CN109653011B - High-pressure heat-preservation automatic discharging hot mill - Google Patents

High-pressure heat-preservation automatic discharging hot mill Download PDF

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Publication number
CN109653011B
CN109653011B CN201811435032.9A CN201811435032A CN109653011B CN 109653011 B CN109653011 B CN 109653011B CN 201811435032 A CN201811435032 A CN 201811435032A CN 109653011 B CN109653011 B CN 109653011B
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grinding
discharge
pipeline
connecting shaft
disc
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CN109653011A (en
Inventor
梁雪怡
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Nantong Hengdeli polymer material technology Co., Ltd
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Nantong Hengdeli Polymer Material Technology Co Ltd
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    • DTEXTILES; PAPER
    • D21PAPER-MAKING; PRODUCTION OF CELLULOSE
    • D21BFIBROUS RAW MATERIALS OR THEIR MECHANICAL TREATMENT
    • D21B1/00Fibrous raw materials or their mechanical treatment
    • D21B1/04Fibrous raw materials or their mechanical treatment by dividing raw materials into small particles, e.g. fibres
    • D21B1/12Fibrous raw materials or their mechanical treatment by dividing raw materials into small particles, e.g. fibres by wet methods, by the use of steam

Abstract

The invention relates to a high-pressure heat-preservation automatic discharging thermal grinding machine which comprises an elevated frame and a second motor, wherein a support frame is arranged at the upper end of the elevated frame, a storage bin is arranged at the upper end of the support frame, a feeding port is arranged at the upper end of the storage bin, a first discharging pipeline is fixed on the right side of the lower end of the storage bin, a first motor is embedded at the lower end of the storage bin, a connecting shaft is connected to the lower end inside the storage bin, the connecting shaft and the first motor are welded, and first push plates are arranged at the lower ends of two sides of the connecting shaft. The invention has the beneficial effects that: through first push pedal, it can follow the connecting axle and rotate together, with the material propelling movement after the grinding to first row material pipeline in, because the material after the grinding is powdered not, when entering into first row material pipeline, the direction is inconsistent, can block in the top of first row material pipeline, leads to the material can't enter into first row material pipeline in, then first push pedal carries out the application of force to the material, makes the material enter into first row material pipeline fast.

