Stirring-processing apparatus and processing method
09925503 ยท 2018-03-27
Assignee
Inventors
Cpc classification
B01F27/84
PERFORMING OPERATIONS; TRANSPORTING
B01F27/40
PERFORMING OPERATIONS; TRANSPORTING
B01F25/44
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A stirring-processing apparatus and a processing method are provided to realize excellent processing of a fluid regardless of the properties of the fluid. The stirring-processing apparatus is provided with the stirring blade and the stirring chamber provided with the screen, wherein the apparatus performs, under a state in which the stirring chamber is disposed in a fluid to be processed, a process of applying a shear force to the fluid by a relative rotation between the screen and the stirring blade. The stirring chamber is provided with the suction opening to suck the fluid from outside to inside and the ejecting opening to eject the fluid from inside to outside; these openings being disposed above and below. The suppressing body to control a flow of the fluid is disposed between the suction opening and the ejecting opening. The suppressing body is, for example, in the form of a cylinder, and is interposed between the suction flow and the ejecting flow, thereby suppressing interference between the two flows.
Claims
1. A stirring-processing apparatus, comprising: a stirring blade rotating at a high speed; and a stirring chamber provided with a screen which is disposed such that the stirring blade is enclosed therein, wherein the stirring-processing apparatus performs, under a state in which the stirring chamber is disposed in a fluid to be processed, a process of applying a shear force to the fluid by rotating at least any one of the screen and the stirring blade, thereby effecting a relative rotation between the screen and the stirring blade, wherein the stirring chamber includes: a plurality of suction openings defined by a plurality of circumferentially spaced apart connecting parts each extending in a direction of a rotation axis of the relative rotation, to suck the fluid from outside to inside; a plurality of ejecting openings formed on the screen to eject the fluid from inside to outside by the relative rotation, the plurality of suction openings and the plurality of ejecting openings being disposed in different positions in the direction of the rotation axis of the relative rotation; and an outer wall portion between the plurality of suction openings and the plurality of ejecting openings adjoining the plurality of circumferentially spaced apart connecting parts and the screen together, wherein a suppressing body is disposed on an outside of the outer wall portion and the plurality of circumferentially spaced apart connecting parts of the stirring chamber to control a flow of the fluid between the plurality of suction openings and the plurality of ejecting openings, the suppressing body comprising: a base end positioned on the stirring chamber at a point thereof between the plurality of suction openings and the plurality of ejecting openings, the base end having a first outer diameter; and a front end extending from the base end radially outward and axially upward in the direction of the rotation axis of the relative rotation and away from the plurality of ejecting openings, the front end reaching or extending beyond upper ends of the plurality of circumferentially spaced apart connecting parts, and having a second outer diameter larger than the first outer diameter of the base end, the front end being radially spaced apart from the plurality of circumferential spaced apart connecting parts, and wherein the suppressing body is interposed between a suction flow, which is a flow of the fluid from the outside into the plurality of suction openings, and an ejecting flow, which is a flow of the fluid ejected from the plurality of ejecting openings to the outside, thereby suppressing an interference between the suction flow and the ejecting flow as well as preventing disturbing the flow of the suction flow into the plurality of suction openings due to the ejecting flow.
2. The stirring-processing apparatus according to claim 1, wherein the suppressing body has a front end side thereof projected toward the outside of the stirring chamber.
3. The stirring-processing apparatus according to claim 2, wherein the suppressing body is continuous in a circumferential direction.
4. The stirring-processing apparatus according to claim 2, wherein an introducing fin is arranged to introduce the fluid by rotation thereof, and wherein an edge of the front end of the suppressing body is located in a position more apart from the plurality of suction openings than an edge of the introducing fin located in the nearest position to the plurality of suction openings in the direction of the rotation axis of the relative rotation.
5. The stirring-processing apparatus according to claim 1, wherein the suppressing body is continuous in a circumferential direction.
6. The stirring-processing apparatus according to claim 5, wherein an introducing fin is arranged to introduce the fluid by rotation thereof, and wherein an edge of the front end of the suppressing body is located in a position more apart from the plurality of suction openings than an edge of the introducing fin located in the nearest position to the plurality of suction openings in the direction of the rotation axis of the relative rotation.
7. The stirring-processing apparatus according to claim 1, wherein the suppressing body has a cylindrical form.
8. The stirring-processing apparatus according to claim 7, wherein an introducing fin is arranged to introduce the fluid by rotation thereof, and wherein an edge of the front end of the suppressing body is located in a position more apart from the plurality of suction openings than an edge of the introducing fin located in the nearest position to the plurality of suction openings in the direction of the rotation axis of the relative rotation.
