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Behavior of High-Strength and Ultrahigh-Performance Concrete Targets Subjected to Relatively Rigid Projectile Impact

机译:高强度和超高性能混凝土目标对相对刚性的射弹冲击的行为

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This experimental study was conducted to evaluate the impact behavior of relatively rigid projectiles with conical and hemispherical nose shapes on normal to high-strength and ultrahigh performance concrete (UHPC). For this impact experiment, target specimens with dimensions of 200 x 200 x 100 mm and concrete compressive strengths of 35, 80, 100, 120, and 150 MPa were used. The test results showed that as the concrete strength increased, the penetrability of concrete normalized by the kinetic energy of each projectile decreased, and its declining slope decreased. As to projectiles, the conical nose shape achieved greater penetration depth for normal-strength concrete, but the difference between that and hemispherical projectiles with respect to high-strength concrete and UHPC was minuscule. To verify the validity of existing impact equations for the design/evaluation of normal-strength concrete, high-strength concrete, and UHPC walls, the existing equations were compared with the test results. The 2017 Hwang et al. equation predicted the penetration depth quite well regardless of the concrete strength because the equation accounts for energy absorption of the nose of a projectile upon collision. Research results provided insight into the design and evaluation of high-strength concrete or UHPC walls subjected to high-velocity impact.
机译:进行该实验研究以评估相对刚性射弹的冲击性能与锥形和半球形鼻形状在正常与高强度和超高性能混凝土(UHPC)上的影响。对于这种影响实验,使用尺寸为200×200×100mm和35,80,100,120和150Mm的混凝土抗压强度的靶标本。试验结果表明,随着混凝土强度的增加,每个射弹的动能的混凝土归一化的渗透性下降,其斜率下降减少。对于射弹,锥形鼻形为正常强度混凝土而达到更大的穿透深度,但是相对于高强度混凝土和UHPC的差异和半球弹射入的差异是微小的。为了验证对正常强度混凝土的设计/评估的现有影响方程的有效性,高强度混凝土和UHPC墙壁,将现有方程与测试结果进行比较。 2017 Hwang等人。不管混凝土强度如何,方程式预测穿透深度,因为方程占碰撞时射弹的鼻子的能量吸收。研究结果介绍了高强度混凝土或UHPC墙体经受高速冲击的设计和评估的洞察力。

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