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Soft mechanical metamaterials with unusual swelling behavior and tunable stress-strain curves

机译:具有异常膨胀行为和可调应力-应变曲线的软机械超材料

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摘要

Soft adaptable materials that change their shapes, volumes, and properties in response to changes under ambient conditions have important applications in tissue engineering, soft robotics, biosensing, and flexible displays. Upon water absorption, most existing soft materials, such as hydrogels, show a positive volume change, corresponding to a positive swelling. By contrast, the negative swelling represents a relatively unusual phenomenon that does not exist in most natural materials. The development of material systems capable of large or anisotropic negative swelling remains a challenge. We combine analytic modeling, finite element analyses, and experiments to design a type of soft mechanical metamaterials that can achieve large effective negative swelling ratios and tunable stress-strain curves, with desired isotropic/anisotropic features. This material system exploits horseshoe-shaped composite microstructures of hydrogel and passive materials as the building blocks, which extend into a periodic network, following the lattice constructions. The building block structure leverages a sandwiched configuration to convert the hydraulic swelling deformations of hydrogel into bending deformations, thereby resulting in an effective shrinkage (up to around −47% linear strain) of the entire network. By introducing spatially heterogeneous designs, we demonstrated a range of unusual, anisotropic swelling responses, including those with expansion in one direction and, simultaneously, shrinkage along the perpendicular direction. The design approach, as validated by experiments, allows the determination of tailored microstructure geometries to yield desired length/area changes. These design concepts expand the capabilities of existing soft materials and hold promising potential for applications in a diverse range of areas.
机译:适应环境条件变化而改变形状,体积和特性的软适应材料在组织工程,软机器人,生物传感和柔性显示器中具有重要的应用。吸水后,大多数现有的柔软材料(例如水凝胶)显示出正的体积变化,对应于正的膨胀。相比之下,负膨胀代表了一种相对不寻常的现象,这种现象在大多数天然材料中都不存在。能够产生大的或各向异性的负膨胀的材料系统的开发仍然是一个挑战。我们结合分析建模,有限元分析和实验来设计一种软机械超材料,该材料可实现较大的有效负膨胀率和可调的应力-应变曲线,并具有所需的各向同性/各向异性特征。该材料系统利用水凝胶和无源材料的马蹄形复合微结构作为构建基块,并遵循晶格结构扩展成周期性网络。构件结构利用夹心结构将水凝胶的水力膨胀变形转换为弯曲变形,从而导致整个网络有效收缩(高达约-47%的线性应变)。通过引入空间异质设计,我们展示了一系列不同寻常的各向异性溶胀响应,包括在一个方向上扩展并且同时在垂直方向上收缩的响应。经实验验证的设计方法可以确定定制的微结构几何形状,以产生所需的长度/面积变化。这些设计理念扩展了现有软材料的功能,并在各种领域中具有广阔的应用前景。

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