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    • 1. 发明授权
    • Pump assembly for an ice making machine
    • 制冰机的泵组件
    • US07284391B2
    • 2007-10-23
    • US10746243
    • 2003-12-23
    • Richard T. MillerMichael C. HollenHoward G. FunkMarty J. LafondCharles E. Schlosser
    • Richard T. MillerMichael C. HollenHoward G. FunkMarty J. LafondCharles E. Schlosser
    • F25C1/12
    • F25C5/10F25B5/02F25B2400/22F25C1/12
    • An ice making machine has a mechanical compartment and a water compartment that houses a water system, and a pump assembly. The pump assembly includes a motor and a pump housing connected to the motor. The pump assembly is mounted to a base between the machine compartment and the water compartment so that the pump motor is located in the mechanical compartment, but can still be removed through the water compartment. A mounting flange attached to the pump assembly extends radially beyond the circumference of the pump motor. In one embodiment, a pump opening in the base has a collar integrally formed with the base. The collar includes a sealing section and a latching section. When the pump is inserted through the pump opening, snap latches in the latching section engage the mounting flange to hold the pump in place and the sealing flange seals against an inner surface of the sealing section.
    • 制冰机具有机械隔室和容纳水系统的水室和泵组件。 泵组件包括电动机和连接到电动机的泵壳体。 泵组件安装在机器舱和水室之间的基座上,使得泵马达位于机械隔室中,但是仍然可以通过水室移除。 附接到泵组件的安装凸缘径向延伸超过泵电机的圆周。 在一个实施例中,基座中的泵开口具有与基部一体形成的轴环。 套环包括密封部分和闩锁部分。 当泵通过泵开口插入时,闩锁部分中的卡扣闩锁接合安装凸缘以将泵保持在适当位置,并且密封凸缘密封在密封部分的内表面上。
    • 2. 发明授权
    • Ice machine with assisted harvest
    • 制冰机辅助收获
    • US06681580B2
    • 2004-01-27
    • US10236488
    • 2002-09-06
    • Scott J. ShedivyTimothy J. KrausCharles E. SchlosserMathew E. KampertRichard T. Miller
    • Scott J. ShedivyTimothy J. KrausCharles E. SchlosserMathew E. KampertRichard T. Miller
    • F25C510
    • F25C5/10F25C1/12F25C2400/14F25D2500/02Y02P60/855
    • A method of making and harvesting ice cubes includes freezing water in an ice-forming mold having a back surface, an open front face and dividers mounted on the back surface forming pockets for the formation of individual ice cubes, the water also forming ice bridges between the ice formed in the pockets, thus forming a slab of ice cubes; heating the ice-forming mold to release the ice cubes from their individual pockets; and using pressurized fluid to push the frozen slab of ice cubes out of the ice-forming mold. An ice making machine for practicing the present invention preferably includes an air compressor to supply compressed air as the pressurized fluid. The compressed air is directed preferably through a plurality of holes in the back of the ice-forming mold. Weep holes in the dividers allow this pressurized air to migrate from these holes to the areas behind each of the pockets in the ice-forming mold, thus applying a uniform pressure over a large surface area to assist the slab of ice in releasing from the ice-forming mold. The assisted harvest greatly increases the energy efficiency of the ice machine.
    • 一种制作和收获冰块的方法包括在具有后表面,开口前表面和安装在后表面上的分隔件的成型模具中冷冻水,形成用于形成各个冰块的袋,水还形成 在口袋中形成冰,从而形成一块冰块; 加热成型模具以从​​其各个口袋中释放冰块; 并使用加压流体将冰块的冰块推出成型模具。 用于实施本发明的制冰机优选地包括用于供应压缩空气作为加压流体的空气压缩机。 压缩空气优选地通过制冰模具背面的多个孔。 分隔器中的漏孔允许这种加压空气从这些孔迁移到成型模具中的每个袋后面的区域,从而在大的表面积上施加均匀的压力以帮助冰块从冰中释放 成型模具。 辅助收获大大提高了制冰机的能源效率。
    • 4. 发明授权
    • Low-volume ice making machine
    • 小批量制冰机
    • US07082782B2
    • 2006-08-01
    • US10898449
    • 2004-07-23
    • Charles E. SchlosserRichard T. MillerScott J. Shedivy
    • Charles E. SchlosserRichard T. MillerScott J. Shedivy
    • F25C1/06
    • F25C1/06F25C1/25F25C2400/12F25C2600/04F25C2700/04
    • An ice machine includes an evaporator with a plurality of individual ice-forming cells. Each ice-forming cell is open at a lower end. A water distributor is coupled to the evaporator and configured to deliver water to the upper end of each ice-forming cell. A refrigeration system in the ice machine is configured to cool each of the plurality of ice-forming cells, such that individual ice cubes are formed in each ice-forming cell. A water recirculation system includes a water collection unit positioned between the evaporator and a water sump. The water collection unit collects water flowing from the ice-forming cells in first and second chambers. A water detection probe is positioned in the second chamber. A harvest cycle is initiated when the water level in the second chamber falls below a specified level. A method of operating the ice machine is also provided.
    • 制冰机包括具有多个单独的制冰单元的蒸发器。 每个成冰池在较低端打开。 水分配器耦合到蒸发器并且被配置为将水输送到每个冰形成单元的上端。 制冰机中的制冷系统被配置为冷却多个制冰单元中的每一个,从而在每个制冰单元中形成各个冰块。 水循环系统包括位于蒸发器和水槽之间的集水单元。 水收集单元收集从第一和第二室中的冰形成单元流出的水。 水检测探针位于第二腔室中。 当第二室中的水位低于指定水平时,开始收获循环。 还提供了一种操作制冰机的方法。
    • 8. 发明授权
    • Ice making machine and control method therefore
    • 因此制冰机和控制方法
    • US5878583A
    • 1999-03-09
    • US828761
    • 1997-04-01
    • Charles E. SchlosserCary J. PierskallaGregory F. Krcma
    • Charles E. SchlosserCary J. PierskallaGregory F. Krcma
    • F25C1/04F25C1/12F25C1/18F25C1/22F25C5/00F25C5/10
    • F25C1/12F25C5/10F25C1/18F25C2400/14
    • An ice making machine comprises a refrigerant system having a compressor, a condenser, an expansion device, an evaporator and interconnecting refrigerant lines; a water system having a fresh water inlet, a water circulation mechanism, an ice-forming device in thermal contact with the evaporator and interconnecting water lines; and a control system comprising a temperature sensing device in thermal contact with the outlet of the condenser, and a microprocessor programmed to use input from the temperature sensing device either i) at a predetermined time after initiation of a freeze cycle to determine the desired duration of the freeze cycle or ii) at a predetermined time prior to the end of the freeze cycle to determine the desired duration of the harvest cycle, or iii) both i) and ii), to control the refrigeration and water systems to operate in a freeze cycle and/or the harvest cycle until the end of the desired duration(s).
    • 制冰机包括具有压缩机,冷凝器,膨胀装置,蒸发器和互连制冷剂管线的制冷剂系统; 具有淡水入口的水系统,水循环机构,与蒸发器热交换的制冰装置和互连水管线; 以及控制系统,包括与冷凝器的出口热接触的温度感测装置,以及被编程为使用来自温度感测装置的输入的微处理器,i)在开始冷冻循环之后的预定时间,以确定期望的持续时间 冷冻循环或ii)在冷冻循环结束之前的预定时间以确定收获周期的期望持续时间,或iii)i)和ii),以控制制冷和水系统在冻结中操作 循环和/或收获循环,直到所需持续时间的结束。