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0Characterisation, significance and detection of manufacturing defects in Reaction Sintered Silicon Carbide armour materials

机译:0反应烧结碳化硅铠装材料的表征,重要性和制造缺陷检测

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摘要

Ceramics with high hardness values (> 10 GPa), high elastic modulii (> 300 GPa) and good flexural strength values (> 350 MPa) make excellent armour materials. However, they are normally very expensive (> $10/kg) and difficult to shape. So, tiles of regular geometry (typically square or hexagonal) have been used in advanced armour systems, for military vehicles. However, for body armour applications, there is a need to form a monolithic ceramic into a double-curved, or even triple-curved, shape in order to better conform to the human torso. In a recent review, carried out by the Defence Materials Technology Centre of Australia, of the shaping techniques used for body armour components, uniaxial pressing of breastplates was still recognised to be the most feasible, and commercially available, process even though other techniques like Viscous Plastic Processing (VPP) were becoming established. One particular variant of the dry-pressing route is known as Reaction Sintering, or Reaction Bonding, in which a pre-pressed, dry powder compact is infiltrated, at elevated temperature, with a liquid metal. However, the process is prone to the formation of a range of manufacturing defects, some of which are extremely deleterious to impact behaviour and ballistic performance of the finished product. The origin, cause and effect of these defects are discussed in this paper, together with both current and future NDI techniques. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:具有高硬度值(> 10 GPa),高弹性模量(> 300 GPa)和良好的抗弯强度值(> 350 MPa)的陶瓷成为出色的铠装材料。但是,它们通常非常昂贵(> $ 10 / kg),并且难以成型。因此,用于军事车辆的高级装甲系统已使用规则几何形状(通常为正方形或六边形)的瓷砖。然而,对于防弹衣应用,需要将整体陶瓷形成为双弯曲甚至三弯曲的形状,以便更好地符合人体躯干。在最近由澳大利亚国防材料技术中心进行的有关防弹衣部件成型技术的评论中,单壁压制胸甲仍被认为是最可行且可商购的工艺,即使其他技术如粘性技术也是如此。塑料加工(VPP)正在建立。干压途径的一种特定变体被称为反应烧结或反应结合,其中预压的干粉压块在升高的温度下被液态金属渗透。但是,该过程易于形成一系列制造缺陷,其中一些缺陷对成品的冲击性能和弹道性能极为有害。本文讨论了这些缺陷的来源,原因和影响,以及当前和未来的NDI​​技术。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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