Continuous horizontal digester
10422077 ยท 2019-09-24
Assignee
Inventors
Cpc classification
International classification
Abstract
The instant disclosure provides a continuous horizontal digester including a cylindrical pressure cooker capable of rotating by taking its central axis as an axis; a charging apparatus disposed at one end of the cooker which is communicated with an inner cavity of the cooker and can seal the cooker; and a discharging device disposed at the other end of the cooker and communicated with the inner cavity of the cooker, the discharging device is located on the central axis of the cooker. The continuous horizontal digester further includes a cooking device configured to cook the materials in the cooker.
Claims
1. A continuous horizontal digester comprising: a cylindrical pressure cooker configured to rotate along a central axis thereof; a charging device disposed on an end of the cylindrical pressure cooker and communicated with an inner cavity of the cylindrical pressure cooker, the charging device being configured to seal the cylindrical pressure cooker; a discharging device disposed on the central axis of the cylindrical pressure cooker and communicated with the inner cavity of the cylindrical pressure cooker; and a cooking device for cooking a material in the cylindrical pressure cooker; wherein the charging device includes a charging case divided into at least two parts communicated with each other, one of the two parts being communicated with the inner cavity of the cylindrical pressure cooker and rotating synchronously with the cylindrical pressure cooker along the central axis of the cylindrical pressure cooker, the other one of the two parts being fixed and connected to a charging opening, a sealing device being disposed between the two parts of the charging case.
2. The continuous horizontal digester according to claim 1, wherein the charging device further includes a feed screw disposed inside of the charging case, the feed screw being coincided with the central axis of the cylindrical pressure cooker and rotating relative to the cylindrical pressure cooker.
3. The continuous horizontal digester according to claim 2, wherein a sealing plate is disposed in the cylindrical pressure cooker and covers an end opening of the charging case, a limiting component being fixed outside of an end cover of the cylindrical pressure cooker, the limiting component applying a pulling force toward a direction opposite to a charging direction on the sealing plate.
4. The continuous horizontal digester according to claim 2, wherein the feed screw has a compression ratio and the charging case has a plurality of filtering holes; wherein the continuous horizontal digester further includes a water-collecting case covering the charging case and being fixed and connected to the charging opening, and wherein the water-collecting case has an inclined lower surface connecting to a water-discharging opening located at the lowest position of the inclined lower surface.
5. The continuous horizontal digester according to claim 1, wherein a bearing for eliminating a bounce of the cylindrical pressure cooker is disposed at a connection location between the charging case and the charging opening.
6. The continuous horizontal digester according to claim 1, wherein a feeder is connected to the charging case, the feeder being configured to feed the material to the cylindrical pressure cooker and to prevent the pressure in the cylindrical pressure cooker from leaking, the feeder being connected to the charging opening.
7. The continuous horizontal digester according to claim 6, wherein the feeder includes an assisted feed screw located above the feed screw, the assisted feed screw having a compression ratio, the charging opening being located above the assisted feed screw, a discharging opening of the assisted feed screw having a sealing plate for applying a force having a direction opposite to the charging direction on the material.
8. The continuous horizontal digester according to claim 1, wherein a plurality of rising plates are disposed on the inner wall of the cylindrical pressure cooker, the plurality of rising plates being separately disposed along an axis of the cooker, an annulus baffle plate being disposed between any two adjacent rising plates.
9. The continuous horizontal digester according to claim 1, wherein a helical feeding blade and a stirrer are disposed on an inner wall of a charging end of the cylindrical pressure cooker.
10. The continuous horizontal digester according to claim 1, wherein the cylindrical pressure cooker is tiltable.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings are included to provide a further understanding of the instant disclosure, and are incorporated in and constitute a part of this specification. The drawings illustrate exemplary embodiments of the instant disclosure and, together with the description, serve to explain the principles of the instant disclosure.
(2)
(3)
(4)
(5)
(6)
(7)
DESCRIPTION OF THE EXEMPLARY EMBODIMENTS
(8) Reference will now be made in detail to the exemplary embodiments of the instant disclosure, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the description to refer to the same or like parts.
First Embodiment
(9) Reference is made to
(10) The difference between the continuous horizontal digester (of the instant disclosure) and the digester in the existing art is that the cooker 1 of the continuous horizontal digester can rotate along a central axis thereof. Therefore, the material in the digester can be mixed excellently. The digester mainly includes a charging device, a discharging device and a cooking device. These components are described in detail herein.
