2024 | Professional

MUSE Design Awards Gold Winner

Ultra-thin core pull-up pants

Entrant

MEGASOFT (CHINA) CO., LTD.

Category

Product Design - Baby, Kids & Children Products

Client's Name

-

Country / Region

China

About The Entry

Ultra-thin core pull-up pants are baby diapers with excellent absorption capacity, excellent flow guide design and excellent breathability. The designer used eco-friendly materials and industry-leading core technology to develop this brand-new diaper, which overcomes the shortcomings of traditional diapers that are airtight, easy to leak, and easy to droop after absorbing water, giving babies a light and comfortable wearing experience.

The ultra-thin core pull-up pants we have developed with great care adopt advanced ergonomic design to perfectly fit the curve of the baby's buttocks, wrap them gently, with no sense of restraint, giving babies the most comfortable and considerate care.

This diaper uses polymer centered design and 360-degree ultrasonic fusion technology, effectively improves the utilization of polymer and prevents polymer leakage, allowing the baby to always feel dry and comfortable, giving the baby the ultimate comfortable wearing experience.

Six layers of protection: Composed of two layers of skin-friendly non-woven fabrics on the upper and lower layers and four layers of high-efficiency absorbent core in the middle, the inner core of the diaper has ultra-high liquid absorption.

Breathability secret: The uniquely designed first glue layer cleverly fixes each absorbent core to create a tiny shunt to improve the absorption efficiency and diversion effect.

Body-fitting: The longitudinal length dimensions of the second and third absorbent cores are scientifically designed to increase the elasticity of the front and rear waist areas, making the diapers more suitable for the baby's body curves.

We adhere to the principle of not using wood pulp to protect forest resources, reduce the impact of logging on the environment, and create a better future for the ecological environment.

By optimizing the distribution of polymers, the amount of polymers used is reduced, and resources are effectively saved.

Credits

HEN HANHE
CHU YUNTING
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