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    • 82. 发明授权
    • Vortex pneumatic conveyance apparatus
    • 涡旋式气动输送装置
    • US09242807B2
    • 2016-01-26
    • US13316125
    • 2011-12-09
    • Saeed Bizhanzadeh
    • Saeed Bizhanzadeh
    • B65G53/14A47L5/28B65G53/26A47L9/12
    • B65G53/58A47L5/28A47L9/127B24C7/0046B65G53/14B65G53/26B65G53/526
    • The vortex pneumatic conveyance apparatus of the present application creates a vortex from blown and/or pressurized air rotating along the inner wall of an outlet tube to convey particles through a vacuum created within the center of the outlet tube at a relatively high flow rate and pressure. Without the blown and/or pressurized air molecules taking up space and colliding with the particles in the center of the outlet tube and because of the strong suction created by the vortex of air rotating along the inner wall of the outlet tube, the efficiency of the vortex pneumatic conveyance apparatus of this application is improved relative to well-known pneumatic conveyors in which air merely pushes the particles within an outlet tube.
    • 本申请的涡流气动输送装置从吹出管和/或加压空气的涡流产生沿着出口管的内壁旋转的涡流,以便以相当高的流速和压力将颗粒输送到在出口管的中心内产生的真空 。 没有吹气和/或加压空气分子占据空间并与出口管中心的颗粒碰撞,并且由于沿着出口管的内壁旋转的空气涡流产生的强吸力, 相对于众所周知的空气仅将颗粒推入出口管内的气动输送机,该应用的涡旋式气动输送装置得到改进。
    • 85. 发明授权
    • Antislip material ejector
    • 防滑材料喷射器
    • US07311274B2
    • 2007-12-25
    • US10442536
    • 2003-05-20
    • Kaoru OhnoKazuya GushimaKosuke Honda
    • Kaoru OhnoKazuya GushimaKosuke Honda
    • B60B39/00B60B39/08B60B39/04B60B39/02B61C15/10B61C15/08B65G53/14
    • B61C15/102Y02T30/10
    • An antislip material ejector comprises an antislip material container 12 which stores antislip material, an air inlet pipe 13 which is arranged in the antislip material container, a compressed air supply pipe 14 which supplies compressed air to the air inlet pipe, a nozzle portion 16 which is arranged in the air inlet pipe, a mixing pipe 17, which is connected with the air inlet pipe, in which the antislip materials are mixed with air and in which a suction hole 18 is formed through which the antislip material passes, a connecting pipe, one end of which communicates with the mixing pipe and the other end of which communicates with a cavity in the antislip material container, and an ejection pipe 20 which is connected with the mixing pipe and which ejects the antislip material together with the compressed air.
    • 防滑材料喷射器包括防滑材料的防滑材料容器12,设置在防滑材料容器中的进气管13,向进气管供给压缩空气的压缩空气供给管14,喷嘴部16, 设置在进气管中,与防空气材料与空气混合并与进气管连接的混合管17,防滑材料通过该吸入孔18形成有吸入孔18,连接管 其一端与混合管连通,另一端与防滑材料容器中的空腔连通,以及与混合管连接并与压缩空气一起喷出防滑材料的喷射管20。
    • 86. 发明授权
    • Ejector, fine solid piece recovery apparatus and fluid conveyor
    • 喷射器,精细固体回收装置和流体输送机
    • US06974279B2
    • 2005-12-13
    • US10679352
    • 2003-10-07
    • Yasuo MorohashiHidetoshi OmoriToshihiro Naruse
    • Yasuo MorohashiHidetoshi OmoriToshihiro Naruse
    • B65G53/14B65G53/58B65G53/60
    • B65G53/58B65G53/14
    • An ejector is configured to generate a high negative pressure capable of sucking and conveying fine metal pieces or chips, such as machinings or cuttings, for example, when using the ejector as a driving source for a fluid conveyor. The ejector includes a convergent-divergent nozzle having a throat formed between a suction port and a discharge port. Jet blowing holes are formed in the convergent-divergent nozzle to direct a jet stream from upstream of the throat to downstream of the throat, thereby forming a negative pressure. Pressure control holes open to the downstream of the jet blowing holes and are configured to communicate with a pressure space at a pressure level higher than a negative pressure formed by the jet stream and lower than a static pressure of the jet stream and the inside of the convergent-divergent nozzle.
