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    • 73. 发明申请
    • MIXING DEVICE, MIXING HOPPER AND DOSING CONTAINER
    • 混合装置,混合H ER AND AND。。。。。。。。
    • WO2015170986A8
    • 2015-12-10
    • PCT/NL2015050325
    • 2015-05-08
    • ZUIDEMA CASPER JOHAN
    • ZUIDEMA CASPER JOHANZUIDEMA HETTE
    • G01G13/16
    • B01F7/00766B01F3/188B01F5/244B01F5/26B01F7/00633B01F7/00758B01F15/00194B01F15/00974B01F2005/0008B01F2015/00084G01G13/16
    • Mixing device 1, dosing container and mixing hopper for mixing a synthetic starting material with an additive, in particular a granular additive or additive in powder form, comprising a mixing housing 10 with an inlet 14 for allowing the substances into a mixing chamber 12 bounded by the mixing housing and an outlet 16 for discharging the substances from the mixing chamber in mixed form, wherein a rotor body 11 is provided on a rotatable shaft 17 in the mixing chamber and comprises on a side a number of rotor arms 18 extending parallel to the shaft in the direction of an opposite wall of the mixing housing 10, and wherein the opposite wall of the mixing housing is provided with a number of stator arms 19 extending parallel to the shaft in the direction of the rotor body, and wherein a mixing hopper is provided having an infeed side for receiving a flow of the substances for mixing and an outfeed side which is in open communication with the inlet of the mixing housing 10, and wherein a dividing body is provided between the infeed side and outfeed side in order to divide the flow of the substances for mixing into a number of at least substantially equal part-flows.
    • 混合装置1,配量容器和混合料斗,用于将合成原料与添加剂,特别是粉末形式的颗粒添加剂或添加剂混合,包括具有入口14的混合壳体10,所述入口14用于允许物质进入由 混合壳体和用于以混合形式从混合室排放物质的出口16,其中转子体11设置在混合室中的可旋转轴17上,并且在侧面包括多个平行于该混合室延伸的转子臂18 在混合壳体10的相对壁的方向上轴,并且其中混合壳体的相对壁设置有沿转子体的方向平行于轴延伸的多个定子臂19,并且其中混合料斗 具有用于接收用于混合的物质的流动的进料侧和与混合壳体10的入口开放连通的出料侧,并且其中 分配体设置在进料侧和出料侧之间,以便将用于混合的物质的流动分成多个至少基本相等的部分流。
    • 74. 发明申请
    • ROTOR-STATOR MIXING APPARATUS ESPECIALLY FOR SINGLE SCREW EXTRUDER
    • 转子 - 定子混合装置特别适用于单螺杆挤出机
    • WO00023179A1
    • 2000-04-27
    • PCT/GB1999/003349
    • 1999-10-19
    • B01F5/00B01F7/00B29B7/40B29B7/42
    • B01F7/00766B01F7/00633B01F2005/0008B29B7/402B29B7/421B29C47/385B29C47/64B29C47/661
    • A single screw extruder comprises a mixer (14) associated with the screw (4, 9), and comprising a rotor (11) driven by the screw (4) and a stator, the rotor and the stator each carrying mutually facing interengaging rings (22a, 22b, 22c, 22d, 32a, 32b, 32c, 32d) of teeth (21) whereby the material is urged outwardly from the screw (9) along a first tortuous mixing path, and then returned inwardly to screw (4) along a second tortuous mixing path, the teeth (21) extending axially, or generally so, with respect to the longitudinal axis of the screw. The invention also includes a mixer comprising a cylindrical stator chamber (10, 12) having opposed, radially extending faces provided with axially projecting, radially spaced-apart rings (22a, 22b, 22c, 22d) made up of alternating teeth (21) and ridges (20), a rotor (11) rotatably fitted within the stator and provided on its opposite side faces with axially projecting, radially spaced-apart rings (32a, 32b, 32c, 32d) of alternating teeth (21) and ridges (20), and the rotor and stator rings interengaging with both radial and axial clearance so as to define a tortuous material flow path.
