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    • 1. 发明申请
    • 混合ノズル
    • 混合喷嘴
    • WO2015059759A1
    • 2015-04-30
    • PCT/JP2013/078506
    • 2013-10-21
    • 株式会社長野セラミックス
    • 佐藤 義雄
    • B01F5/16B01F3/08B05B7/04
    • B01F3/0853B01F3/04099B01F3/0807B01F7/00041B01F7/001B01F7/00116B01F7/00291B01F7/00816B01F7/00825B01F13/1016B01F13/1027B01F2003/0842B01F2015/0221B05B1/341B05B3/085B05B7/0043B05B7/0068
    •  混合室内において、混合対象となる複数の材料を確実に混合させることが可能な混合ノズルの構造を提案することを目的とする。 混合材料を吐出する混合ノズル(10)であって、複数の材料を供給する材料供給部(53A)を有する混合室(52A,52B)、回転駆動源Mを有する回転軸(20)に連結され混合室(52A,52B)に配設された回転羽根(30)、混合室(52A,52B)の先方に設けられ先端に吐出口(66)を有する吐出室(60)、回転軸(20)に連結され吐出室(60)内に回転可能に配置され、混合材料に螺旋流を付与して吐出させる螺旋流付与部(40)を有し、回転羽根(30)の羽根体(34)の先端部と混合室(52B)の内表面との間に隙間(59)が形成され、回転羽根(30)の表面に回転羽根(30)の回転に伴って、混合室(52A,52B)内の混合材料を吐出口(66)とは逆方向の壁(52Aa,52Ba)に衝突させるための帯状体(34B)が配設されている。
    • 本发明的目的是提供一种能够在混合室中可靠地混合要混合的材料的混合喷嘴。 用于排出混合材料的混合喷嘴(10)具有:具有供应材料的材料供应部分(53A)的混合室(52A,52B) 旋转叶片(30)连接到具有旋转驱动源(M)并设置在混合室(52A,52B)内的旋转轴(20)上; 设置在所述混合室(52A,52B)的前面并且在其前端具有排出口(66)的排出室(60) 和旋转轴(20)连接的旋转施加部(40)可旋转地配置在排出室(60)内,使混合物旋转并排出。 在混合室(52B)的内表面和旋转叶片(30)的叶片体(34)的顶端之间形成间隙(59)。 旋转叶片(30)的表面设置有带状体(34B),当旋转叶片(30)旋转时,混合室(52A,52B)内的混合材料撞击在壁(52Aa, 52Ba)在与排出口(66)相对的一侧。
    • 4. 发明申请
    • FOAMING NOZZLE TO BE MOUNTED ON ATOMIZER
    • 泡沫喷嘴安装在原型机上
    • WO1992006792A1
    • 1992-04-30
    • PCT/JP1991001321
    • 1991-10-01
    • YOSHINO KOGYOSHO CO., LTD.TASAKI, TakaharuSAITO, Tadao
    • YOSHINO KOGYOSHO CO., LTD.
    • B05B11/00
    • B05B1/02B05B1/28B05B7/0068B05B11/0005
    • A foaming nozzle to be mounted in front of a spary nozzle of an atomizer for blowing liquefied detergent in bubble form onto a window pane and the like to remove the contaminations thereof. According to the invention, an opening of the foaming nozzle is formed to provide a belt shape, oval shape, square shape, triangular shape and the like, so that a group of the mists mixed with the foams can be blown out of the foaming nozzle in the belt shape, oval shape, square shape, triangular shape and the like and at a wide angle, and the positional relationship between a spray hole and the foaming nozzle is determined such that a part of the mist spinningly blown out while turning at high speed can be mixed with the foams generated by the collision of the mist on the inner surface of the opening of the foaming nozzle to be blown at a wide angle. Furthermore, the nozzle consists of first and second foaming nozzles, the first nozzle is mounted on the spray nozzle as described above, the second foaming nozzle is formed to provide a true cylindrical form, and the second foaming nozzle is detachably pivotally mounted to the first foaming nozzle, whereby a group of mists mixed with foams can be blown out of the first foaming nozzle in the sectional shapes of the belt and the like during the operation in a state where the second foaming nozzle is detached, and the foams in the circular sectional shape can be blown out in a state where the second foaming nozzle is mounted. In short, the construction allows the user to freely choose between a group of mists mixed with foams in the sectional shapes of a belt and the like and a group of foams in the circular sectional shape as necessary.
