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    • 2. 发明公开
    • 연속 소성로 및 그 사용 방법
    • 连续烘烤炉及其使用
    • KR1020020028797A
    • 2002-04-17
    • KR1020010061751
    • 2001-10-08
    • 가부시키가이샤 아이에이치아이
    • 모리가즈미이우라토루이시모토데츠야가츠마타가즈히코마치다히로시
    • F27B9/14
    • F27B9/028F27B9/047F27B9/063F27B9/12F27B21/00F27B2009/2492F27B2009/3638F27D3/028F27D2009/0013F27D2021/0092Y02P40/65
    • PURPOSE: An improved sintering furnace for continuously sintering a material to be sintered into ceramics is provided, which is advantageous in energy consumption and secure reliable tray return. CONSTITUTION: A continuous sintering furnace has an entrance-side deaerating chamber(23) through which trays(22) carrying a material(1) to be sintered may pass, preheating, heating and cooling zones(37, 38 and 39) into which the trays(22) are sequentially fed from the deaerating chamber(23), an exit-side deaerating chamber(26) through which the trays(22) having passed through the cooling zone(39) may pass, a pusher(35) for pushing the trays(22) from the deaerating chamber(23) to the preheating zone(37), a puller(36) for pulling the trays(22) from the cooling zone(39) to the deaerating chamber(26), an intermediate puller(43) for pulling the trays(22) from the heating zone(38) to the cooling zone(39), a vertically movable door(28) between the deaerating chamber(23) and the preheating zone(37), a vertically movable intermediate door(41) adjacent to the door(28) and arranged at the upstream end of the preheating zone(37) in the direction of movement of the trays(22), a vertically movable intermediate door(42) between the heating and cooling zones(38,39) and a vertically movable door(29) between the cooling zone(39) and the deaerating chamber(26). When the door(42) is in its closed position, heat flow to the cooling zone(39) is suppressed. Movement of the trays(22) in the cooling zone(39) is effected by the intermediate puller(43), thereby decreasing the number of trays(22) to be moved by the pusher(35).
    • 目的:提供一种用于将烧结材料连续烧结成陶瓷的改进的烧结炉,其有利于能量消耗并确保可靠的托盘返回。 构成:连续烧结炉具有入口侧除气室(23),载置待烧结材料(1)的托盘(22)通过,通过预热,加热和冷却区(37,38和39),其中 托盘(22)从脱气室(23),出口侧脱气室(26)依次进料,通过冷却区(39)的托盘(22)可以通过该出口侧脱气室,推动器(35) 从脱气室(23)到预热区(37)的托盘(22),用于将托盘(22)从冷却区(39)拉到脱气室(26)的拉出器(36) (43),用于将托盘(22)从加热区域(38)拉到冷却区域(39),在脱气室(23)和预热区域(37)之间的可垂直移动的门(28) 中间门(41),邻近门(28)并且沿着托盘(22)的移动方向布置在预热区(37)的上游端,可垂直移动的i 在冷却区(39)和脱气室(26)之间的加热和冷却区域(38,39)和可垂直移动的门(29)之间的中间门(42)。 当门(42)处于其关闭位置时,流向冷却区(39)的热流被抑制。 托盘(22)在冷却区(39)中的移动由中间拉拔器(43)实现,从而减少由推动器(35)移动的托盘(22)的数量。