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    • 1. 发明申请
    • Door Body Holding Structure
    • 门体保持结构
    • US20110197392A1
    • 2011-08-18
    • US13124610
    • 2009-11-06
    • Kiyoshi YamaokaTakashi HibinoNobuo KondoHideo Ishigure
    • Kiyoshi YamaokaTakashi HibinoNobuo KondoHideo Ishigure
    • E05F3/22
    • E05D11/1014E05D1/04E05D11/084E05D11/105E05Y2201/21E05Y2201/424E05Y2900/608F25C5/182F25D23/028F25D2323/024F25D2400/10Y10T16/54Y10T16/54038Y10T16/543Y10T16/551Y10T16/61
    • A door body holding structure that can hold a door body at an open position by using a simple configuration. A projecting portion 40, which projects toward a containing wall 38 side, is provided on an outer surface of a bearing portion 32 of a fixed-side hinge at a position facing the containing wall 38 where the projecting portion 40 does not come into contact with an inner surface of a guide portion 34 when the door body 18 is at a closed position but the projecting portion 40 comes into contact with the inner surface of the guide portion 34 when the door body 18 is at the open position. A separation dimension between a projecting end of the projecting portion 40 and the containing wall 38 is set to be smaller than a thickness dimension of the guide portion 34. That is, when the inner surface of the guide portion 34 reaches the position at which it comes into contact with the projecting portion 40 by pivoting movement of the door body 18 from the closed position toward the open position, the guide portion 34 is sandwiched and held between the projecting portion 40 and the containing wall 38, thereby holding the door body 18 at the open position.
    • 一种门体保持结构,其能够通过简单的构造将门体保持在打开位置。 朝向容纳壁38侧突出的突出部40设置在固定侧铰链的支承部32的外表面上,在面向容纳壁38的位置处,突出部40不与其接触 当门体18处于打开位置时,当门体18处于关闭位置时,突出部分40与引导部分34的内表面接触时,引导部分34的内表面。 突出部分40的突出端和容纳壁38之间的间隔尺寸被设定为小于引导部分34的厚度尺寸。也就是说,当引导部分34的内表面到达其位置时 通过使门体18从关闭位置朝向打开位置的枢转运动而与突出部40接触,引导部34被夹持并保持在突出部40和容纳壁38之间,从而保持门体18 在开放位置。
    • 2. 发明授权
    • Door body holding structure
    • 门体保持结构
    • US08567013B2
    • 2013-10-29
    • US13124610
    • 2009-11-06
    • Kiyoshi YamaokaTakashi HibinoNobuo KondoHideo Ishigure
    • Kiyoshi YamaokaTakashi HibinoNobuo KondoHideo Ishigure
    • E05C17/64
    • E05D11/1014E05D1/04E05D11/084E05D11/105E05Y2201/21E05Y2201/424E05Y2900/608F25C5/182F25D23/028F25D2323/024F25D2400/10Y10T16/54Y10T16/54038Y10T16/543Y10T16/551Y10T16/61
    • A door body holding structure that can hold a door body at an open position by using a simple configuration. A projecting portion 40, which projects toward a containing wall 38 side, is provided on an outer surface of a bearing portion 32 of a fixed-side hinge at a position facing the containing wall 38 where the projecting portion 40 does not come into contact with an inner surface of a guide portion 34 when the door body 18 is at a closed position but the projecting portion 40 comes into contact with the inner surface of the guide portion 34 when the door body 18 is at the open position. A separation dimension between a projecting end of the projecting portion 40 and the containing wall 38 is set to be smaller than a thickness dimension of the guide portion 34. That is, when the inner surface of the guide portion 34 reaches the position at which it comes into contact with the projecting portion 40 by pivoting movement of the door body 18 from the closed position toward the open position, the guide portion 34 is sandwiched and held between the projecting portion 40 and the containing wall 38, thereby holding the door body 18 at the open position.
