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The Cu matrix cermets remarkably strengthened by TiB2 “in situ” synthesized via self-propagating high temperature synthesis

机译:通过自蔓延高温合成“原位”合成的TiB2显着增强了铜基金属陶瓷

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摘要

The TiB2–Cu cermets with predominant concentration of superhard TiB2 (from 45 to 90 vol.%) were fabricated using elemental powders by means of SHS (self-propagating high-temperature synthesis) process and simultaneously densified by p-HIP (pseudo-isostatic pressing technique). The heat released during highly exothermic SHS reaction was “in situ” utilized for sintering. The combustion occurred even for 50 vol.% Cu dilution. According to XRD metallic copper binder was formed in those cermets in whole range of investigated compositions. The TiB2 volume fraction significantly influenced the properties of fabricated materials, especially grain size and hardness. Both the average grain size and hardness significantly increased with TiB2 content, so the maximum value of 18 GPa was measured for TiB2–5 vol.%Cu composite. Coarse grains of 6.4 μm in size were observed for this composite while TiB2-based submicro-composites were formed for 40–50% of Cu where the average grain size did not exceed 0.6 μm. The Vickers hardness of 16–18 GPa obtained for cermets containing from 85 to 90 vol.% of TiB2 and no radial cracks in Vickers hardness test proved that in term of hardness and fracture toughness the composites might be competitive to WC–Co cermets.
机译:通过SHS(自蔓延高温合成)工艺,使用元素粉末制备了主要浓度为超硬TiB2(45至90 vol。%)的TiB2-Cu金属陶瓷,并同时通过p-HIP(伪等静压)进行了致密化。压制技术)。在高放热的SHS反应过程中释放的热量被“原位”用于烧结。即使稀释了50%(体积)的Cu,也会发生燃烧。根据XRD,在所研究的整个组成范围内,在那些金属陶瓷中形成了金属铜粘合剂。 TiB2的体积分数显着影响了加工材料的性能,尤其是晶粒尺寸和硬度。平均晶粒度和硬度均随TiB2含量的增加而显着增加,因此,TiB2–5 vol。%Cu复合材料的最大值为18 GPa。对于该复合材料,观察到的粗晶粒为6.4μm,而形成TiB2的亚微复合材料则形成了40-50%的Cu,其中平均晶粒尺寸不超过0.6μm。对于含85-90%(体积)TiB2的金属陶瓷,维氏硬度为16-18 GPa,在维氏硬度试验中没有出现径向裂纹,证明在硬度和断裂韧性方面,复合材料可能比WC-Co金属陶瓷更具竞争力。

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    Ziemnicka-Sylwester, Marta;

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