9. The stirring-processing apparatus according to claim 1, wherein an introducing fin is arranged to introduce the fluid by rotation thereof, and wherein an edge of the front end of the suppressing body is located in a position more apart from the plurality of suction openings than an edge of the introducing fin located in the nearest position to the plurality of suction openings in the direction of the rotation axis of the relative rotation.
10. The stirring-processing apparatus according to claim 1, further comprising an electric motor configured to drive the stirring blade to rotate via a first driving axis, and to drive the screen to rotate via a second drive axis, the first drive axis being positioned within the second drive axis, and being coaxial with the second drive axis, wherein the screen rotates in an opposite direction from a rotating direction of the stirring blade.
11. The stirring-processing apparatus according to claim 1, further comprising an electric motor configured to drive the screen to rotate via a drive axis, wherein the screen is rotatable with respect to the suppressing body.
12. The stirring-processing apparatus according to claim 1, wherein the second outer diameter of the front end is larger than an outer diameter of the outer wall portion of the stirring chamber.
13. The stirring-processing apparatus according to claim 1, further comprising an electric motor configured to drive the stirring blade to rotate via a first driving axis, and to drive the screen to rotate via a second drive axis, the first drive axis being positioned within the second drive axis, and being coaxial with the second drive axis, wherein: the screen forms a part of an outer wall of the stirring chamber, the base end of the suppressing body is fixed to the outer wall of the stirring chamber at a position between the plurality of suction openings and the plurality of ejecting openings, the stirring-processing apparatus further comprises an auxiliary blade installed outside the suppressing body, the screen and the stirring blade rotate in opposite direction each other, thereby effecting a relative rotation between the screen and the stirring blade, and the suppressing body rotates together with the screen, and the auxiliary blade rotates together with the suppressing body.
14. A stirring-processing method, comprising the steps of: stirring a fluid by using a stirring apparatus provided with a stirring chamber and a stirring blade disposed in the stirring chamber, the stirring chamber being provided with a screen, at least any one of the screen and the stirring blade being rotated thereby effecting a relative rotation between the screen and the stirring chamber, the stirring chamber including: a plurality of suction openings defined by a plurality of circumferentially spaced apart connecting parts each extending in a direction of a rotation axis of the relative rotation, to suck the fluid from outside to inside, a plurality of ejecting openings formed on the screen to eject the fluid from inside to outside by the relative rotation, the plurality of suction openings and the plurality of ejecting openings being disposed in different positions in the direction of the rotation axis of the relative rotation; and an outer wall portion between the plurality of suction openings and the plurality of ejecting openings adjoining the plurality of circumferentially spaced apart connecting parts and the screen together; disposing the stirring chamber in the fluid; transporting the fluid by the relative rotation, whereby sucking the fluid from outside the stirring chamber into an inside thereof while ejecting the fluid from the plurality of ejecting openings to outside; applying a shear force to the fluid in between the stirring blade and the screen by the relative rotation during the step of transporting; and disposing a suppressing body on an outside of the outer wall portion and the plurality of circumferentially spaced apart connecting parts of the stirring chamber to control a flow of the fluid between a suction flow, which is a flow of the fluid from outside into the plurality of suction openings, and an ejecting flow, which is a flow of the fluid ejected from the plurality of ejecting openings to the outside, thereby suppressing an interference between the suction flow and the ejecting flow as well as preventing disturbing the flow of the suction flow into the plurality of suction openings due to the ejecting flow, wherein the suppressing body comprises: a base end positioned on the stirring chamber between the plurality of suction openings and the plurality of ejecting openings, the base end having a first outer diameter; and a front end extending from the base end radially outward and axially upward in the direction of the rotation axis of the relative rotation and away from the plurality of ejecting openings, the front end reaching or extending beyond upper ends of the plurality of circumferentially spaced apart connecting parts, and having a second outer diameter larger than the first outer diameter of the base end, the front end being radially spaced apart from the plurality of circumferential spaced apart connecting parts.
15. The stirring-processing method according to claim 14, wherein the stirring apparatus is provided with an introducing fin to introduce the fluid by rotation thereof; and an introducing flow of the fluid generated by rotation of the introducing fin is guided to the plurality of suction openings by the suppressing body.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2) This is the explanatory structure drawing of the stirring-processing apparatus according to one embodiment of the present invention.