Description

High-pressure heat-preservation automatic discharging hot mill
Technical Field
The invention relates to the technical field of defibrator, in particular to a defibrator with high pressure, heat preservation and automatic discharging.
Background
The defibrator is an important mechanical device in the field of paper industry, can extract fibers in flaky wood to obtain a required product, is a device for cooking wood chips by using high-temperature and high-pressure steam, grinding plant raw materials such as the wood chips and the like into fibers by a grinding disc of the defibrator at a certain temperature and pressure, and grinding input raw materials by matching a movable grinding disc and a fixed grinding disc in the grinding process.
When the existing defibrator pushes the precooked material into the defibrator, the material is fed through the spiral pusher, but the material is softened and contains impurity moisture, and the material slides with the spiral pusher easily, so that the material cannot enter the defibrator quickly, and one grinding plate contains a grinding area, a coarse grinding area and a fine grinding area.
Disclosure of Invention
The invention aims to provide a high-pressure heat-preservation automatic discharging defibrator, which aims to solve the problems that when the conventional defibrator proposed in the background art pushes the pre-cooked material into a defibrator chamber, the material is fed by a spiral pusher, but the material is softened and contains impurity moisture, and the material is easy to slide with the spiral pusher, so that the material cannot rapidly enter the defibrator chamber, and one grinding disc comprises a grinding area, a coarse grinding area and a fine grinding area, and the grinding area is greatly abraded by the material, so that the whole grinding disc needs to be replaced every time, and the maintenance cost is increased.
In order to achieve the purpose, the invention provides the following technical scheme: the utility model provides a high pressure heat preservation automatic discharging's defibrator, includes overhead and second motor, the upper end of overhead is provided with the support frame, and the upper end of support frame is settled there is the feed bin, the dog-house is installed to the upper end of feed bin, and the lower extreme right side of feed bin is fixed with first row of material pipeline, the lower extreme of feed bin is inlayed and is had first motor, and the inside lower extreme of feed bin is connected with the connecting axle, be the welding between connecting axle and the first motor, and the both sides lower extreme of connecting axle is provided with first push pedal, settle the both sides of connecting axle has the grinding sword, the second motor is installed in the left side of first row of material pipeline, and the inside of first row of material pipeline is fixed.
Preferably, the first push plate is of a rectangular structure, and the first push plate is fixedly connected with the connecting shaft.
Preferably, the positive right side of first row of material pipeline is inlayed and is had the jar body of cooking in advance, and for the welding between the jar body of cooking in advance and the first row of material pipeline, grinding sword align to grid is in the both sides of connecting axle, and grinding sword passes through the connecting axle and constitutes revolution mechanic with the feed bin.
Preferably, the two sides of the pre-cooking tank body are connected with steam pipes, a discharge port is formed in the middle of the lower end of the pre-cooking tank body, a second discharge pipeline is arranged at the lower end of the discharge port, the steam pipes are fixedly connected with the pre-cooking tank body, and the steam pipes are arranged on the two sides of the pre-cooking tank body at equal intervals.
Preferably, the connecting rod is installed to the inside upper end of second row material pipeline, and the lower extreme of connecting rod is fixed with the pivot, the outer wall of pivot is inlayed and is had the second push pedal, and is the welding between second push pedal and the pivot, the second push pedal passes through the pivot and constitutes revolution mechanic with the connecting rod, and the connecting rod equidistance is arranged in the inside of second row material pipeline.
Preferably, the below of second push pedal is external to have the filter screen, and the lower extreme of filter screen is provided with the basin, the lower extreme left side of second discharge pipeline is connected with the water valve, and the right side of second discharge pipeline settles and have the hot grinding room, be fixed connection between water valve and the basin, and be fixed connection between basin and the filter screen.
Preferably, fixed mill is installed in the inside left side of hot mill room, and the inside of fixed mill is inlayed and is had the inner chamber, the inner chamber is arranged the pipeline with the second and is connected, the inside right side of hot mill room is connected with the rotation mill, and the right side of rotating the mill is provided with the drive shaft, settle the right side of drive shaft has driving motor, first fixed plate is installed on the inside right side of hot mill room, and the right side of first fixed plate inlays and has the second fixed plate, first fixed plate equidistance is arranged on the inside right side of hot mill room, is sliding connection between its first fixed plate and the second fixed plate, and is fixed connection between second fixed plate and the drive shaft, and the second fixed plate equidistance is arranged in the outer wall of drive shaft moreover.
Preferably, the positive inboard of fixed mill is connected with broken district's abrasive disc, and the outer wall of broken district's abrasive disc is provided with the corase grind district abrasive disc, the outside of corase grind district abrasive disc is settled there is the correct grinding district abrasive disc, the discharge port is installed on the lower extreme right side of hot mill room, be swing joint between correct grinding district abrasive disc and the corase grind district abrasive disc, and be swing joint between the corase grind district abrasive disc and the broken district abrasive disc.
