首页> 外文期刊>Journal of Biomechanics >High strain rate compressive properties of bovine muscle tissue determined using a split Hopkinson bar apparatus.
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High strain rate compressive properties of bovine muscle tissue determined using a split Hopkinson bar apparatus.

机译:牛肌肉组织的高应变率压缩特性是使用可拆分的Hopkinson条形仪确定的。

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The polymeric split Hopkinson pressure bar (PSHPB) apparatus is introduced as a means for measuring the high strain rate (1,000-2,500 s(-1)) compressive properties of soft tissues. Issues related to specimen design are discussed, and protocols are presented for specimen preparation. Proposed specimen geometries were validated using high-speed photography. Stress-strain data were obtained for high strain rate compression of bovine muscle tissue to strains as high as 80%. The stress-strain curves were found to be strain rate-sensitive and concave upward, as is typical of soft tissues. Rigor had a significant impact on the material properties between 5 and 24 h post mortem, while at longer times, properties returned essentially to their pre-rigor values. This study presents some of the first published high rate properties of muscle tissue, data that are urgently for advanced modeling of the human body and for evaluation of safety systems for the human body.
机译:引入了聚合的霍普金森分体式压力棒(PSHPB)设备,作为测量软组织的高应变速率(1,000-2,500 s(-1))压缩特性的一种手段。讨论了与标本设计有关的问题,并提出了用于标本制备的规程。使用高速摄影技术验证了建议的样品几何形状。获得了高应变率压缩牛肌肉组织至高达80%应变的应力应变数据。发现该应力-应变曲线是应变率敏感的并且向上凹入,这是软组织的典型现象。死后5到24小时之间,Rigor对材料性能产生了重大影响,而在更长的时间内,性能基本上恢复到其刚度之前的值。这项研究提出了一些最早发表的肌肉组织的高速率特性,这些数据迫切需要对人体进行高级建模并评估人体的安全系统。

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