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首页> 外文期刊>International Journal Precision Engineering Manufacturing-Green Technology >Scalable Fabrication of Flexible Transparent Heaters Comprising Continuously Created Metallic Micromesh Patterns Incorporated with Biomimetic Anti-Reflection Layers
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Scalable Fabrication of Flexible Transparent Heaters Comprising Continuously Created Metallic Micromesh Patterns Incorporated with Biomimetic Anti-Reflection Layers

机译:包含仿生抗反射层的连续创建的金属微网图案的柔性透明加热器的可扩展制造

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摘要

We present the scalable fabrication of a novel transparent heater (TH) architecture by continuously creating metallic micromesh patterns on a flexible substrate via Photo Roll Lithography (PRL). The optimal TH structure is explored by systematically investigating the heating and transmittance characteristics depending on the metal material, thickness, and micromesh dimension. The transmittance is further enhanced by incorporating the biomimetic moth-eye anti-reflection layer (ARC) which effectively reduces the reflection along with diffiraction and scattering of incident light. The fabricated ARC-integrated TH exhibits an excellent transmittance with satisfactory heating up to 47.5(omicron)C at the applied current of 0.6 A, which demonstrates ten times more power-efficient than conventional macroscale wire defrosters used in most vehicles. Successful defrosting of both planar and curved large-area surfaces is visually demonstrated by attaching the 70 x 70 mm-sized THs fabricated on a glass or flexible polymer. This versatile, high throughput TH architecturing may be applicable to many other devices requiring flexibility, scalability, and power-efficient operation, and their commercially-feasible production.
机译:我们通过照相胶版印刷术(PRL)在柔性基板上连续创建金属微网图案,从而提出了新型透明加热器(TH)体系结构的可扩展制造方法。通过根据金属材料,厚度和微孔尺寸系统地研究加热和透射特性,探索出最佳的TH结构。通过结合仿生蛾眼抗反射层(ARC),可进一步提高透射率,该膜可有效减少反射以及入射光的衍射和散射。所制造的集成ARC的TH具有出色的透射率,在0.6 A的施加电流下加热至47.5(oC)时仍具有令人满意的加热效果,其功率效率是大多数车辆中使用的常规大型线除霜器的十倍。通过将70 x 70毫米大小的TH附着在玻璃或柔性聚合物上,可以直观地证明平面和曲面大面积表面都成功除霜。这种通用的高吞吐量TH架构可适用于许多其他需要灵活性,可扩展性和高能效操作的设备,以及其商业可行的产品。

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