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    • 11. 发明授权
    • Ice making unit structure of flow type ice making machine
    • 流式制冰机的制冰单元结构
    • US5520011A
    • 1996-05-28
    • US408383
    • 1995-03-22
    • Takashi Hibino
    • Takashi Hibino
    • F25C1/12
    • F25C1/12
    • A flow type ice making machine comprises at least one cooling zigzag pipe 14 or 15 through which a coolant flows, a pair of ice making plates 17 and 18 vertically disposed so as to sandwich the cooling zigzag pipe therebetween, and a pair of mount plates 11 and 12 vertically disposed at both ends of the ice making plates, respectively, and supporting opposite bent ends of the cooling zigzag pipe. The pair of mount plates have respective cut-out portions 11b and 12b being open upward, and a sprinkling device is inserted to the cut-out portions so as to cover upper ends of the ice making plates. A pair of extension fins 27a and 27b formed along opposite outer side surfaces of the sprinkling device, respectively, are sandwiched between the pair of mount plates to thereby position and fix the sprinkling device.
    • 流式制冰机包括至少一个冷却剂流过的冷却之字形管14或15,一对垂直设置以将冷却之字形管夹在其间的制冰板17和18以及一对安装板11 和12垂直设置在制冰板的两端,并支撑冷却之字形管的相对的弯曲端。 一对安装板具有向上开口的相应的切口部分11b和12b,并且将切割装置插入切口部分以覆盖制冰板的上端。 分别在喷洒装置的相对的外侧表面上形成的一对延伸片27a和27b被夹在一对安装板之间,从而定位和固定喷洒装置。
    • 12. 发明授权
    • Printing machine for corrugated board sheet
    • 波纹板印刷机
    • US5265535A
    • 1993-11-30
    • US991788
    • 1992-12-17
    • Yasuyuki IsowaTakashi Hibino
    • Yasuyuki IsowaTakashi Hibino
    • B41F31/08B41F31/20B41F35/04B41F31/00
    • B41F35/04B41F31/08B41F31/20
    • Disclosed is a printing machine for corrugated board sheets, which is designed to facilitate the procedures of ink change in accordance with order changes in the printing of corrugated board sheets by using a low viscosity and quick-drying glycolic ink, in which the residual ink of the previous order can effectively be recovered so as to minimize the amount of the ink to be wasted. The printing machine having a plate cylinder with a printing die mounted thereon and an impression cylinder disposed to oppose to the plate cylinder, rotatable in the different rotational directions, in which corrugated board sheets are designed to pass through the clearance between the plate cylinder and the impression cylinder to carry out printing in a predetermined pattern, the printing machine further comprising an ink transfer roll which rotates in contact with the printing die; a squeezing roll which rotates normally in contact with the ink transfer roll during operation of the printing machine to adjust the amount of the ink on the surface of the ink transfer roll; a supply unit to selectively supply a low-viscosity and highly quick-drying ink or a cleaner to the ink fountain defined between the rolls; a pair of dams to selectively open and close the both longitudinal extremities of the ink fountain; and a scraper which scrapes off the ink or the ink washing waste transferred to the roll when the scraper is brought into contact therewith.
    • 本发明公开了一种瓦楞纸板印刷机,其特征在于,通过使用低粘度和快速干燥的乙醇酸油墨,根据印刷瓦楞纸板的顺序变化,便于改变油墨的过程,其中残留油墨 可以有效地恢复先前的顺序,以便最小化要被浪费的墨水的量。 印刷机具有安装有印刷模具的印版滚筒和压印滚筒,所述印版滚筒设置成与所述印版滚筒相对,所述印版滚筒可沿不同的旋转方向旋转,波纹板片被设计成穿过印版滚筒和印版滚筒之间的间隙 压印滚筒以预定图案进行印刷,所述印刷机还包括与所述印刷模具接触旋转的输墨辊; 挤压辊,其在打印机操作期间正常地与油墨传送辊接触,以调节墨水输送辊表面上的墨水量; 供应单元,用于选择性地向位于辊之间的墨斗供应低粘度和高速干燥的油墨或清洁剂; 一对坝,用于选择性地打开和关闭墨斗的两个纵向末端; 以及当刮刀与其接触时刮掉墨水或墨水清洗废物转移到卷筒上的刮刀。
    • 13. 发明授权
    • Eddy current testing method and apparatus for inspecting an object for flaws
    • 用于检查物体的涡流检测方法和装置的缺陷
    • US08803516B2
    • 2014-08-12
    • US13140845
    • 2009-12-14
    • Takashi HibinoTakashi FujimotoKeisuke KomatsuYoshiyuki NakaoMakoto TakataMakoto Sakamoto
    • Takashi HibinoTakashi FujimotoKeisuke KomatsuYoshiyuki NakaoMakoto TakataMakoto Sakamoto
    • G01R33/12G01N27/90G01N27/82
    • 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。
    • 17. 发明申请
    • CARBON QUANTITY DETECTING SENSOR WITH INCREASED DETECTING PRECISION
    • 碳量检测传感器具有更高的检测精度
    • US20100051458A1
    • 2010-03-04
    • US12549910
    • 2009-08-28
    • Shinya TERANISHIKeigo MizutaniTakashi HibinoAtsuko Tomita
    • Shinya TERANISHIKeigo MizutaniTakashi HibinoAtsuko Tomita
    • G01N27/26
    • G01N27/4074G01N27/4071
    • A carbon quantity detecting sensor for continuously detecting a carbon quantity of measuring gases with increased precision using a simplifier structure is disclosed. The sensor includes at least a proton conductive body composed of a solid electrolyte body having a proton conductivity, an electrode pair composed of a measuring electrode and a reference electrode formed on the proton conductive body at opposing surfaces thereof respectively, and a power source for applying at least one of a given current or a given voltage across the electrode pair. The measuring gases electrode is exposed to the measuring gases and the reference electrode is isolated from the measuring gases. This enables the carbon quantity of measuring gases to be detected with increased precision for a long period of time without causing a carbon component to accumulate on a surface of the measuring electrode due to an electrochemical reaction.
