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Fabrication of binder-free ultrafine WC-6CO composites by coupled multi-physical fields activation technology

机译:结合多物理场活化技术制备无粘合剂的超细WC-6CO复合材料

摘要

A novel sintering method, named as coupled multi-physical fields activation technology, has been introduced for the forming of various material powder systems. Compared with the conventional ones, this technique presents more advantages: lower sintering temperature, shorter forming time, and remarkable inhibition of the grains coarsening. In the study, the cylinders of Φ4.0mm×4.0mm had been formed with ultrafine WC-6Co powders. The relative properties of sintered WC-6Co cemented carbides, such as hardness and the microstructures, had been obtained. The study has shown that a relative density, 97.80%, of the formed samples, could been achieved when the case of temperature 850℃, heating rate 50℃/s, pressure 75MPa and Electro-heating loop 6 times, were used. More importantly, the circumscription for the growth of grain size of WC, attributed to the effect of electrical field, renders coupled multi-physical fields activation technology applicable for getting WC-6Co cemented carbides with fine grain size and good properties.
机译:引入了一种新颖的烧结方法,称为耦合多物理场激活技术,用于形成各种材料粉末系统。与传统技术相比,该技术具有更多的优势:更低的烧结温度,更短的成型时间以及对晶粒粗化的显着抑制。在研究中,用超细WC-6Co粉末形成了Φ4.0mm×4.0mm的圆柱体。获得了烧结WC-6Co硬质合金的相对性能,例如硬度和显微组织。研究表明,使用温度850℃,升温速率50℃/ s,压力75MPa和电加热回路6次的情况下,所形成样品的相对密度为97.80%。更重要的是,由于电场的作用,WC晶粒尺寸的增长受到限制,使得耦合的多物理场活化技术适用于获得具有细晶粒尺寸和良好性能的WC-6Co硬质合金。

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