Residual stress distribution of the soldered structure with Kovar alloy and Al2O3 ceramics

Residual stress distribution in soldered structure of Kovar alloy and Al2O3 ceramics was determined using XRD analyses. In order to measure the residual stress, position of the characteristic diffraction peak and stress constant were obtained using several versatile/advanced techniques after calibra...

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Main Authors: Qile Gao, Jing Wang, Yiliang Zhang, Junming Zhou, Jiagen Peng, Shouliang Hu, Yanjun Zeng
Format: Article
Language:English
Published: University of Novi Sad 2017-03-01
Series:Processing and Application of Ceramics
Subjects:
Online Access:http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2035%2011.pdf
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spelling doaj-98f8fac7e6554a8d8bd1bf221a68ec9f2020-11-24T22:39:57ZengUniversity of Novi SadProcessing and Application of Ceramics1820-61312406-10342017-03-01111758110.2298/PAC1701075GResidual stress distribution of the soldered structure with Kovar alloy and Al2O3 ceramicsQile Gao0Jing Wang1Yiliang Zhang2Junming Zhou3Jiagen Peng4Shouliang Hu5Yanjun Zeng6Beijing University of Technology, Beijing 100124, ChinaBeijing University of Technology, Beijing 100124, ChinaBeijing University of Technology, Beijing 100124, ChinaBeijing University of Technology, Beijing 100124, ChinaChina Academy Of Engineering Physics, Mianyang 621900, ChinaChina Academy Of Engineering Physics, Mianyang 621900, ChinaBiomechanics and Medical Information Institute, Beijing University of Technology, Beijing 100022, ChinaResidual stress distribution in soldered structure of Kovar alloy and Al2O3 ceramics was determined using XRD analyses. In order to measure the residual stress, position of the characteristic diffraction peak and stress constant were obtained using several versatile/advanced techniques after calibration. Residual stress of soldered structure was measured based on the diffraction patterns obtained for the distribution of residual stress in the soldered joint. Only diffraction peak at 149° for Kovar alloy and two diffraction peaks ranging from 140–170° for Al2O3 ceramics were found to be appropriate for the residual stress determination. It was also confirmed that for Al2O3 ceramics the XRD peak at 152° reflects the changes of stress more precisely than the one at 146°. The stress constant K of Kovar alloy and Al2O3 ceramics was found to be −197 MPa/° and −654 MPa/°, respectively. After soldering, the maximum residual stress of the soldered joint of both materials developed at 1 mm from the soldering seam, and the values within 3 mm from the soldering seam are generally significant. Thus, it is important to pay attention to the area of 3 mm from the soldering seam in practical application.http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2035%2011.pdfsoldered structureKovar alloy and Al2O3 ceramicsresidual stress distributionXRD analyses
collection DOAJ
language English
format Article
sources DOAJ
author Qile Gao
Jing Wang
Yiliang Zhang
Junming Zhou
Jiagen Peng
Shouliang Hu
Yanjun Zeng
spellingShingle Qile Gao
Jing Wang
Yiliang Zhang
Junming Zhou
Jiagen Peng
Shouliang Hu
Yanjun Zeng
Residual stress distribution of the soldered structure with Kovar alloy and Al2O3 ceramics
Processing and Application of Ceramics
soldered structure
Kovar alloy and Al2O3 ceramics
residual stress distribution
XRD analyses
author_facet Qile Gao
Jing Wang
Yiliang Zhang
Junming Zhou
Jiagen Peng
Shouliang Hu
Yanjun Zeng
author_sort Qile Gao
title Residual stress distribution of the soldered structure with Kovar alloy and Al2O3 ceramics
title_short Residual stress distribution of the soldered structure with Kovar alloy and Al2O3 ceramics
title_full Residual stress distribution of the soldered structure with Kovar alloy and Al2O3 ceramics
title_fullStr Residual stress distribution of the soldered structure with Kovar alloy and Al2O3 ceramics
title_full_unstemmed Residual stress distribution of the soldered structure with Kovar alloy and Al2O3 ceramics
title_sort residual stress distribution of the soldered structure with kovar alloy and al2o3 ceramics
publisher University of Novi Sad
series Processing and Application of Ceramics
issn 1820-6131
2406-1034
publishDate 2017-03-01
description Residual stress distribution in soldered structure of Kovar alloy and Al2O3 ceramics was determined using XRD analyses. In order to measure the residual stress, position of the characteristic diffraction peak and stress constant were obtained using several versatile/advanced techniques after calibration. Residual stress of soldered structure was measured based on the diffraction patterns obtained for the distribution of residual stress in the soldered joint. Only diffraction peak at 149° for Kovar alloy and two diffraction peaks ranging from 140–170° for Al2O3 ceramics were found to be appropriate for the residual stress determination. It was also confirmed that for Al2O3 ceramics the XRD peak at 152° reflects the changes of stress more precisely than the one at 146°. The stress constant K of Kovar alloy and Al2O3 ceramics was found to be −197 MPa/° and −654 MPa/°, respectively. After soldering, the maximum residual stress of the soldered joint of both materials developed at 1 mm from the soldering seam, and the values within 3 mm from the soldering seam are generally significant. Thus, it is important to pay attention to the area of 3 mm from the soldering seam in practical application.
topic soldered structure
Kovar alloy and Al2O3 ceramics
residual stress distribution
XRD analyses
url http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2035%2011.pdf
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AT jingwang residualstressdistributionofthesolderedstructurewithkovaralloyandal2o3ceramics
AT yiliangzhang residualstressdistributionofthesolderedstructurewithkovaralloyandal2o3ceramics
AT junmingzhou residualstressdistributionofthesolderedstructurewithkovaralloyandal2o3ceramics
AT jiagenpeng residualstressdistributionofthesolderedstructurewithkovaralloyandal2o3ceramics
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AT yanjunzeng residualstressdistributionofthesolderedstructurewithkovaralloyandal2o3ceramics
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