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Experimental investigations on microstructures and mechanical properties of white yak horns sheath

机译:白牛角鞘组织和力学性能的实验研究

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The horns of male bovines often show excellent mechanical properties due to the hierarchical microstructures. In this paper, the mechanical properties of white yak horn sheaths were studied by tensile and compressive tests, the moisture effect on the fracture toughness of the yak horn sheaths was explored through the three-point bending test. Meanwhile, in order to reveal the relation between the microstructure damages and the macroscopic mechanical properties of yak horn sheaths, the fracture surface of the tensile specimens was observed by scanning electron microscope (SEM). From the experimental results, it follows that the yak horn sheath was found to have a multiscale damage mode, including delamination of lamellae (macroscale), shear deformation of the scales and distortion of the hollow cavities (mesoscale), and matrix cracking and fiber filaments pull-out (microcosmic). Besides, the horn sheath was observed to have a typical laminated structure with interlaminar cavities extending along the growth direction of the horn. The laminated structures and cavities have the potential of energy absorption and can lead to higher energy dissipation, which helps toughen the horn sheath.
机译:雄性牛的角通常由于具有层次分明的微观结构而具有出色的机械性能。本文通过拉伸和压缩试验研究了白牛角鞘的力学性能,通过三点弯曲试验探讨了水分对on牛角鞘断裂韧性的影响。同时,为了揭示牛角鞘的微观结构损伤与宏观力学性能之间的关系,通过扫描电子显微镜(SEM)观察了拉伸试样的断裂表面。从实验结果可以看出,牛角鞘被发现具有多尺度损伤模式,包括薄片分层(大尺度),尺度剪切变形和中空腔变形(中尺度)以及基质破裂和纤维长丝。拉出(微观)。此外,观察到角鞘具有典型的层压结构,其中层间空腔沿着角的生长方向延伸。叠层结构和空腔具有吸收能量的潜力,并可能导致更高的能量耗散,从而有助于增强喇叭套。

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