(3)
(4) (A): This shows the enlarged cross section view of the essential part of the same stirring-processing apparatus. (B): This is the explanatory drawing of driving of the same in the B-B cross section line.
(5)
(6) (A): This is the explanatory breakdown drawing of the same stirring-processing apparatus. (B): This is the explanatory breakdown drawing in the cross section of the same.
(7)
(8) (A): This is the explanatory structure drawing of the stirring-processing apparatus according to other embodiment of the present invention. (B): This is the top view showing the modification example of the suppressing body of the same stirring-processing apparatus. (C): This is the top view showing the still other modification example of the suppressing body of the same stirring-processing apparatus.
(9)
(10) This is the explanatory structure drawing of the stirring-processing apparatus according to still other embodiment of the present invention.
(11)
(12) This is the explanatory structure drawing of the stirring-processing apparatus according to still other embodiment of the present invention.
BEST MODES FOR CARRYING OUT THE INVENTION
(13) Hereunder, embodiments of the present invention will be explained on the basis of the drawings.
(14)
(15) In this embodiment, the stirring chamber 18 is provided with the suction room 19 in the upper part thereof and the shearing room 20 in the lower part thereof. Between the two is divided by the dividing wall 21, wherein there is an opening in the central part of the dividing wall 21 so that the fluid can go through sufficiently well between the suction room 19 and the shearing room 20. Meanwhile, the dividing wall 21 is not necessarily installed, so that the embodiment may also be executed without strictly dividing between the suction room 19 and the shearing room 20.
(16) The suction room 19 is provided with at least one suction opening 24, and the shearing room 20 is provided with at least one ejecting opening 25. In this embodiment, the outer wall of the shearing room 20 is formed by the screen 23, and the slits arranged in the screen 23 work as the ejecting opening 25 mentioned above; however, a different wall member may be arranged outside the screen 23, and the ejecting opening 25 may be formed in this wall member.
(17) The stirring chamber 18 is provided with, inside thereof, especially inside the shearing room 20 in this embodiment, the stirring blade 22 which rotates at a high speed so as to apply a shear force to the fluid in the space formed with the screen 23 which rotates in the opposite direction of the stirring blade 22 (see
(18) The rotation driving system will be explained herein. The stirring blade 22 rotates by means of the first axis 13; and the screen 23 rotates in the opposite direction thereof by means of the second axis 14. Both the first axis 13 and the second axis 14 are extended in the upward and downward directions. The second axis 14 is the axis having a hollow cylindrical form; and inside the second axis 14 is put through the first axis 13 rotatably. The first axis 13 and the second axis 14 rotate by a rotation driving source (not shown by the drawings) such as an electric motor installed above the covering cap 12. It is preferable that the rotation numbers of these two be controlled variably by an inverter or the like. This embodiment may be executed by arbitrarily changing these rotation numbers provided that the shearing process of the fluid would be within an acceptable range.
(19) In the lower edge of the second axis 14, the stirring chamber 18 as mentioned above is installed, so that the suction room 19, the shearing room 20, and the screen 23 can rotate as a whole.
(20) As shown in
(21) During this shearing process, the stirring blade 22 rotates in the opposite direction of the screen 23; and as a result, the fluid is sucked from the suction opening 24 into the stirring chamber 18 (suction flow 26), and at the same time, the fluid is ejected from the ejecting opening 25 to outside the stirring chamber 18 (ejecting flow 27). Once the suction flow 26 entered from the suction opening 24 enters into the stirring chamber 19, and then, it is sucked into the shearing room 20 located below from the opening arranged in the central part of the dividing wall 21. In the shearing room 20, the shearing process is executed between the stirring blade 22 and the screen 23, and then, the fluid thus processed is ejected from the ejecting opening 25.
(22) The effect mentioned above is the same in the apparatuses shown in the prior art literatures 1 to 3; and therefore, the present invention may be executed by similarly modifying the existing stirring-processing apparatuses of this kind including those shown in these prior art literatures.
(23) The present invention is characterized by that the interference between the suction flow 26 and the ejecting flow 27 before and after the shearing process is suppressed in the above-mentioned apparatus.