Preferably, the lower extreme of discharge port is fixed with the mounting panel, and the lower extreme of mounting panel inlays and has the delivery pipe, the delivery pipe is "U" shape structure, and interconnect in proper order between delivery pipe and the mounting panel.
Compared with the prior art, the invention has the beneficial effects that:
1. according to the invention, the first push plate can rotate along with the connecting shaft to push ground materials into the first discharging pipeline, and the ground materials are not powdery, so that the ground materials are not in consistent directions when entering the first discharging pipeline and are clamped above the first discharging pipeline, so that the materials cannot enter the first discharging pipeline, and the first push plate applies force to the materials to enable the materials to rapidly enter the first discharging pipeline.
2. According to the grinding cutter, the connecting shaft is utilized to rotate in the storage bin, so that materials entering the storage bin can be pushed, the materials are prevented from being clamped at the upper end inside the storage bin due to inconsistent directions, the materials can quickly slide downwards, the materials can be ground at the same time, water caltrops of the blocky materials are ground flat, the size of the materials is reduced, the materials can quickly move in the first material discharge pipeline and the second material discharge pipeline, and the abrasion of the materials to three grinding discs is reduced.
3. According to the invention, the second push plate rotates on the connecting rod by using the rotating shaft, so that the material entering the second discharging pipeline can be pushed, and the second push plate and the connecting rod are sequentially arranged in the second discharging pipeline, so that the material can be pushed from the left side to the right side, and then enters the hot grinding chamber.
4. According to the invention, the filter screen can filter moisture in the material, so that the situation that the material contains excessive impurity moisture and cannot flow in the second discharge pipeline or the grinding of the material between the grinding plates is influenced is avoided, the filtered moisture is stored in the water tank, when the moisture in the material is too low, water can be added into the water tank by using the water valve, so that the water permeates through the filter screen and contacts with the material, the moisture in the material is increased, and the phenomenon that the material has too low moisture to cause great abrasion to the grinding plates is prevented.
5. According to the invention, the first fixing plate and the second fixing plate slide mutually, the first fixing plate and the second fixing plate are more on the right side in the hot grinding chamber, mechanical rotary seal is formed on the hot grinding chamber, and on the premise of a certain gap, high temperature and high pressure in the hot grinding chamber can be prevented from permeating from the connecting part of the driving shaft and the hot grinding chamber, so that the form that sealing substances are embedded between the driving shaft and the hot grinding chamber in the past is replaced, the sealing performance of the hot grinding chamber is prevented from being influenced by the damage of the sealing substances caused by the high temperature and the high pressure, and the sealing performance of the hot grinding chamber is improved.
6. According to the invention, the grinding discs in the crushing area, the grinding discs in the coarse grinding area and the grinding discs in the fine grinding area are respectively and independently arranged on the grinding disc to replace the mode that the crushing area, the coarse grinding area and the fine grinding area are arranged on the same grinding disc in the past, when one grinding area is damaged, the whole grinding disc does not need to be replaced, and only the damaged grinding disc needs to be replaced, so that the maintenance cost of the defibrator is reduced.
7. The invention can form an S-shaped material discharge port by connecting the U-shaped discharge pipes together by the mounting plates, can stably discharge materials from the thermal grinding chamber and the discharge port, ensures that fibers and steam in the thermal grinding chamber are stably discharged at a certain speed, ensures that the air pressure in the thermal grinding chamber is basically kept balanced, avoids the instant discharge of the fibers and the air pressure from the discharge port to cause the imbalance of the internal air pressure, ensures the sealing property of the thermal grinding chamber, and simultaneously brings the screw direction discharge port to the past, and avoids the materials remaining in the screw direction discharge port from being difficult to clean.
Drawings
FIG. 1 is a schematic structural view of a high-pressure heat-preservation automatic-discharge defibrator according to the present invention;
FIG. 2 is a schematic diagram of a right-side view of a first discharge pipeline of the high-pressure heat-preservation automatic-discharge defibrator according to the present invention;
FIG. 3 is a schematic view of the internal structure of a second discharge pipe of the high-pressure heat-preservation automatic-discharge defibrator according to the present invention;
FIG. 4 is a schematic diagram of a second discharge pipeline of the high-pressure heat-preservation automatic-discharge defibrator according to the present invention;
FIG. 5 is a schematic diagram of a right side view structure of a fixed grinding disc of the high-pressure heat-preservation automatic-discharge defibrator according to the present invention;
FIG. 6 is a schematic diagram of the right side view of the discharge pipe of the high-pressure heat-preservation automatic-discharge defibrator according to the present invention.
