This research is dedicated to the role of different amounts of hexagonal BN (hBN: 0, 1.5, 3, and 4.5 wt%) on the pressureless sinterability of ZrB2–25 vol% SiC ceramics. Phenolic resin (5 wt%) with a carbon yield of ~40 % was incorporated as a binder to the powder mixtures and after initial cold pressing, the final sintering process was performed at 1900 °C for 100 min in a vacuum furnace. The as-sintered specimens were characterized by X-ray diffractometry, field emission scanning electron microscopy, and energy-dispersive X-ray spectroscopy. The results disclosed that the incorporation of 1.5 wt% hBN could increase the relative density to ~92%, while the sample with zero hBN content just reached ~81% of full densification. Appropriate hBN content not only facilitated the particle rearrangement during the cold pressing, but also removed the harmful oxide impurities during the final sintering. Nevertheless, the addition of higher amounts of hBN remarkably lessened the densification because of more delamination of the non-reacted hBN flakes and release and entrapment of more gaseous by-products induced by the reacted hBN phases.
Seyed Ali Delbari, Abbas Sabahi Namini, Seonyong Lee, Sunghoon Jung, Jinghan Wang, Sea‐Hoon Lee, Joo Hwan, Jin Hyuk Cho, Ho Won Jang, Soo Young Kim, Mohammadreza Shokouhimehr
Mohammadreza Shokouhimehr, Seyed Ali Delbari, Abbas Sabahi Namini, Ehsan Taghizadeh, Sunghoon Jung, Jin Hyuk Cho, Quyet Van Le, Joo Hwan, Soo Young Kim, Ho Won Jang
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