(11) As shown in
(12) The chemical solution input into the cooker 1 for conducting reactions can be input through a channel on the central axis of the feed screw 7. The channel forms a chemical solution input tube 4. The chemical solution can also be mixed with the material feed and input from the charging opening 6. The chemical solution can be input by other technical means. Another means for inputting the chemical solution into the cooker is described below.
(13) Generally, the cooker 1 has a diameter of about 2 meters and a length of about 10 meters. A bounce of the cooker 1 relative to the charging opening 6 can be generated during the rotation of the cooker 1. In order to eliminate the bounce, at least a bearing 12 is disposed at the connecting location between the charging case 5 and the charging opening 6. At least a part of the charging case 5 can allow limited movement at three dimensions for ensuring the fit tolerance between the two parts.
(14) As shown in
(15) In the first embodiment, the discharging device includes a slurry-output tube 3 extending inside of the cooker 1. The end of the slurry-output tube 3 is located at the lowest end of the cooker 1. Under the high pressure condition in the cooker 1, the slurry for producing paper formed by the cooking process will be slowly discharged from the slurry-output tube 3.
(16) The cooking device of the first embodiment can have two different structures. As shown in
(17) Another structure design for the cooking device is to arrange a jacket outside of the cooker 1. The jacket is filled with heat-conducting oil and a heat-conducting oil output opening is disposed on the jacket for discharging the heat-conducting oil after the heat conducting process. The heat-conducting oil is used to cook the slurring inside of the cooker 1. This type of structure design can avoid the slurry inside of the cooker 1 including excess water and ensure the efficiency of the cooking process.
(18) In order to increase the mixing effect of the materials inside of the cooker, a plurality of rising plates 18 can be disposed on the inner wall of the cooker 1. The rising plates 18 are separately disposed inside of the cooker 1 along an axis of the cooker 1, and an annulus baffle plate 19 can be disposed between any two adjacent rising plates 18. When the cooker 1 rotates, these rising plates 18 can continuously rotate and raise the slurry inside of the cooker 1 for improving the mixing effect of the slurry. In addition, a helical feeding blade and a stirrer can be disposed on the inner wall of the charging end of the cooker 1 for further enhancing the mixing effect of the slurry.
(19) The manhole 16 disposed on the cooker 1 can enable the user to inspect and maintain the cooker 1 and an air compression machine 15 can provide power to the air cylinder.
Second Embodiment
(20) Reference is now made to
(21) The charging case 5 of the second embodiment has a two-part structure. The sealing device between the two parts of the charging case 5 requires a strict sealing effect for sealing not only the material but also the gas and liquid in the charging case 5.
(22) The feed screw 7 and the assisted feed screw 17 are disposed toward the same direction. The assisted feed screw 17 has a compression ratio and is disposed between the charging opening 6 and the fixed part of the charging case 5. The sealing plate 8 of the second embodiment is disposed at the discharging end of the assisted feed screw 17. The limiting component (i.e., the air cylinder 9) is connected to the sealing plate 8 for applying a force having a direction opposite to the charging direction on the sealing plate 8. Therefore, the chemical solution inside of the cooker 1 can be prevented from ejecting by the high-pressure condition.
(23) The discharging opening of the feed screw 7 directly connected to the cooker 1 has a sealing plate for assisting the sealing effect of the cooker 1 when the first sealing plate fails.
(24) The other components of the second embodiment are similar to the first embodiment and are not described in detail herein.
(25) For the continuous horizontal digester of the instant disclosure, the other charging devices (such as compartment assisted screw feeder, compartment assisted free-fall feeding (free-feed)) can be used in combination with the discharging device and the cooking device for solving the corresponding technical problems and achieving corresponding technical effects. These structures are known in the technical field and are not described in detail herein.
(26) The continuous horizontal digester of the instant disclosure has a simple structure, and is easy to operate and can effectively perform the mixing process of the material for enhancing the cooking efficiency.
(27) The above-mentioned descriptions represent merely the exemplary embodiment of the instant disclosure, without any intention to limit the scope of the instant disclosure thereto. Various equivalent changes, alterations or modifications based on the claims of the instant disclosure are all consequently viewed as being embraced by the scope of the instant disclosure.