In the figure: 1. raising the frame; 2. a support frame; 3. a storage bin; 4. a feeding port; 5. a first discharge conduit; 6. a first motor; 7. a connecting shaft; 8. a first push plate; 9. grinding a cutter; 10. a second motor; 11. a screw pusher bar; 12. pre-cooking the tank body; 13. a steam pipe; 14. a discharge port; 15. a second discharge conduit; 16. a connecting rod; 17. a rotating shaft; 18. a second push plate; 19. a filter screen; 20. a water tank; 21. a water valve; 22. a hot milling chamber; 23. fixing the grinding disc; 24. an inner cavity; 25. rotating the grinding disc; 26. a drive shaft; 27. a drive motor; 28. a first fixing plate; 29. a second fixing plate; 30. grinding in a crushing area; 31. grinding in a coarse grinding area; 32. grinding plates in the fine grinding area; 33. a discharge port; 34. mounting a plate; 35. a discharge pipe.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-6, the present invention provides a technical solution: a high-pressure heat-preservation automatic-discharging defibrator comprises an elevated frame 1, a support frame 2, a bin 3, a feeding port 4, a first discharging pipeline 5, a first motor 6, a connecting shaft 7, a first push plate 8, a grinding cutter 9, a second motor 10, a spiral pushing rod 11, a precooking tank body 12, a steam pipe 13, a discharging port 14, a second discharging pipeline 15, a connecting rod 16, a rotating shaft 17, a second push plate 18, a filter screen 19, a water tank 20, a water valve 21, a defibrator chamber 22, a fixed grinding disc 23, an inner cavity 24, a rotating grinding disc 25, a driving shaft 26, a driving motor 27, a first fixing plate 28, a second fixing plate 29, a crushing zone grinding disc 30, a rough grinding zone grinding disc 31, a fine grinding zone 32, a discharging port 33, a mounting plate 34 and a discharging pipe 35, wherein the support frame 2 is arranged at the upper end of the elevated frame 1, the bin 3 is arranged at the upper end of, a first discharging pipeline 5 is fixed on the right side of the lower end of the bin 3, a first motor 6 is embedded at the lower end of the bin 3, a connecting shaft 7 is connected with the lower end of the interior of the bin 3, the connecting shaft 7 and the first motor 6 are welded, first push plates 8 are arranged at the lower ends of two sides of the connecting shaft 7, the first push plates 8 are in a rectangular structure, the first push plates 8 are fixedly connected with the connecting shaft 7 and can rotate along with the connecting shaft 7 to push ground materials into the first discharging pipeline 5, the ground materials are not in powder form, when entering the first discharging pipeline 5, the directions are inconsistent and can be clamped above the first discharging pipeline 5, so that the materials cannot enter the first discharging pipeline 5, the first push plates 8 apply force to the materials to enable the materials to rapidly enter the first discharging pipeline 5, grinding knives 9 are arranged at two sides of the connecting shaft 7, the second motor 10 is arranged at the left side of the first discharging pipeline 5, and a spiral pushing rod 11 is fixed inside the first discharging pipeline 5;
the right side of the front face of the first discharging pipeline 5 is embedded with a precooking tank body 12, the precooking tank body 12 and the first discharging pipeline 5 are welded, grinding knives 9 are uniformly arranged on two sides of a connecting shaft 7, the grinding knives 9 and a bin 3 form a rotating structure through the connecting shaft 7, the grinding knives 9 rotate in the bin 3 by using the connecting shaft 7, not only can push materials entering the bin 3 and prevent the materials from being clamped at the upper end inside the bin 3 due to inconsistent directions, so that the materials can quickly slide downwards, but also can grind the materials, the water caltrops of the blocky materials are ground flat, the volume of the materials is reduced, the materials can quickly move in the first discharging pipeline 5 and the second discharging pipeline 15, the abrasion of the materials to three grinding plates is reduced, two sides of the precooking tank body 12 are connected with steam pipes 13, and the middle part of the lower end of the precooking tank body 12 is provided with a discharging port 14, and the lower end of the discharge port 14 is provided with a second discharging pipeline 15, the steam pipes 13 are fixedly connected with the pre-cooking pot 12, the steam pipes 13 are equidistantly arranged at two sides of the pre-cooking pot 12, the steam pipes 13 are respectively arranged at the right lower part and the upper part of the two sides of the pre-cooking pot 12, instead of the prior mode that the steam pipes 13 are positioned at the bottom end of the pre-cooking pot 12, so that the materials are comprehensively cooked at high temperature, the upper end inside the second discharging pipeline 15 is provided with a connecting rod 16, the lower end of the connecting rod 16 is fixed with a rotating shaft 17, the outer wall of the rotating shaft 17 is embedded with a second push plate 18, the second push plate 18 is welded with the rotating shaft 17, the second push plate 18 forms a rotating structure with the connecting rod 16 through the rotating shaft 17, the connecting rod 16 is equidistantly arranged inside the second discharging pipeline 15, the second push plate 18 rotates on the connecting rod 16 through the rotating shaft 17, so as to push the materials entering the second, the second push plate 18 and the connecting rod 16 are sequentially arranged inside the second discharge pipeline 15, so that the material can be pushed from the left side to the right side, and then the material enters the thermomechanical chamber 22, instead of the traditional screw rod pushing mode, the phenomenon that the material does not advance because the material is wet and slippery after being cooked is avoided because the material slips between the material and the screw rod during pushing, the screw rod rotates, and the material does not advance is avoided, and the second push plate 18 can directly push the material from the left side to the right side without considering the slipping of the material, so that the moving speed of the material in the second discharge pipeline 15 can be increased;
