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    • 6. 发明申请
    • Method of manufacturing a rotary shaft
    • 旋转轴的制造方法
    • US20050067465A1
    • 2005-03-31
    • US10947244
    • 2004-09-23
    • Yasuki MizutaniHiroyuki Sugie
    • Yasuki MizutaniHiroyuki Sugie
    • F25C1/14B23K20/12A01D1/00
    • B23K20/12B23K20/129
    • Three solid round bars are prepared as auger members, respectively as a main body member, an upper shaft member, and a lower shaft member. End surfaces of the members are coaxially joined together by friction welding. Turning machining is then performed by using a lathe, forming a helical blade, a spline, and the like. In addition, burnishing is performed on a corner portion that includes an outer circumferential edge of a joining surface where friction welding is performed, and another corner portion that includes an outer circumferential edge of another joining surface where friction welding is performed. The burnishing is performed by pressing a roller, which is freely rotatable about a roller support shaft center of a Superoll, toward the corner portions of the rotating auger. Roller burnishing may also be performed two times on the same location, with a predetermined time interval therebetween.
    • 作为主体构件,上轴构件和下轴构件,分别准备三个实心圆棒作为螺旋推运构件。 构件的端面通过摩擦焊接同轴连接在一起。 然后通过使用车床进行车削加工,形成螺旋叶片,花键等。 此外,在包括进行摩擦焊接的接合面的外周缘的角部以及进行摩擦焊接的另一接合面的外周缘的另一角部进行抛光。 抛光是通过将能够绕Superoll的辊支撑轴中心自由旋转的辊朝向旋转螺旋钻的角部按压来进行的。 滚筒抛光也可以在相同的位置上进行两次,并在它们之间以预定的时间间隔。
    • 7. 发明授权
    • Ice transporting assembly, ice making and transporting system and method for transporting ice
    • 冰运输组件,制冰和运输系统以及运输冰的方法
    • US06540067B1
    • 2003-04-01
    • US09694364
    • 2000-10-24
    • David SellersHiroyuki Sugie
    • David SellersHiroyuki Sugie
    • F25G100
    • F25C1/147F25C2500/02
    • An ice transporting assembly transports ice and includes a sleeve and a tapered auger. The sleeve defines a frusto-conically shaped channel with an inlet having an inlet diameter and an outlet having an outlet diameter less than the inlet diameter. The tapered auger is mounted for rotation within the sleeve and is sized and adapted for positional agreement with the frusto-conically shaped channel. Ice at the inlet is transported through the frusto-conically shaped channel and out of the outlet by rotating the tapered auger about a rotational axis. Another embodiment of the ice transporting assembly includes a reducing sleeve having an upstream conduit section with an upstream conduit diameter, a downstream conduit section with a downstream conduit diameter less than the upstream conduit diameter and a tapered conduit interposing the upstream conduit section and the downstream conduit section. The tapered conduit defines a tapered channel that receives the tapered auger in positional agreement. Another embodiment includes an ice making and transporting system that incorporates the ice transporting assembly. A method for transporting ice from an ice source to an ice destination located remotely from the ice source is also described.
    • 冰运输组件运输冰并且包括套筒和锥形螺旋钻。 套管限定了具有入口直径的入口和具有小于入口直径的出口直径的出口的截头圆锥形通道。 锥形螺旋推运器安装成在套筒内旋转,并且其尺寸适于与截头圆锥形通道的位置一致。 通过围绕旋转轴线旋转锥形螺旋推运器,入口处的冰被输送通过截头圆锥形通道并离开出口。 冰传送组件的另一实施例包括具有上游管道部分的上游导管直径的下降管道部分,具有小于上游管道直径的下游管道直径的下游管道部分和插入上游管道段和下游管道的锥形管道 部分。 锥形导管限定锥形通道,其以位置一致的方式接收锥形螺旋钻。 另一个实施例包括一个结冰结冰系统。 还描述了将冰从冰源运送到远离冰源的冰目的地的方法。
    • 8. 发明授权
    • Auger-type ice maker
    • 俄歇式制冰机
    • US5911749A
    • 1999-06-15
    • US996290
    • 1997-12-22
    • Hiroyuki Sugie
    • Hiroyuki Sugie
    • F25C1/14
    • F25C1/147F25C2500/02F25C2500/08
    • An auger-type ice maker comprises partitions 16 projectingly provided on the outer periphery of a pressing head 9 which has been inserted and fixed to the upper portion of an ice-making cylinder 1, wherein fixed blades 25 are formed at the lower portion of the partitions 16 so as to be offset in the radial direction, and wherein the tip of the inner circumference side portion 20a thereof is situated above the greater diameter portion of the auger 6 provided with a spiral blade 5. In the above construction, the offset corner portion 20c is provided with a curvature. Accordingly, ice can be prevented from being compressed to and adhering to the corner portion 20c. Thus, the transporting resistance of ice at the lower portion of the partitions projectingly provided to the outer periphery of the pressing head can be reduced, thereby preventing decreasing in ice-making capabilities and abnormal sounds or vibrations being emitted owing to ice jamming occurring.
