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WO2015188340A1 - 混合器 - Google Patents

混合器 Download PDF

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Publication number
WO2015188340A1
WO2015188340A1 PCT/CN2014/079717 CN2014079717W WO2015188340A1 WO 2015188340 A1 WO2015188340 A1 WO 2015188340A1 CN 2014079717 W CN2014079717 W CN 2014079717W WO 2015188340 A1 WO2015188340 A1 WO 2015188340A1
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WO
WIPO (PCT)
Prior art keywords
curved
partition
longitudinal wall
disposed
mixer
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2014/079717
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English (en)
French (fr)
Inventor
黄嘉豪
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
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Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to EP14894349.1A priority Critical patent/EP3156121B1/en
Priority to PCT/CN2014/079717 priority patent/WO2015188340A1/zh
Priority to CN201480077172.7A priority patent/CN106659992B/zh
Priority to ES14894349T priority patent/ES2811725T3/es
Priority to US15/308,545 priority patent/US10040039B2/en
Priority to DE112014000256.9T priority patent/DE112014000256T5/de
Publication of WO2015188340A1 publication Critical patent/WO2015188340A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F25/00Flow mixers; Mixers for falling materials, e.g. solid particles
    • B01F25/40Static mixers
    • B01F25/42Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions
    • B01F25/43Mixing tubes, e.g. wherein the material is moved in a radial or partly reversed direction
    • B01F25/432Mixing tubes, e.g. wherein the material is moved in a radial or partly reversed direction with means for dividing the material flow into separate sub-flows and for repositioning and recombining these sub-flows; Cross-mixing, e.g. conducting the outer layer of the material nearer to the axis of the tube or vice-versa
    • B01F25/4321Mixing tubes, e.g. wherein the material is moved in a radial or partly reversed direction with means for dividing the material flow into separate sub-flows and for repositioning and recombining these sub-flows; Cross-mixing, e.g. conducting the outer layer of the material nearer to the axis of the tube or vice-versa the subflows consisting of at least two flat layers which are recombined, e.g. using means having restriction or expansion zones
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F25/00Flow mixers; Mixers for falling materials, e.g. solid particles
    • B01F25/40Static mixers
    • B01F25/42Static mixers in which the mixing is affected by moving the components jointly in changing directions, e.g. in tubes provided with baffles or obstructions
    • B01F25/43Mixing tubes, e.g. wherein the material is moved in a radial or partly reversed direction
    • B01F25/431Straight mixing tubes with baffles or obstructions that do not cause substantial pressure drop; Baffles therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01FMIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
    • B01F2101/00Mixing characterised by the nature of the mixed materials or by the application field
    • B01F2101/36Mixing of ingredients for adhesives or glues; Mixing adhesives and gas

