通过测定杨氏模量来表征金属原材料的弹性特性,使用速度传感器编码器和称重传感器

Umi Pratiwi, W. T. Cahyanto, Sunardi
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引用次数: 0

摘要

金属材料的独特特性可以从杨氏模量的值来确定,杨氏模量表示材料在外力作用下变形的能力。本研究旨在确定三种金属线(铜、镍和钢)的杨氏模量值,以及使用自行设计的杨氏模量套件(配备称重传感器和速度传感器编码器)测量误差的百分比。杨氏模量的测量在直径不变的情况下进行了5次实验(所有金属的直径都是固定不变的),并与参考值进行了比较。结果表明,铜、镍、钢丝的杨氏模量分别为11.74 × 1010 N/m2、21.63 × 1010 N/m2和20.84 × 1010 N/m2。铜、镍和钢丝的杨氏模量的实测值与参考值的差异分别为6.7%、3.0%和4.18%。测量值与参考值之间的微小差异表明,测量方法接近参考值,可用于支持涉及金属材料杨氏模量值的其他测量
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Elastic Properties of Objects by Determining Young's Modulus for the Characterization of Metal Raw Materials Using a Speed Sensor Encoder and a Load Cell Sensor
The unique characteristic of a metal material can be determined from the value of Young's modulus which represents the ability of the material to deform in response to an external force given to the material. This study aims to determine the value of Young's modulus for three metal wires (copper, nickel, and steel) and the percentage of measurement errors using a self-designed Young's modulus kit equipped with a load cell sensor and speed sensor encoder. The measurement of Young's modulus was carried out in five experiments without any variation in diameter (the diameter was fixed and the same for all metals), and the results were compared with the reference values. The results showed that the values of Young's modulus for copper, nickel, and steel wires were 11.74 x 1010 N/m2, 21.63 x 1010 N/m2, and 20.84 x 1010 N/m2, respectively. The difference between the measured values and the reference values for Young's modulus for copper, nickel, and steel wires were 6.7%, 3.0%, and 4.18%, respectively. The small differences between the measured values and the reference values indicate that the measurement approach approximates the reference values and can be used to support other measurements involving Young's modulus values of a metal material
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