    • 单螺杆挤出机包括与螺杆(4,9)相关联的混合器(14),并且包括由螺杆(4)驱动的转子(11)和定子,转子和定子各自承载相互面对的相互接合的环( 22a,22b,22c,22d,32a,32b,32c,32d),从而沿着第一曲折混合路径将材料从螺杆(9)向外推动,然后沿着螺旋(4)向内返回 第二曲折混合路径,所述齿(21)相对于所述螺杆的纵向轴线轴向地或大致如此地延伸。 本发明还包括一种混合器,其包括具有相对的径向延伸面的圆柱形定子室(10,12),所述径向延伸面设置有由交替的齿(21)和由交替的齿(21)构成的径向间隔开的环(22a,22b,22c,22d) 脊(20),可旋转地装配在定子内的转子(11),并在其相对侧面上设置有交替的齿(21)和脊(20)的轴向突出的径向隔开的环(32a,32b,32c,32d) ),并且转子和定子环与径向和轴向间隙相互接合以便限定曲折的材料流动路径。
    • 75. 发明申请
    • DEVICE FOR THE MIXING AND SUBSEQUENT ATOMIZING OF LIQUIDS
    • 设备混合和随后散布液
    • WO99033554A1
    • 1999-07-08
    • PCT/EP1998/007438
    • 1998-11-19
    • B05B1/14B01F3/08B01F5/00B01F5/04B01F5/06B05B7/04B05B7/08B05B7/10C01B33/152C01B33/154
    • C01B33/154B01F3/08B01F5/0403B01F2005/0008B01F2005/002B05B1/3421B05B7/0408B05B7/0892B05B7/10C01B33/14
    • The invention relates to a device for producing a rapidly solidifying mixture from several liquid components and subsequently atomizing the solidifying mixture. The device comprises a mixing chamber (4), a liquid distributor (1', 7) and N equal drop-forming nozzles (9a, 9b) which are connected to the liquid distributor. The liquids to be mixed can be fed to the mixing chamber separately and the mixing chamber presents neither significant back-mixing in those areas in which reactions can occur nor significant dead spaces in the flow in these areas. The liquid distributor (1', 7) is connected to the mixing chamber and immediately distributes the mixture flow coming from the mixing chamber to the nozzles (9a, 9b) without significant back-mixing or dead spaces in said flow, so that the flow properties of the partial flows and their dwell times in the liquid distributor are the same for each such partial flow.
    • 本发明涉及一种用于制备几种液体成分和凝固混合物随后雾化的快速凝固的混合物的装置。 该装置包括一个混合室(4),液体分配器(1”,7)和N相等,所述液体分配器连接,落形成喷嘴(9A,9B)。 待混合的液体可以被馈送到单独的混合室和混合室具有在这些区域中的流动没有显著返混在其中的反应可发生的区域中,也不显著死空间。 液体分配器(1”,7)被连接到混合室,并从混合室混合物电流等于喷嘴分布式到来(9A,9B),而不在流动显著返混或死空间,从而使局部流的流动特性和它们的停留时间在液体分配器 是相同的。
    • 77. 发明申请
    • DEVICE FOR MIXING FLUID MEDIUMS
    • 用于混合流体介质的装置
    • WO1996003203A1
    • 1996-02-08
    • PCT/RU1995000121
    • 1995-06-07
    • AKTSIONERNOE OBSCHESTVO OTKRYTOGO TIPA "e;TRANSFER"e;PIMENOV, Jury Alexandrovich
    • AKTSIONERNOE OBSCHESTVO OTKRYTOGO TIPA "e;TRANSFER"e;
    • B01F07/28
    • B01F7/00766B01F7/00633B01F7/16B01F7/164B01F13/1016B01F2005/0008
    • The proposed device for mixing fluid mediums comprises: a vertical inlet pipe (1) directly connected to a mixing chamber (2); distribution chambers (3, 4, 5); preliminary and final mixing units (15 and 16 respectively); and a discharge pipe (28). The distribution chambers are configured coaxially around the vertical pipe and each chamber is divided into intercommunicating areas A and B at least one of which also communicates with the mixing chamber (2). The mixing chamber houses the assembly for mixing the components comprising the preliminary and final mixing units (15 and 16 respectively); these units are mounted on a single shaft (14) and take the form, respectively, of a turning rotor and a fixed stator which is mounted on the mixing chamber housing. The components to be mixed, which are evenly spread around the annular spaces in the distribution chambers, are directed via discharge channels (11) into the mixing chamber (2) and onto the preliminary mixing element rotor (18) which turns at a speed n > 3000 revs/min. The ent ire volume of the fluid medium containing the components undergoes intensive mixing, which results in a high degree of homogeneity and high quality in the final mixture.