Definitions

  • the present invention relates to a mixer, and more particularly to a mixer which can thoroughly mix two mixtures.
  • the two kinds of colloids of different properties are mainly mixed to make a stronger adhesive force to achieve the actual needs.
  • a common mixing method is to extrude the two colloids into a container and mix and stir the two before using the adhesive; however, the mixing method does not sufficiently mix the two colloids, and is easy to produce. Bubbles or solidified blocks have room for improvement.
  • the present invention discloses a mixer that passes a mixture of two to be passed through a mixing member having a plurality of oppositely disposed first curved baffles and a second curved baffle to make the two mixtures sufficiently Mix ground.
  • the present invention provides a mixer for mixing two to-be-mixed mixtures, the mixer comprising an outer casing and a mixing member disposed in the outer casing, the mixing member comprising: a first longitudinal wall and an opposite arrangement And a second longitudinal wall parallel thereto; an inlet partition disposed at one end of the first longitudinal wall and the second longitudinal wall to divide the two mixture into two streams; an outlet partition disposed at The other ends of the first longitudinal wall and the second longitudinal wall are for the flow of the same; a plurality of first curved baffles and a second curved baffle are disposed at the inlet partition and the outlet partition And the first curved baffles and the second curved baffles are spaced apart from each other and disposed opposite to each other, wherein one side of the second curved baffles has a gap and another The side has a first passage for the streams to pass through.
  • the inlet partition can divide the two waiting mixture into a first stream and a second stream to flow to the outlet partition, and the first stream and the second stream pass through the first curved baffles and the The flow of the second curved baffle can form a vortex and collect into a mixed stream, which is discharged by the outlet baffle, thereby fully achieving the mixing effect and preventing the bubbles from being generated during the mixing process. Or solidified, and wasted material.
  • the second curved baffle has a notch on one side and a first through hole on the other side, and a free end and a second longitudinal wall are disposed between the first curved baffle Horizontal board.
  • a plurality of connecting partitions are disposed equidistantly from the inlet partition plate toward the outlet partition plate, and a second through passage is disposed between the connecting partition plates and the horizontal plates, and the first through passages The second pass provides a stream that is repeatedly shuttled between the left and right halves of the mixing member to promote mixing.
  • Figure 1 is a schematic view of the appearance of the mixer of the present invention.
  • Figure 2 is an exploded perspective view of the mixer of the present invention.
  • Figure 3 is a side view of the mixing member of the present invention.
  • Figure 4 is another side view of the mixing member of the present invention.
  • Figure 5A is a cross-sectional view taken along line 5A-5A of Figure 3 .
  • Figure 5B is a cross-sectional view taken along line 5B-5B of Figure 3 .
  • Figure 6 is a partial cross-sectional view of the mixing member of the present invention.
  • Figure 7 is a partial cross-sectional view showing another perspective view of the mixing member of the present invention.
  • Figure 8 is a schematic illustration of the mixed state of the present invention.
  • Figure 9 is a schematic illustration of another perspective of the mixed state of the present invention.
  • the mixer 1 of the present invention is for mixing two to-be-mixed mixtures, and the two-to-be-mixed mixture can be respectively A rubber and B rubber.
  • the mixer 1 includes a hollow elongated outer casing 100 and a mixing member 200 disposed in the outer casing 100.
  • the inner casing 100 has a mounting portion 101 at one end, and the mixing member 200 has a non-circular socket portion.
  • the socket portion 201 of the mixing member 200 is adapted to the mounting portion 101, the mixing member 200 is stably installed in the outer casing 100 and does not rotate relative to each other, and the mixing member 200 includes:
  • a first longitudinal wall 10 and a second longitudinal wall 20 disposed oppositely and in parallel.
  • An inlet partition 30 is disposed at one end of the first longitudinal wall 10 and the second longitudinal wall 20, and the inlet partition 30 is adjacent to the socket 201.
  • the inlet partition 30 is arcuate and extends from the second longitudinal wall 20 and faces the socket 201, and the inlet partition 30 is capable of dividing the two mixture into two streams, and the inlet partition 30 is on one side.
  • An outlet baffle 40 is disposed at the other end of the first longitudinal wall 10 and the second longitudinal wall 20, and an outlet portion 41 is disposed on one side of the outlet partition 40, and two oppositely disposed outlets 42 are disposed on the other side.
  • the two outlets 42 and the outlet portion 41 are for guiding the streams and discharging them at the ends of the outer casing 100, as shown in Fig. 5B.
  • a plurality of first curved baffles 50 and second curved baffles 60 are spaced apart from each other and disposed oppositely between the inlet partition 30 and the outlet partition 40 for swirling the flowing stream.
  • the first curved baffle 50 extends from the first longitudinal wall 10 and faces the outlet partition 40
  • the second curved deflector 60 extends from the second longitudinal wall 20 and faces the inlet partition 30, while the second The curved baffle 60 is disposed in the same direction as the inlet partition 30.
  • a horizontal plate 70 is disposed between the free end of the first curved baffle 50 and the second longitudinal wall 20, and one side of the second curved baffle 60 has a notch 61 and the other side has a first passage 62 for the flow of the same, and an arc-shaped connecting portion 63 is disposed between the second curved baffle 60 and the first longitudinal wall 10, and the connecting portion 63 is laterally oriented The next first curved baffle 50 extends.
  • a plurality of connecting partitions 80 are disposed equidistantly from the inlet partition 30 toward the outlet partition 40 and are disposed at upper ends of each of the corresponding first curved deflector 50 and second curved deflector 60 At the lower end and the lower end, a connecting partition 80 is connected between the first curved baffle 50 adjacent to the socket 201 and the inlet partition 30, and the other connecting partition 80 is connected to the farthest socket. Between the second curved baffle 60 of the portion 201 and the outlet partition 40, a second through passage 71 is defined between the connecting partitions 80 and the horizontal plates 70.
  • each of the two corresponding first curved baffles 50 and the second curved baffles 60 are connected by a side guide 90, and the side guides 90 are connected to the first longitudinal wall 10 and the second longitudinal length.
  • the side guide 90 has an edge 91 having a horizontal height greater than the free end of the second curved deflector 60, the edge 91 of the side guide 90 and the free end of the second curved deflector 60 form a cross shape. In order to separate the stream.
  • the inlet partition 30 divides the two waiting mixtures into a first stream A and a second stream B to flow to the outlet partition 40.
  • the first stream A flows directly to the first curved deflector 50, and the second stream B first flows to the horizontal plate 70 via the retaining portion 31 of the inlet partition 30, and the first stream A is separated by the connecting partition 80.
  • the first splitter bundle A1 can form a vortex with the second stream bundle B to be collected and mixed to form a Initially mixing the stream C, initially mixing the stream C and flowing through the second passage 71 to the second curved deflector 60, however, the initial mixed stream C passes through the second passage 71 and then with the second split bundle A2 is again mixed into a mixed stream D and vortexed on one side of the second curved deflector 60, that is, at the side guide 90.
  • the mixed stream D can pass over the edge 91 and flow toward the next first curved baffle 50, wherein the mixed stream D is partially passed through the second curved diversion
  • the notch 61 of the plate 60 flows through the first through-passage 62 and a portion through the side guide 90 to the first curved baffle 50.
  • the mixed flow D continues to pass through the first curved guide.
  • the flow plate 50 and the second curved baffle 60 are diverted and shunted to form a mixed vortex of pressure difference, so that the two waiting mixtures sufficiently achieve the mixing effect, and further, by flowing through the first through passage 62, the second Bypassing the passage 71, the two waiting mixtures can be repeatedly circulated on both sides of the mixing member 200, that is, in the left and right halves of the mixing member 200, thereby increasing the mixing speed.
  • the mixed stream D can be discharged or discharged from the outlet portion 41 and the outlet port 42 of the outlet partition 40 to achieve a sufficient mixing effect and to reduce unnecessary waste of the two waiting mixtures.

