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Developing Fall-impact Protection Pad with 3D Mesh Curved Surface Structure using 3D Printing Technology

机译:使用3D打印技术开发带3D网眼曲面结构的抗冲击保护垫

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摘要

In this study, we present the development of fall-impact protection pads for elderly people using three-dimensional (3D) printing technology. To develop fall-impact protection clothing, it is important to maintain the functionality of the protection pad while ensuring that its effectiveness and appearance remain optimal in the process of inserting it. Therefore, this study explores the benefit of exploiting 3D scan data of the human body using 3D printing technology to develop a fall-impact protection pad that is highly suited to the human body shape. The purpose of this study was to present a 3D modeling process for creating curved protective pads comprising a hexagonal mesh with a spacer fabric structure and to verify the impact protection performance by printing curved pads. To this end, we set up a section that includes pads in the 3D human body scan data and extracted body surface information to be applied in the generation of the pad surface. The sheet-shaped hexagonal mesh structure was cut and separated according to the pad outline, and then deformed according to the curved surface of the human body. The pads were printed, and their protection performance was evaluated; a 79.2−81.8% reduction in impact force was observed compared to similar cases in which the pads were not used.
机译:在这项研究中,我们展示了使用三维(3D)印刷技术的老年人跌落保护垫的开发。为了开发抗冲击保护衣服,重要的是保持保护垫的功能,同时确保其在插入时的有效性和外观保持最佳。因此,本研究探讨了利用3D打印技术利用人体的3D扫描数据来开发高度适用于人体形状的抗冲击保护垫的益处。本研究的目的是呈现一种用于产生弯曲保护垫的3D建模过程,该弯曲保护垫包括具有间隔织物结构的六边形网,并通过印刷弯曲焊盘来验证冲击保护性能。为此,我们在3D人体扫描数据中设置包括垫的部分,并在焊盘表面的产生中提取体表信息。根据垫轮廓切割并分离片状六方网状物结构,然后根据人体的弯曲表面变形。打印垫,并评估其保护性能;与未使用垫的类似病例相比,观察到冲击力减少79.2-81.8%。

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