Pigolkin Iu I, Dubrovin I A, Leonov S V, Mikhaĭlenko A V, Dubrovin A I, Zotkin D A
Sud Med Ekspert. 2013 Nov-Dec;56(6):4-8.
The mechanisms of formation of gunshot fractures in flat bones inflicted by a semispherical bullet were investigated using expert and experimental materials. The process of crack formation was considered in terms of the Hertzian contact problem and the Hill-Johnson model. It was shown that the fracture develops as a result of combination of stresses and strains in the bone tissue leading to the formation of a hydrostatic nucleus prior to tissue fragmentation. Dynamic fluctuations (waves) generated in the zone of hydrostatic compression resulting from the gunshot injury propagate with the velocity of sound from the nucleus in the direction of the bullet movement. According to the Hill-Johnson model, the waves propagate in the direction of the impact within a parabolically expanding space; this accounts for the mechanism of formation of parabolic cracks and the specific shape of the defect that the bullet produces in the flat bones. The dynamic load applied by means of an indentor forms at a higher rate than the velocity of sound in the affected material. It gives reason to consider the effect of a bullet moving with the speed of 250 m/s as quasi-static loading. The results obtained in this study make a contribution to the theory of impact effect of a bullet and provide a deeper insight into the physical nature of the direct and sideway action of a gunshot projectile. Moreover, they explain the cause behind the widening of the outlet part of the perforating fracture in the flat bones.
利用专家和实验材料,对半球形子弹造成的扁骨枪伤骨折形成机制进行了研究。根据赫兹接触问题和希尔 - 约翰逊模型来考虑裂纹形成过程。结果表明,骨折是由于骨组织中的应力和应变共同作用,导致在组织破碎之前形成一个流体静压核而产生的。枪伤造成的流体静压压缩区域产生的动态波动(波)以声速从核向子弹运动方向传播。根据希尔 - 约翰逊模型,这些波在抛物线形扩展空间内沿撞击方向传播;这解释了抛物线形裂纹的形成机制以及子弹在扁骨中产生的缺陷的特定形状。通过压头施加的动态载荷形成速度比受影响材料中的声速快。这使得有理由将以250米/秒速度运动的子弹的作用视为准静态载荷。本研究所得结果为子弹冲击效应理论做出了贡献,并更深入地洞察了枪伤射弹直接和侧向作用的物理本质。此外,它们解释了扁骨中穿孔骨折出口部分变宽的原因。