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Assessment of the Protective Properties of two Different UHA Steels Based on Material Testing and Numerical Simulation

机译:基于材料测试和数值模拟评估两种不同UHA钢的保护性能

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The present contribution aims to assess the properties of ultra-high-hardness (UHA) armor steels. Characteristic of those steels are yield and tensile strengths reaching 1.6 and 2.0 GPa, respectively, and a hardness of around 600 Brinell or above. Accordingly, they are promising candidates for protective solutions. However, UHA steels are relatively new products and not yet frequently applied. Their potential for armor protection is not fully explored today and has to be investigated further. Ballistic testing of the protective properties of UHA steels is however limited by the commercially available material thicknesses. In the context of present applications, the available sheet thickness for UHA steel is typically below 15 mm, thus ballistic tests for some threat levels are possible only under overmatch conditions where failure mechanisms under shear and low confinement play strong roles. In order to be able to analyze the deep penetration into UHA materials-whether thick plates are today producible or not-we chose an approach based on material characterization and numerical simulation. Two different UHA steels were compared against a reference material from the high-hardness-armor (HHA) steel class. One of the UHA steels was a quenched and tempered steel, while the other was a maraging steel. Based on material testing, parameters for a non-linear equation of state, the Johnson-Cook plasticity model, as well as failure criteria for strain accumulation and wave induced spall rupture were derived and applied in hydrocode simulations of the perforation of thick steel plates by projectiles. From this numerical analysis, a consistent picture emerged. According to the simulations, the protective properties of the UHA steels are increased for thick targets compared to HHA, which was not directly inferable from ballistic tests.
机译:目前的贡献旨在评估超高硬度(UHA)铠装钢的性质。这些钢的特性分别达到1.6和2.0GPa的产率和拉伸强度,以及约600 brinell或以上的硬度。因此,它们是保护解决方案的候选人。然而,Uha Steels是相对较新的产品,尚未经常应用。他们今天没有完全探索盔甲保护的潜力,必须进一步调查。然而,UHA钢的保护性能的弹道测试受商业上可获得的材料厚度的限制。在本发明的上下文中,UHA钢的可用纸张厚度通常低于15mm,因此只有在覆盖条件下,某些威胁水平的弹道测试也是可能的,其中剪切和低限制下的失效机制起到强大的作用。为了能够分析到uha材料的深度渗透 - 无论是今天的厚板是否可生成或不 - 我们选择了一种基于材料表征和数值模拟的方法。将两个不同的UHA钢与高硬度铠装(HHA)钢类的参考材料进行比较。其中一块UHA钢是一种淬火和钢化钢,而另一个是钢铁。基于材料测试,推导出厚钢板穿孔的流电流模拟中的非线性状态的非线性方程的参数,约翰逊康复塑性模型,以及用于应变累积和波引起的倒置突破性的故障标准射弹。从这个数值分析中,出现了一致的图片。根据模拟,与HHA相比,厚度靶向uha钢的保护性能增加,这与弹道试验不可推断出来。

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