HARNESSING NATURAL FORCES
EVOLUTION OF YARN TECHNOLOGY INSPIRED BY NATURE
Thermal-storing, Hollow Sorona
THERMAL
STORAGE HOLLOW
FIBER
THERMAL STORAGE HOLLOW FIBER
EVOLUTION OF SMART FIBERS: A REVOLUTION FROM MICROSCOPIC CURLING TO MACROSCOPIC WARMTH RETENTION
After high-temperature wet processing, the thermal storage hollow Sorona forms a curled structure due to significant shrinkage differences, significantly enhancing its elasticity. In terms of insulation technology, the principle of simulating the vacuum layer of a thermos can effectively block the human body heat that is conducted to the outside world. At the same time, by reducing the gaps between fabrics, suppressing air flow, and reducing heat convection losses. Specially far-infrared thermal storage materials can absorb and radiate wavelengths similar to human radiation. The far-infrared radiation forms a resonance effect, absorbs human energy and provides feedback, increases skin temperature, achieves efficient heat storage and insulation, and brings a dual enjoyment of technology and comfort to fabrics.
HEATSTORAGE
WARM
Far-infrared Emissivity
0.92
Far-infrared Irradiation Temperature Rise
2.1
Hollowness (%)
23.9
RELATED PRODUCTS
We hope to work together with global brands and supply chains towards a sustainable future through differentiated material innovation and pragmatic services.
ONE-STOP SERVICE