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    • 42. 发明公开
    • Gas cooling and recirculating device in continuous strip furnaces
    • 装置,用于连续带式炉循环和气体的冷却。
    • EP0145847A1
    • 1985-06-26
    • EP84110447.4
    • 1984-09-03
    • ITALIMPIANTI Società Italiana Impianti p.a.
    • Falco, GiulioMannucci, Ivo
    • C21D9/573C21D9/56
    • C21D9/573
    • A "jet cooler" device for cooling and recirculating the gas forming the protective atmosphere in the cooling chambers of the furnaces for the continuous annealing of steel strips, comprises vertically arranged boxes (4) which extend in the furnace interior between successive vertically extending parallel strip sections, substantially over the whole length thereof, i.e., throughout the height of the furnace, and which have their walls (104) turned toward the facing adjacent strip sections provided with perforations (5). Associated to each vertically arranged perforated box (4) are a plurality of individual protective gas-cooling and recirculating units (6), which are distributed over the vertical extent of the respective box (4) and are attached to the outside of the furnace sidewalls (1). Each cooling and recirculating unit (6) comprises a heat exchanger (13) in form of a group of water-cooling rectilinear tubes, and a fan (11) that draws the protective gas from the furnace inside and cools it by causing the same to flow through the heat exchanger (13) and that blows this gas at a certain pressure into the associated vertically arranged box (4). The protective gas then flows out of the perforations (5) in the vertically arranged box (4) in form of jets directed to the facing surfaces of the adjacent strip sections.
    • 43. 发明公开
    • Vertical stacking terminal for containers
    • Vorrichtung zum senkrechten Stapeln vonBehältern。
    • EP0133472A2
    • 1985-02-27
    • EP84107746.4
    • 1984-07-04
    • ITALIMPIANTI Società Italiana Impianti p.a.
    • Lancieri, FedericoLeone, DomenicoGrattarola, Carlo
    • B65G1/04
    • B65G1/0492B65G1/0485
    • This invention relates to a vertical stacking terminal for containers, comprising at least one corridor (1) having at both sides thereof a plurality_of storage or stacking compartments (2) in a multiple-tier arrangement and designed to receive the containers (C). Robot transfer carriages (4) are provided in said corridor (1) and are movable along the corridor on horizontal runways (5) located at each tier or level of storage compartments (2). These robot transfer carriages are intended to move the containers (C) horizontally along the corridor and to introduce them into and retrieve them from the storage compartments (2). At least at one end of the corridor (1) there is provided a lifting unit (3) for moving the incoming and outgoing containers (C) vertically. According to the invention, the lifting unit (3) is provided with its own container-holding means (37) whereby a container (C) is received from or is delivered to the robet transfer carriage (4) operating at a given tier, while at ground level suitable introduction and retrieval transfer means (6, 6') are provided to receive an incoming container from a loading or introduction area (8) and deliver it to the container-holding means (37) of the lifting unit (3), and to receive an outgoing container from the container-holding means (37) of the lifting unit (3) and transfer it to an unloading or retrieval area (8'). Thus, the three basic handlings of a container, namely ensilage or de-ensilage, lifting up or hauling down, and ingress or egress, are separated from each other and are effected by different means, respectively (robot carriages, lifting unit with its own container-holding means, and introduction and retrieval transfer means at ground level), in different and independent time periods which do not add to each other.
    • 本发明涉及一种用于容器的垂直堆垛端子,其包括至少一个走廊(1),其两侧具有多层设置的多个储存或堆垛隔间(2),并被设计成容纳容器(C)。 所述走廊(1)中设置有机器人转移支架(4),并且可沿位于每个储存隔间(2)的每个层级或水平的水平跑道(5)上的走廊移动。 这些机器人传送支架旨在沿着走廊水平移动容器(C)并将它们引入存储隔间(2)并将其从存储隔间(2)中取出。 至少在走廊(1)的一端设置有用于垂直移动进入和离开的容器(C)的提升单元(3)。 根据本发明,提升单元(3)设置有自己的容器保持装置(37),由此容器(C)从给定层次上运送到或者传送到机器人转运支架(4),同时 在地面处设置适当的引入和回收转移装置(6,6分钟)以从装载或引入区域(8)接收进入的容器,并将其输送到提升单元(3)的容器保持装置(37) 并且从提升单元(3)的容器保持装置(37)接收出出的容器并将其传送到卸载或取回区域(8分钟)。 因此,容器的三个基本处理方式,即容器或卸货,提升或牵引,以及入口或出口,分别彼此分离(分别为机器人托架,具有自己的提升单元的机器人托架 集装箱保持手段,地面上的引入和检索转移手段),在不相互补充的不同和独立的时间段内。