Influence of the oxide layer on the quality of bonding in adhesively bonded metallic structures by ultrasonic guided waves

In adhesively bonded metallic structures, the oxide layer is a primary component of the micro-composite layer at the adhesive/adherend interface whose morphology plays a critical role in the strength and durability of the joint. The role of the oxide layer in detecting the level of adhesion in bonde...

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Published inInternational journal of adhesion and adhesives Vol. 111; p. 102981
Main Authors Anand Kumar, S., Sudheer, G.
Format Journal Article
LanguageEnglish
Published Kidlington Elsevier Ltd 01.12.2021
Elsevier BV
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Abstract In adhesively bonded metallic structures, the oxide layer is a primary component of the micro-composite layer at the adhesive/adherend interface whose morphology plays a critical role in the strength and durability of the joint. The role of the oxide layer in detecting the level of adhesion in bonded aluminum joints is examined in the present work through the dispersion spectrum of ultrasonic true guided waves. The dispersion curves are calculated for an aluminum/epoxy/aluminum sample, where the adhesion between the epoxy and aluminum is modelled by a spring-mass model at both the interfaces. The variation in the ratio of the thickness of oxide to the primer layer is incorporated into the mass term of the model and its effect on the dispersion curves is studied. It is observed that adhesive-adherend interlayer thickness influences the higher-order symmetric modes at higher phase velocities and this influence is heavily dependent on the effective material properties of this interlayer.
AbstractList In adhesively bonded metallic structures, the oxide layer is a primary component of the micro-composite layer at the adhesive/adherend interface whose morphology plays a critical role in the strength and durability of the joint. The role of the oxide layer in detecting the level of adhesion in bonded aluminum joints is examined in the present work through the dispersion spectrum of ultrasonic true guided waves. The dispersion curves are calculated for an aluminum/epoxy/aluminum sample, where the adhesion between the epoxy and aluminum is modelled by a spring-mass model at both the interfaces. The variation in the ratio of the thickness of oxide to the primer layer is incorporated into the mass term of the model and its effect on the dispersion curves is studied. It is observed that adhesive-adherend interlayer thickness influences the higher-order symmetric modes at higher phase velocities and this influence is heavily dependent on the effective material properties of this interlayer.
ArticleNumber 102981
Author Sudheer, G.
Anand Kumar, S.
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  givenname: G.
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  email: g.sudheer@gvpcew.ac.in
  organization: Gayatri Vidya Parishad College of Engineering for Women, Visakhapatnam, India
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CitedBy_id crossref_primary_10_1016_j_ijadhadh_2024_103661
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crossref_primary_10_3390_app122412930
crossref_primary_10_3390_ma15165637
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Keywords Adhesive-adherend
Guided waves
Oxide layer
Dispersion
Spring-mass
Language English
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Snippet In adhesively bonded metallic structures, the oxide layer is a primary component of the micro-composite layer at the adhesive/adherend interface whose...
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StartPage 102981
SubjectTerms Adhesive bonding
Adhesive-adherend
Aluminum
Bonded joints
Dispersion
Dispersion curve analysis
Guided waves
Interlayers
Material properties
Oxide layer
Spring-mass
Thickness
Title Influence of the oxide layer on the quality of bonding in adhesively bonded metallic structures by ultrasonic guided waves
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