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In Italy, fabric performance is a corollary to an active life.
Enhanced fabric performance is fundamental to reduce the energy consumption in buildings.
In order to improve fabric performance the focus is more on the material features of fabrics rather than the pattern.
The results from the study show disparities in the fabric performance reflecting on the overall consumption of energy.
The energy absorbed during out-of-plane pull-out is quantified, and yields insights into fabric performance.
This indicates that the addition of STF to the fabric have enhanced the fabric performance and can be used in liquid body armor applications.
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In this work, the effect of these properties on fabric ballistic performance is parametrically studied.
The traditional quality control on fabric's performance is undertaken by repeated measurement and testing which is very time-consuming and has great expense.
A global and a local method are applied to monitor the effect of this angle on the fabric's performance and deformation mechanism.
Ballistic test results showed when Dyneema UD laminate was placed on the striking face before Twaron fabric, ballistic performance including energy absorption and Backface signature (BFS) exhibits obvious degradation.
When making fabric for performance or industrial applications ― like snowboarding jackets or window shades ― the company just uses recycled polyester.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com