Virdyawan Vani, Marendra Thoriq, Prakoso Bagas, Sumboja Afriyanti
Engineering Design and Production Research Group, Faculty of Mechanical and Aerospace Engineering, Institut Teknologi Bandung, Jl. Ganesa 10, Bandung, 40132, Indonesia.
Material Science and Engineering Research Group, Faculty of Mechanical and Aerospace Engineering, Institut Teknologi Bandung, Jl. Ganesa 10, Bandung, 40132, Indonesia.
Heliyon. 2024 Nov 28;10(23):e40791. doi: 10.1016/j.heliyon.2024.e40791. eCollection 2024 Dec 15.
The advancement of wearable devices and soft robots requires soft and stretchable sensors to detect their movements. This article proposes palm oil as an organic solvent for a stretchable piezoresistive strain sensor made from a composite consisting of elastomer (Ecoflex 00-30) filled with carbon black. The high content of palmitic acid in the palm oil increases the dispersity of carbon black in the composite, hence effectively improving the conductivity of the sensors. Furthermore, using palm oil as a natural plasticizer can lower the degree of crosslinking of the matrix, reducing the modulus elasticity but still producing a stretchable sensor with 500 % elongation at break. The presence of palm oil in the sensor also increases the gauge factor, showing a value of 2.43-4.75 and better repeatability during loading. These gauge factors are associated with two linear strain regions of the sensors (R > 0.99), which are 20-200 % and 0-20 % strain, respectively. The stretchable sensor also shows high durability that can withstand >1500 cycles at 60 % strain. The as-fabricated sensor can be deployed to detect the movement of the human body, such as for measuring a finger's joint angle and in soft robotics applications.
可穿戴设备和软体机器人的发展需要柔软且可拉伸的传感器来检测其运动。本文提出将棕榈油用作由填充有炭黑的弹性体(Ecoflex 00-30)组成的复合材料制成的可拉伸压阻式应变传感器的有机溶剂。棕榈油中高含量的棕榈酸增加了炭黑在复合材料中的分散性,从而有效地提高了传感器的导电性。此外,使用棕榈油作为天然增塑剂可以降低基体的交联度,降低弹性模量,但仍能生产出具有500%断裂伸长率的可拉伸传感器。传感器中棕榈油的存在还增加了应变片系数,其值为2.43-4.75,并且在加载过程中具有更好的重复性。这些应变片系数与传感器的两个线性应变区域(R>0.99)相关,分别为20%-200%应变和0%-20%应变。这种可拉伸传感器还具有高耐久性,在60%应变下可承受超过1500次循环。所制备的传感器可用于检测人体运动,例如测量手指关节角度以及在软体机器人应用中。