Centre for Defence Engineering, Cranfield Defence and Security, Cranfield University, Shrivenham, Swindon SN6 8LA, UK.
Centre for Defence Engineering, Cranfield Defence and Security, Cranfield University, Shrivenham, Swindon SN6 8LA, UK.
J Mech Behav Biomed Mater. 2018 Jan;77:586-593. doi: 10.1016/j.jmbbm.2017.10.012. Epub 2017 Oct 10.
Tissue analogues employed for ballistic purposes are often monolithic in nature, e.g. ballistic gelatin and soap, etc. However, such constructs are not representative of real-world biological systems. Further, ethical considerations limit the ability to test with real-world tissues. This means that availability and understanding of accurate tissue simulants is of key importance. Here, the shock response of a wide range of ballistic simulants (ranging from dermal (protective/bulk) through to skeletal simulant materials) determined via plate-impact experiments are discussed, with a particular focus on the classification of the behaviour of differing simulants into groups that exhibit a similar response under high strain-rate loading. Resultant Hugoniot equation-of-state data (U-u; P-v) provides appropriate feedstock materials data for future hydrocode simulations of ballistic impact events.
用于弹道目的的组织类似物通常是整体式的,例如弹道凝胶和肥皂等。然而,这些结构并不代表真实的生物系统。此外,伦理考虑限制了使用真实组织进行测试的能力。这意味着准确的组织模拟物的可用性和理解至关重要。在这里,通过板冲击实验确定了各种弹道模拟物(从皮肤(保护/主体)到骨骼模拟材料)的冲击响应,并特别关注将不同模拟物的行为分类为在高应变速率加载下表现出相似响应的组。所得的状态方程数据(U-u;P-v)为未来弹道冲击事件的水力编码模拟提供了合适的原料数据。