Review Article: recent advances in metal-ceramic brazing

Metal-ceramic joining has slowly but steadily become an important manufacturing step. The evolution of joining processes has allowed ceramics to be used in combination with metals in a number of hybrid devices from traditional light bulbs and seals to improved cutting tools and modern monitoring and measuring electronic devices. New joining methods and newer approaches to conventional methods have been developed aiming at joints characterized by improved reliability, and interfaces capable of withstanding high-temperature resistance with minimum residual stresses. A summary of recent improvements on alternative approaches to ceramic-metal joining as well as new developments on brazing are presented herein. The present review also focuses on recent advances towards brazing metallized ceramics and the selection of filler alloys, since in a scenario that includes joining by laser and direct bonding with liquid transient phases, brazing continues to be by far the most widely used approach to joining as a result of its low-cost and possibility to join intricate geometries for large-scale production. Finally, methods to evaluate the mechanical strength and residual thermal stresses are presented in addition to alternative approaches to minimize residual stresses and, consequently, improve joint reliability.

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Main Authors: Nascimento,R. M. do, Martinelli,A. E., Buschinelli,A. J. A.
Format: Digital revista
Language:English
Published: Associação Brasileira de Cerâmica 2003
Online Access:http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0366-69132003000400002
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spelling oai:scielo:S0366-691320030004000022004-04-02Review Article: recent advances in metal-ceramic brazingNascimento,R. M. doMartinelli,A. E.Buschinelli,A. J. A. ceramic-metal joining structural ceramics brazing metallization titanium coating Metal-ceramic joining has slowly but steadily become an important manufacturing step. The evolution of joining processes has allowed ceramics to be used in combination with metals in a number of hybrid devices from traditional light bulbs and seals to improved cutting tools and modern monitoring and measuring electronic devices. New joining methods and newer approaches to conventional methods have been developed aiming at joints characterized by improved reliability, and interfaces capable of withstanding high-temperature resistance with minimum residual stresses. A summary of recent improvements on alternative approaches to ceramic-metal joining as well as new developments on brazing are presented herein. The present review also focuses on recent advances towards brazing metallized ceramics and the selection of filler alloys, since in a scenario that includes joining by laser and direct bonding with liquid transient phases, brazing continues to be by far the most widely used approach to joining as a result of its low-cost and possibility to join intricate geometries for large-scale production. Finally, methods to evaluate the mechanical strength and residual thermal stresses are presented in addition to alternative approaches to minimize residual stresses and, consequently, improve joint reliability.info:eu-repo/semantics/openAccessAssociação Brasileira de CerâmicaCerâmica v.49 n.312 20032003-12-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S0366-69132003000400002en10.1590/S0366-69132003000400002
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country Brasil
countrycode BR
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libraryname SciELO
language English
format Digital
author Nascimento,R. M. do
Martinelli,A. E.
Buschinelli,A. J. A.
spellingShingle Nascimento,R. M. do
Martinelli,A. E.
Buschinelli,A. J. A.
Review Article: recent advances in metal-ceramic brazing
author_facet Nascimento,R. M. do
Martinelli,A. E.
Buschinelli,A. J. A.
author_sort Nascimento,R. M. do
title Review Article: recent advances in metal-ceramic brazing
title_short Review Article: recent advances in metal-ceramic brazing
title_full Review Article: recent advances in metal-ceramic brazing
title_fullStr Review Article: recent advances in metal-ceramic brazing
title_full_unstemmed Review Article: recent advances in metal-ceramic brazing
title_sort review article: recent advances in metal-ceramic brazing
description Metal-ceramic joining has slowly but steadily become an important manufacturing step. The evolution of joining processes has allowed ceramics to be used in combination with metals in a number of hybrid devices from traditional light bulbs and seals to improved cutting tools and modern monitoring and measuring electronic devices. New joining methods and newer approaches to conventional methods have been developed aiming at joints characterized by improved reliability, and interfaces capable of withstanding high-temperature resistance with minimum residual stresses. A summary of recent improvements on alternative approaches to ceramic-metal joining as well as new developments on brazing are presented herein. The present review also focuses on recent advances towards brazing metallized ceramics and the selection of filler alloys, since in a scenario that includes joining by laser and direct bonding with liquid transient phases, brazing continues to be by far the most widely used approach to joining as a result of its low-cost and possibility to join intricate geometries for large-scale production. Finally, methods to evaluate the mechanical strength and residual thermal stresses are presented in addition to alternative approaches to minimize residual stresses and, consequently, improve joint reliability.
publisher Associação Brasileira de Cerâmica
publishDate 2003
url http://old.scielo.br/scielo.php?script=sci_arttext&pid=S0366-69132003000400002
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AT martinelliae reviewarticlerecentadvancesinmetalceramicbrazing
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