    • 所提出的用于混合流体介质的装置包括:直接连接到混合室(2)的垂直入口管(1); 分配室(3,4,5); 初步和最终混合单元(分别为15和16); 和排出管(28)。 分配室同轴地配置在垂直管周围,并且每个室分成相互连通的区域A和B,其中至少一个还与混合室(2)连通。 混合室容纳用于混合包括初步和最终混合单元(分别为15和16)的组分的组件; 这些单元分别安装在单个轴(14)上并且分别采用安装在混合室壳体上的转动转子和固定定子的形式。 被均匀地分布在分配室中的环形空间周围的待混合的部件通过排出通道(11)引导到混合室(2)中并且以速度为n的预混合元件转子(18) > 3000转/分。 含有组分的流体介质的体积经历强烈混合,这导致最终混合物的高程度均匀性和高质量。
    • 78. 发明申请
    • PROCESS FOR PRODUCING A SOLID WATER-IN-OIL EMULSION AND AN APPARATUS FOR CARRYING OUT THE PROCESS
    • 生产固体油脂乳液的方法和实施该方法的装置
    • WO1993010665A1
    • 1993-06-10
    • PCT/DK1991000376
    • 1991-12-03
    • NIRO A/SRASMUSSEN, Carsten, Ole
    • NIRO A/S
    • A23C15/16
    • B01F7/00758A01J17/00A23C15/16A23D7/015A23D7/05B01F7/00766B01F2005/0008
    • A water-in-oil emulsion, such as butter or margarine, having a comparatively low fat content is produced by emulsifying an aqueous component which is buttermilk, skim milk or water, in a fat containing component at a temperature at which the major portion of the fatty substance is in a crystalline state. The emulsification is effected by firstly injecting the aqueous component at several spots spaced apart into a flow of the fat containing component, following which the flow is subjected to a mixing operation particularly exerting displacing and shearing forces. Temperature is controlled to maintain the crystalline state of the fatty substance. An apparatus for carrying out the process includes a pipe (10) having multiple perforations (11) for the injection of the aqueous component into the fat containing component, mounted in the supply conduit (9) of a mixing apparatus (1).
    • 通过在含脂肪成分中的主要部分的温度下将含有脂肪的成分乳化成酪乳,脱脂乳或水的水分成分,制成脂肪含量相对较低的油包水乳液,例如黄油或人造奶油 脂肪物质处于结晶状态。 乳化通过首先将含水组分在间隔开的含脂肪成分的流动中的几个点处喷射,随后进行混合操作,特别是施加移位和剪切力。 控制温度以维持脂肪物质的结晶状态。 用于执行该方法的装置包括具有多个穿孔(11)的管道(10),用于将水分成分注入含脂成分中,安装在混合装置(1)的供应管道(9)中。
    • 80. 发明申请
    • METHOD AND DEVICE FOR PREPARING A DRILLING MUD
    • 用于制备钻孔泥浆的方法和装置
    • WO1980001469A1
    • 1980-07-24
    • PCT/SU1979000096
    • 1979-09-28
    • SREDNEAZIATSKY NI INST PRIRODNOGO GAZAALEKHIN SBUROV ATIKHONOV JKUZNETSOV EBAKHIR VNADZHIMITDINOV ABORN RBERSHITSKY A
    • SREDNEAZIATSKY NI INST PRIRODNOGO GAZA
    • B01F03/12
    • B01F7/00766B01F3/1221B01F7/00633B01F13/1016B01F2005/0008E21B21/062
    • A method for preparing a drilling mud consists in mixing the solid and the fluid phases and subsequently dispersing the solid phase in the fluid one until the colloidal drilling mud is formed with the particles of the solid phase. The dispersing is carried out at several stages. At each stage an additional portion of preliminarily prepared fluid phase is introduced into the mixture, the pH level of that phase being inversely proportional to the degree of size reduction of the solid phase particles at that stage. A device for preparation of the drilling mud comprises a diaphragm electrolyzer (19) with its casing (22) having an inlet and outlets (29, 30, 31) for additional portions of the fluid phase and, placed in the casing, an anode (20) and a cathode (21) separated one from another with a diaphragm (24) and connected to a direct current source (23). A disperser (1) is provided with an additional stator (5) and an additional rotor (11) dividing the casing into consecutive sections (6, 7, 8) interconnecting with each other through overflow holes (15) made in the central area of each stator (5) and connected as well with corresponding outlets (29, 30, 31) of the diaphragm electrolyzer (19).
    • 制备钻井泥浆的方法在于混合固体和流体相,随后将固相分散在流体中,直到胶态钻井泥浆与固相颗粒形成。 分散在几个阶段进行。 在每个阶段,将另外一部分预先制备的流体相引入混合物中,该相的pH值与该阶段固相颗粒的尺寸减小程度成反比。 用于制备钻井泥浆的装置包括隔膜电解器(19),其隔套电解槽(22)具有用于流体相附加部分的入口和出口(29,30,31),并且放置在壳体中的阳极 20)和阴极(21)彼此隔离并具有隔膜(24)并连接到直流源(23)。 分散器(1)设置有附加的定子(5)和附加的转子(11),所述另外的转子(11)通过在中心区域中形成的溢流孔(15)将壳体分为相互连接的连续部分(6,7,8) 每个定子(5)以及隔膜电解槽(19)的相应出口(29,30,31)连接。