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首页> 外文期刊>Journal of Bionics Engineering >Factors impacting nanoindentation testing results of the cuticle of dung beetle Copris ochus Motschulsky
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Factors impacting nanoindentation testing results of the cuticle of dung beetle Copris ochus Motschulsky

机译:粪甲虫Copris ochus Motschulsky表皮纳米压痕测试结果的影响因素

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The cuticle of dung beetle is a layered composite material in micro- or nano-scale. Dung beetle can fly, walk and dig. It can shovel and compact dung of mammals into balls. It use foreleg to walk, midleg and hindleg to hold and impel dung ball. Its two foreleges as digging legs are developed. The factors impacting the nanoindentation testing results of the femur cuticle of forelegs of dung beetle Copris ochus Motschulsky were examined. The nanomechanical test instrument used for the tests was Hysitron nanomechanical system. The results shown that the holding time and loading time are important factors impacting the accuracy of such indentation properties as reduced modulus (E_r) and the harness (H) of the femur cuticle of the forelegs of dung beetle Copris ochus Motschulsky in nanoscale. There exists a threshold holding time of 20 s for the reduced modulus of the femur cuticle. The tests of nanoindentation creep property and the regression analysis of relationship between the depth increment at the maximum load and the time further confirmed the correction of the above threshold holding time. There exist visco-elastic-plastic behaviour and creep phenomenon in the femur cuticle during indenting. Its creep property during the holding procedure at maximum load can be regressed by a general logarithmic equation. The equation fitted by the testing data is Δh = 54.834 52 ln(0.007 23t + 1.004 86), where, Δh is the depth increment at the maximum load and t is the time.
机译:甲虫的表皮是微米或纳米级的层状复合材料。粪甲虫会飞,走和挖。它可以将哺乳动物的粪便铲成球状。它使用前腿走路,中腿和后腿握住并推动粪便球。随着挖掘腿的发展,它的两个前臂。研究了影响粪便甲虫Copris ochus Motschulsky前腿股骨表皮纳米压痕测试结果的因素。用于测试的纳米机械测试仪器是Hysitron纳米机械系统。结果表明,保持时间和加载时间是影响压痕特性准确性的重要因素,如纳米级粪甲虫Copris ochus Motschulsky的前肢的股骨表皮的模量(E_r)降低和线束(H)降低。股骨表皮模量降低的阈值保持时间为20 s。纳米压痕蠕变性能的测试以及最大载荷下的深度增量与时间之间关系的回归分析进一步证实了上述阈值保持时间的校正。股骨表皮在压入过程中存在粘弹塑性行为和蠕变现象。在最大载荷保持过程中的蠕变特性可以通过一般对数方程回归。测试数据拟合的公式为Δh= 54.834 52 ln(0.007 23t + 1.004 86),其中Δh是最大载荷下的深度增量,t是时间。

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