Landscapes

  • Chemical & Material Sciences (AREA)
  • Dispersion Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)

Abstract

一种混合器(1),用于将两待混合物混合,混合器(1)包括外壳(100)及穿设于外壳内的混合构件(200),混合构件(200)包括:第一纵长壁(10)及相反设置且平行的第二纵长壁(20);入口隔板(30)及出口隔板(40),分别设置于第一纵长壁(10)及第二纵长壁(20)的两端;数个第一弧形导流板(50)及第二弧形导流板(60),设置于入口隔板(30)与出口隔板(40)之间,且第一弧形导流板(50)与第二弧形导流板(60)彼此间隔并呈相反设置,借此,两待混合物自入口隔板(30)导入,并经第一弧形导流板(50)与第二弧形导流板(60)的导流,以充分混合并自出口隔板(40)排出。

Description

混合器 技术领域
本发明是有关于一种混合器,尤指一种可将两待混合物充分混合的混合器。
背景技术
按,工业上常见的粘着剂,主要是通过两种不同性质的胶体以混合手段,使其能够产生更强的粘着力,以达到实际的所需。
技术问题
然而,常见用的混合手段是将两胶体挤出于一容器内,并将其两者混合搅拌,之后才能进行粘着使用;只是,如此混合方式,并无法充分地将两胶体混合,且容易产生气泡或是凝固块,而有改善的空间。
技术解决方案
为解决上述课题,本发明揭露一种混合器,其将两待混合物通过具有数个相反设置的第一弧形导流板与第二弧形导流板的混合构件,以使两待混合物充分地混合。
为达上述目的,本发明提供一种混合器,用以将两待混合物混合,混合器包括一外壳及穿设于外壳内的混合构件,混合构件包括:一第一纵长壁及一相反设置且与其呈平行的第二纵长壁;一入口隔板,设置于第一纵长壁与第二纵长壁的一端,以将两待混合物区分成两流束;一出口隔板,设置于第一纵长壁与第二纵长壁的另一端,以供该等流束导出;数个第一弧形导流板及第二弧形导流板,设置于入口隔板与出口隔板之间,且该些第一弧形导流板与该些第二弧形导流板彼此间隔并呈相反设置,其中,该些第二弧形导流板的一侧具有一缺口及另一侧具有一第一穿道,以供该等流束穿越。
其中,入口隔板可将两待混合物区分成一第一流束及一第二流束,以便流向出口隔板,第一流束与第二流束是通过该些第一弧形导流板与该些第二弧形导流板的导流,而能形成涡旋并汇集成一混合流束,而由出口隔板排出,借此,能够充分达到混合的效果,避免两待混合物于混合过程中产生气泡或凝固状,而浪费材料。
更进一步地,第二弧形导流板的一侧具有一缺口及另一侧具有一第一穿道,该些第一弧形导流板的自由端与第二纵长壁之间设有一水平板。
又进一步地,数个连接隔板等距地自入口隔板朝向出口隔板横向布设,该等连接隔板与该等水平板之间设有一第二穿道,该等第一穿道与第二穿道,提供流束反复地穿梭于混合构件的左半部及右半部之间,以促进混合的速度。
附图说明
图1 为本发明的混合器外观示意图。
图2 为本发明的混合器的分解示意图。
图3 为本发明的混合构件的侧视图。
图4 为本发明的混合构件的另一侧视图。
图5A 为沿图3的5A-5A剖面线所取的剖视图。
图5B 为沿图3的5B-5B剖面线所取的剖视图。
图6 为本发明的混合构件的部分剖视图。
图7 为本发明的混合构件的另一视角的部分剖视图。
图8 为本发明的混合状态的示意图。
图9 为本发明的混合状态的另一视角的示意图。
【主要元件符号说明】
混合器1
安装部101
套接部201
第二纵长壁20
让位部31
出口部41
第一弧形导流板50
缺口61
连接部63
第二穿道71
侧导板90
第一流束A
第一分流束A1
初始混合流束C 外壳100
混合构件200
第一纵长壁10
入口隔板30
出口隔板40
导出口42
第二弧形导流板60
第一穿道62
水平板70
连接隔板80
边缘91
第二流束B
第二分流束A2
混合流束D。
本发明的最佳实施方式
为便于说明本发明于上述发明内容一栏中所表示的中心思想,兹以具体实施例表达。实施例中各种不同物件是按适于列举说明的比例,而非按实际元件的比例予以绘制,合先叙明。
