School of Mechanical Engineering, Suzhou University of Science and Technology, Suzhou, 215009, China.
Small. 2024 Nov;20(44):e2404137. doi: 10.1002/smll.202404137. Epub 2024 Jul 11.
Developing Janus fabrics with excellent one-way sweat transport capacity is an attractive way for providing comfort sensation and protecting the health during exercise. In this work, a 3D wetting gradient Janus fabric (3DWGJF) is first proposed to address the issue of excessive sweat accumulation in women's breasts, followed by integration with a sponge pad to form a 3D wetting gradient Janus sports bra (3DWGJSB). The 3D wetting gradient enables the prepared fabric to control the horizontal migration of sweat in one-way mode (x/y directions) and then unidirectionally penetrate downward (z direction), finally keeping the water content on the inner side of 3DWGJF (skin side) at ≈0%. In addition, the prepared 3DWGJF has good water vapor transmittance rate (WVTR: 0.0409 g cm h) and an excellent water evaporation rate (0.4704 g h). Due to the high adhesion of transfer prints to the fabrics and their excellent mechanical properties, the 3DWGJF is remarkably durable and capable of withstanding over 500 laundering cycles and 400 abrasion cycles. This work may inspire the design and fabrication of next-generation moisture management fabrics with an effective sweat-removal function for women's health.
开发具有优异单向排汗能力的 Janus 织物是提供运动时舒适感和保护健康的一种有吸引力的方法。在这项工作中,首次提出了一种 3D 润湿梯度 Janus 织物(3DWGJF),以解决女性胸部过度出汗的问题,然后与海绵垫集成形成 3D 润湿梯度 Janus 运动文胸(3DWGJSB)。3D 润湿梯度使制备的织物能够以单向模式(x/y 方向)控制汗水的水平迁移,然后单向向下渗透(z 方向),最终使 3DWGJF 的内侧(皮肤侧)的含水量保持在 ≈0%。此外,所制备的 3DWGJF 具有良好的水蒸气透过率(WVTR:0.0409 g cm h)和出色的水蒸发率(0.4704 g h)。由于转移印花对织物的高附着力和优异的机械性能,3DWGJF 非常耐用,能够承受超过 500 次洗涤循环和 400 次磨损循环。这项工作可能会激发具有有效排汗功能的下一代女性健康用吸湿排汗织物的设计和制造。