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首页> 外文期刊>Journal of Biomechanical Science and Engineering >Development and validation of a thorax surrogate FE model for assessment of trauma due to high speed blunt impacts
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Development and validation of a thorax surrogate FE model for assessment of trauma due to high speed blunt impacts

机译:开发和验证用于评估高速钝器撞击造成的创伤的胸部替代有限元模型

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References(56) Cited-By(1) Without being able to evaluate blunt thoracic trauma in terms of an acceptable injury criterion, it is not possible to develop or validate non-lethal projectiles, bullet proof vests and chest protectors for sports personnel etc. In order for the assessment of the blunt trauma caused by high speed projectiles, a novel design of a mechanical surrogate of the thorax (Mechanical THOrax for Trauma Assessment: MTHOTA) was conceptualized. An iterative impact analyses in the virtual testing environment were carried out by impacting the finite element model of the mechanical thorax with 37 mm diameter, 100 mm long wooden baton weighing 140 grams (20 m/s and 40 m/s impact speeds) and 37 mm diameter, 28.5 mm long wooden baton weighing 30 grams with 60 m/s impact speed. From the output of every simulation, force dynamic response (force-time), deflection dynamic response (deflection-time) and force-deflection response were elicited and compared with the corresponding human response corridors developed by Wayne State University's researchers. By suitably changing the design parameters of the mechanical surrogate, simulation iterations were continued till the responses were correlated with the human response corridors. Values of viscous criterion (VCmax), product of maximum chest deflection and the rate at which chest deforms, obtained from MTHOTA were in very good agreement with those obtained from the cadaveric test data. The methodology, concept and validation of the MTHOTA have been presented in this paper.
机译:参考文献(56)被引用者(1)无法根据可接受的伤害标准评估钝性胸外伤,因此无法开发或验证非致命性射弹,防弹背心和运动人员的胸部保护装置等。为了评估由高速弹丸造成的钝性损伤,对胸部的机械替代物(用于创伤评估的机械性THOrax:MTHOTA)进行了新颖的设计。通过冲击直径为37毫米,重量为140克(冲击速度为20 m / s和40 m / s)的100 mm长木棍的机械胸部的有限元模型,在虚拟测试环境中进行了迭代影响分析。直径为28.5毫米的木质警棍,直径30毫米,重30克,撞击速度为60 m / s。从每个模拟的输出中,得出动力动态响应(力-时间),挠度动态响应(挠度-时间)和力-挠度响应,并将其与韦恩州立大学研究人员开发的相应的人类响应通道进行比较。通过适当地更改机械代理的设计参数,继续进行模拟迭代,直到响应与人类响应通道相关联为止。从MTHOTA获得的粘性标准值(VCmax),最大胸部挠度乘积和胸部变形率的值与从尸体测试数据获得的值非常吻合。本文介绍了MTHOTA的方法,概念和验证。

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