Lee Eun-Joo, Kim Jun-Young, Kim Young-Bin, Kim Sun-Kyung
Department of Applied Physics, Kyung Hee University, Gyeonggi-do, 17104, Republic of Korea.
Nat Commun. 2024 May 28;15(1):4516. doi: 10.1038/s41467-024-49001-w.
Maintaining the surface transparency of protective covers using transparent heaters in extreme weather is imperative for enhancing safety in autonomous driving. However, achieving both high transmittance and low sheet resistance, two key performance indicators for transparent heaters, is inherently challenging. Here, inspired by metamaterial design, we report microwave-transparent, low-sheet-resistance heaters for automotive radars. Ultrathin (approximately one ten-thousandth of the wavelength), electrically connected metamaterials on a millimetre-thick dielectric cover provide near-unity transmission at specific frequencies within the W band (75-110 GHz), despite their metal filling ratio exceeding 70 %. These metamaterials yield the desired phase delay to adjust Fabry-Perot resonance at each target frequency. Fabricated microwave-transparent heaters exhibit exceptionally low sheet resistance (0.41 ohm/sq), thereby heating the dielectric cover above 180 °C at a nominal bias of 3 V. Defrosting tests demonstrate their thermal capability to swiftly remove thin ice layers in sub-zero temperatures.
在极端天气下,使用透明加热器保持保护罩的表面透明度对于提高自动驾驶的安全性至关重要。然而,要实现透明加热器的两个关键性能指标——高透光率和低方阻,本质上具有挑战性。在此,受超材料设计的启发,我们报道了用于汽车雷达的微波透明、低方阻加热器。毫米厚的介电罩上的超薄(约为波长的万分之一)、电连接的超材料在W波段(75 - 110 GHz)的特定频率下提供接近单位的传输率,尽管其金属填充率超过70%。这些超材料产生所需的相位延迟,以在每个目标频率下调整法布里 - 珀罗共振。制造的微波透明加热器表现出极低的方阻(0.41 欧姆/平方),从而在3 V的标称偏压下将介电罩加热到180°C以上。除霜测试证明了它们在零下温度下迅速去除薄冰层的热能力。