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    • 1. 发明专利
    • Micro nano-bubble generating apparatus, and micro nano-bubble water generating apparatus
    • 微型纳米泡沫发生装置和微纳米泡沫水发生装置
    • JP2012139646A
    • 2012-07-26
    • JP2010294543
    • 2010-12-29
    • Bicom:KkHideki IharaKoji TairaMasamitsu Takahashi英樹 伊原広次 平良株式会社バイコム正光 高▲橋▼
    • IHARA HIDEKITAIRA KOJITAKAHASHI MASAMITSU
    • B01F5/00B01F3/04B01F5/02B01F5/04B01F5/06B01F5/10
    • PROBLEM TO BE SOLVED: To provide a micro nano-bubble generating apparatus for generating micro nano-bubbles by causing helical water streams each having different direction to collide with each other, which highly efficiently generates the micro nano-bubbles by mixing bubbles with water well in the helical water stream thereby accelerating subdivision of bubbles and generation of fine bubbles.SOLUTION: The apparatus for generating micro nano-bubbles includes inside inner and outer pipes 1, 2 of a multitubular structure, helical grooves 3, 4 for water streams each having different direction and formed by helical members 5, 6, respectively and generates the micro nano-bubbles by causing the helical water streams 7, 8 containing the bubbles to collide with each other when discharging the helical water streams 7, 8. In the apparatus for generating micro nano-bubbles, the axial centers C1, C2 of the inner and outer pipes 1, 2 respectively are shifted from each other to arrange the pipes in an eccentric position, the groove depth D1, D2 of the helical grooves 3, 4 formed by the helical members 5, 6 in contact with the inner surfaces of the inner and outer pipes 1, 2 are continuously and repeatedly changed in the peripheral direction, thereby the helical water streams 7, 8 flowing along the helical grooves 3, 4 are repeatedly pressurized and depressurized.
    • 要解决的问题:提供一种通过使具有不同方向的螺旋水流彼此碰撞来产生微纳米气泡的微纳米发泡装置,其通过混合气泡高效地产生微纳米气泡 在螺旋水流中充分利用水,从而加速气泡的细分和产生细小的气泡。 解决方案:用于产生微纳米气泡的装置包括多管结构的内管和外管1,2,分别具有不同方向和由螺旋构件5,6形成的水流的螺旋槽3,4, 通过在排出螺旋水流7,8时使含有气泡的螺旋水流7,8相互碰撞而产生微小的气泡。在用于产生微小气泡的装置中,轴向中心C1,C2 内管1,2分别相互偏移,将管子排列在偏心位置,螺旋槽3,4形成的螺旋槽3,4的槽深度D1,D2与内表面 内管1和外管1,2沿圆周方向连续重复地变化,从而沿着螺旋槽3,4流动的螺旋水流7,8被反复加压和减压。 版权所有(C)2012,JPO&INPIT