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    • 2. 发明专利
    • Carbonated water discharge device
    • 碳化水排放装置
    • JP2013086078A
    • 2013-05-13
    • JP2011232100
    • 2011-10-21
    • Takara Belmont Co Ltdタカラベルモント株式会社Kps Kogyo Kkケーピーエス工業株式会社
    • FUJIMOTO KOHEIOBAYASHI TOSHIHIKOYASUJIMA TAKESHI
    • B01F1/00B01F3/04B01F5/12
    • PROBLEM TO BE SOLVED: To solve the problem in a conventional carbonated spring generation device that concentration of the carbonated spring is unstable and the carbonated spring concentration cannot be changed since the quantity of carbon dioxide gas is fixed but the carbon dioxide gas is dissolved with respect to the quantity of water in accordance with water pressure from a supply water source.SOLUTION: In the carbonated water discharge device, carbonated water is generated by a cascade pump 11 which increases pressure while mixing and stirring water (hot water) from an inlet of water (hot water) from a shampoo device and carbon dioxide gas from a carbon dioxide gas supply source 1 including a carbon dioxide cylinder. There is provided a dissolution tank 13 for storing the generated carbonated water, and the carbonated water is discharged from the dissolution tank to a discharge port to the shampoo device.
    • 解决的问题为了解决由于二氧化碳气体的固定而二氧化碳气体是二氧化碳气体是固定的,因此碳酸弹簧的浓度不稳定并且碳酸化弹簧浓度不能改变的常规碳酸泉发生装置的问题 根据来自供水源的水压,相对于水量溶解。 解决方案:在碳酸化水排出装置中,碳酸水由级联泵11产生,该级联泵11在从洗发器装置的水(热水)入口和二氧化碳气体混合搅拌水(热水)的同时增加压力 来自包括二氧化碳气瓶的二氧化碳气体供应源1。 设置有用于储存产生的碳酸水的溶解槽13,并且将碳酸水从溶解槽排放到洗发装置的排出口。 版权所有(C)2013,JPO&INPIT
    • 6. 发明专利
    • Canned pump
    • 罐头泵
    • JP2011132916A
    • 2011-07-07
    • JP2009294666
    • 2009-12-25
    • Kps Kogyo Kkケーピーエス工業株式会社
    • YASUJIMA TAKESHI
    • F04D13/06F04D5/00
    • PROBLEM TO BE SOLVED: To provide a canned pump which can be simplified and reduced in weight. SOLUTION: The canned pump A includes a motor case 1, a stator 2 arranged inside the motor case, a cylindrical can 3 which is arranged inside the stator 2 and has an axial one end side opened and a bottom 33 at the other end and further has an outward flange 32 at the axial one end, a cover 6 whose peripheral portion is coupled to the outward flange 32 to cover one end side of the can 3, a rotor 4 with a shaft 41 whose one end and other end are rotatably supported to the cover 6 and the bottom 33, respectively, a cascade impeller 5 supported to one end side of the shaft 41, and a pressurizing chamber 7 which houses partially the outer periphery of the cascade impeller 5 to pressurize fluid by the rotation of the cascade impeller 5. The pressurizing chamber 7 is defined by one surface of the outward flange 32 and the inner surface of the cover 6. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供可以简化和减轻重量的罐头泵。 解决方案:罐装泵A包括电动机壳体1,布置在电动机壳体内的定子2,设置在定子2内部并且具有轴向一端侧开口的圆筒形罐3和位于另一侧的底部33 并且在轴向一端还具有向外的凸缘32,其外周部分与外凸缘32连接以覆盖罐3的一端侧的盖6,具有一端和另一端的轴41的转子4 分别可旋转地支撑在盖6和底部33上,支撑在轴41的一端侧的级联叶轮5和部分地容纳级联叶轮5的外周的加压室7,以通过旋转来对流体加压 加压室7由向外凸缘32的一个表面和盖6的内表面限定。(C)2011,JPO&INPIT
    • 7. 发明专利
    • Pump unit
    • 泵单元
    • JP2008163858A
    • 2008-07-17
    • JP2006355048
    • 2006-12-28
    • Kps Kogyo Kkケーピーエス工業株式会社
    • YASUJIMA TAKESHI
    • F04D13/06B01F1/00F04D5/00
    • PROBLEM TO BE SOLVED: To provide a pump unit superior even in safety, for delivering an air-dissolved liquid under relatively high pressures. SOLUTION: This pump unit X has a base body 1 having a pipe L1 and a pipe L2, a circulating pump 2, a gas-liquid separating tank 3, and a cover 4 covering the circulating pump 2 and the gas-liquid separating tank 3. The circulating pump 2 is constituted in a canned type, and introduces fluid from the pipe L1, and delivers the fluid in a predetermined high pressure state. An air intake valve 6 is connected to the pipe L1, and air is introduced to the pipe L1 from an external part via the air intake valve 6 and a pipe L3 connected to this valve. The gas-liquid separating tank 3 discharges the air-dissolved liquid to the external part via the pipe L2 while separating and exhausting insoluble air in the fluid from an air vent valve 7 by flowing the fluid delivered from the circulating pump 2, and exhausts the air exhausted from the air vent valve 7 to the external part via a pipe L5. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提供甚至在安全性方面优异的泵单元,用于在相对高的压力下输送空气溶解的液体。

