550 °C, the metal grains begin to grow and the mechanical performance decrease; the φ0.020 mm Ag-8.5Au-3.5Pd alloy wire have good surface quality when the tension range is 2.5–3.0 g.
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spelling pubmed-83990382021-08-29 Study on Manufacturing Technology of Ag-8.5Au-3.5Pd Fine Alloy Wire Cao, Jun Zhang, Junchao Wu, Baoan Tang, Huiyi Lv, Changchun Song, Kexing Yang, Guannan Cui, Chengqiang Gao, Yangguang Micromachines (Basel) Article The performance of Ag-8.5Au-3.5Pd alloy wire after cold deformation and annealing were analyzed by SEM (scanning electron microscope), strength tester and resistivity tester. The processing process and performance change characteristics of Ag-8.5Au-3.5Pd alloy wire were studied. The results show that alloy wire grains gradually form a fibrous structure along with the increase in deformation. The strength of the wire increases with the increase in deformation rate, but the increase trend becomes flat once the deformation rate is higher than 92.78%; the resistivity of Ag-8.5Au-3.5Pd alloy wire decreases with the increase in annealing temperature, reaching minimum (2.395 × 10(−)(8) Ω·m) when the annealing temperature is 500 °C; the strength of Ag-8.5Au-3.5Pd alloy wire decreases with the increase in annealing temperature. When the annealing temperature is 500 °C, the strength and elongation of the φ0.2070 mm Ag-8.5Au-3.5Pd alloy wire are 287 MPa and 25.7%, respectively; the fracture force and elongation of φ0.020 mm Ag-8.5Au-3.5Pd alloy wire are 0.0876 N and 14.8%, respectively. When the annealing temperature is 550 °C, the metal grains begin to grow and the mechanical performance decrease; the φ0.020 mm Ag-8.5Au-3.5Pd alloy wire have good surface quality when the tension range is 2.5–3.0 g. MDPI 2021-08-09 /pmc/articles/PMC8399038/ /pubmed/34442560 http://dx.doi.org/10.3390/mi12080938 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Cao, Jun
Zhang, Junchao
Wu, Baoan
Tang, Huiyi
Lv, Changchun
Song, Kexing
Yang, Guannan
Cui, Chengqiang
Gao, Yangguang
Study on Manufacturing Technology of Ag-8.5Au-3.5Pd Fine Alloy Wire
title Study on Manufacturing Technology of Ag-8.5Au-3.5Pd Fine Alloy Wire
title_full Study on Manufacturing Technology of Ag-8.5Au-3.5Pd Fine Alloy Wire
title_fullStr Study on Manufacturing Technology of Ag-8.5Au-3.5Pd Fine Alloy Wire
title_full_unstemmed Study on Manufacturing Technology of Ag-8.5Au-3.5Pd Fine Alloy Wire
title_short Study on Manufacturing Technology of Ag-8.5Au-3.5Pd Fine Alloy Wire
title_sort study on manufacturing technology of ag-8.5au-3.5pd fine alloy wire
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8399038/
https://www.ncbi.nlm.nih.gov/pubmed/34442560
http://dx.doi.org/10.3390/mi12080938
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