a filter screen 19 is externally connected below the second push plate 18, a water tank 20 is arranged at the lower end of the filter screen 19, a water valve 21 is connected to the left side of the lower end of the second discharge pipeline 15, a thermal grinding chamber 22 is arranged at the right side of the second discharge pipeline 15, the water valve 21 is fixedly connected with the water tank 20, the water tank 20 is fixedly connected with the filter screen 19, the filter screen 19 can filter moisture in the material to prevent the material from containing excessive impurity moisture and failing to flow in the second discharge pipeline 15 or affecting grinding of the material between grinding plates, the filtered moisture is stored in the water tank 20, when the moisture in the material is too low, water can be added into the water tank 20 by using the water valve 21 to permeate the filter screen 19 to contact with the material to increase the moisture in the material, so as to prevent the material from having too low moisture and causing great abrasion to the grinding plates, and a fixed grinding disc 23 is arranged at the left side inside the thermal grinding chamber 22, an inner cavity 24 is embedded in the fixed grinding disc 23, the inner cavity 24 is connected with the second discharge pipeline 15, the right side in the hot grinding chamber 22 is connected with a rotating grinding disc 25, the right side of the rotating grinding disc 25 is provided with a driving shaft 26, the right side of the driving shaft 26 is provided with a driving motor 27, the right side in the hot grinding chamber 22 is provided with a first fixing plate 28, the right side of the first fixing plate 28 is embedded with a second fixing plate 29, the first fixing plate 28 is arranged on the right side in the hot grinding chamber 22 at equal intervals, the first fixing plate 28 is in sliding connection with the second fixing plate 29, the second fixing plate 29 is in fixed connection with the driving shaft 26, the second fixing plate 29 is arranged on the outer wall of the driving shaft 26 at equal intervals, the first fixing plate 28 and the second fixing plate 29 slide with each other, the first fixing plate 28 and the second fixing plate 29 are more on the right side in the hot grinding chamber 22, and form mechanical rotary seal, on the premise of leaving a certain gap, the high-temperature high-pressure in the hot grinding chamber 22 can be prevented from permeating from the connecting part of the driving shaft 26 and the hot grinding chamber 22, the mode that sealing substances are inlaid between the driving shaft 26 and the hot grinding chamber 22 in the past is replaced, the sealing substances are prevented from being damaged by the high-temperature high-pressure, the sealing performance of the hot grinding chamber 22 is prevented from being influenced, and therefore the sealing performance of the hot grinding chamber 22 is improved;
the front inner side of the fixed grinding disc 23 is connected with a crushing area grinding disc 30, the outer wall of the crushing area grinding disc 30 is provided with a rough grinding area grinding disc 31, the outer side of the rough grinding area grinding disc 31 is provided with a fine grinding area grinding disc 32, the lower end right side of the hot grinding chamber 22 is provided with a discharge port 33, the fine grinding area grinding disc 32 is movably connected with the rough grinding area grinding disc 31, the rough grinding area grinding disc 31 is movably connected with the crushing area grinding disc 30, the rough grinding area grinding disc 31 and the fine grinding area grinding disc 32 are respectively and independently installed on the grinding disc to replace the past crushing area, the rough grinding area and the fine grinding area are arranged on the same grinding disc, when one grinding area is damaged, the whole grinding disc does not need to be replaced, only the damaged grinding disc needs to be replaced, thereby the maintenance cost of the defibrator is reduced, the lower end of, the discharge pipe 35 is of a U-shaped structure, the discharge pipe 35 and the mounting plate 34 are sequentially connected with each other, the discharge pipe 35 is of a U shape, a plurality of discharge holes 33 are formed, the mounting plate 34 is connected together, an S-shaped material discharge hole 33 can be formed, materials can be stably discharged from the thermal grinding chamber 22 and the discharge holes 33, the fibers in the thermal grinding chamber 22 and steam are stably discharged at a certain speed, the air pressure in the thermal grinding chamber 22 is basically kept balanced, instantaneous discharge of the fibers and the air pressure from the discharge holes 33 is avoided, internal air pressure imbalance is avoided, the sealing performance of the thermal grinding chamber 22 is ensured, meanwhile, the materials are prevented from remaining in the spiral discharge hole 14 and being difficult to clean.
The working principle of the embodiment is that the high-pressure heat-preservation automatic discharging defibrator firstly puts the material into the bin 3 from the feeding port 4 at the upper end of the bin 3, opens the first motor 6 (the type of the first motor 6 is SDA63X 30-B), the first motor 6 drives the connecting shaft 7 to rotate, the grinding knife 9 rotates along the connecting shaft 7 to grind the material inside the bin 3, the water angle of the blocky material is ground flat, and reduces the volume of the material, so that the material moves rapidly in the first discharging pipeline 5 and the second discharging pipeline 15, and reduces the wear of the material on three grinding plates, and simultaneously accelerates the downward flow of the material, the ground material is pushed into the first discharging pipeline 5 by the first push plate 8, opens the second motor 10 (the type of the second motor 10 is SDA63X 30-B), the second motor 10 drives the spiral push rod 11 inside the first discharging pipeline 5 to rotate, so as to push the material into the pre-steaming and steaming tank 12, the pre-boiling tank body 13, the high-temperature steam passes through the pre-boiling tank body 12, the high-boiling water-sealing-discharging port 22, the water-sealing.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the invention can be made, and equivalents and modifications of some features of the invention can be made without departing from the spirit and scope of the invention.

