BLOWER TO SPRAYER CONVERSION
    54.
    发明申请

    公开(公告)号:US20180014525A1

    公开(公告)日:2018-01-18

    申请号:US15647859

    申请日:2017-07-12

    Inventor: Kevin Bennington

    Abstract: Apparatus for converting a powered air blower to a sprayer is disclosed. The apparatus comprises at least one discharge port terminating in a nozzle and at least one clamp, such as an alligator jaw. The clamp may open in a direction away from a direction of discharge from each nozzle. The clamp and the at least one discharge port may be mounted on a chassis having a configuration of a tube. A feed conduit is in fluid communication with each of the discharge port. Where there is more than one discharge port, the feed conduit splits to supply each discharge port. In an embodiment, there is one discharge port having a direction of discharge and an associated axis, and at least two clamps symmetrically disposed about the axis. The apparatus may be clamped to a discharge conduit of the blower.

    Method and apparatus for treating substrate

    公开(公告)号:US09793118B2

    公开(公告)日:2017-10-17

    申请号:US15078249

    申请日:2016-03-23

    Abstract: Disclosed are a method and an apparatus for applying a liquid onto a substrate. The method for treating a substrate, the method includes: a liquid supplying step of supplying a treatment liquid for forming a liquid film on the substrate while rotating the substrate; and a liquid diffusing step of diffusing the treatment liquid discharged to the substrate by rotating the substrate, after the liquid supplying step. The liquid diffusing step includes: a primary diffusion step of rotating the substrate at a first diffusion speed; and a secondary diffusion step of rotating the substrate at a second diffusion speed, after the primary diffusion step. The second diffusion speed is higher than the first diffusion speed. Accordingly, the treatment liquid can be applied to the substrate again by performing the secondary diffusion step, making it possible to adjust the thickness of a photosensitive film.

    Composite bubble-type snowflake maker

    公开(公告)号:US09696080B2

    公开(公告)日:2017-07-04

    申请号:US15052936

    申请日:2016-02-25

    Inventor: Ping-Fa Hung

    Abstract: Disclosed is a composite bubble-type snowflake maker, including: a main machine, an air pipe, and a sprayer. The interior of a machine body of the main machine is provided with accommodating space, so as to enable a blower to send out wind power towards an air outlet, and enable a pump to outwardly transport bubble water along a bubble water pipe. An inlet of the air pipe is connected to the air outlet, so as to enable an outlet to be far away from the main machine, and a tail end of the bubble water pipe extends outwardly along the air pipe, so as to be connected to a bubble head. One end of a sprayer body of the sprayer is connected to the outlet of the air pipe, and the other end is provided with an air outlet pipe and a plurality of air outlet holes at an outer circumference of the air outlet pipe. A tail end of the air outlet pipe is sleeved with a cloth sleeve extending outwardly, and the bubble head of the bubble water pipe is disposed in the air outlet pipe, so as to outwardly deliver the bubble water. Wind power generated by the blower is blown to the interior and exterior of the cloth sleeve through the air pipe and the sprayer body, so that the bubble water exudes from a surface of the cloth sleeve to form bubbles, and the wind power is used to blow the bubbles to fly away, so as to form artificial snowflakes.

    Power plant air cooled heat exchanger or condenser with pressurized gas entrained cooling liquid mister
    59.
    发明授权
    Power plant air cooled heat exchanger or condenser with pressurized gas entrained cooling liquid mister 有权
    发电厂空气冷却热交换器或冷凝器带有加压气体夹带冷却液

    公开(公告)号:US09540962B2

    公开(公告)日:2017-01-10

    申请号:US14330460

    申请日:2014-07-14

    Abstract: An air cooled heat exchanger, such as a combustion turbine intercooler or rotor cooler or an air cooled condenser, utilizes a pressurized gas fluid entraining misting device that evaporatively cools conduits carrying the cooled fluid medium. Evaporative cooling liquid is entrained in the pressurized gas where it is atomized for evaporative cooling of the heat exchanger conduits. In some exemplary embodiments of the invention the misting device is a jet pump or ejector that entrains a supply of non-pressurized cooling liquid. In other exemplary embodiments of the invention the misting device is a misting emitter that entrains a supply of pressurized cooling liquid.

    Abstract translation: 诸如燃气涡轮机中冷器或转子冷却器或空气冷却冷凝器的空气冷却式热交换器利用蒸发冷却承载冷却流体介质的管道的加压气体流体夹带雾化装置。 蒸发冷却液被夹带在加压气体中,在其中被雾化以便对热交换器管道进行蒸发冷却。 在本发明的一些示例性实施例中,雾化装置是夹带非加压冷却液体的喷射泵或喷射器。 在本发明的其它示例性实施例中,雾化装置是夹带加压冷却液体的雾化发射器。

    METHOD AND APPARATUS FOR TREATING SUBSTRATE
    60.
    发明申请
    METHOD AND APPARATUS FOR TREATING SUBSTRATE 有权
    用于处理基板的方法和装置

    公开(公告)号:US20160293404A1

    公开(公告)日:2016-10-06

    申请号:US15078249

    申请日:2016-03-23

    Abstract: Disclosed are a method and an apparatus for applying a liquid onto a substrate. The method for treating a substrate, the method includes: a liquid supplying step of supplying a treatment liquid for forming a liquid film on the substrate while rotating the substrate; and a liquid diffusing step of diffusing the treatment liquid discharged to the substrate by rotating the substrate, after the liquid supplying step. The liquid diffusing step includes: a primary diffusion step of rotating the substrate at a first diffusion speed; and a secondary diffusion step of rotating the substrate at a second diffusion speed, after the primary diffusion step. The second diffusion speed is higher than the first diffusion speed. Accordingly, the treatment liquid can be applied to the substrate again by performing the secondary diffusion step, making it possible to adjust the thickness of a photosensitive film.

    Abstract translation: 公开了一种将液体施加到基板上的方法和装置。 一种处理基板的方法,所述方法包括:液体供给步骤,在旋转所述基板的同时,在所述基板上供给用于形成液膜的处理液; 以及液体扩散步骤,在液体供给步骤之后,通过旋转基板来扩散排放到基板的处理液。 液体扩散步骤包括:以第一扩散速度旋转衬底的一次扩散步骤; 以及在第一扩散步骤之后以第二扩散速度旋转衬底的二次扩散步骤。 第二扩散速度高于第一扩散速度。 因此,可以通过执行二次扩散步骤再次将处理液施加到基板,使得可以调节感光膜的厚度。

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