    • 一种门体保持结构,其能够通过简单的构造将门体保持在打开位置。 朝向容纳壁38侧突出的突出部40设置在固定侧铰链的支承部32的外表面上,在面向容纳壁38的位置处,突出部40不与其接触 当门体18处于打开位置时,当门体18处于关闭位置时,突出部分40与引导部分34的内表面接触时,引导部分34的内表面。 突出部分40的突出端和容纳壁38之间的间隔尺寸被设定为小于引导部分34的厚度尺寸。也就是说,当引导部分34的内表面到达其位置时 通过使门体18从关闭位置朝向打开位置的枢转运动而与突出部40接触,引导部34被夹持并保持在突出部40和容纳壁38之间,从而保持门体18 在开放位置。
    • 3. 发明申请
    • Water Spray Device for Ice Making Machine
    • 制冰机喷水装置
    • US20110113814A1
    • 2011-05-19
    • US13002962
    • 2009-07-21
    • Kiyoshi YamaokaTakashi HibinoNobuo KondoHideyuki TashiroTakeshi UedaAkira Harata
    • Kiyoshi YamaokaTakashi HibinoNobuo KondoHideyuki TashiroTakeshi UedaAkira Harata
    • F25C1/00
    • F25C1/25F25C2400/14F25C2500/02
    • Ice making water is uniformly supplied to ice making regions of an ice making section. A water sprayer (30) is provided with a water spray section (32) provided above an ice making section (12) so as to extend in the width direction thereof and supplying the ice making water to each ice making region (20) from water spray holes (34) arranged spaced from each other in the width direction, a buffer section (36) provided next to the water spray section (32) and having, at one end of the buffer section (36) in the width direction, an introduction section (38) for receiving the ice making water delivered under pressure, and a communication section (40) provided between the water spray section (32) and the buffer section (36) and leading the ice making water, which is received by the buffer section (36), to the water spray section (32) through the communication hole (42)
    • 制冰水均匀地供应到制冰部分的制冰区域。 喷水器(30)具有设置在制冰部分(12)上方以沿其宽度方向延伸的水喷射部分(32),并且将制冰水从水供应到每个制冰区域(20) 在宽度方向上彼此间隔布置的喷孔(34),设置在喷水部分(32)旁边的缓冲部分(36),并且在缓冲部分(36)的宽度方向上的一端具有 用于接收在压力下输送的制冰水的导入部(38),以及设置在所述喷水部(32)与所述缓冲部(36)之间并连通所述制冰水的连通部(40) 缓冲部分(36)通过连通孔(42)连接到喷水部分(32)
    • 5. 发明申请
    • ICE-MAKING MACHINE WITH ICE STORAGE BIN
    • 冰机制冰机
    • US20110023521A1
    • 2011-02-03
    • US12935745
    • 2009-03-19
    • Nobuo KondoKiyoshi YamaokaHideyuki TashiroTakeshi UedaTakashi HibinoAkira Harata
    • Nobuo KondoKiyoshi YamaokaHideyuki TashiroTakeshi UedaTakashi HibinoAkira Harata
    • F25C5/18
    • F25D23/003F25C5/20F25D2323/00264F25D2323/00274F25D2323/00277
    • An ice-making machine comprising a box-shaped lower housing provided therein with an ice storage bin, a box-shaped upper housing mounted on a rear portion of the lower housing, an ice-making mechanism assembled within the front portion of a machine compartment formed in the upper housing, and a freezing unit installed behind the ice-making mechanism for supplying refrigerant to the ice-making mechanism, wherein an open-and-close lid is mounted on an opening formed between the lower end of the front face of the upper housing and the upper end of the front face of the lower housing, and wherein an air intake passage is formed to cause outside air introduced from the front face of the lower housing to flow as cooling air into the machine compartment along inner surfaces of one side wall and the rear wall of the lower housing, and an air discharge passage is formed to cause the air after cooling to flow outward along inner surfaces of the rear wall and the other side wall of the lower housing and to discharge to the exterior from the front face of the lower housing.
    • 一种制冰机,包括设置有储冰箱的箱形下壳体,安装在下壳体的后部上的箱形上壳体,组装在机舱的前部内的制冰机构 形成在上壳体中的冷冻装置,以及安装在制冰机构的后面,用于向制冰机构供给制冷剂的冷冻装置,其中,开闭盖被安装在形成在制冰机构前表面的下端 上壳体和下壳体的前表面的上端,并且其中形成进气通道,以使得从下壳体的前表面引入的外部空气作为冷却空气沿着内壳的内表面流过机器室 形成下壳体的一个侧壁和后壁,并且形成空气排出通道,以使得冷却后的空气向下流动,该下壁的后壁的内表面和下壳体的另一侧壁 并从下壳体的前表面排出到外部。
    • 7. 发明申请
    • EDDY CURRENT TESTING METHOD AND EDDY CURRENT TESTING APPARATUS
    • EDDY电流测试方法和EDDY电流测试装置
    • US20120161758A1
    • 2012-06-28
    • US13140845
    • 2009-12-14
    • Takashi HibinoTakashi FujimotoKeisuke KomatsuYoshiyuki NakaoMakoto TakataMakoto Sakamoto
    • Takashi HibinoTakashi FujimotoKeisuke KomatsuYoshiyuki NakaoMakoto TakataMakoto Sakamoto
    • G01R33/12
    • G01N27/902G01N27/82
    • In an eddy current testing method which involves using a rotatable eddy current testing probe in which a detection coil is arranged within an exciting coil, a change in detection sensitivity (a deviation of detection sensitivity) which changes depending on the rotational position of the detection coil is reduced. The eddy current testing probe includes an exciting coil EC1, a detection coil DC1, an exciting coil EC2 and a detection coil DC2, which are mounted on a disk DS. The eddy current testing probe is placed so as to face a circumferential surface of an object to be inspected T, which is in the shape of a circular cylinder, and the disk DS is rotated. Then, the distance (liftoff) between the detection coils DC1 and DC2 and an inspection surface changes. Therefore, also the detection sensitivity to a flaw signal changes. To reduce the change in detection sensitivity, the detection sensitivity is adjusted by detecting the rotational position (rotational angle) of the detection coils DC1 and DC2.