Claims (4)

1. The utility model provides a high pressure heat preservation automatic discharging's defibrator, includes overhead (1) and second motor (10), its characterized in that: the upper end of the elevated frame (1) is provided with a support frame (2), the upper end of the support frame (2) is provided with a bin (3), the upper end of the bin (3) is provided with a feed opening (4), the right side of the lower end of the bin (3) is fixedly provided with a first discharging pipeline (5), the lower end of the bin (3) is inlaid with a first motor (6), the lower end of the interior of the bin (3) is connected with a connecting shaft (7), the connecting shaft (7) and the first motor (6) are welded, the lower ends of two sides of the connecting shaft (7) are provided with first push plates (8), two sides of the connecting shaft (7) are provided with grinding cutters (9), the second motor (10) is installed on the left side of the first discharging pipeline (5), and a spiral pushing rod (11) is fixedly arranged in the interior of the first discharging pipeline (5);
the first push plate (8) is of a rectangular structure, and the first push plate (8) is fixedly connected with the connecting shaft (7);
a pre-cooking tank body (12) is embedded in the right side of the front face of the first discharging pipeline (5), the pre-cooking tank body (12) and the first discharging pipeline (5) are welded, the grinding knives (9) are uniformly arranged on two sides of the connecting shaft (7), and the grinding knives (9) and the storage bin (3) form a rotating structure through the connecting shaft (7);
the steam pipes (13) are connected to two sides of the pre-cooking tank body (12), the middle of the lower end of the pre-cooking tank body (12) is provided with a discharge hole (14), the lower end of the discharge hole (14) is provided with a second discharge pipeline (15), the steam pipes (13) are fixedly connected with the pre-cooking tank body (12), and the steam pipes (13) are arranged on two sides of the pre-cooking tank body (12) at equal intervals;
the upper end in the second discharging pipeline (15) is provided with a connecting rod (16), the lower end of the connecting rod (16) is fixed with a rotating shaft (17), a second push plate (18) is embedded in the outer wall of the rotating shaft (17), the second push plate (18) is welded with the rotating shaft (17), the second push plate (18) and the connecting rod (16) form a rotating structure through the rotating shaft (17), and the connecting rods (16) are arranged in the second discharging pipeline (15) at equal intervals;
the lower part of second push pedal (18) is external to have filter screen (19), and the lower extreme of filter screen (19) is provided with basin (20), the lower extreme left side of second discharge pipeline (15) is connected with water valve (21), and the right side of second discharge pipeline (15) settles and have hot mill room (22), be fixed connection between water valve (21) and basin (20), and be fixed connection between basin (20) and filter screen (19).
2. The high pressure thermal insulation automatic discharge defibrator as defined in claim 1, further comprising: the inner left side of the hot grinding chamber (22) is provided with a fixed grinding disc (23), an inner cavity (24) is inlaid in the fixed grinding disc (23), the inner cavity (24) is connected with a second discharge pipeline (15), the inner right side of the hot grinding chamber (22) is connected with a rotating grinding disc (25), a driving shaft (26) is arranged on the right side of the rotating grinding disc (25), a driving motor (27) is arranged on the right side of the driving shaft (26), a first fixing plate (28) is installed on the inner right side of the hot grinding chamber (22), a second fixing plate (29) is inlaid on the right side of the first fixing plate (28), the first fixing plates (28) are arranged on the inner right side of the hot grinding chamber (22) at equal intervals, the first fixing plate (28) is in sliding connection with the second fixing plate (29), and the second fixing plate (29) is in fixed connection with the driving shaft (26), and the second fixing plates (29) are arranged at equal distances on the outer wall of the driving shaft (26).
3. The high pressure thermal insulation automatic discharge defibrator as defined in claim 2, further comprising: the front inboard of fixed mill (23) is connected with crushing district abrasive disc (30), and the outer wall of crushing district abrasive disc (30) is provided with corase grind district abrasive disc (31), the outside of corase grind district abrasive disc (31) is settled there is accurate grinding district abrasive disc (32), discharge port (33) are installed on the lower extreme right side of heat mill room (22), be swing joint between accurate grinding district abrasive disc (32) and the corase grind district abrasive disc (31), and be swing joint between coarse grinding district abrasive disc (31) and the crushing district abrasive disc (30).
4. The high pressure thermal insulation automatic discharge defibrator according to claim 3, characterized in that: the lower extreme of discharge port (33) is fixed with mounting panel (34), and the lower extreme of mounting panel (34) is inlayed and is had discharge pipe (35), discharge pipe (35) are "U" shape structure, and interconnect in proper order between discharge pipe (35) and mounting panel (34).
CN201811435032.9A 2018-11-28 2018-11-28 High-pressure heat-preservation automatic discharging hot mill Active CN109653011B (en)

