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    • 1. 发明申请
    • Device for Guiding Powdery Fluidic Media
    • 引导粉状流体媒体的装置
    • US20090004028A1
    • 2009-01-01
    • US11886438
    • 2006-03-06
    • Erwin HihnApostolos Katefidis
    • Erwin HihnApostolos Katefidis
    • F04F5/20F04F5/46B05B7/30
    • B05B7/1404
    • The invention relates to a device for guiding powdery fluidic media, in particular powder paint, including a receptacle which is provided with an inner chamber for the media which is to be guided, and from where the medium is suctioned via a connection channel which can be closed by a valve body. The connection channel and the valve body comprise, respectively, an upper end area. Said upper end areas are formed in such a manner that an annular Venturi nozzle is formed therebetween which is used as a pump. The valve body is inserted in a sealed manner in the end region of the connecting channel by means of a sealing section when in the closed position thereof and comprises a conveyor gas channel which can impinged upon by conveyor gas, through which the conveyor gas can be guided to the connection channel in the vicinity of the sealing section, essentially, in the direction of flow of the medium.
    • 本发明涉及一种用于引导粉状流体介质,特别是粉末涂料的装置,该装置包括一个容器,该容器设置有待被引导的介质的内室,并且介质经由连接通道被吸入介质 由阀体关闭。 连接通道和阀体分别包括上端区域。 所述上端区域以这样的方式形成,即在其间形成用作泵的环形文氏管喷嘴。 阀体在处于关闭位置时通过密封部分以密封的方式插入到连接通道的端部区域中,并且包括能够被输送气体撞击的输送气体通道,输送机气体可以通过该输送气体通道 引导到密封部分附近的连接通道,基本上在介质的流动方向上。
    • 2. 发明授权
    • Booth for coating objects with powder
    • 用粉末涂装物品的展位
    • US06964708B2
    • 2005-11-15
    • US10379371
    • 2003-03-04
    • Erwin HihnWolfgang Bezner
    • Erwin HihnWolfgang Bezner
    • B05B15/12
    • B05B14/43B05B16/60Y02P70/36
    • A booth for coating objects with powder, in particular for powder painting, comprises in a manner known per se a housing, in which there is situated at least one application device, with which powder can be applied to the objects. Situated in the upper region of the housing is an air plenum, which is fed with supply air via an inlet opening. The air plenum is closed off downwardly by a filter ceiling. In contrast to known filter ceilings, the one according to the invention is air-permeable in its marginal region only, while in its central region it consists of air-impermeable material. The supply air is thus introduced into the interior of the booth as a kind of “air curtain” which flows mainly along the side walls of the housing of the booth, entrains in the process stray excess powder which has not adhered to the objects to be coated, and supplies it to at least one extraction opening situated in the bottom of the booth. This extraction opening leads to a filter unit which, for its part, is connected to an extraction fan and in which the powder present in the air/powder mixture can be separated off and passed on for reuse. The effects achieved by the special design of the filter ceiling are that less turbulence forms in the coating region, no particles falling off from the filter ceiling can lead to coating defects and, on changing the filters contained in the filter ceiling, there is less fouling of the booth.
    • 用于涂覆粉末的物品,特别是用于粉末喷涂的展位包括以本身已知的方式存在的壳体,其中存在至少一个施加装置,粉末可以被施加到物体上。 位于壳体的上部区域中的是空气压力室,其经由入口开口供给空气。 空气通风室由过滤器天花板向下封闭。 与已知的过滤器天花板相反,根据本发明的天花板仅在其边缘区域是透气的,而在其中心区域中由不透气材料组成。 因此,供给空气被引入到展位的内部,作为主要沿着展位的壳体的侧壁流动的“气幕”,夹带在过程中,流出未附着到物体上的多余的粉末 涂层,并将其供应到位于展位底部的至少一个提取开口。 该提取开口通向一个过滤器单元,该过滤器单元连接到一个提取风扇,其中存在于空气/粉末混合物中的粉末可被分离并通过再使用。 通过过滤器天花板的特殊设计实现的效果是涂层区域形成较少的湍流,没有从过滤器顶板脱落的颗粒可能导致涂层缺陷,并且在更换过滤器天花板中包含的过滤器时,污垢较少 的展位。
    • 3. 发明授权
    • Reservoir for powdery media
    • 粉状介质水库
    • US06948888B2
    • 2005-09-27
    • US10745924
    • 2003-12-24
    • Jan ReichlerErwin Hihn
    • Jan ReichlerErwin Hihn
    • B05B7/14B05C19/02B65G53/38
    • B05B7/1404B05C19/02
    • A reservoir for powdery media, in particular powder coating, comprises a housing having at least one inlet and an outlet. A fluidising floor of porous, air-permeable material is located in the interior of the housing at a distance from its base. In this way a pressure chamber which is chargeable with compressed air is formed between the fluidising floor and the base of the housing. In order to reduce the quantity of compressed air required for fluidising and to keep low the mechanical stress imposed on the powdery medium when in the fluidised state, the cross-section of the housing narrows downwardly towards the fluidising floor. In addition, this shape of the housing generates turbulence in the fluidised powdery material.
