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Size effects on the in-plane mechanical behavior of hexagonal honeycombs

机译:尺寸对六角形蜂窝平面内力学行为的影响

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In-plane uniaxial compression tests were experimented on seven kinds of honeycomb specimens with different sizes (cell numbers) under the loading rate of 10 mm/min, in order to investigate the size effects on four important mechanical parameters (the curve modulus, initial collapse stress, densification strain, and plateau stress) of the honeycomb structure. The results show that the curve modulus of honeycombs decreases with decrease in specimen size, indicating that the curve modulus in in-plane direction is sensitive to size. In addition, the initial collapse stress in x _(2)-direction as well as energy absorption efficiency in x _(1)-direction is slightly sensitive to the specimen size. However, the other mechanical parameters of honeycomb show significant size independence. The weak boundary cells are used to explain size effects on the in-plane mechanical behavior of honeycomb. Consequently, the minimum specimen size of hexagonal honeycomb specimens for measuring the effective in-plane mechanical properties of a bulk honeycomb is determined according to these results.
机译:为了研究尺寸对四个重要力学参数(曲线模量,初始坍塌)的尺寸影响,在10 mm / min的加载速率下对七种不同尺寸(孔数)的蜂窝状样品进行了平面单轴压缩试验。蜂窝结构的应力,致密化应变和平稳应力)。结果表明,随着样品尺寸的减小,蜂窝的弯曲模量减小,这表明平面内的弯曲模量对尺寸敏感。另外,在x _(2)方向上的初始塌陷应力以及在x _(1)方向上的能量吸收效率对样品尺寸稍有敏感。但是,蜂窝的其他机械参数显示出明显的尺寸独立性。弱边界单元用于解释尺寸对蜂窝平面内力学行为的影响。因此,根据这些结果确定用于测量块状蜂窝的有效面内机械性能的六角形蜂窝样品的最小样品尺寸。

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