    • 在涡电流测试方法中,涉及使用其中检测线圈布置在励磁线圈内的可旋转涡流测试探针,检测灵敏度的变化(检测灵敏度的偏差)根据检测线圈的旋转位置而变化 降低了。 涡电流测试探头包括安装在盘DS上的励磁线圈EC1,检测线圈DC1,励磁线圈EC2和检测线圈DC2。 将涡电流测试探针放置成面对被检查物体T的圆周表面,该圆形表面呈圆柱形,圆盘DS旋转。 然后,检测线圈DC1和DC2之间的距离(剥离)和检查面发生变化。 因此,对缺陷信号的检测灵敏度也会发生变化。 为了减小检测灵敏度的变化,通过检测检测线圈DC1和DC2的旋转位置(旋转角度)来调节检测灵敏度。
    • 9. 发明授权
    • Method of operating auger icemaking machine
    • 操作螺旋式制冰机的方法
    • US07062925B2
    • 2006-06-20
    • US10871787
    • 2004-06-18
    • Koji TsuchikawaTakashi HibinoHideyuki Ikari
    • Koji TsuchikawaTakashi HibinoHideyuki Ikari
    • F25C1/14
    • F25C1/147F25C5/187F25C2600/04
    • A method of operating an auger ice-making machine having a refrigeration casing, an auger screw rotatably disposed inside the casing and feeding, while scraping, the ice frozen on an inner wall surface of the casing, a stocker for storing/retaining the ice fed, the stocker being formed with an ice discharge port of the stocker in order to discharge the ice to an exterior of the machine by being opened, and a stored-ice detector for detecting a high level, and a low level, of a quantity of ice stored within the stocker, wherein: when the stored-ice detector detects the high level, a controller is activated to stop ice-making operation, and when the quantity of ice stored decreases below the low level by a required quantity, the controller restarts the ice-making operation; and when the controller judges, during a stopped state of the ice-making operation, that a block of ice has occurred in the stocker, the controller restarts the ice-making operation, provided that the stored-ice detector has detected the low level.
    • 一种操作具有制冷壳体的螺旋推冰机的方法,可旋转地设置在壳体内部的螺旋推进器螺杆,同时刮擦在壳体的内壁表面上冻结的冰块,用于储存/保持供冰的储料器 储存器形成有贮存器的排冰口,以便通过打开来将冰排出到机器的外部;以及存储冰检测器,用于检测大量的 存储在贮存器内的冰,其中:当存储冰检测器检测到高电平时,控制器被激活以停止制冰操作,并且当存储的冰量降低到低于低电平所需数量时,控制器重新启动 制冰作业; 并且当控制器在制冰操作的停止状态下判断存储器中发生冰块时,控制器重新开始制冰操作,只要存储冰检测器已经检测到低电平。
    • 10. 发明授权
    • Thermally insulated bin structure
    • 隔热箱结构
    • US4722199A
    • 1988-02-02
    • US937006
    • 1986-12-02
    • Takashi Hibino
    • Takashi Hibino
    • F25C1/12F25C5/18
    • F25C5/182F25C1/12
    • A thermally insulated bin structure comprises an inner casing having an open top and a closed bottom for storing articles, an outer casing disposed outside of the inner casing and a connecting portion for interconnecting the inner and outer casings at respective lower end portions thereof, the inner casing, the outer casing and the connecting portion being formed as an integral unit by a one-piece molding method. A front frame having an opening is fitted on the front portion of the unit, and a door is pivotably mounted on the front frame so as to open and close the opening. The cabinet accommodating therein an ice making unit is fitted into the outer casing and the front frame.
    • 隔热箱体结构包括具有开口顶部和用于储存物品的封闭底部的内壳体,设置在内壳体外侧的外壳体和用于将内壳体和外壳体的各自下端部分互连的连接部分, 壳体,外壳和连接部分通过一体成型方法形成为一体的单元。 具有开口的前框架安装在单元的前部上,并且门可枢转地安装在前框架上以打开和关闭开口。 容纳有制冰单元的柜体装配到外壳和前框架中。