粘结剂和基体材料对可拉伸纳米复合应变传感器性能和可靠性的影响。

ty10086 提交于 周三, 08/25/2021 - 16:14
文章英文标题
Effects of Binder and Substrate Materials on the Performance and Reliability of Stretchable Nanocomposite Strain Sensors.
正文
在可拉伸应变传感器中,聚二甲基硅氧烷( PDMS )、Ecoflex和聚氨酯等高弹性弹性体常用于纳米复合材料和基体的粘结剂材料。但弹性体的黏弹性性质以及纳米填料与粘结剂之间的界面作用影响了传感器的重复性、响应性和迟滞行为等关键性能。本研究开发了一种由多壁碳纳米管和有机硅弹性体粘结剂组成的可拉伸纳米复合应变传感器。通过拉伸、弯曲和反复循环弯曲试验,系统地研究了粘结剂和基体材料对应变传感器重复性、响应、迟滞特性和长期耐久性的影响。测试了PDMS、Ecoflex和PDMS / Ecoflex混合物三种不同的粘结剂和基底材料。可拉伸应变传感器表现出优异的线性度和130 %以上的可拉伸性。因此,应提高用Ecoflex粘结剂制作的应变传感器的长期耐久性。采用Ecoflex粘结剂制作的应变传感器在1万次弯曲试验中电阻变化较大,在大弯曲角度下重复性误差较大。用PDMS粘结剂制作的应变传感器在小的弯曲角度下表现出重复性误差,响应延迟1 s。相反,用PDMS / Ecoflex粘结剂混合制备的应变传感器表现出优异的重复性和响应特性。PDMS材料表现出迟滞特性,因此,在PDMS基底上用PDMS粘结剂制备的应变传感器在第一个拉伸释放周期内表现出较大的迟滞特性。研究发现,应变传感器的迟滞行为主要取决于基体材料而不是粘结剂材料。由PDMS / Ecoflex混合制成的可伸展应变传感器具有良好的重复性、响应性、迟滞性和检测手指和腕部弯曲的能力。
文章内容(英文)
In stretchable strain sensors, highly elastic elastomers such as polydimethylsiloxane (PDMS), Ecoflex, and polyurethane are commonly used for binder materials of the nanocomposite and substrates. However, the viscoelastic nature of the elastomers and the interfacial action between nanofillers and binders influence the critical sensor performances, such as repeatability, response, and hysteresis behavior. In this study, we developed a stretchable nanocomposite strain sensor composed of multiwalled carbon nanotubes and a silicone elastomer binder. The effects of binder and substrate materials on the repeatability, response, hysteresis behavior, and long-term endurance of the strain sensors were systematically investigated using stretching, bending, and repeated cyclic bending tests. Three different binder and substrate materials including PDMS, Ecoflex, and a mixture of PDMS/Ecoflex were tested. The stretchable strain sensors showed an excellent linearity and stretchability of more than 130%. Therefore, the long-term endurance of the strain sensors fabricated with Ecoflex binder should be improved. The strain sensors fabricated with Ecoflex binder showed a relatively large variation in electrical resistance during 10,000-cycle bending tests and repeatability errors at large bending angles. The strain sensors fabricated with PDMS binder showed repeatability errors at small bending angles and a slight response delay of 1 second. On the contrary, the strain sensors fabricated with a mixture of PDMS/Ecoflex binder showed excellent repeatability and response characteristics. The PDMS material showed hysteresis behavior; therefore, the strain sensors fabricated with PDMS binder on PDMS substrate exhibited a large hysteresis behavior in the first stretch-release cycle. It was found that the hysteresis behavior of the strain sensors was mainly dependent on substrate materials than on binder materials. The stretchable strain sensors made of the mixture of PDMS/Ecoflex exhibited excellent repeatability, response, hysteresis behavior, and excellent capability in detecting finger and wrist bending.
来源出处
Journal|[J]Journal of Nanoscience and NanotechnologyVolume 21, Issue 5. 2021. PP 2969-2979
DOI
https://doi.org/10.1166/JNN.2021.19133

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