    • 喷射器被配置为当使用喷射器作为流体输送机的驱动源时,产生能够吸入和输送诸如机械加工或切割的精细金属片或芯片的高负压。 喷射器包括会聚扩散喷嘴,其具有在吸入口和排出口之间形成的喉部。 在会聚扩散喷嘴中形成喷射吹风孔,以将喷射流从咽喉的上游引导到喉部的下游,从而形成负压。 压力控制孔通向喷射吹风孔的下游,并且被配置成与压力水平高于由喷射流形成的负压的压力水平连通并且低于喷流的静压力和 会聚扩散喷嘴。
    • 87. 发明申请
    • Blenders
    • 搅拌机
    • US20050201199A1
    • 2005-09-15
    • US10971697
    • 2004-10-25
    • James O'Callaghan
    • James O'Callaghan
    • B01F3/18B01F5/02B01F5/10B01F5/24B01F15/02B65G53/14B65G53/58B65G69/04B28C5/00
    • B65G53/58B01F3/18B01F5/0268B01F5/10B01F5/24B01F11/0074B01F13/0227B01F15/0201B01F15/0202B01F15/024B29B7/32B65G53/14G01G13/24
    • The invention relates to a material transfer device (1), in particular for use with blenders associated with a material processing device such as a plastics extruding device. The material transfer device (1) can be used for controlling delivery of measured amounts of particulate material to or from a weigh hopper, or for mixing materials in a mixing chamber of the blender. The material transfer device (1) includes a pipe (2) defining a material delivery path. The pipe (2) has a material inlet (4) and a material outlet (5). An air inlet manifold (10) encircling the pipe (2) is connected by an air supply line (14) to a pressurised air supply. Air outlets (12) of the manifold (10) direct an air stream towards the outlet (5) of the pipe (2) to draw material through the pipe (2) from a hopper (6) of particulate material (7), the pipe inlet (4) being located within the hopper (6). An air inlet valve (16) in the air supply line (14) is connected to a controller (22) which is operable to open an shut the valve (16) for pulsing the gas stream to control the amount of material delivered through the pipe (2).
    • 本发明涉及一种材料转移装置(1),特别是用于与诸如塑料挤出装置的材料加工装置相关联的搅拌机。 材料转移装置(1)可以用于控制向称重料斗或从称重料斗输送测量量的颗粒材料,或用于将混合物料混合在搅拌机的混合室中。 材料输送装置(1)包括限定材料输送路径的管道(2)。 管(2)具有材料入口(4)和材料出口(5)。 围绕管道(2)的进气歧管(10)通过供气管线(14)连接到加压空气源。 歧管(10)的空气出口(12)将空气流引导到管道(2)的出口(5),以从颗粒材料(7)的料斗(6)将材料从管道(2)中拉出, 管道入口(4)位于料斗(6)内。 空气供应管线(14)中的进气阀(16)连接到控制器(22),控制器(22)可操作以打开关闭阀(16),用于脉冲气流以控制通过管道输送的材料的量 (2)。
    • 89. 发明授权
    • Apparatus for continuously supplying fine powder in minute and
quantitative amounts
    • 用于以微量和定量的量连续供应细粉的装置
    • US5816509A
    • 1998-10-06
    • US970079
    • 1997-11-13
    • Byung-Kil AhnWang-Kyu ChoiWon-Jin Oh
    • Byung-Kil AhnWang-Kyu ChoiWon-Jin Oh
    • B65G53/20B05B7/14B65G53/14B02C19/06
    • B05B7/1404B05B7/1472B65G53/14
    • An apparatus for continuously supplying fine particles (powder) in minute and quantitative amounts in a dispersed manner, is disclosed. An orifice throat 5 is formed in an orifice tube, and a powder carrying tube 7 is connected to the orifice throat. A powder suction tube 9 having a shape of an inverted funnel extends to the powder carrying tube, and a plurality of holes 16 are formed on a tapered circumferential surface of the powder suction tube 9. A powder storing container 10 closely contactedly receives the powder suction tube 9 in an air-tight state, but allows the powder suction tube to perform straight movements. A carrying system raises the powder storing container at a constant velocity, and a compressed gas injecting channel is connected to an upper portion of the powder storing container. A gas spouting nozzle 4 is connected to a compressed gas source, for spouting a compressed gas into the orifice throat 5 so as to form the powder into an aerosol. The fluidizing of the powder can be adjusted by adjusting the flow rate of the compressed gas (flowing through said compressed gas injecting channel 8), and the fluidizing of the powder is maintained at a constant level by raising the powder storing container at a constant velocity, so as to supply the powder quantitatively and continuously in a dispersed manner by forming an aerosol.
    • 公开了一种以分散的方式连续供应微量(定量)的微粒(粉末)的装置。 孔口5形成在孔管中,并且粉末承载管7连接到孔口喉部。 具有倒漏漏斗形状的粉末吸入管9延伸到粉末承载管,并且在粉末吸入管9的锥形圆周表面上形成多个孔16.密封接触的粉末收集容器10接收粉末抽吸 管9处于气密状态,但允许粉末吸入管执行直线运动。 携带系统以恒定的速度升起粉末储存容器,并且压缩气体注入通道连接到粉末存储容器的上部。 气体喷射喷嘴4连接到压缩气体源,用于将压缩气体喷射到孔喉5中,以将粉末形成为气溶胶。 可以通过调节压缩气体(流经所述压缩气体注入通道8)的流量来调节粉末的流化,并且通过以等速度升高粉末储存容器,将粉末的流化维持在一定水平 以便通过形成气溶胶以分散的方式定量和连续地供应粉末。