    • 5. 发明申请
    • ACTUATOR FOR AN AEROSOL CONTAINER
    • 航空器集装箱执行机构
    • WO1994027890A1
    • 1994-12-08
    • PCT/EP1993003464
    • 1993-12-09
    • DEUTSCHE PRÄZISIONS VENTIL GMBHZIMMERHACKEL, Franz
    • DEUTSCHE PRÄZISIONS VENTIL GMBH
    • B65D83/20
    • B65D83/30B05B7/0068B29C45/00B65D83/20B65D83/205
    • An actuator for an aerosol container, comprising a body forming an inlet, a top surface (16) defining a multitude of discharge slits (20), and a multitude of body passageways (22) to conduct fluid from the inlet to the discharge slits. Each of the body passageways has a pouch shape, including narrower upper (22a) and lower portions (22b) and a wider mid portion (22c). When the actuator is used to dispense foam from an aerosol container, the shape of the body passageways has several advantages. First, that shape helps the foam to expand as it passes outward through the dispenser; and second, after the container has been used to dispense a quantity of foam, the shape of the body passageways helps to draw back into the actuator any excess foam remaining on the outside of the actuator. Preferably, the actuator is formed in a plastic injection molding process, and the body passageways of the actuator are formed into the desired shape as the plastic cools during the molding process.
    • 一种用于气溶胶容器的致动器,包括形成入口的主体,限定多个排放狭缝(20)的顶表面(16)和用于将流体从入口传导到排放狭缝的多个主体通道(22)。 每个身体通道具有袋状,包括较窄的上部(22a)和下部(22b)和较宽的中部(22c)。 当致动器用于从气溶胶容器分配泡沫时,身体通道的形状具有若干优点。 首先,这种形状有助于泡沫在通过分配器向外流动时膨胀; 其次,在容器已经被使用以分配一定数量的泡沫之后,主体通道的形状有助于将致动器外侧剩余的多余的泡沫拉回到致动器中。 优选地,致动器以塑料注射成型工艺形成,并且致动器的主体通道在模制过程中随着塑料冷却而形成所需的形状。
    • 6. 发明申请
    • ACTUATOR FOR AN AEROSOL CONTAINER
    • 航空器集装箱执行机构
    • WO1994012406A1
    • 1994-06-09
    • PCT/EP1993001293
    • 1993-05-24
    • DEUTSCHE PRÄZISIONS VENTIL GMBHZIMMERHACKEL, Franz
    • DEUTSCHE PRÄZISIONS VENTIL GMBH
    • B65D83/20
    • B65D83/30B05B7/0068B29C45/00B65D83/20B65D83/205
    • An actuator (10) for an aerosol container, comprising a body forming an inlet, a top surface (16) defining a multitude of discharge slits (10), and a multitude of body passageways (22) to conduct fluid from the inlet to the discharge slits. Each of the body passageways has a pouch shape, including narrower upper (22a) and lower portions (22b) and a wider mid portion (22c). When the actuator is used to dispense foam from an aerosol container, the shape of the body passageways has several advantages. First, that shape helps the foam to expand as it passes outward through the dispenser; and second, after the container has been used to dispense a quantity of foam, the shape of the body passageways helps to draw back into the actuator any excess foam remaining on the outside of the actuator. Preferably, the actuator is formed in a plastic injection molding process, and the body passageways of the actuator are formed into the desired shape as the plastic cools during the molding process.
    • 一种用于气溶胶容器的致动器(10),包括形成入口的主体,限定多个排放狭缝(10)的顶表面(16)和多个主体通道(22),以将流体从入口传导到 放电缝隙。 每个身体通道具有袋状,包括较窄的上部(22a)和下部(22b)和较宽的中部(22c)。 当致动器用于从气溶胶容器分配泡沫时,身体通道的形状具有若干优点。 首先,这种形状有助于泡沫通过分配器向外扩张; 其次,在容器已经被使用以分配一定数量的泡沫之后,主体通道的形状有助于将致动器外侧剩余的多余的泡沫拉回到致动器中。 优选地,致动器以塑料注射成型工艺形成,并且致动器的主体通道在模制过程中随着塑料冷却而形成所需的形状。