3D打印技术在海洋学中的应用

Javeed Shaikh Mohammed
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引用次数: 86

摘要

3D打印机使研究人员能够以低成本快速生产零件和概念模型,并允许在舒适的办公桌上快速制作许多设计的原型。3D打印技术已被广泛应用于机器人、汽车零部件、火器、医药、航天等领域。由于3D打印技术的成本降低和功能增强,正在为海洋学研究创造前所未有的机会。一些例子包括3D打印组件被用于自主水下(或水面)车辆;用于研究生物力学、流体力学和运动的海洋生物3D打印复制品;3D打印珊瑚礁复制品被用来修复受损的珊瑚礁。据笔者所知,目前还没有审查涵盖不同的3D打印技术在海洋学研究中的应用。因此,本文综述了不同的3D打印技术,这些技术已被用于与海洋学相关的基础研究或实际应用。本综述涵盖的各种3D打印在海洋学中的应用可分为以下子主题:生态监测;样品采集、流体力学、生物力学等;运动、跟踪&;表面研究,有形珊瑚道具&;珊瑚礁修复。本综述中提到的3D打印技术的详细概述已经提出,并分为以下四个一般主题:材料挤出,光聚合,粉末床融合和建筑打印。还讨论了塑料对海洋的广泛影响以及3D打印材料对海洋生物的具体影响。预计该综述将进一步向海洋学家推广3D打印技术,以更好地了解和恢复脆弱的海洋生态系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Applications of 3D printing technologies in oceanography

Applications of 3D printing technologies in oceanography

3D printers allow researchers to produce parts and concept models rapidly at low-cost and allow rapid prototyping of many designs from the comfort of their desk. 3D printing technologies have been explored for a wide range of applications including robotics, automobile components, firearms, medicine, space, etc. Owing to lower costs and increased capabilities of 3D printing technologies, unprecedented opportunities in the world of oceanography research are being created. Some examples include 3D printed components being employed in autonomous underwater (or surface) vehicles; 3D printed replicas of marine organisms being used to study biomechanics, hydrodynamics, and locomotion; and 3D printed coral reef replicas being used to restore damaged coral reefs. To the author’s knowledge, currently there is no review covering the different 3D printing technologies applied in oceanography studies. Therefore, this review presents a summary of the different 3D printing technologies that have been used in fundamental studies or real-life applications related to oceanography. The diverse range of 3D printing applications in oceanography covered in this review has been categorized under the following sub-topics: Ecological Monitoring & Sample Collection, Hydrodynamics, Biomechanics & Locomotion, Tracking & Surface Studies, and Tangible Coral Props & Coral Reef Restoration. A detailed overview of the 3D printing technologies referred to within this review has been presented, and categorized under the following four general topics: Material Extrusion, Photopolymerization, Powder Bed Fusion, and Construction Printing. The broad impact of plastics on oceans and the specific impact of 3D printing materials on ocean life are also discussed. It is anticipated that this review will further promote the 3D printing technologies to oceanographers for a better understanding and restoration of fragile marine ecosystems.

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