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    • 83. 发明公开
    • Method to manage an insulated cooling bed and relative insulated cooling bed
    • Verfahren zum Betrieb eines isoliertenKühlbettesund entsprechendesKühlbett
    • EP0822015A1
    • 1998-02-04
    • EP97112214.8
    • 1997-07-17
    • DANIELI & C. OFFICINE MECCANICHE S.p.A.
    • Bordignon, GiuseppeGensini, Gianni
    • B21B43/00B21B39/00B21B1/46
    • B21B39/004B21B1/18B21B1/466B21B43/00B21B2001/022
    • Method to manage an insulated cooling bed placed downstream of at least one continuous casting machine with one or more feeder ways (12a, 12b, 12c, 12d) and upstream of an outlet rollerway (20) associated with a reheating and temperature-equalisation furnace (15) serving a rolling mill (16), the cooling bed (11) comprising at the inlet a first bridge crane transfer (21a) to load the billets (13) from the feeder ways (12a, 12b, 12c, 12d) and cooperating at the outlet with a bench (14) to collect the billets (13), wherein the first bridge crane transfer (21a) removes the billets (13) from one rollerway (12) or the other and lays them gradually onto the cooling bed (11) insulated at least at the lower part, a second bridge crane transfer (21b) removes the billets (13) from one or another rollerway (12) or from the cooling bed (11) and lays the billets (13) on the outlet rollerway (20) or on the collection bench (14), the billets (13) being made to advance on the cooling bed (11) rotating on their axis. Cooling bed placed between at least a continuous casting machine and a rolling mill (16), including upstream one or more feeder rollerways (12) and downstream an outlet rollerway (20) associated with a bench (14) to collect cold billets and with a reheating and temperature-equalisation furnace (15), the bed comprising positioning seatings (19) for the billets (13) and a first bridge crane transfer (21a), the cooling bed (11) including at least at the lower part an insulated containing structure (18) and comprising a second bridge crane transfer (21b) which is driven autonomously and independently in relation to the first bridge crane transfer (21a), the second bridge crane transfer (21b) being functionally associated at least with the feeder rollerways (12), the positioning seatings (19) for the billets (13) and the outlet rollerway (20).
    • 用于管理绝缘冷却床的方法,该绝热冷却床位于至少一个连续铸造机的下游,具有一个或多个进料通路(12a,12b,12c,12d)和与再加热和温度均衡炉相关联的出口辊道(20)的上游 15),其中冷却床(11)在入口处包括第一桥式起重机传送装置(21a),以从进料通道(12a,12b,12c,12d)装载坯料(13),并配合 在具有用于收集坯料(13)的工作台(14)的出口处,其中第一桥式起重机转移件(21a)从一个车道(12)或另一个车道(12)或另一个车道(12)或第二车道 至少在下部绝缘的第二桥式起重机转移件(21b)从一个或另一个车道(12)或从冷却床(11)移除钢坯(13),并将坯料(13)放置在出口 车道(20)或收集台(14)上,使坯料(13)在冷却床(11)上旋转 在它们的轴上。 放置在至少连续铸造机和轧机(16)之间的冷却床,包括上游一个或多个进料辊道(12)和与与台板(14)相关联的出口辊道(20)的下游,以收集冷坯料,并且具有 再加热和温度均衡炉(15),该床包括用于坯料(13)的定位座(19)和第一桥式起重机传送装置(21a),所述冷却床(11)至少包括在下部, 结构(18)并且包括相对于第一桥式起重机传递(21a)自主且独立地被驱动的第二桥式起重机传递(21b),所述第二桥式起重机传递(21b)至少与馈送滚道( 12),用于坯料(13)和出口辊道(20)的定位座(19)。