      解决方案:该泵单元X具有管体L1和管L2的基体1,循环泵2,气液分离罐3和覆盖循环泵2和气液的盖4 分离罐3.循环泵2以罐装式构成,从管L1引入流体,将流体输送到规定的高压状态。 进气阀6连接到管道L1,并且空气经由进气阀6从外部引入到管道L1和连接到该阀的管L3。 气液分离罐3通过管道L2将空气溶解的液体排出到外部,同时通过使从循环泵2输送的流体流动而从排气阀7分离并排出流体中的不溶性空气,并排出 从排气阀7经管L5向外部排出的空气。 版权所有(C)2008,JPO&INPIT

    • 8. 发明专利
    • Draining device
    • 排水装置
    • JP2005179964A
    • 2005-07-07
    • JP2003420359
    • 2003-12-18
    • Kps Kogyo KkKusatsu Electric Co Ltdケーピーエス工業株式会社草津電機株式会社
    • TADAKUMA MUTSUMI
    • E03C1/12F04B23/02F04B23/04F04B49/10
    • PROBLEM TO BE SOLVED: To provide a draining device which requires only a relatively shallow vertical depth of an installation space.
      SOLUTION: The draining device A is arranged under a floor surface FL, for forcedly draining water introduced from water section equipment to an area under the floor surface FL. The draining device is formed of a water storage tank 2 having a water receiving port, a plurality of draining pumps 3 for sucking water in the water storage tank 2 to discharge the same to a predetermined drainage ditch, a water level sensor for detecting whether a water level in the water storage tank 2 reaches a predetermined value, and a control means for activating the draining pumps 3 upon detection that the water level in the water storage tank 2 has reached the predetermined value. Further the draining pumps 3 and the water storage tank 2 can be housed in a flattened space under the floor surface FL.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种仅需要相对较浅的垂直深度的排水装置。 解决方案:排水装置A布置在地板FL下方,用于将从水部分设备引入的水强制排出到地板FL下面的区域。 排水装置由具有吸水口的储水箱2,用于在储水箱2中吸水以排放到预定排水沟的多个排水泵3构成,水位传感器用于检测是否 储水箱2中的水位达到预定值;以及控制装置,用于在检测到储水箱2中的水位达到预定值时启动排水泵3。 此外,排水泵3和储水箱2可以容纳在地板表面FL下方的扁平空间中。 版权所有(C)2005,JPO&NCIPI
    • 10. 发明专利
    • Pump unit
    • 泵单元
    • JP2009299629A
    • 2009-12-24
    • JP2008156912
    • 2008-06-16
    • Kps Kogyo KkToshiba Home Appliances Corpケーピーエス工業株式会社東芝ホームアプライアンス株式会社
    • YASUJIMA TAKESHIFUKUDA TATSUHISA
    • F04D15/00
    • PROBLEM TO BE SOLVED: To appropriately generate micro bubbles while accurately grasping a change in the operating state of a pump such as clogging which occurs in a part of a flow path.
      SOLUTION: A pump unit X is composed of a pump 2 which is operated at a prescribed rotation speed and introduces fluid through piping L1 and discharges the fluid to piping L4 in a prescribed high pressure state, a pressure sensor 8 for detecting the pressure of the fluid passing through the piping L4, a display means for displaying the operating state of the pump 2, and piping L3 connected to the piping L1 to introduce outside air to the piping L1. The piping L3 is provided with a speed controller 61 for adjusting an air volume introduced into the piping L1. The display means displays on a display lamp 13 the volume of air entering the pump 2 through the piping L1 as it is appropriate when a detection value of the pressure sensor 8 falls within a prescribed range, and on the display lamp 13 the volume of air entering the pump 2 as it is appropriate when the detection value of the pressure sensor 8 is out of the prescribed range.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:适当地产生微气泡,同时准确地掌握在流路的一部分中发生的诸如堵塞的泵的操作状态的变化。 解决方案:泵单元X由以规定转速运转的泵2构成,通过管路L1引入流体,将流体以规定的高压状态排出到管道L4;压力传感器8, 通过管道L4的流体的压力,用于显示泵2的操作状态的显示装置和连接到管道L1的管道L3,以将外部空气引入管道L1。 管道L3设有用于调节引入管道L1的空气量的速度控制器61。 显示装置在显示灯13上,当压力传感器8的检测值落在规定范围内时,适当地通过管路L1在显示灯13上显示进入泵2的空气的体积,在显示灯13上显示空气的体积 当压力传感器8的检测值超出规定范围时,适当地进入泵2。 版权所有(C)2010,JPO&INPIT