首页> 外文OA文献 >3D Computer-Aided Design Reconstructions and 3D Multi-Material Polymer Replica Printings of the First “Iron Hand” of Franconian Knight Gottfried (Götz) von Berlichingen (1480–1562): An Overview
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3D Computer-Aided Design Reconstructions and 3D Multi-Material Polymer Replica Printings of the First “Iron Hand” of Franconian Knight Gottfried (Götz) von Berlichingen (1480–1562): An Overview

机译:3D计算机辅助设计重建和3D Franconian Knight Gottfried(Götz)von berlichingen的第一个“铁手”的多材料聚合物复制品打印(1480-1562):概述

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摘要

Knight Götz von Berlichingen (1480–1562) lost his right hand distal to the wrist due to a cannon ball splinter injury in 1504 in the Landshut War of Succession at the age of 24. Early on, Götz commissioned a gunsmith to build the first “Iron Hand,” in which the artificial thumb and two finger blocks could be moved in their basic joints by a spring mechanism and released by a push button. Some years later, probably around 1530, a second “Iron Hand” was built, in which the fingers could be moved passively in all joints. In this review, the 3D computer-aided design (CAD) reconstructions and 3D multi-material polymer replica printings of the first “Iron hand“, which were developed in the last few years at Offenburg University, are presented. Even by today’s standards, the first “Iron Hand”—as could be shown in the replicas—demonstrates sophisticated mechanics and well thought-out functionality and still offers inspiration and food for discussion when it comes to the question of an artificial prosthetic replacement for a hand. It is also outlined how some of the ideas of this mechanical passive prosthesis can be translated into a modern motorized active prosthetic hand by using simple, commercially available electronic components.
机译:骑士GötzVonBerlichingen(1480-1562)由于在24岁时1504年在1504年的andshut战争中伤害伤病失去了他的右手远端。早期,Götz委托了一个枪匠建造了第一款“铁手“其中人造拇指和两个指块可以通过弹簧机构在其基本接头中移动并通过按钮释放。几年后,可能大约1530年,建成了第二次“铁手”,其中手指可以被动地在所有关节中移动。在这篇综述中,在近年几年内,在近年堡大学的第一个“铁手”的3D计算机辅助设计(CAD)重建和3D多材料聚合物复制品打印。即使是今天的标准,也可以在复制品中显示第一个“铁手” - 展示复杂的机制和深思熟虑的功能,并且在涉及人工假肢更换的问题时仍然提供灵感和食物。手。还概述了这种机械无源假体的一些思想如何通过使用简单的商业上可获得的电子元件转换为现代电动的主动假肢手。

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    Andreas Otte;

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  • 年度 2020
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  • 正文语种 eng
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