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Dynamic mechanical and fracture properties of an infiltrated TiC-1080 steel cermet

机译:TiC-1080浸渗金属陶瓷的动态力学性能和断裂性能

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The dynamic mechanical and fracture properties of a TiC porous network infiltrated with 1080 steel are reported. Following infiltration, the cermet is subjected to various heat treatments that affect essentially the steel matrix. Dynamic compression tests show that the heat treatments increase the fracture strength of the cermet. The quasi-static fracture toughness (K-Ic) is also increased by the heat treatments. The dynamic (initiation) fracture toughness (K-Id) is substantially higher (by about a factor of 3) than its static counterpart. Failure mechanisms consist mainly of cleavage of the TiC and matrix grains, along with minor interfacial decohesion. However, dynamic loading induces substantial damage around the crack tip, consisting essentially of cleavage of TiC grains. Microcrak toughnening is believed to be responsible for the high dynamic toughness of the material. The critical microstructural fracture event is thus identified as the spreading of TiC cleavage microcracks into the neighboring steel grains. (C) 2004 Elsevier Ltd. All rights reserved.
机译:报告了渗透1080钢的TiC多孔网络的动态力学性能和断裂性能。渗透后,对金属陶瓷进行各种热处理,这些热处理基本上会影响钢基体。动态压缩试验表明,热处理增加了金属陶瓷的断裂强度。热处理还增加了准静态断裂韧性(K-Ic)。动态(初始)断裂韧度(K-Id)要比其静态对应物大得多(约3倍)。破坏机制主要包括TiC和基体晶粒的裂解,以及较小的界面脱粘。但是,动态载荷会在裂纹尖端周围引起大量损坏,主要是由TiC晶粒的分裂引起的。据信微裂纹增韧是材料的高动态韧性的原因。因此,将临界微结构断裂事件确定为TiC裂解微裂纹向邻近钢晶粒的扩散。 (C)2004 Elsevier Ltd.保留所有权利。

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