Nakamoto Takamichi, Ollila Sami, Kato Shingo, Li Haining, Qi Guiping
Tokyo Institute of Technology;
Tokyo Institute of Technology.
J Vis Exp. 2018 Nov 14(141). doi: 10.3791/58409.
Since olfaction is an important sense in human interfaces, we have developed an olfactory display using a surface acoustic wave (SAW) atomizer and micro-dispensers. In this olfactory display, the efficiency of atomization is important in order to avoid smell persistence problems often encountered in human olfactory interfaces. Thus, the SAW device is coated with amorphous Teflon film to change the substrate nature from hydrophilic to hydrophobic. It is also necessary to silanize the piezoelectric substrate surface prior to Teflon coating to enhance the adhesion of the film. A dip coating method was adopted to obtain uniform coating on the substrate. The high-speed solenoid valve was used as micro-dispenser to spout a liquid droplet to the SAW device surface since its accuracy and reproducibility were high. Then, the atomization became easier on the hydrophobic substrate. In this study, the amorphous Teflon coating for minimizing the remaining liquid on the substrate after atomization was studied. The goal of the protocol described here is to show the methods for coating a SAW device surface with amorphous Teflon film and generating the smell using the SAW atomizer and a micro-dispenser, followed by a sensory test.
由于嗅觉在人机交互中是一种重要的感官,我们开发了一种使用表面声波(SAW)雾化器和微型分配器的嗅觉显示器。在这种嗅觉显示器中,雾化效率对于避免在人类嗅觉界面中经常遇到的气味残留问题很重要。因此,SAW器件涂覆有无定形聚四氟乙烯薄膜,以将基底性质从亲水性改变为疏水性。在涂覆聚四氟乙烯之前,还需要对压电基底表面进行硅烷化处理,以增强薄膜的附着力。采用浸涂法在基底上获得均匀的涂层。高速电磁阀用作微型分配器,将液滴喷射到SAW器件表面,因为其精度和再现性很高。然后,在疏水基底上雾化变得更容易。在本研究中,研究了用于最小化雾化后基底上残留液体的无定形聚四氟乙烯涂层。此处所述方案的目的是展示用无定形聚四氟乙烯薄膜涂覆SAW器件表面并使用SAW雾化器和微型分配器产生气味的方法,随后进行感官测试。