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A cost-effective voice coil motor-based portable micro-indentation device for in situ testing

机译:一种具有成本效益的语音线圈电机的便携式微压缩装置,用于原位测试

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To evaluate the mechanical properties of structures in service, a portable micro-indentation device was developed and built. The basic design principle of the indentation device, i.e. measurement of the indentation depth and the indentation force with sufficient accuracy, was discussed. To avoid using load cell to decrease the machine compliance, a new method that using the current through voice coil motor to calculate the indentation force was proposed. After analyzing the equivalent mechanical model of the developed device, an eddy current displacement sensor was installed on the device to improve the measurement accuracy of indentation depth. Indentation tests were performed on polymethylmethacry-late (PMMA) and unplasticized polyvinyl chloride (UPVC) with the developed device and the commercial indentation device ZHU2.5 to demonstrate the validity and accuracy of the developed micro-indentation device. (C) 2020 Elsevier Ltd. All rights reserved.
机译:为了评估施工中结构的机械性能,开发并构建了便携式微压缩装置。 探讨了压痕装置的基本设计原理,即缩进深度测量,具有足够精度的压痕深度和压痕力。 为避免使用负载电池来降低机器依从性,提出了一种使用通过音圈电机计算压痕力的新方法。 在分析开发装置的等效机械模型之后,在设备上安装了涡流位移传感器,以提高压痕深度的测量精度。 用发达装置和商业压痕装置Zhu2.5对聚甲基丙烯酸溶解的 - 晚(PMMA)和未加塑化的聚氯乙烯(UPVC)进行压痕试验,以证明所发育的微压痕装置的有效性和准确性。 (c)2020 elestvier有限公司保留所有权利。

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