Barbakadze N, Enders S, Gorb S, Arzt E
Evolutionary Biomaterials Group, Department Arzt, Max-Planck-Institute for Metals Research, Heisenbergstr. 3, 70569, Stuttgart, Germany.
J Exp Biol. 2006 Feb;209(Pt 4):722-30. doi: 10.1242/jeb.02065.
Insect exoskeleton (cuticle) has a broad range of mechanical properties depending on the function of a particular structure of the skeleton. Structure and mechanical properties of the specialised cuticle of insect joints remain largely unknown to date. We used scanning (SEM) and transmission electron microscopy (TEM) to obtain information about the material structure of the gula plate, the head part of the head-to-neck articulation system in the beetle Pachnoda marginata. The surface of this cuticle appears rather smooth in SEM. The fibers of the exocuticle are partly oriented almost perpendicular to the surface, which is rather unusual for arthropod cuticle. Nanoindentation experiments were performed to determine the local mechanical properties (hardness and elastic modulus) of the gula material. To understand the effect of desiccation and the influence of an outer wax layer on the mechanical behavior of the material, the samples were tested in fresh, dry and chemically treated (lipid extraction in organic solvents) conditions. Nanoindentation results were found to be strongly influenced by desiccation but only slightly by lipid extraction. Decreasing water content ( approximately 15-20% of the cuticle mass) led to an increase in hardness (from 0.1 to 0.49 GPa) and elastic modulus (from 1.5 to 7.5 GPa). The lipid extraction caused a slight further hardening (to 0.52 GPa) as well as stiffening (to 7.7 GPa) of the material. The results are discussed in relation to the mechanical function of the gula plate.
昆虫外骨骼(角质层)具有广泛的机械性能,这取决于骨骼特定结构的功能。迄今为止,昆虫关节特殊角质层的结构和机械性能在很大程度上仍不为人所知。我们使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)来获取有关食蜗步行虫(Pachnoda marginata)头颈部关节系统头部部分——颈板的材料结构信息。在扫描电子显微镜下,这种角质层的表面看起来相当光滑。外表皮的纤维部分几乎垂直于表面排列,这对于节肢动物角质层来说相当不寻常。进行纳米压痕实验以确定颈板材料的局部机械性能(硬度和弹性模量)。为了了解干燥的影响以及外部蜡层对材料力学行为的影响,在新鲜、干燥和化学处理(在有机溶剂中进行脂质提取)条件下对样品进行了测试。发现纳米压痕结果受干燥影响很大,但受脂质提取的影响较小。水分含量降低(约为角质层质量的15 - 20%)导致硬度增加(从0.1 GPa增加到0.49 GPa)和弹性模量增加(从1.5 GPa增加到7.5 GPa)。脂质提取导致材料进一步轻微硬化(至0.52 GPa)以及变硬(至7.7 GPa)。结合颈板的机械功能对结果进行了讨论。