(24) Specifically, the suppressing body 31 is formed between the suction opening 24 arranged in the upper part and the ejecting opening 25 arranged in the lower part; these openings being disposed side by side in the direction of the rotation axis (hereunder, the term direction in the rotation axis used simply means the direction of the rotation axis of the first axis 13). The suppressing body 31 in this embodiment is a cylindrical form having the front end opening 34 in the upper part thereof, and the base end side 32 thereof is fixed to the outer wall of the stirring chamber 18 between the suction opening 24 and the ejecting opening 25. Moreover, the front end side 33 is projected toward outside the stirring chamber 18. More specifically, as going outward, it is getting away upward from the ejecting opening 25 located in the lower part in the direction of the rotation axis. Accordingly, the suppressing body 31 in this embodiment has an almost reverse truncated corn in which the diameter thereof becomes larger as going to the upper front end side 33. Especially in this embodiment, the front end side 33 of the suppressing body 31 is extended upward beyond the suction opening. On the other hand, the introducing fin 16 is extended spirally from up to down around the second axis 14, and the front end thereof (bottom end thereof) reaches near the suction opening 24. As a result, the bottom end side of the introducing fin 16 enters from the front opening 34 of the suppressing body 31 in the cylindrical form into inside the suppressing body 31. In other words, the edge (upper edge) of the front end side 33 of the suppressing body 31 is located above the edge of the front end side (lower end side) of the introducing fin 16 in the direction of the rotation axis. By so doing, the introducing flow 28 formed by the introducing fin 16 is introduced into the suppressing body 31 which has the cylindrical form, and sucked smoothly into the suction opening 24 without receiving the interference from the ejecting flow 27. Accordingly, even in the case of a highly viscous fluid, the fluid can be sucked from the suction opening 24 as the excellent suction flow 26, so that the shearing process as mentioned above can be continuously carried out without problems.
(25) Meanwhile, in this embodiment, the suppressing body 31 rotates at a high speed together with the stirring chamber 18. By changing the form of the suppressing body 31 to a circular form in the cross section intersecting at the direction of the rotation axis, the rotation thereof hardly exerts an impact on the flow of the fluid; but the embodiment in which the form other than a circular form such as a polygonal form is employed is not excluded.
(26) Next, by referring to
(27) In
(28) The suppressing body 31 of the present invention is preferably continuous in the circumferential direction; however, as shown in
(29) In addition, the suppressing body 31 of the present invention may be executed as the embodiment in which it is extended downward (direction to the ejecting opening 25) as going from the base end side 32 to the front end side 33 in the direction of the rotation axis; but it may be executed as a form of a flat plate not having a change in the direction of the rotation axis (see
(30)
(31) In addition, in the above-mentioned embodiments, the stirring-processing apparatus is used while it is immersed in the fluid of the processing vessel 11, and therefore, the moving entity is not the whole of them; however, in the embodiment shown in
(32)
(33) As discussed above, the present invention may be executed as variously modified embodiments. In this embodiment, the angles of the suction opening 24 and the ejecting opening 25 are arranged at a slant such that the suction opening 24 maybe in the upward direction and the ejecting opening 25 in the downward direction, respectively, so that the suction flow 26 can be introduced diagonally downward from the up and the ejecting flow 27 can be ejected diagonally downward from the bottom of the suppressing body; however, embodiments having these angles changed variously may be executed. For example, the embodiment in which the both are arranged almost horizontally (in the direction almost orthogonal to the direction of the rotation axis) may also be possible. Even in the case like this, by arranging the suppressing body 31 between the suction opening 24 and the ejecting opening 25, the interference between the suction flow 26 and the ejecting flow 27 can be suppressed. In the above embodiments, the stirring chamber 18 is made to support the suppressing body 31; however, not only the second axis 14, but also the processing vessel 11 or the covering cap 12 may be made to support the suppressing body. In each of the above embodiments, the stirring blade 22 and the screen 23 are rotated in the opposite directions with each other; however, of these two, any one of them may be rotated. In other words, it is sufficient if the stirring blade 22 and the screen 23 are made to carry out the relative rotation so as to apply a shear force to the fluid.
(34) Besides the fluids to be processed are such that the liquid which contains a synthetic resin such as toner particle and the like and a metal particle, in addition to this, the liquid not containing particles and two fluids comprising an oil and water; the present invention may be used for various fluids which require processing such as emulsification, dispersion, and mixing.
REFERENCE NUMERALS
(35) 11 Processing vessel 13 First axis 14 Second axis 15 Third axis 16 Introducing fin 17 Circulating fin 18 Stirring chamber 19 Suction room 20 Shearing room 22 Stirring blade 23 Screen 24 Suction opening 25 Ejecting opening 26 Suction flow 27 Ejecting flow 28 Introducing flow 29 Circulating flow 31 Suppressing body 32 Base end side 33 Front end side 35 Auxiliary blade