基于低成本硬件和开源软件的拉伸试验装置控制系统

Matej Kranjec, Jernej Korinšek, M. Ambrož, R. Kunc
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引用次数: 4

摘要

本研究的目的是验证树莓派3b +是否可以作为一种低成本的设备来控制用于材料研究目的的拉伸测试设备。根据现有硬件拟定了一份要求清单,新的控制系统必须满足这些要求。为了连接所有必要的设备,构建了一个连接板,并获得了一些额外的硬件,使系统能够执行所有必要的任务。整个控制系统也被放在一个小的外壳中,使其便于携带。控制系统软件是使用Pigpio库用c++编写的。然后对开发的系统进行了测试,并将结果与市售的Instron 8802设备进行了比较。结果的比较表明,升级后的设备可以产生与市售设备相当的结果,并且足够准确,可用于软组织和其他材料表征的研究目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control System for a Tensile-Testing Device Using Low-Cost Hardware and Open-Source Software
The aim of this study is to verify whether a Raspberry Pi 3 B+ can be utilized as a low-cost device for controlling a tensile-testing device used for material research purposes. A list of requirements based on already-available hardware was drawn up, which the new control system had to fulfil. To connect all the necessary equipment, a connection board was constructed, and some additional hardware was acquired for the system to be able to perform all the necessary tasks. The whole controlling system was also put in a small enclosure to make it portable. The control-system software was written in C++ using the Pigpio library. The developed system was then tested, and the results were compared to a commercially available Instron 8802 device. A comparison of the results shows that the upgraded equipment can produce comparable results to commercially available devices and is sufficiently accurate to be applied for research purposes for the characterization of soft tissues and other materials.
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