如图1至图7所示,本发明的混合器1,是用以将两待混合物混合,两待混合物可分别为A胶、B胶。混合器1包括一中空长条状的外壳100及一穿设于外壳100内的混合构件200,其中,外壳100内一端具有一安装部101,而混合构件200具有一非圆形的套接部201,使混合构件200的套接部201适配于安装部101,使混合构件200稳固安装于外壳100内且不会相对旋转,而混合构件200包括有:
一第一纵长壁10及一相反设置且呈平行的第二纵长壁20。
一入口隔板30,设置于第一纵长壁10与第二纵长壁20的一端,且入口隔板30邻近于套接部201。其中,入口隔板30为一弧状并自第二纵长壁20延伸并朝向套接部201,且入口隔板30能够将两待混合物区分成两流束,另外,入口隔板30于一侧具有一让位部31,如图5A所示。
一出口隔板40,设置于第一纵长壁10与第二纵长壁20的另一端,且出口隔板40一侧设有一出口部41,另一侧设有两相对设置的导出口42,两导出口42与出口部41用以使该等流束导出,并以外壳100的末端排出,如图5B所示。
数个第一弧形导流板50及第二弧形导流板60,彼此间隔并呈相反设置于入口隔板30与出口隔板40之间,用以使流经的流束形成回旋。第一弧形导流板50自第一纵长壁10延伸并朝向出口隔板40,而第二弧形导流板60自第二纵长壁20延伸并朝向入口隔板30,而第二弧形导流板60与入口隔板30为同方向设置。其中,该些第一弧形导流板50的自由端与第二纵长壁20之间设有一水平板70,第二弧形导流板60的一侧具有一缺口61及另一侧具有一第一穿道62,以供该等流束穿越,并且第二弧形导流板60与第一纵长壁10之间设有一弧形的连接部63,且连接部63侧向地朝向下一个第一弧形导流板50延伸。
数个连接隔板80,等距地自入口隔板30朝向出口隔板40横向布设,并设置于每两相对应的第一弧形导流板50及第二弧形导流板60的上端处及下端处,此外,其一连接隔板80接设于邻近套接部201的第一弧形导流板50与入口隔板30间,又一连接隔板80接设于最远离套接部201的第二弧形导流板60与出口隔板40之间,其中,该等连接隔板80与该等水平板70之间设有一第二穿道71。
又,每两相对应的第一弧形导流板50与第二弧形导流板60之间以一侧导板90连接,且侧导板90连接于第一纵长壁10与第二纵长壁20之间,其中,侧导板90具有水平高度大于第二弧形导流板60的自由端的边缘91,侧导板90的边缘91与第二弧形导流板60的自由端构成十字状,以便将流束分隔开来。
如图8、图9所示,入口隔板30可将两待混合物区分成一第一流束A及一第二流束B,以便流向出口隔板40。第一流束A直接流向第一弧形导流板50,第二流束B则先经由入口隔板30的让位部31流向水平板70,且第一流束A受连接隔板80所区隔,而将其区分为一第一分流束A1与一第二分流束A2,分别流向混合构件200的两侧,第一分流束A1能与第二流束B形成涡旋汇集并混合以形成一初始混合流束C,初始混合流束C并穿越第二穿道71而流向第二弧形导流板60,然而,初始混合流束C经过第二穿道71后则又与第二分流束A2再次地混合而成一混合流束D并涡旋汇集于第二弧形导流板60一侧,即位于侧导板90处。
随后,当混合流束D累积越多而满溢时,则能越过边缘91并朝向下一个第一弧形导流板50流动,其中,混合流束D一部份经由第二弧形导流板60的缺口61、一部份经由第一穿道62、一部份经由侧导板90而流向第一弧形导流板50,如此,混合流束D续持地再经过第一弧形导流板50与第二弧形导流板60的导流、分流,以形成压力差的混合旋涡,使两待混合物充分地达到混合效果,再者,借助流经第一穿道62、第二穿道71之故,而能使两待混合物反复地于混合构件200的两侧穿梭流通,亦即穿梭于混合构件200的左半部及右半部,如此可提高混合速度。
最后,混合流束D则能由出口隔板40的出口部41及导出口42流出或排出,以达到充分混合的效果,并能够减少两待混合物不必要的浪费。
虽然本发明是以一个最佳实施例作说明,精于此技艺者能在不脱离本发明精神与范畴下作各种不同形式的改变。以上所举实施例仅用以说明本发明而已,非用以限制本发明的范围。举凡不违本发明精神所从事的种种修改或改变,俱属本发明申请专利范围。