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Application Number Priority Date Filing Date Title
CN201811435032.9A CN109653011B (en) 2018-11-28 2018-11-28 High-pressure heat-preservation automatic discharging hot mill

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Application Number Priority Date Filing Date Title
CN201811435032.9A CN109653011B (en) 2018-11-28 2018-11-28 High-pressure heat-preservation automatic discharging hot mill

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CN109653011A CN109653011A (en) 2019-04-19
CN109653011B true CN109653011B (en) 2020-08-04

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2004009900A1 (en) * 2002-07-19 2004-01-29 Andritz Inc. High defiberization chip pretreatment
CN2902638Y (en) * 2006-04-30 2007-05-23 陕西科技大学 Eliminator of hot grinding machine feed bin blocking
CN202099640U (en) * 2011-06-07 2012-01-04 南京林业大学 Steam and fiber separation device of defibrator process system for DMF (medium density fiberboard)
CN103088684A (en) * 2013-03-01 2013-05-08 捷雅科技(昆山)有限公司 Defibrator system and defibrination method thereof
CN203846340U (en) * 2014-05-19 2014-09-24 云南司珈尔木业股份有限公司 Novel hot grinding device
CN207954196U (en) * 2017-12-29 2018-10-12 孟周强 A kind of stalk fibre hot high pressure grinds solution device

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