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首页> 外文期刊>Biosurface and Biotribology >Quantifying the biotribological properties of forehead skin to enhance head impact simulations
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Quantifying the biotribological properties of forehead skin to enhance head impact simulations

机译:量化额头皮肤的生物摩擦学特性,以增强头部撞击模拟效果

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Abstract Head injury severity is dependent on the loading and accelerations experienced during, and immediately after, impact. In England and Wales alone, for example, 700,000 head injury cases are reported annually within Emergency Departments; however, there remains a lack of data that quantifies the fundamental interaction of the head with an impacting surface. The consequence of impact depends upon a precise understanding of the head–surface interaction; hence, there is a need to appreciate the magnitude of, and variation in, frictional coefficient between the head and a range of possible surfaces. This study develops and validates a novel protocol for quantifying friction between the forehead skin and some potential surfaces. Thirteen participants were recruited and four materials tested, with the lowest (0.11) and highest (1.64) dynamic frictional coefficients measured between skin, and expanded polystyrene and laminate flooring, respectively. Preliminary computational simulation identified that a modest variation in head–surface frictional coefficient (0.6 & 0.7) increases rotational accelerations by 23–33%. Hence, this study highlights the significance of the head–surface interaction, whilst providing some data that will assist investigators evaluating head impacts within both a domestic and sporting environment.
机译:摘要头部受伤的严重程度取决于撞击过程中以及撞击后立即受到的载荷和加速度。例如,仅在英格兰和威尔士,急诊部门每年就报告700,000例头部受伤病例。但是,仍然缺乏量化头部与撞击表面基本相互作用的数据。撞击的结果取决于对头-面相互作用的准确理解;因此,需要认识到头部与一系列可能的表面之间的摩擦系数的大小和变化。这项研究开发并验证了一种用于量化前额皮肤与某些潜在表面之间摩擦的新颖协议。招募了13名参与者并测试了四种材料,分别在皮肤与发泡聚苯乙烯地板和层压地板之间测得的最低(0.11)和最高(1.64)动摩擦系数。初步的计算机仿真表明,头部-表面摩擦系数的适度变化(0.6&0.7)使旋转加速度增加23-33%。因此,本研究强调了头部与面部的相互作用的重要性,同时提供了一些数据,这些数据将有助于研究人员评估家庭和体育环境中的头部撞击。

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