首页> 外文期刊>International Journal of Refractory Metals & Hard Materials >Core-rim structure formation in TiC-Ni based cermets fabricated by a combined thermal explosion/hot-pressing process
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Core-rim structure formation in TiC-Ni based cermets fabricated by a combined thermal explosion/hot-pressing process

机译:基于TIC-NI基于CERMETS的CORE-RIM结构形成通过组合热爆炸/热压过程制造

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摘要

TiC-Ni-based cermets were obtained by thermal explosion from different elemental mixtures (Ti, C, Ni and X, where X = Cr, Mo or W) and subsequently densified by hot-pressing under a cyclic load. The whole process was performed in a single stage in the same experimental device according to the following thermal and pressure procedure: a heating rate ramp up to 1573 K without applying any load followed by an isothermal dwelling under a compressive cyclic load of 32 MPa. The thermal explosion synthesis occurred during the heating ramp at a temperature close to 1273 K that was practically independent of the starting nominal composition. The influence of different refractory elements on the chemical composition and microstructure of cermets was studied. SEM characterization showed that only with Mo and W, the cermets developed the characteristic core-rim structure. A high densification was achieved, but decreased when the refractory elements were added. Nevertheless, in these cases higher hardness values were obtained.
机译:通过来自不同元素混合物(Ti,C,Ni和X,其中X = Cr,Mo或W)的热爆炸获得TiC-Ni的金属膜,随后通过在环状载荷下热压致密化。根据下面的热压和压力过程在相同实验装置中的单个阶段进行整个过程:加热速率斜坡高达1573k,而不施加任何负载,然后在32MPa的压缩循环负载下进行等温居住。在加热斜坡期间发生热爆炸合成,其温度接近1273k,其实际上与起始标称组合物无关。研究了不同耐火元素对金属陶瓷化学成分和微观结构的影响。 SEM表征显示,只有MO和W,金属膜也开发了特征芯边缘结构。达到高致密化,但加入耐火元素时减少。然而,在这些情况下获得了更高的硬度值。

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