Effect of surface cleaning on interface bonding performance for 316H stainless steel joints manufactured by additive forging

Additive forging is a newly developed method to manufacture heavy forgings by using multilayer hot-compression bonding. However, the relationship between surface cleaning and bonding performance of bonded samples in the additive forging process is unclear. This paper studies the effect of surface cl...

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Main Authors: Yong Zhao, Zhuji Jin, Bin Xu, Qinqiang Wang, Jian Feng, Xiuru Li, Renke Kang, Zhaocheng Wei, Jiang Guo
Format: Article
Language:English
Published: Elsevier 2021-11-01
Series:Materials & Design
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0264127521005803
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spelling doaj-20dd27d1ad8a44e48d5a4920186d23782021-08-18T04:21:19ZengElsevierMaterials & Design0264-12752021-11-01210110025Effect of surface cleaning on interface bonding performance for 316H stainless steel joints manufactured by additive forgingYong Zhao0Zhuji Jin1Bin Xu2Qinqiang Wang3Jian Feng4Xiuru Li5Renke Kang6Zhaocheng Wei7Jiang Guo8Key Laboratory for Precision and Non-Traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116024, ChinaKey Laboratory for Precision and Non-Traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116024, ChinaShenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, ChinaKey Laboratory for Precision and Non-Traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116024, ChinaKey Laboratory for Precision and Non-Traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116024, ChinaEngineering Research Center for Moulding Product of Ministry of Education, Dalian University of Technology, Dalian 116024, ChinaKey Laboratory for Precision and Non-Traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116024, ChinaEngineering Research Center for Moulding Product of Ministry of Education, Dalian University of Technology, Dalian 116024, ChinaKey Laboratory for Precision and Non-Traditional Machining Technology of Ministry of Education, Dalian University of Technology, Dalian 116024, China; Ningbo Institute of Dalian University of Technology, Ningbo 315000, China; Corresponding author.Additive forging is a newly developed method to manufacture heavy forgings by using multilayer hot-compression bonding. However, the relationship between surface cleaning and bonding performance of bonded samples in the additive forging process is unclear. This paper studies the effect of surface cleaning on interface bonding performance for the first time. A new characterization method of surface cleanliness consisting of water contact angles, relative fluorescence units, and optical observation was proposed to characterize the cleaning effect. The micromorphologies and tensile properties were used to evaluate interface bonding performance. Elemental analysis and morphological analysis were used to infer the hindrance mechanism of contaminants. The results show that the new characterization method can effectively characterize the surface cleanliness of substrates. Moreover, the interfacial bonding performance results indicate that surface cleaning had a great influence on the bonding performance for 316H stainless steel joints manufactured by additive forging. Finally, the hindrance mechanisms of particles, chips, and oil contaminants were attributed to the hindrance effect in a radial direction, along the interface direction, and perpendicular to the interface direction respectively. This research builds a relationship between surface cleaning and bonding performance, which helps achieve high-performance manufacturing of heavy forgings.http://www.sciencedirect.com/science/article/pii/S0264127521005803Surface cleaningCleanliness characterizationInterface bonding performanceAdditive forgingHigh performance manufacturing
collection DOAJ
language English
format Article
sources DOAJ
author Yong Zhao
Zhuji Jin
Bin Xu
Qinqiang Wang
Jian Feng
Xiuru Li
Renke Kang
Zhaocheng Wei
Jiang Guo
spellingShingle Yong Zhao
Zhuji Jin
Bin Xu
Qinqiang Wang
Jian Feng
Xiuru Li
Renke Kang
Zhaocheng Wei
Jiang Guo
Effect of surface cleaning on interface bonding performance for 316H stainless steel joints manufactured by additive forging
Materials & Design
Surface cleaning
Cleanliness characterization
Interface bonding performance
Additive forging
High performance manufacturing
author_facet Yong Zhao
Zhuji Jin
Bin Xu
Qinqiang Wang
Jian Feng
Xiuru Li
Renke Kang
Zhaocheng Wei
Jiang Guo
author_sort Yong Zhao
title Effect of surface cleaning on interface bonding performance for 316H stainless steel joints manufactured by additive forging
title_short Effect of surface cleaning on interface bonding performance for 316H stainless steel joints manufactured by additive forging
title_full Effect of surface cleaning on interface bonding performance for 316H stainless steel joints manufactured by additive forging
title_fullStr Effect of surface cleaning on interface bonding performance for 316H stainless steel joints manufactured by additive forging
title_full_unstemmed Effect of surface cleaning on interface bonding performance for 316H stainless steel joints manufactured by additive forging
title_sort effect of surface cleaning on interface bonding performance for 316h stainless steel joints manufactured by additive forging
publisher Elsevier
series Materials & Design
issn 0264-1275
publishDate 2021-11-01
description Additive forging is a newly developed method to manufacture heavy forgings by using multilayer hot-compression bonding. However, the relationship between surface cleaning and bonding performance of bonded samples in the additive forging process is unclear. This paper studies the effect of surface cleaning on interface bonding performance for the first time. A new characterization method of surface cleanliness consisting of water contact angles, relative fluorescence units, and optical observation was proposed to characterize the cleaning effect. The micromorphologies and tensile properties were used to evaluate interface bonding performance. Elemental analysis and morphological analysis were used to infer the hindrance mechanism of contaminants. The results show that the new characterization method can effectively characterize the surface cleanliness of substrates. Moreover, the interfacial bonding performance results indicate that surface cleaning had a great influence on the bonding performance for 316H stainless steel joints manufactured by additive forging. Finally, the hindrance mechanisms of particles, chips, and oil contaminants were attributed to the hindrance effect in a radial direction, along the interface direction, and perpendicular to the interface direction respectively. This research builds a relationship between surface cleaning and bonding performance, which helps achieve high-performance manufacturing of heavy forgings.
topic Surface cleaning
Cleanliness characterization
Interface bonding performance
Additive forging
High performance manufacturing
url http://www.sciencedirect.com/science/article/pii/S0264127521005803
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