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BalIistic Performance of Hot Isostatically Pressed (Hiped) Ti-Based Targets

机译:热等静压(压缩)的钛基靶材的平衡性能

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Hot Isostatic Pressing (HIP) is one of the most efficient techniques used to produce high quality materials from powders. Nevertheless, there is a shortage of data on high--strain-rate performance of such materials. In this paper, the results of penetration test (tungsten rod, velocity 886-960 m/s, diameter D=4.98 mm, L/D=l0) with solid and porous composite samples of Ti--6Al--4V alloy with different microstructures (Widmanstatten pattern and equiaxed) are reported. Milling of rapidly solidified Ti--6Al-4V powders prior to HIPing ensured the equiaxed final microstructure with increased compressive yield strength and microhardness (ll80 MPa and 337 kgf/mm~2 correspondingly). Interstitial content was suitable for armor applications. Penetration depths for HIPed samples (l4--l5 mm) were smaller than that for standard Ti--6Al- 4V alloy Mir--T--9047G (l8-20 mm). Additionally, the wide craters in HIPed materials are distinctly different from the narrow craters in the standard materials. The results demonstrate the applicability of HIPing for the development of composite armor based on Ti--alloys.
机译:热等静压(HIP)是用于从粉末生产高质量材料的最有效技术之一。然而,关于这种材料的高应变速率性能的数据缺乏。本文采用不同密度的Ti--6Al--4V合金的固体和多孔复合材料进行渗透测试(钨棒,速度886-960 m / s,直径D = 4.98 mm,L / D = 10)。报告了微结构(Widmanstatten模式和等轴)。在HIP之前研磨快速凝固的Ti--6Al-4V粉末可确保等轴终组织具有增加的压缩屈服强度和显微硬度(分别为11080 MPa和337 kgf / mm〜2)。插页式内容适合装甲应用。 HIP样品的穿透深度(1-4-5mm)小于标准Ti--6Al-4V合金Mir-T--9047G的穿透深度(18-20 mm)。此外,HIPed材料中的宽坑与标准材料中的窄坑明显不同。结果表明,HIPing技术可用于开发基于Ti合金的复合装甲。

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