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    • 1. 发明公开
    • LIQUID JETTING APPARATUS AND LIQUID JETTING METHOD
    • FLÜSSIGKEITSSTRAHLVORRICHTUNGUNDFLÜSSIGKEITSSTRAHLVORRICHTUNG
    • EP2832451A1
    • 2015-02-04
    • EP13769332.1
    • 2013-03-23
    • Fujisaki Electric Co. Ltd
    • SHIMADA, TomohisaTAKAI, Sadaki
    • B05B7/08B01J2/04
    • B05B7/0861B01J2/04B05B1/02B05B1/044B05B7/067B05B7/068
    • Technical Problem
      generate extremely small particles of uniform diameter and reduce abrasive wear of the nozzle region
      Solution to the Problem
      The liquid ejecting device uses pressurized gas to eject liquid as a spray of fine particles and is provided with internal gas-flow passageway 3 to supply pressurized gas, and a nozzle section 10 with a slit-shaped liquid ejecting opening 12 to discharge liquid. The nozzle section 10 is near the end of an elongated main unit 1 of the liquid ejecting device, and gas jet openings 13 to discharge pressurized gas are established between inclined nozzle surfaces and sidewalls of the main unit 1. The liquid ejecting opening 12 is connected with liquid-flow passageway 2 and the gas jet openings 13 are connected with the gas-flow passageway 3. Viewed in cross-section, the inclined nozzle surfaces are formed such that their extensions intersect above the liquid ejecting opening 12 on a line extending from the liquid ejecting opening 12, and pressurized gas is discharged as jets along the inclined nozzle surfaces to intersect in a manner that sandwiches the liquid in between and breaks-up the liquid-flow to produce a spray of fine particles.
    • 技术问题产生均匀直径的极小颗粒并减少喷嘴区域的磨损磨损问题的解决方案液体喷射装置使用加压气体作为细颗粒喷雾喷射液体,并且设置有内部气体流动通道3以供应加压 气体和具有狭缝状液体喷射口12的喷嘴部10,以排出液体。 喷嘴部10靠近液体喷射装置的细长主体1的端部,在倾斜的喷嘴表面和主体1的侧壁之间建立排出加压气体的气体喷射口13.液体喷射口12被连接 液体通道2和气体喷射开口13与气体流动通道3连接。在横截面中,倾斜的喷嘴表面形成为使得它们的延伸部在从喷射口12的上方延伸的线上延伸 液体喷射口12和加压气体沿着倾斜的喷嘴表面作为射流排出,以将液体夹在中间并使液体流动分解以产生细颗粒喷雾的方式相交。
    • 6. 发明公开
    • Multi-plate nozzle and method for dispensing random pattern of adhesive filament
    • Mehrplattendüseund Verfahren zur Ausgabe von ZufallsmusternfürHaftfilamente
    • EP2359942A1
    • 2011-08-24
    • EP11166154.2
    • 2007-12-11
    • Nordson Corporation
    • Bondeson, Benjamin J.Burmester, ThomasKufner, HubertSaine, Joel E.
    • B05C5/02D01D4/02B05B7/08
    • B05C5/027B05B7/0861B05B7/0884D01D4/025
    • A method of dispensing multiple adhesive filaments onto a substrate, comprising:
      moving the substrate along a machine direction;
      discharging each one of the multiple adhesive filaments from a respective liquid outlet communicating with liquid slots formed in adjacent, side-by-side stacked adhesive shim plates (16), each slot in the stacked adhesive shim plates forming a portion of an overall cross sectional shape of each outlet so that the overall cross sectional shape of each discharged filament is formed by the cross sectional shape of each respective outlet; and discharging pressurized air streams from multiple first and second pairs of air slots (160,162,164,166) contained in respective first and second air shim plates (12,14) secured on opposite sides of the stacked adhesive shim plates (16) with respective first and second pairs of air slots (160,162,164,166) being located on opposite sides of an associated liquid slot;
      directing the air streams from each first pair of air slots (160,162) in a converging manner toward one another and generally parallel to the discharging filaments;
      directing the air streams from each second pair of air slots (164,166) in a converging manner toward one another and generally parallel to the discharging filaments; and depositing the discharged filaments on the substrate generally along the machine direction.
    • 一种将多个粘合剂长丝分配到基底上的方法,包括:沿机器方向移动所述基底; 从形成在相邻的并排堆叠的粘合剂垫板(16)中的液体狭槽连通的相应液体出口排出多个粘合剂长丝中的每一个,每个狭缝在堆叠的粘合垫片中形成整个横截面的一部分 每个出口的形状使得每个排出的细丝的总横截面形状由每个出口的横截面形状形成; 并且将多个第一和第二对空气狭槽(160,162,164,166)的压缩空气流排放在相应的第一和第二空气垫板(12,14)中,所述第一和第二对空气狭槽(12,14)固定在所述堆叠的粘合垫板(16)的相对侧上, 的空气狭槽(160,162,164,166)位于相关联的液体狭槽的相对侧上; 将来自每个第一对空气狭槽(160,162)的空气流以彼此朝向彼此并且大致平行于排出长丝的会聚方式引导; 将来自每个第二对空气狭槽(164,166)的气流以彼此朝向彼此并且大致平行于排出丝的会聚方式引导; 并且大体上沿机器方向将排出的长丝沉积在基底上。
    • 8. 发明公开
    • Module, nozzle and method for dispensing controlled patterns of liquid material
    • 使用的喷嘴的用于分配液体材料的受控图案
    • EP2110183A1
    • 2009-10-21
    • EP09167167.7
    • 2003-04-10
    • NORDSON CORPORATION
    • Crane, Patrick J.Harris, Michael W.Saine, Joel E.
    • B05C5/00B05B7/10B05B5/10B05D1/02
    • B05D5/00B05B7/0861B05B7/10B05C5/0241B05D1/26B05D3/042B05D2256/00
    • A liquid dispensing module (10) and nozzle or die tip (28) for discharging at least one liquid filament (74). The nozzle (28) includes a strand guide (42) for guiding a substrate past the nozzle (28) and a frustoconical protrusion (56) disposed on a surface of the nozzle adjacent the notch (42). A liquid discharge passage (48) extends along an axis (48a) through the frustoconical protrusion (56) and forms an acute angle with a machine direction corresponding to movement of the strand (44) past the nozzle (28). Four air discharge passages (60,62,64,66) are positioned at the base of the frustoconical protrusion (56). Each of the air discharge passages (60,62,64,66) is angled in a compound manner generally toward the liquid discharge passage (48) and offset from the axis (48a) of the liquid discharge passage to create the controlled pattern (74) of liquid material on the strand (44).
    • 液体分配模块(10)和喷嘴或硬模尖端(28),用于排出至少一根液体细丝(74)。 喷嘴(28)包括一个导海滩(42)用于引导基板经过喷嘴(28)和设置在所述喷嘴相邻的凹口(42)的表面上的截头圆锥突起(56)。 一种液体排出通道(48)沿着在轴(48A)通过截头圆锥突起(56)和形成在与机器方向对应于海滩(44)通过喷嘴(28)的运动锐角延伸。 四个气体排出通道(60,62,64,66)在所述截头圆锥形突出部(56)的底部被定位。 所述空气排出通道(60,62,64,66)中的每一个的化合物的方式基因反弹朝向液体排出通道(48)成一定角度,并从轴线(48A)的液体排出通道的偏移来创建控制图案(74 )海滩(44)上的液体材料的。