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首页> 外文期刊>Advances in Mechanical Engineering >Projectile Nose Mass Abrasion of High-Speed Penetration into Concrete
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Projectile Nose Mass Abrasion of High-Speed Penetration into Concrete

机译:高速侵彻混凝土的弹丸鼻质量磨损

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Based on the dynamic spherical cavity expansion theory of concrete and the analysis of experimental data, a mass abrasion model of projectile considering the hardness of aggregates, the relative strength of target and projectile, and the initial impact velocity is constructed in this paper. Furthermore, the effect of mass abrasion on the penetration depth of projectile and the influence of hardness of aggregates and strength of projectile on penetration depth and mass loss are also analyzed. The results show that, for the ogive-nose projectile with the CRH of 3 and aspect ratio of 7 penetrating the concrete of 35 MPa, the "rigid-body penetration" model is available when the initial impact velocity is lower than 800 m/s. However, when the initial impact velocity is higher than 800 m/s, the "deforming/eroding body penetration" model should be adopted. Through theoretical analysis and numerical calculation, the results indicate that the initial impact velocity is the most important factor of mass abrasion. The hardness of aggregates and the strength of projectile are also significant factors. But relatively speaking, the sensitivity of strength of projectile to mass abrasion is higher, which indicates that the effect of projectile material on mass abrasion is more dramatic than the hardness of aggregates.
机译:基于混凝土的动态球腔膨胀理论,并结合实验数据进行分析,建立了考虑集料硬度,靶与弹丸相对强度以及初始冲击速度的弹丸质量磨损模型。此外,还分析了质量磨损对弹丸穿透深度的影响,以及骨料硬度和弹丸强度对弹丸穿透深度和质量损失的影响。结果表明,对于CRH为3,长径比为7,穿透混凝土为35 MPa的钝齿射弹,当初始冲击速度低于800 m / s时,可以使用“刚体穿透”模型。但是,当初始冲击速度高于800 m / s时,应采用“变形/侵蚀体穿透”模型。通过理论分析和数值计算,结果表明初始冲击速度是整体磨损的最重要因素。集料的硬度和弹丸的强度也是重要的因素。但是相对而言,弹丸强度对整体磨损的敏感性更高,这表明弹丸材料对整体磨损的影响比聚集体的硬度更为显着。

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