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    • 2. 发明授权
    • Conveyor for the stepwise advance of a vertically parted boxless mould
through a pouring and cooling zone
    • 输送机用于通过倾倒和冷却区逐步推进垂直分型的无盒子模具
    • US4540036A
    • 1985-09-10
    • US510897
    • 1983-07-05
    • Kaj J. Jensen
    • Kaj J. Jensen
    • B22D47/00B22D33/00B65G25/00B22C9/20B22D5/04
    • B22D33/005B22D33/00
    • In a conveyor for the stepwise advance of a vertically parted boxless mould through a pouring and cooling zone of a guideway each side of this guideway is composed of mutually reciprocable rods or rails, at least some of which are operative to carry along the mould in its advance step and which during the advance movement as well as during the periods of standstill keep the mould permanently compressed in its transverse direction to the benefit of the accuracy of the castings produced. For the purpose of limiting the effect of possible expansion forces on the castings before full hardening thereof, at least some of the guideway rods may comprise aligned sections which in case of longitudinal expansion of the mould may be drawn apart against spring resistance.
    • 在用于通过导轨的倾倒和冷却区逐步前进垂直分隔的无盒模具的输送机中,该导轨的每侧由相互往复运动的杆或轨道组成,其至少一些可操作地沿其中的模具携带 在前进运动期间以及在静止期间保持模具在其横向方向上永久地压缩以有益于所生产的铸件的精度。 为了限制在完全硬化之前可能的膨胀力对铸件的影响,至少一些导轨杆可以包括对准的部分,其在模具的纵向膨胀的情况下可被拉开以抵抗弹簧阻力。
    • 6. 发明授权
    • Ducting system designer
    • 管道系统设计师
    • US06965848B2
    • 2005-11-15
    • US09734968
    • 2000-12-12
    • Thomas A. Ballus
    • Thomas A. Ballus
    • G06F17/50G06G7/50
    • G06F17/5004G06F17/509G06F2217/34
    • A method and means for automating the design of a ducting system for a fluid is proposed. Boundary data identifying boundary conditions of the ducting system, which boundary data comprises positional information in a three dimensional installation space and magnitude of partial fluid flow for each of at least one component terminal connection, through which fluid is exchanged with the ducting system, and positional information of at least one main terminal connection, at which the partial fluid flows are converging, is entered into a data processing system. Design data is determined by applying an optmization algorithm to the boundary data using the data processing system, which design data comprises an optimum layout of said ducting system and an identification of all required ducting components for building the ducting system, selected from a collection of standard ductwork primitives, and the data processing system communicates the design data to an external recipient.
    • 提出了一种用于自动化流体管道系统设计的方法和装置。 识别管道系统的边界条件的边界数据,该边界数据包括三维安装空间中的位置信息和用于与管道系统交换流体的至少一个部件端子连接中的每一个的部分流体流量的大小以及位置 将部分流体流动的至少一个主要终端连接的信息汇集到数据处理系统中。 通过使用数据处理系统对边界数据应用优化算法来确定设计数据,该设计数据包括所述管道系统的最佳布局以及用于构建管道系统的所有必需的管道部件的识别,所述管道部件选自标准的集合 管道原理,数据处理系统将设计数据传送给外部接收者。
    • 8. 发明授权
    • Locking and holding device, principally for holding and handling of
pattern plates, core masks, and the like
    • 锁定和保持装置,主要用于保存和处理图案板,核心面具和类似物
    • US5088608A
    • 1992-02-18
    • US531708
    • 1990-06-01
    • Jens C. Grum-Schwensen
    • Jens C. Grum-Schwensen
    • B22C21/08B22C17/00B22C23/00
    • B22C17/00
    • A locking and holding device holding and handling pattern plates, core masks and similar at molding machines in foundries. The device comprises a base plate (5) with a number of open grooves (6), which have parallel symmetry axes and are adapted to receive complementarily shaped locking studs (13), for example on a pattern plate (9). The base plate (5) is adapted to turn around a central, stationary bushing (8) projecting from the base plate, in which an upwards open recess has been made. The vertical symmetry axis of the recess is parallel to the vertical symmetry axes of the grooves in one turning position of the base plate (5). When the base plate (5) is turned away from this position, the pattern plate (9) cannot be removed from the base plate, because the wall of the recess secures the central stud (14) from the pattern plate.
    • 一种锁定和保持装置,在铸造厂的成型机中保持和处理图案板,芯面罩等。 该装置包括具有多个开口凹槽(6)的基板(5),该基板具有平行的对称轴线并且适于接收互补形状的锁定螺柱(13),例如在图案板(9)上。 基板(5)适于转动从底板突出的中心固定衬套(8),其中已经制成向上开口的凹槽。 凹部的垂直对称轴线平行于基板(5)的一个转动位置的槽的垂直对称轴。 当基板(5)离开该位置时,图案板(9)不能从基板移除,因为凹部的壁将中心螺柱(14)从图案板固定。
    • 10. 发明授权
    • Automatic foundry plant
    • 自动铸造厂
    • US5069267A
    • 1991-12-03
    • US523889
    • 1990-05-16
    • Kurt H. Larsen
    • Kurt H. Larsen
    • B22D47/00B22D47/02
    • B22D47/02
    • In an automatic foundry plant of the kind in which two or several sideways switchable switching conveyors (31,32) are placed between the pouring station (21) and the extraction station (41) in order to obtain the requisite cooling of the poured molds before these arrive to the extraction station (41) and at the same time to limit the length of the plant, the new feature consists in automatic equipment (51-53), which controls the crosswise movements of the switching conveyors (31, 32) to take place at times when the risk is as small as possible of damaging molds situated in the transition region between the mold conveyor (22) and the switching conveyor in question (31 or 32). When molds are used of the kind where two mold sections co-operate in forming a mold cavity between them, the automatic equipment (51-53) may also be adapted to control the function of the pouring station (21), thereby preventing pouring in the molds which at the conveyor switch happen to be situated in the transition region.
    • 在这种自动铸造设备中,其中两个或多个侧面可切换切换输送机(31,32)放置在浇注站(21)和提取站(41)之间,以便在浇注模具之前获得必要的浇注模具冷却 这些到达提取站(41)并且同时限制设备的长度,新特征包括自动设备(51-53),其将切换输送机(31,32)的横向运动控制到 在模具输送机(22)和所讨论的切换输送机(31或32)之间的过渡区域中的损坏模具的风险尽可能小的时候发生。 当模具使用两种模具部分在它们之间形成模腔时协同工作时,自动化设备(51-53)也可适用于控制浇注站(21)的功能,从而防止倾倒 在输送机开关处的模具恰好位于过渡区域中。