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A low-cost test rig for impact experiments on a dummy head

机译:用于假人头部冲击实验的低成本测试台

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Anthropomorphic test dummies are commonly used to evaluate the potential harm to humans due to dangerous scenarios, such as that due to car accidents. Furthermore, they have been used in sports to evaluate the efficacy of protective gears in mitigating harm due to impacts. Recently, they have been considered in industrial and collaborative robotics to assess risks due interactions between a human and a robot. In this article, we describe the development of a low-cost dummy head impact rig. The motivation behind this project is to quantify the potential harm to a child’s head due to impacts with a small robotic toy. Three severity indices can be estimated, namely, Head Acceleration Criterion (HIC), 3?ms criterion, and peak head acceleration. Furthermore, the artificial skin of the dummy head can be used to assess the potential for tissue injuries. 3D-printed parts were used to develop the head. A tri-axial accelerometer embedded inside the head was used to measure the changes in accelerations. The developed head was placed inside a dedicated experimental bench. A data acquisition card that is connected to a computer system was used to acquire the raw data and then store it. A script was used to postprocess the stored data for the three severity indices. A video camera recording in slow-motion was used to record the impacts. The calculation of the impact velocities was based on the analysis of the video recordings using an open-source software. The developed experimental setup was validated by producing comparable results to that of relevant previous studies.
机译:拟人化测试假人通常用于评估由于危险场景(例如车祸)对人类的潜在伤害。此外,它们已在运动中用于评估防护装备在减轻冲击造成的伤害方面的功效。最近,已经在工业和协作机器人技术中考虑使用它们来评估人与机器人之间的交互作用引起的风险。在本文中,我们描述了一种低成本的假人头冲击钻机的开发。该项目的目的是量化由于小型机器人玩具的撞击而对儿童头部造成的潜在伤害。可以估计三个严重性指标,即,头部加速度标准(HIC),3?ms标准和峰值头部加速度。此外,假人头部的人造皮肤可用于评估组织受伤的可能性。 3D打印的零件用于显影头部。嵌入头部的三轴加速度计用于测量加速度的变化。显影后的头部放置在专用的实验台内。连接到计算机系统的数据采集卡用于采集原始数据,然后进行存储。使用脚本对三个严重性指数进行后处理。使用慢动作录制的摄像机来记录冲击。冲击速度的计算是基于使用开源软件对视频记录进行的分析。通过产生与相关先前研究相当的结果来验证所开发的实验装置。

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