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The invention discloses a preparation method of a high-strength ceramic plate, which comprises the following steps: (1) mixing various raw materials, and conducting heating and melting at 1250-1550 DEG C to obtain a melt; (2) pouring the melt into a mold, and conducting molding to obtain a first green body; (3) forging and pressing the first green body to obtain a second green body; and (4) carrying out heat preservation on the second green body at 700-1150 DEG C for 30-120 minutes to obtain a high-strength ceramic plate finished product. Correspondingly, the invention further discloses the high-strength ceramic plate. By implementing the method, gas in the ceramic plate can be effectively discharged, the density of the ceramic plate is effectively improved, and the strength of the ceramic plate is further improved.
本发明公开了一种高强度陶瓷板材的制备方法,其包括:(1)将各种原料混合,并在1250~1550℃加热熔融,得到熔体;(2)将所述熔体浇入模具,成型得到第一坯体;(3)将所述第一坯体进行锻压,得到第二坯体;(4)将所述第二坯体在700~1150℃下保温30~120min,即得到高强度陶瓷板材成品。相应的,本发明还公开了一种高强度陶瓷板材。实施本发明,可有效排出陶瓷板材中的气体,有效提升陶瓷板材的致密度,进而提升其强度。
The invention discloses a preparation method of a high-strength ceramic plate, which comprises the following steps: (1) mixing various raw materials, and conducting heating and melting at 1250-1550 DEG C to obtain a melt; (2) pouring the melt into a mold, and conducting molding to obtain a first green body; (3) forging and pressing the first green body to obtain a second green body; and (4) carrying out heat preservation on the second green body at 700-1150 DEG C for 30-120 minutes to obtain a high-strength ceramic plate finished product. Correspondingly, the invention further discloses the high-strength ceramic plate. By implementing the method, gas in the ceramic plate can be effectively discharged, the density of the ceramic plate is effectively improved, and the strength of the ceramic plate is further improved.
本发明公开了一种高强度陶瓷板材的制备方法,其包括:(1)将各种原料混合,并在1250~1550℃加热熔融,得到熔体;(2)将所述熔体浇入模具,成型得到第一坯体;(3)将所述第一坯体进行锻压,得到第二坯体;(4)将所述第二坯体在700~1150℃下保温30~120min,即得到高强度陶瓷板材成品。相应的,本发明还公开了一种高强度陶瓷板材。实施本发明,可有效排出陶瓷板材中的气体,有效提升陶瓷板材的致密度,进而提升其强度。
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