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Influence of energy absorbers on Malgaigne fracture mechanism in lumbar-pelvic system under vertical impact load

机译:垂直冲击载荷下能量吸收剂对腰骨盆系统Malgaigne骨折机制的影响

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Malgaigne fractures are the most common and widespread pelvic injuries resulting from the shear forces the action mechanism of which has not been explained in the literature yet. Military accidents with improvised explosive devices (IED) perfectly reflect this type of pelvic fracture. The finite element (FE) model of lumbar-pelvic complex (LPC) was developed based on computed tomography (CT) scans with the seat including steel frame, padding and soft tissue. The correlation coefficients of both low (100 N) and high (500 N) loads were greater than that currently obtained in the literature due to the presence of muscle force, pubic symphysis and joint cartilage. The dynamic analysis was performed to determine the influence of varying kinds of foam materials i.e. polyurethane, aluminium honeycomb structured and polyurethane auxetic foam on the stress/strain distribution in LPC under vertical impact load with the velocity of 7 m/s. Performed analysis showed the first fracture occurred in the L5 vertebrae resulting in the sacroiliac ligaments disruption and stress concentration in the pelvic ring causing further fractures of the wing of ilium, pubis and ischium bones. This results clearly explain the inconclusive findings about the second fracture that occurs in the pelvic area under a vertical impact load. The applied seat padding foam significantly reduced the stresses transmitted to the anatomical structures, thereby avoiding the risk of pelvic fracture. The analysis has proven that the auxetic polyurethane foam can be used as a good energy absorber.
机译:Malgaigne骨折是由剪切力引起的最常见和最广泛的骨盆损伤,其作用机理尚未在文献中得到解释。简易爆炸装置(IED)造成的军事事故完全反映了这种类型的骨盆骨折。腰盆骨复合物(LPC)的有限元(FE)模型是基于计算机断层扫描(CT)扫描而开发的,座椅包括钢架,衬垫和软组织。由于肌肉力量,耻骨联合和关节软骨的存在,低(100 N)和高(500 N)负荷的相关系数均大于当前文献中的相关系数。进行了动力学分析,以确定在7m / s的垂直冲击载荷下,不同种类的泡沫材料,即聚氨酯,铝蜂窝结构和聚氨酯膨胀泡沫,对LPC中应力/应变分布的影响。进行的分析显示,L5椎骨首次发生骨折,导致the韧带破裂,骨盆环应力集中,导致i骨,耻骨和坐骨骨翼进一步骨折。该结果清楚地解释了在垂直冲击载荷下在骨盆区域发生的第二次骨折的不确定结论。所施加的座椅衬垫泡沫大大降低了传递到解剖结构的应力,从而避免了骨盆骨折的风险。分析已证明,膨胀型聚氨酯泡沫可用作良好的能量吸收剂。

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