首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Structure and mechanical properties of pincers of lobster (Procambarus clarkii) and crab (Eriocheir Sinensis).
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Structure and mechanical properties of pincers of lobster (Procambarus clarkii) and crab (Eriocheir Sinensis).

机译:龙虾钳子(Procambarus Clarkii)和Crab(Eriocheir Sinensis)的结构和力学性能。

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摘要

The structure and mechanical properties of the pincer exoskeletons (cuticles) of lobster (Procambarus clarkii) and crab (Eriocheir Sinensis) were investigated, respectively. The microstructures and inorganic materials of the pincer exoskeletons were observed and determined using a scanning electron microscope and X-ray diffraction. The mechanical properties of the pincer exoskeletons were evaluated by nano-indentation tests and tensile tests under different conditions. The results showed that the inorganic materials in the lobster claw exoskeleton exhibited an amorphous structure, while those in the crab claw exoskeleton were crystallized as calcium carbonate with a calcite crystal structure and were stable at the temperature below 250 degrees C. The surfaces of the pincers were biologically unsmooth. Many concave valleys with setae near the tip and many convex domes far off the tip were observed on the surface of the lobster pincer, while many micro-spines were seen on the surface of crab pincer. The microstructures of the pincer exoskeleton exhibited highly mineralized chitin-protein fibers arranged in a twisted plywood structure. The surface hardness and elastic modulus of the crab claws were 0.33 GPa and 8.18 GPa, respectively, higher than those of the lobster claw (0.27 and 5.44 GPa). The transition in the mechanical properties and structure between the exocuticle and the endocuticle was discontinuity. The tensile strength of the crab pincer was two times higher than that of the lobster pincer, and the dry specimen was fractured more easily than the fresh specimen.
机译:分别研究了龙虾(Procambarus Clarkii)和螃蟹(Eriocheir Sinensis)的钳子外骨骼(结石)的结构和机械性能。使用扫描电子显微镜和X射线衍射观察和测定钳子外骨骼的微观结构和无机材料。通过在不同条件下通过纳米压痕试验和拉伸试验评估钳子外骨骼的机械性能。结果表明,龙虾爪外骨骼中的无机材料表现出无定形结构,而蟹爪外骨骼中的那些是用方解石晶体结构的碳酸钙结晶,并且在低于250℃的温度下稳定。夹具的表面是生物学上的不光滑。在龙虾钳的表面上观察到尖端附近的许多凹入叶片和尖端的许多凸圆形,而在蟹钳的表面上看到了许多微刺。钳子外骨骼的微观结构表现出以扭曲的胶合板结构布置的高度矿化的丁蛋白纤维。蟹爪的表面硬度和弹性模量分别为0.33GPa和8.18GPa,高于龙虾爪(0.27和5.44GPa)的GPA。在外科和内皮之间的机械性能和结构中的过渡是不连续的。蟹钳的拉伸强度比龙虾钳的拉伸强度高两倍,并且干燥的样本比新鲜标本更容易裂开。

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