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A piezoresistive normal and shear force sensor using liquid metal alloy as gauge material

机译:使用液态金属合金作为量规材料的压阻法向和剪切力传感器

摘要

We present a novel normal and shear force sensor by using liquid metal alloy (Ga-In-Sn) as piezoresistive gauge material encapsulated in a polydimethylsiloxane (PDMS) substrate. By using liquid metal alloy as gauge material, it can detect large forces without breaking the sensor wires. Since the liquid-metal piezoresistors deform with the elastomeric substrate, shear and normal forces can be detected with resistance changes of the piezoresistors. Each force sensor comprises a pair of symmetric piezoresistors, which is screen-printed on the cavity of PDMS substrate with tilt angle around 30° to be sensitive to both normal and shear forces. Normal force will compress both piezoresistors as common mode while shear force will shorten one piezoresistor but elongate the other as differential mode. The testing results demonstrate the sensitivity of the force sensor in both normal and shear directions. The hysteresis of the force sensor was also measured.
机译:我们通过使用液态金属合金(Ga-In-Sn)作为封装在聚二甲基硅氧烷(PDMS)基板中的压阻规材料,提出了一种新颖的法向和剪切力传感器。通过使用液态金属合金作为量规材料,它可以检测到很大的力而不会折断传感器导线。由于液态金属压阻器随弹性体基板变形,因此可通过压阻器的电阻变化检测剪切力和法向力。每个力传感器均包括一对对称的压敏电阻,该对称的压敏电阻丝网印刷在PDMS基板的腔体上,倾斜角度约为30°,从而对法向力和剪切力均敏感。法向力将压缩两个压敏电阻作为共模,而剪切力将缩短一个压敏电阻,但延长另一个作为差模。测试结果证明了力传感器在法向和剪切方向上的灵敏度。还测量了力传感器的磁滞。

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