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Via a batch process in an autoclave, the foam processing of neat polylactide (PLA) and two different types of PLA-based nanocomposites (PLACNs) has been conducted using supercritical carbon dioxide (CO2) as a foaming agent.
Foam processing research focuses on developing new optimized processes and material systems to achieve small mean bubble size and narrow size distribution.
Nucleation and bubble growth are key steps in polymer foam processing.
We used an innovative visualization mold to investigate the effect of foam processing parameters on bubble nucleation and growth.
In this paper, a numerical study is carried out to comprehend growth and movement of spherical bubble during foam processing.
The closed-cell aluminum foam processing by liquid melt method using titanium hydride (TiH2) decomposition method is studied for customizing the process variables for explicit requirements.
Similar(49)
The understanding of the rheology and crystallisation under processing conditions like high pressure and gas-loading is crucial in foam-processing.
The polymer foam-processing method and unique channeled architecture allowed for controlled introduction of neurotrophic factors into the conduit.
A simple numerical model is presented for simulation of the redistribution of liquid within a metallic foam during processing.
This chapter is designed to describe Polyurethane (PU) foams, their processing and microstructure.
This chapter is designed to illustrate bead foam microstructure and processing.
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