    • 用于粉末介质的储器,特别是粉末涂料,包括具有至少一个入口和出口的壳体。 多孔,透气材料的流化性地板位于壳体的与其底部相距一定距离处的内部。 以这种方式,在流化底板和壳体的基部之间形成可压缩空气的压力室。 为了减少流化所需的压缩空气的量,并且当处于流化状态时,保持较低的施加在粉状介质上的机械应力,壳体的横截面向下流向流化的底板。 此外,壳体的这种形状在流化的粉状材料中产生湍流。
    • 4. 发明申请
    • DEVICE FOR CONTROLLING THE TEMPERATURE OF VEHICLE BODIES
    • 用于控制车身温度的装置
    • US20130312277A1
    • 2013-11-28
    • US13984583
    • 2012-01-05
    • Erwin Hihn
    • Erwin Hihn
    • F26B21/00
    • F26B21/004F26B15/14F26B2210/12
    • A device for controlling the temperature of vehicle bodies, in particular for drying painted vehicle bodies, having a housing in which a temperature control tunnel and at least one pressure chamber separated therefrom by a wall are provided. In said wall there is a plurality of conventional nozzles via which temperature controlled air, which is introduced into the pressure chamber, is applied in particular in the upper region of the vehicle body. At least one nozzle device is provided which has a plurality of nozzle openings on the side thereof facing the vehicle body and at least roughly following the geometry of the lower region of the vehicle body at a distance from the vehicle body, which is smaller than the distance of the other nozzles arranged in the same wall.
    • 一种用于控制车身温度的装置,特别是用于干燥涂漆车体的装置,其具有壳体,在该壳体中设置有温度控制通道和由壁与其隔开的至少一个压力室。 在所述壁中有多个常规喷嘴,通过该多个常规喷嘴,被引入压力室的温度受控的空气通过其被特别地施加在车体的上部区域中。 提供至少一个喷嘴装置,其在其面向车身的一侧上具有多个喷嘴开口,并且至少大致跟随车身的下部区域的几何形状,距离车身一定距离,该距离小于 布置在同一墙壁上的其他喷嘴的距离。
    • 5. 发明授权
    • Reservoir for powdery media
    • 粉状介质水库
    • US07063486B2
    • 2006-06-20
    • US10746137
    • 2003-12-24
    • Jan ReichlerErwin Hihn
    • Jan ReichlerErwin Hihn
    • B65G53/38
    • B05B7/1404B05C19/02
    • A reservoir for powdery media, in particular powder coating, comprises a housing having at least one inlet and at least one outlet for the powdery medium. A fluidising floor of porous, air-permeable material is located in the interior of the housing at a distance from its base. A pressure chamber which is chargeable with compressed air is located between the fluidising floor and the base of the housing. The outlet has the shape of an upwardly open funnel which is located in the lower partial zone of the housing adjacent to the fluidising floor. In this way well-mixed powdery medium the grain-size distribution of which corresponds to the maximum extent to that of the fluidised powdery medium inside the reservoir is always withdrawn.
    • 用于粉末介质,特别是粉末涂料的储存器包括具有用于粉末介质的至少一个入口和至少一个出口的壳体。 多孔,透气材料的流化性地板位于壳体的与其底部相距一定距离处的内部。 可压缩空气的压力室位于流化底板和壳体底座之间。 出口具有向上开口的漏斗的形状,其位于邻近流化底板的壳体的下部部分区域中。 以这种方式,混合的粉状介质的颗粒尺寸分布对应于最大程度上与储存器内的流化粉末介质的最大程度总是被撤回。
    • 8. 发明申请
    • Weighing Device
    • 称重装置
    • US20110186358A1
    • 2011-08-04
    • US13061681
    • 2009-08-22
    • Erwin Hihn
    • Erwin Hihn
    • G01G1/18
    • G01G17/00G01G3/14G01G21/242
    • The invention relates to a device for continuously weighing powdered media in a tank, particularly paint powder in a storage tank, comprising a weighing unit having a measurement field on which a compressive force can be exerted, and by which an output signal representing the compressive force exerted on the measurement field can be generated. A guiding device allows forced motion of the tank having a vertical directional component. The tank can further be coupled to the weighing unit by forces by means of a coupling device, so that a compressive force that is dependent on the weight of the tank acts on the measurement field of the weighing unit when the tank is coupled to the weighing unit.
    • 本发明涉及一种用于连续称重罐中的粉状介质的装置,特别是储罐中的涂料粉末,该装置包括称重单元,该称重单元具有能够施加压缩力的测量场,并且通过该称重单元产生表示压缩力的输出信号 可以产生施加在测量场上。 引导装置允许具有垂直方向分量的罐的强制运动。 罐可以通过联接装置进一步通过力联接到称重单元,使得当罐耦合到称重时,取决于罐的重量的压缩力作用在称重单元的测量场上 单元。