Cold atmospheric pressure plasma treatment to enhance adhesive bonding

Cold atmospheric pressure plasma treatment to enhance adhesive bonding 

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Main Author: Tianmiao Li
Format: Default Thesis
Published: 2023
Subjects:
Online Access:https://dx.doi.org/10.26174/thesis.lboro.21996188.v1
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id rr-article-21996188
record_format Figshare
spelling rr-article-219961882023-02-03T13:32:18Z Cold atmospheric pressure plasma treatment to enhance adhesive bonding Tianmiao Li (4616662) Materials engineering not elsewhere classified Surface Treatments Cold Atmospheric Pressure Plasma Aluminium Alloy Polyethylene Composites <p>Cold atmospheric pressure plasma treatment to enhance adhesive bonding </p> 2023-02-03T13:32:18Z Text Thesis 10.26174/thesis.lboro.21996188.v1 https://figshare.com/articles/thesis/Cold_atmospheric_pressure_plasma_treatment_to_enhance_adhesive_bonding/21996188 CC BY-NC-ND 4.0
institution Loughborough University
collection Figshare
topic Materials engineering not elsewhere classified
Surface Treatments
Cold Atmospheric Pressure Plasma
Aluminium Alloy
Polyethylene Composites
spellingShingle Materials engineering not elsewhere classified
Surface Treatments
Cold Atmospheric Pressure Plasma
Aluminium Alloy
Polyethylene Composites
Tianmiao Li
Cold atmospheric pressure plasma treatment to enhance adhesive bonding
description Cold atmospheric pressure plasma treatment to enhance adhesive bonding 
format Default
Thesis
author Tianmiao Li
author_facet Tianmiao Li
author_sort Tianmiao Li (4616662)
title Cold atmospheric pressure plasma treatment to enhance adhesive bonding
title_short Cold atmospheric pressure plasma treatment to enhance adhesive bonding
title_full Cold atmospheric pressure plasma treatment to enhance adhesive bonding
title_fullStr Cold atmospheric pressure plasma treatment to enhance adhesive bonding
title_full_unstemmed Cold atmospheric pressure plasma treatment to enhance adhesive bonding
title_sort cold atmospheric pressure plasma treatment to enhance adhesive bonding
publishDate 2023
url https://dx.doi.org/10.26174/thesis.lboro.21996188.v1
_version_ 1797457024672333824