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A Material Combination Concept to Realize 4D Printed Products with Newly Emerging Property/Functionality

机译:一种材料组合概念可实现具有新出现的特性/功能的4D打印产品

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摘要

4D printing is a newly emerging technique that shows the capability of additively manufacturing structures whose shape, property, or functionality can controllably vary with time under external stimuli. However, most of the existing 4D printed products only focus on the variation of physical geometries, regardless of controllable changes of their properties, as well as practical functionality. Here, a material combination concept is proposed to construct 4D printed devices whose property and functionality can controllably vary. The 4D printed devices consist of conductive and magnetic parts, enabling the integrated devices to show a piezoelectric property even neither part is piezoelectric individually. Consequently, the functionality of the devices is endowed to transfer mechanical to electrical energy based on the electromagnetic introduction principle. The working mechanism of 4D printed devices is explained by a numerical simulation method using Comsol software, facilitating further optimization of their properties by regulating diverse parameters. Due to the self‐powered, quick‐responding, and sensitive properties, the 4D printed magnetoelectric device could work as pressure sensors to warn illegal invasion. This work opens a new manufacturing method of flexible magnetoelectric devices and provides a new material combination concept for the property‐changed and functionality‐changed 4D printing.
机译:4D打印是一种新兴技术,显示出在外部刺激下可加性制造其形状,特性或功能可以随时间可控变化的结构的能力。但是,大多数现有的4D打印产品都只关注物理几何形状的变化,而不管其属性以及实用功能的可控变化。在这里,提出了一种材料组合概念来构造其属性和功能可以控制地变化的4D打印设备。 4D打印设备由导电和磁性部件组成,即使两个部件都不是压电部件,集成设备也可以显示压电特性。因此,基于电磁引入原理,设备的功能被赋予将机械能转换为电能的能力。通过使用Comsol软件的数值模拟方法来解释4D打印设备的工作机制,通过调节各种参数来促进其性能的进一步优化。由于具有自供电,快速响应和灵敏的特性,因此4D打印的磁电设备可以用作压力传感器来警告非法入侵。这项工作开启了柔性磁电器件的新制造方法,并为属性更改和功能更改的4D打印提供了新的材料组合概念。

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