    • 公开了一种碳量检测传感器,用于使用简化结构连续检测测量气体的碳量增加的精度。 所述传感器至少包括质子传导体,所述质子传导体由具有质子传导性的固体电解质体,由测量电极和在其相对表面上形成在所述质子传导体上的参考电极组成的电极对,以及用于施加的电源 跨过电极对的给定电流或给定电压中的至少一个。 测量气体电极暴露于测量气体,参考电极与测量气体隔离。 这使得能够长时间地以更高的精度检测测量气体的碳量,而不会由于电化学反应而使碳成分积聚在测量电极的表面上。
    • 18. 发明授权
    • Ice making machine
    • 制冰机
    • US4505130A
    • 1985-03-19
    • US589667
    • 1984-03-13
    • Takashi HibinoNobutaka NaruseKazuhiro Yoshida
    • Takashi HibinoNobutaka NaruseKazuhiro Yoshida
    • F25C1/04F25C1/12
    • F25C1/045
    • The ice making machine constructed in accordance with the invention has an ice making mold with a plurality of ice making cells opened at the bottom, a water tank, water spray nozzles adapted for spraying the water contained in the water tank towards said ice making cells, an ice stocker adapted for storage of ice cubes formed in and harvested from said ice making cells, and an inclined plate having water spray openings and recovery openings and mounted between said ice making mold and the water spray nozzles.The inclined plate comprises a corrugated upper section, a similarly corrugated lower section and a transition section having a flat surface and interconnecting said upper and lower sections. The recesses and projections of the upper section are aligned respectively with projections and recesses of said lower section in the direction in which the water and ice cubes are moved on the inclined plate. The lowermost points of the recesses of the upper section are connected to and are at the same height level as the uppermost points of the associated projections of the lower section.
    • 根据本发明构造的制冰机具有制冰模具,其底部开有多个制冰单元,水箱,用于将容纳在水箱中的水朝向所述制冰单元喷洒的水喷嘴, 适于存储形成在所述制冰单元中并从所述制冰单元收获的冰块的储冰机,以及具有喷水开口和回收开口并安装在所述制冰模具和所述喷水喷嘴之间的倾斜板。 倾斜板包括波纹状上部,类似波纹状的下部和具有平坦表面并且互连所述上部和下部的过渡部分。 上部的凹部和突起分别与水和冰块在倾斜板上移动的方向分别对准所述下部的突起和凹部。 上部的凹部的最低点连接到与下部的相关联的突起的最上点相同的高度水平。
    • 19. 发明授权
    • Ice-making and fresh water dispensing apparatus
    • 制冰和淡水分配装置
    • US4448032A
    • 1984-05-15
    • US422431
    • 1982-09-23
    • Takashi HibinoYoshinori Ito
    • Takashi HibinoYoshinori Ito
    • C02F1/22F25C1/12B01D9/04
    • C02F1/22F25C1/12F25C2700/04
    • An apparatus, made in accordance with the present invention, comprises an ice-making unit for making pure ice using a refrigeration system, an electric heater for melting into fresh water the ice produced by the ice-making unit, a tank for storing the fresh water resulting from the melting, a sensor for sensing the water temperature prevailing in the tank, and a control responsive to a signal from the sensor to actuate the heater for maintaining the water temperature at a predetermined value. The apparatus further comprises a sensor for sensing the water level in the tank, and a control responsive to a signal from the water level sensor to control the operation of the ice-making unit for maintaining the water level at a predetermined value.
    • 根据本发明制造的装置包括用于使用制冷系统制造纯冰的制冰单元,用于将由制冰单元产生的冰熔化成淡水的电加热器,用于储存新鲜的 由熔化产生的水,用于感测罐中的水温的传感器,以及响应于来自传感器的信号的控制器,用于致动加热器以将水温保持在预定值。 该装置还包括用于感测罐中的水位的传感器和响应于来自水位传感器的信号的控制器,以控制制冰单元的操作以将水位保持在预定值。
    • 20. 发明授权
    • Ice-making and fresh water dispensing apparatus
    • 制冰和淡水分配装置
    • US4370865A
    • 1983-02-01
    • US297972
    • 1981-08-31
    • Takashi HibinoYoshinori Ito
    • Takashi HibinoYoshinori Ito
    • C02F1/22F25C1/12F25B25/00
    • F25C1/12C02F1/22F25C2700/04
    • An apparatus, made in accordance with the present invention, comprises an ice-making unit for making pure ice using a refrigeration system, an electric heater for melting into fresh water the ice produced by the ice-making unit, a tank for storing the fresh water resulting from the melting, a sensor for sensing the water temperature prevailing in the tank, and a control responsive to a signal from the sensor to actuate the heater for maintaining the water temperature at a predetermined value. The apparatus further comprises a sensor for sensing the water level in the tank, and a control responsive to a signal from the water level sensor to control the operation of the ice-making unit for maintaining the water level at a predetermined value.
    • 根据本发明制造的装置包括用于使用制冷系统制造纯冰的制冰单元,用于将由制冰单元产生的冰熔化成淡水的电加热器,用于储存新鲜的 由熔化产生的水,用于感测罐中的水温的传感器,以及响应于来自传感器的信号的控制器,用于致动加热器以将水温保持在预定值。 该装置还包括用于感测罐中的水位的传感器和响应于来自水位传感器的信号的控制器,以控制制冰单元的操作以将水位保持在预定值。