    • 螺旋式制冰机包括突出地设置在已经插入并固定到制冰缸1的上部的按压头9的外周上的隔板16,其中固定叶片25形成在制冰筒1的下部 隔板16沿径向偏移,并且其内周侧部分20a的前端位于设置有螺旋叶片5的螺旋推运器6的较大直径部分的上方。在上述结构中,偏移角 部分20c设有曲率。 因此,可以防止冰压缩并附着在角部20c上。 因此,可以减小突出设置在按压头的外周的隔板的下部的冰的输送阻力,从而防止制冰能力降低,并且由于发生冰堵塞而发出异常声音或振动。
    • 9. 发明授权
    • Bearing structure for auger-type ice making machines
    • 螺旋式制冰机轴承结构
    • US5531079A
    • 1996-07-02
    • US319010
    • 1994-10-06
    • Susumu TatematsuHiroyuki SugieNaoya UchidaYasumitsu TsukiyamaHideyuki Ikari
    • Susumu TatematsuHiroyuki SugieNaoya UchidaYasumitsu TsukiyamaHideyuki Ikari
    • F16C33/06F25C1/14F25C5/12
    • F25C1/147F16C33/06F25C2500/02
    • A bearing structure for an auger-type ice making machine 10 includes: an auger 17 having a helical blade 17a which rotates within a cylindrical refrigeration casing 11 so as to scrape off ice generated on the inner surface of the refrigeration casing 11 and push it up and out of the casing; a slide bearing 27 for supporting an upper shaft section 17b of the auger17; and, a press head 25 which is provided inside the upper end portion of the refrigeration casing 11 and which supports the slide bearing 27, wherein even if the upper shaft section 17b of the auger 17 and the press head 25 make an axial relative movement as a result of the scraping off and feeding-out of the ice, substantially closed first and second foreign matter trapp spaces A and B are formed in close proximity to the lower and upper ends of the slide bearing. Further, a high-hardness metal layer 17f having a thickness, for example, of approximately 0.5 mm is formed on the surface of the upper shaft section 17b of the auger 17. Any exfoliated portion of the bearing section is trapped in the foreign matter trap spaces, and a satisfactory slideface is formed between the slide bearing and the high-hardness metal layer to achieve a substantial improvement in wear resistance properties.
    • 用于螺旋式制冰机10的轴承结构包括:具有螺旋叶片17a的螺旋推运器17,该螺旋叶片在圆柱形制冷机壳11内旋转,以便刮掉在冷藏套筒11的内表面上产生的冰并将其推开 并从外壳出来; 用于支撑螺旋推运器17的上轴部分17b的滑动轴承27; 以及设置在制冷机壳11的上端部的内侧并支承滑动轴承27的按压头25,其中即使螺旋推运器17的上轴部17b和压头25作轴向相对运动 第一和第二异物捕获空间A和B基本封闭的结果是紧靠滑动轴承的下端和上端形成。 此外,在螺旋钻17的上轴部17b的表面上形成厚度例如约为0.5mm的高硬度金属层17f。轴承部分的任何剥离部分都被夹在异物阱 在滑动轴承和高硬度金属层之间形成令人满意的滑动面,以实现耐磨性能的显着提高。
    • 10. 发明授权
    • Auger type ice-making machine
    • 螺旋式制冰机
    • US06691529B2
    • 2004-02-17
    • US10269850
    • 2002-10-11
    • Hiroyuki SugieMika HamajimaAkihiro Sato
    • Hiroyuki SugieMika HamajimaAkihiro Sato
    • F25C114
    • F25C1/147
    • An auger type ice-making machine of the present invention comprises a tubular freezer casing which has an ice-making cylinder that rotatably accommodates an auger inside, an ice compression head which rotatably supports the upper end of the auger, a housing which rotatably supports the lower end of the auger, and a geared motor which is connected to the lower part of the housing. The geared motor drives the auger rotationally. And the auger type ice-making machine of the present invention further comprises a flange which constitutes an attachment base for the ice discharge tube attached to the upper part of the freezer casing. The flange is fastened to the ice-making cylinder by means of bolts that also fasten the ice compression head to the inside of the ice-making cylinder.
    • 本发明的螺旋式制冰机包括:管状冷冻箱,其具有可旋转地容纳螺旋推运器的制冰缸,可旋转地支撑螺旋钻的上端的冰压缩头,可旋转地支撑螺旋钻的壳体, 螺旋推运器的下端和连接到壳体的下部的齿轮传动马达。 齿轮传动马达旋转驱动螺旋钻。 并且本发明的螺旋式制冰机还包括构成用于安装在冷冻箱上部的排冰管的安装基座的凸缘。 法兰通过螺栓固定在制冰缸上,螺栓也将冰压缩头固定在制冰缸的内部。