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首页> 外文期刊>The Journal of Experimental Biology >Fracture toughness of locust cuticle
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Fracture toughness of locust cuticle

机译:刺槐角质层的断裂韧性

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摘要

Insect cuticle is one of the most common biological materials, yet very little is known about its mechanical properties. Many parts of the insect exoskeleton, such as the jumping legs of locusts, have to withstand high and repeated loading without failure. This paper presents the first measurements of fracture toughness for insect cuticle using a standard engineering approach. Our results show that the fracture toughness of cuticle in locust hind legs is 4.12. MPam(1/2) and decreases with desiccation of the cuticle. Stiffness and strength of the tibia cuticle were measured using buckling and cantilever bending and increased with desiccation. A combination of the cuticle's high toughness with a relatively low stiffness of 3.05 GPa results in a work of fracture of 5.56 kJ m(-2), which is amongst the highest of any biological material, giving the insect leg an exceptional ability to tolerate defects such as cracks and damage. Interestingly, insect cuticle achieves these unique properties without using reinforcement by a mineral phase, which is often found in other biological composite materials. These findings thus might inspire the development of new biomimetic composite materials.
机译:昆虫表皮是最常见的生物材料之一,但对其机械性能了解甚少。昆虫外骨骼的许多部分(例如蝗虫的跳跃腿)必须承受高强度且反复的载荷而不会失效。本文介绍了使用标准工程方法对昆虫角质层的断裂韧性进行的首次测量。我们的结果表明,蝗虫后腿的角质层的断裂韧性为4.12。 MPam(1/2),并随着角质层的干燥而降低。使用屈曲和悬臂弯曲测量胫骨表皮的刚度和强度,并随着干燥而增加。角质层的高韧性与相对较低的3.05 GPa的刚度相结合,导致断裂功为5.56 kJ m(-2),是所有生物材料中最高的,使昆虫的腿具有出色的耐受缺陷的能力例如裂缝和损坏。有趣的是,昆虫表皮在不使用矿物相增强的情况下实现了这些独特的性能,而矿物相通常在其他生物复合材料中发现。因此,这些发现可能会激发新型仿生复合材料的开发。

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