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粘弹性凝胶的力学性能与弹道穿透深度之间的关系

The relationship between mechanical properties and ballistic penetration depth in a viscoelastic gel.

作者信息

Mrozek Randy A, Leighliter Brad, Gold Christopher S, Beringer Ian R, Yu Jian H, VanLandingham Mark R, Moy Paul, Foster Mark H, Lenhart Joseph L

机构信息

US Army Research Laboratory, Aberdeen Proving Ground, Aberdeen, MD 21005, United States.

US Army Research Laboratory, Aberdeen Proving Ground, Aberdeen, MD 21005, United States.

出版信息

J Mech Behav Biomed Mater. 2015 Apr;44:109-20. doi: 10.1016/j.jmbbm.2015.01.001. Epub 2015 Jan 12.

DOI:10.1016/j.jmbbm.2015.01.001
PMID:25637822
Abstract

The fundamental material response of a viscoelastic material when impacted by a ballistic projectile has important implication for the defense, law enforcement, and medical communities particularly for the evaluation of protective systems. In this paper, we systematically vary the modulus and toughness of a synthetic polymer gel to determine their respective influence on the velocity-dependent penetration of a spherical projectile. The polymer gels were characterized using tensile, compression, and rheological testing taking special care to address the unique challenges associated with obtaining high fidelity mechanical data on highly conformal materials. The depth of penetration data was accurately described using the elastic Froude number for viscoelastic gels ranging in Young's modulus from ~60 to 630 kPa. The minimum velocity of penetration was determined to scale with the gel toughness divided by the gel modulus, a qualitative estimate for the zone of deformation size scale upon impact. We anticipate that this work will provide insight into the critical material factors that control ballistic penetration behavior in soft materials and aid in the design and development of new ballistic testing media.

摘要

当受到弹道弹丸撞击时,粘弹性材料的基本材料响应对于国防、执法和医疗领域具有重要意义,特别是在防护系统评估方面。在本文中,我们系统地改变合成聚合物凝胶的模量和韧性,以确定它们各自对球形弹丸速度依赖性穿透的影响。使用拉伸、压缩和流变测试对聚合物凝胶进行表征,特别注意解决与在高度贴合材料上获取高保真机械数据相关的独特挑战。对于杨氏模量在~60至630 kPa范围内的粘弹性凝胶,使用弹性弗劳德数准确描述了穿透深度数据。确定最小穿透速度与凝胶韧性除以凝胶模量成比例,这是对撞击时变形尺寸尺度区域的定性估计。我们预计这项工作将深入了解控制软材料中弹丸穿透行为的关键材料因素,并有助于新型弹道测试介质的设计和开发。

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