Bubble growth in a confined heated polymer: the example of safety glass

Fuente: arXiv
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Autori principali: Arauz-Moreno, Carlos, Piroird, Keyvan, Lorenceau, Elise
Natura: Preprint
Pubblicazione: 2024
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author Arauz-Moreno, Carlos
Piroird, Keyvan
Lorenceau, Elise
author_facet Arauz-Moreno, Carlos
Piroird, Keyvan
Lorenceau, Elise
contents Laminated safety glass (LSG) is a composite assembly of glass and polyvinyl butyral (PVB), a viscoelastic polymer. LSG can be found in building facades, important landmarks around the world, and every major form of transportation. Yet, the assembly suffers from unwanted bubbles which are anathema to one of the most important features of glass: optical transparency. In here, we present an in-depth study of the reasons behind these bubbles, either during high-temperature quality control tests or normal glass operating conditions. We provide a physical model for bubble growth that deals with two gases, thermal effects on gas solubility and diffusivity, and a time-temperature dependent rheology. The model can be extended to n-component bubbles or other materials beyond PVB. By combining experiments and theory, we show that two gases are at play: air trapped in interfacial bubbles in the assembly during lamination and water initially dissolved in the polymer bulk. Both gases work in tandem to induce bubble growth in finished assemblies of LSG provided that (i) the original bubble nucleus has a critical size and (ii) the polymer relaxes (softens) sufficiently enough, especially at elevated temperatures. The latter constraints are relaxed in a condition we termed anomalous air oversaturation that may even trigger a catastrophic, yet beautiful ice flower instability.
format Preprint
id arxiv_https___arxiv_org_abs_2412_04617
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Bubble growth in a confined heated polymer: the example of safety glass
Arauz-Moreno, Carlos
Piroird, Keyvan
Lorenceau, Elise
Soft Condensed Matter
Laminated safety glass (LSG) is a composite assembly of glass and polyvinyl butyral (PVB), a viscoelastic polymer. LSG can be found in building facades, important landmarks around the world, and every major form of transportation. Yet, the assembly suffers from unwanted bubbles which are anathema to one of the most important features of glass: optical transparency. In here, we present an in-depth study of the reasons behind these bubbles, either during high-temperature quality control tests or normal glass operating conditions. We provide a physical model for bubble growth that deals with two gases, thermal effects on gas solubility and diffusivity, and a time-temperature dependent rheology. The model can be extended to n-component bubbles or other materials beyond PVB. By combining experiments and theory, we show that two gases are at play: air trapped in interfacial bubbles in the assembly during lamination and water initially dissolved in the polymer bulk. Both gases work in tandem to induce bubble growth in finished assemblies of LSG provided that (i) the original bubble nucleus has a critical size and (ii) the polymer relaxes (softens) sufficiently enough, especially at elevated temperatures. The latter constraints are relaxed in a condition we termed anomalous air oversaturation that may even trigger a catastrophic, yet beautiful ice flower instability.
title Bubble growth in a confined heated polymer: the example of safety glass
topic Soft Condensed Matter
url https://arxiv.org/abs/2412.04617