Claims (10)

  1. 一种混合器,用以将两待混合物混合,该混合器包括外壳及穿设于该外壳内的混合构件,其特征在于,该混合构件包括:
      一个第一纵长壁及一个与其呈平行设置的第二纵长壁;
      一个入口隔板,设置于该第一纵长壁与该第二纵长壁的一端,以将该两待混合物区分成两流束;
      一个出口隔板,设置于该第一纵长壁与该第二纵长壁的另一端,以供该等流束导出;以及
      数个第一弧形导流板及第二弧形导流板,设置于该入口隔板与该出口隔板之间,且该些第一弧形导流板与该些第二弧形导流板彼此间隔并呈反向设置,其中,该些第二弧形导流板的一侧具有缺口及另一侧具有第一穿道,以供该等流束穿越。
  2. 如权利要求1所述的混合器,其特征在于:该些第一弧形导流板自该第一纵长壁延伸并朝向该出口隔板,该些第二弧形导流板自该第二纵长壁延伸并朝向该入口隔板。
  3. 如权利要求1或2所述的混合器,其特征在于:该入口隔板自该第二纵长壁延伸,并与该些第二弧形导流板同向设置。
  4. 如权利要求3所述的混合器,其特征在于:该入口隔板一侧具有一个让位部。
  5. 如权利要求2所述的混合器,其特征在于:该些第一弧形导流板的自由端与该第二纵长壁之间设有一个水平板。
  6. 如权利要求5所述的混合器,其特征在于:更包括数个连接隔板,等距地自该入口隔板朝该出口隔板布设,该等水平板与该等连接隔板之间具有第二穿道。
  7. 如权利要求1所述的混合器,其特征在于:每两相对应的该第一弧形导流板与该第二弧形导流板之间以一个侧导板连接。
  8. 如权利要求7所述的混合器,其特征在于:该第二弧形导流板与该第一纵长壁之间设有一个弧形的连接部。
  9. 如权利要求1所述的混合器,其特征在于:该混合构件邻近于该入口隔板设有一个非圆形的套接部,该外壳设有一个安装部以供该套接部适配。
  10. 如权利要求1所述的混合器,其特征在于:该出口隔板一侧设有一个出口部,另一侧设有两个导出口。
PCT/CN2014/079717 2014-06-12 2014-06-12 混合器 Ceased WO2015188340A1 (zh)

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PCT/CN2014/079717 WO2015188340A1 (zh) 2014-06-12 2014-06-12 混合器
CN201480077172.7A CN106659992B (zh) 2014-06-12 2014-06-12 混合器
ES14894349T ES2811725T3 (es) 2014-06-12 2014-06-12 Mezclador
US15/308,545 US10040039B2 (en) 2014-06-12 2014-06-12 Mixer
DE112014000256.9T DE112014000256T5 (de) 2014-06-12 2014-06-12 Mischgerät

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US10040039B2 (en) 2018-08-07
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ES2811725T3 (es) 2021-03-15
US20170056845A1 (en) 2017-03-02
CN106659992B (zh) 2019-03-29
CN106659992A (zh) 2017-05-10
EP3156121A1 (en) 2017-04-19
DE112014000256T5 (de) 2016-04-07

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