Development of Data Acquisition System on an Arduino-Based Tensile Test Machine for Composite Materials

Dede Lia Zariatin, Yani Kurniawan, N.A Reza Afika
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Abstract

A tensile testing machine with a lower load capacity is needed to identify the mechanical properties of composite materials. Tensile testing machines for composite materials are available in the market but at high prices. Previously, using a pneumatic system, a tensile testing machine for composite materials with a maximum load of 2000N was developed. However, this tensile test machine still needs improvement because the display of eventuating forces is only in numbers, not yet including a test graph. Therefore, this study developed a prototype data acquisition system for a tensile test machine to record the test results in more detail, both numbers and graphs. This data acquisition system uses the Arduino Uno Microcontroller, which processes data from the load cell through the HX711 module intermediary. A tensile test was carried out using a bamboo fiber composite material to validate the results of testing the prototype of this data acquisition system. Furthermore, the test results data are compared with the results on the indicators of the existing tensile test machine. The test was carried out nine times with an average tensile force of 1.66 N/mm2, while the average tensile force on the tool indicator was 2.02 N/mm2. There is a difference in the average test results equal to 12%. This difference is a systematic error because nine experiments have shown the same trend, with standard error and standard deviation of 0.3368 and 0.1123, respectively. The systematic error is compensated through calibration between the load cell of the tensile test machine and a series of data acquisition systems based on Arduino Uno.
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基于arduino的复合材料拉伸试验机数据采集系统的开发
要鉴定复合材料的力学性能,需要较低载荷能力的拉伸试验机。市场上有复合材料拉伸试验机,但价格较高。此前,采用气动系统研制了复合材料拉力试验机,最大载荷为2000N。但是,这台拉力试验机还需要改进,因为最终力的显示只是数字,还没有测试图。因此,本研究为拉力试验机开发了一个原型数据采集系统,以更详细地记录试验结果,包括数字和图形。本数据采集系统采用Arduino Uno微控制器,通过HX711模块中间处理来自称重传感器的数据。利用竹纤维复合材料进行了拉伸试验,验证了该数据采集系统样机的测试结果。并将试验结果数据与现有拉力试验机各项指标上的结果进行了比较。试验共进行了9次,平均拉伸力为1.66 N/mm2,工具指示器上的平均拉伸力为2.02 N/mm2。平均测试结果有12%的差异。这一差异属于系统误差,因为有9个实验显示了相同的趋势,标准误差和标准差分别为0.3368和0.1123。通过拉力试验机的测压元件与一系列基于Arduino Uno的数据采集系统之间的校准来补偿系统误差。
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