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Soft-matter composites with electrically tunable elastic rigidity

机译:具有电可调弹性刚度的软性复合材料

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We use a phase-changing metal alloy to reversibly tune the elastic rigidity of an elastomer composite. The elastomer is embedded with a sheet of low-melting-point Field's metal and an electric Joule heater composed of a serpentine channel of liquid-phase gallium-indium-tin (Galinstan ?) alloy. At room temperature, the embedded Field's metal is solid and the composite remains elastically rigid. Joule heating causes the Field's metal to melt and allows the surrounding elastomer to freely stretch and bend. Using a tensile testing machine, we measure that the effective elastic modulus of the composite reversibly changes by four orders of magnitude when powered on and off. This dramatic change in rigidity is accurately predicted with a model for an elastic composite. Reversible rigidity control is also accomplished by replacing the Field's metal with shape memory polymer. In addition to demonstrating electrically tunable rigidity with an elastomer, we also introduce a new technique to rapidly produce soft-matter electronics and multifunctional materials in several minutes with laser-patterned adhesive film and masked deposition of liquid-phase metal alloy.
机译:我们使用相变金属合金可逆地调整弹性体复合材料的弹性刚度。弹性体中嵌入了一片低熔点Field的金属和一个电焦耳加热器,该加热器由液相的镓-铟-锡(Galinstan®)合金的蛇形通道组成。在室温下,嵌入场的金属是固体,复合材料保持弹性刚性。焦耳热会导致磁场的金属熔化,并使周围的弹性体自由拉伸和弯曲。使用拉伸试验机,我们可以测量在打开和关闭电源时复合材料的有效弹性模量可逆地变化四个数量级。使用弹性复合材料模型可以准确地预测出刚度的巨大变化。可逆的刚性控制也可以通过用形状记忆聚合物替代Field的金属来实现。除了展示弹性体的电可调刚度外,我们还引入了一种新技术,该技术可在几分钟内通过激光图案化的粘合膜和液相金属合金的掩膜沉积快速生产软性电子产品和多功能材料。

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