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Design of Wavy Ag Microwire Array for Mechanically Stable, Multimodal Vibrational Haptic Interface

机译:机械稳定,多峰振动触觉界面的波浪银微线阵列设计

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摘要

A vibrotactile interface is an actuator device to convey haptic information intuitively from electronics to users. For the next-generation of user-friendly interface applications, the vibrotactile actuator is required to be vibration intensity/frequency controllable, mechanically stable, transparent, and have large scalability. Previously, although these requirements are satisfied via several approaches using a random network film of Ag wires or a mixture with conductive polymers, the random-network-based materials only have limited control on material density and uniformity, which in turn hinders precise control over vibration intensity and device transparency. Here, a new approach to assemble large-scale Ag microwire arrays is demonstrated by involving an evaporative assembly method and is presented to overcome the current limitations. In particular, the 1D wavy structure derived from fractal designs promotes vibration intensity and cycling due to greater areal coverage and improved mechanical stability. Furthermore, by taking advantage of the precisely aligned microwires array, tunable multimode vibration frequencies are obtained by generating two different voltage frequencies. The large-scale wavy Ag microwire array with precise spatial controllability will be directly adaptable as a user-friendly interface in electronic applications like wearable devices, computer interfaces, and flexible mobile phones.
机译:触觉接口是一种致动器设备,可将触觉信息从电子设备直观地传达给用户。对于下一代用户友好的界面应用程序,要求触觉致动器必须是振动强度/频率可控的,机械稳定的,透明的并且具有较大的可扩展性。以前,尽管通过使用银线的无规网络薄膜或与导电聚合物的混合物的几种方法可以满足这些要求,但基于无规网络的材料对材料密度和均匀性的控制有限,从而阻碍了对振动的精确控制。强度和设备透明度。在此,通过涉及蒸发组装方法展示了一种组装大规模Ag微丝阵列的新方法,并提出了克服当前限制的新方法。尤其是,源自分形设计的1D波浪结构由于更大的面积覆盖范围和改进的机械稳定性而促进了振动强度和循环。此外,通过利用精确对准的微线阵列,可通过生成两个不同的电压频率来获得可调的多模振动频率。具有精确的空间可控性的大型波浪状Ag微线阵列将直接适合作为可穿戴设备,计算机接口和柔性手机等电子应用中的用户友好界面。

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