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Firmness evaluation of melon using its vibration characteristic and finite element analysis

机译:利用其振动特性和有限元分析评估甜瓜的硬度

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摘要

The “Huang gua” melons were measured for their physical properties including firmness and static elastic modulus. The vibrational characteristics of fruits and vegetables are governed by their elastic modulus (firmness), mass, and geometry. Therefore, it is possible to evaluate firmness of fruits and vegetables based on their vibrational characteristics. Analysis of the vibration responses of a fruit is suggested for measuring elastic properties (Firmness) non-destructively. The impulse response method is often used to measure firmness of fruits. The fruit was excited using three types of balls (wooden, steel and rubber) and the vibration is detected by an accelerometer. The Instron device was used to measure the static elastic modulus of the inner, middle and outer portions of melon flesh. Finite element (FE) technique was used to determine the optimum excitation location of the chosen measurement sensor and to analyze the mode shape fruits. Four types of mode shapes (torsional or flexural mode shape, first-type, second-type spherical mode and breathing mode shape) were found. Finite element simulation results agreed well with experimental results. Correlation between the firmness and resonant frequency (r 2=0.91) and between the resonant frequency and stiffness factor (r 2=0.74) existed. The optimum location and suitable direction for excitation and response measurement on the fruit were suggested.
机译:测量“黄瓜”瓜的物理性质,包括硬度和静态弹性模量。水果和蔬菜的振动特性取决于其弹性模量(硬度),质量和几何形状。因此,可以基于它们的振动特性来评估水果和蔬菜的硬度。建议对水果的振动响应进行分析,以无损地测量弹性(硬度)。脉冲响应方法通常用于测量水果的硬度。水果使用三种类型的球(木质,钢和橡胶)激发,并通过加速度计检测振动。使用Instron装置测量瓜果肉内部,中间和外部的静态弹性模量。有限元(FE)技术用于确定所选测量传感器的最佳激励位置,并分析模态水果。找到了四种类型的模式形状(扭转或弯曲模式形状,第一类型,第二类型的球形模式和呼吸模式形状)。有限元模拟结果与实验结果吻合良好。存在硬度和共振频率之间的相关性(r 2 = 0.91)以及共振频率和刚度因子之间的相关性(r 2 = 0.74)。提出了激发和响应测量的最佳位置和方向。

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