CN223197719U - Waste material treatment mechanism of corrugated paper production equipment - Google Patents
Waste material treatment mechanism of corrugated paper production equipmentInfo
- Publication number
- CN223197719U CN223197719U CN202421549915.3U CN202421549915U CN223197719U CN 223197719 U CN223197719 U CN 223197719U CN 202421549915 U CN202421549915 U CN 202421549915U CN 223197719 U CN223197719 U CN 223197719U
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- Prior art keywords
- waste
- box
- treatment
- crushing
- corrugated paper
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Abstract
The utility model belongs to the technical field of waste treatment, and discloses a waste treatment mechanism of corrugated paper production equipment, which comprises a treatment box, a crushing structure and a linkage structure, wherein the crushing structure is positioned in the treatment box, the linkage structure is assembled at the top and the back of the treatment box, a blanking plate is arranged below the crushing structure, the crushing structure comprises two cutting knife groups which are symmetrically distributed, a connecting rod which is fixedly connected to the tops of the two cutting knife groups, and three crushing columns which are positioned below the two cutting knife groups and are equidistantly distributed. Through crushing structure and linkage structure's design, after the waste material gets into the processing case, not only the cutting knife group can high-speed rotation, carries out preliminary cutting treatment to the waste material, and three pulverizes the post and can carry out the secondary to the waste material that drops immediately moreover and pulverize, and this kind of dual processing mode has greatly increased the treatment effect to the waste material, ensures that the waste material can be fully smashed, has improved the recycle rate of waste material.
Description
Technical Field
The utility model belongs to the technical field of waste treatment, and particularly relates to a waste treatment mechanism of corrugated paper production equipment.
Background
In the process of producing corrugated paper, some waste materials are inevitably generated, for example, a large amount of leftover materials are inevitably generated in the cutting operation link of corrugated paper boards, when a paper roll is used, a paper cylinder in the middle of the paper roll and base paper which cannot be fully used in the automatic roll changing process also become production waste materials, and the waste materials have certain recycling value and cannot be easily wasted, so that in order to realize effective utilization of resources and environmental protection, the waste materials are usually treated by a special waste material treatment mechanism, and the purpose of the waste materials is to enable the waste materials to pass through a series of processing and treatment steps so as to be reused subsequently;
The existing waste treatment mechanism of the corrugated paper production equipment has the defects that the waste is cut and treated by adopting the high-speed rotation of a cutting fan in the operation process of crushing the waste, however, when a large amount of waste is faced, the effect of the cutting mode is obviously affected, the cutting fan is subjected to larger resistance in working due to the large amount of waste, the cutting capability of the cutting fan is greatly reduced, so that part of the waste cannot be effectively crushed, in addition, in the existing waste treatment mechanism, a plurality of groups of cutting structures are always required to be driven by a plurality of motors respectively, the operation cost of the equipment is obviously increased, the use of a plurality of motors not only means higher energy consumption, but also increases the maintenance and management difficulty of the equipment, and in actual production, the more the motors, the probability of failure is correspondingly increased, the downtime of the equipment is prolonged, and the production efficiency is affected.
Disclosure of utility model
In order to solve the problems in the prior art, the utility model provides a waste treatment mechanism of corrugated paper production equipment, which comprises a treatment box, a crushing structure positioned in the treatment box, and a linkage structure assembled at the top and the back of the treatment box, wherein a blanking plate is arranged below the crushing structure;
The crushing structure comprises two cutting knife groups which are symmetrically distributed, a connecting rod which is fixedly connected to the tops of the two cutting knife groups, and three crushing columns which are positioned below the two cutting knife groups and are equidistantly distributed;
The linkage structure comprises an A driving wheel fixedly connected with the tops of the two connecting rods, three driving gears fixedly mounted on the back sides of the three crushing columns, and an A belt pulley fixedly connected with the back sides of the two driving gears on the left side and the right side, wherein a belt is sleeved on the outer wall of the A belt pulley, a B belt pulley is mounted on one side surface, far away from the A belt pulley, of the inner wall of the belt, a B driving wheel is connected with the outer wall of the A driving wheel in a meshed manner, the B driving wheel is fixedly connected with the B belt pulley through a connecting rod, and chains are connected with the outer walls of the three driving gears in a meshed manner.
Preferably, the inner bottom wall of the blanking plate is provided with a circulation groove, and the inner wall of the blanking plate is provided with two symmetrically distributed guide plates.
Preferably, the automatic feeding device further comprises a discharging hopper assembled at the top of the processing box, a protection box positioned at two sides of the discharging hopper and positioned outside the linkage structure, a transmission belt and an extrusion structure assembled at the bottom of the discharging plate, wherein a servo motor is fixedly arranged on the back of the protection box, and the output end of the servo motor extends to the inside of the protection box and is fixedly connected with a transmission gear in the middle of the protection box.
Preferably, the extrusion structure comprises a cylinder, a forming die assembled at the output end of the cylinder, and a forming box positioned below the forming die.
Preferably, a side surface of the conveyor belt, which is close to the forming die, is provided with an inclined plate.
Preferably, the front face of the treatment box is equipped with an electrically-operated door, which is located in front of the forming box.
Preferably, the outer wall of the protection box is provided with a plurality of heat dissipation grooves which are distributed at equal intervals.
Compared with the prior art, the utility model has the following beneficial effects:
According to the utility model, through the design of the crushing structure and the linkage structure, after the waste enters the treatment box, the cutter group can rotate at a high speed to perform primary cutting treatment on the waste, and the three crushing columns can immediately perform secondary crushing treatment on the fallen waste, so that the double treatment mode greatly increases the treatment effect on the waste, ensures that the waste can be sufficiently crushed, improves the recycling rate of the waste, and under the ingenious design of the linkage structure, only through the rotation of a single servo motor, the rotating force of the linkage structure can drive the three transmission gears and the chain to rotate, at the moment, the three transmission gears can drive the three crushing columns to rotate while rotating, thereby realizing secondary crushing operation on the waste, meanwhile, the two transmission gears positioned at two sides can also drive the belt pulley A to rotate, the belt pulley A can further drive the belt and the belt pulley B to rotate, and the connecting rod and the belt pulley B can also rotate along with the rotation of the belt pulley B, so that the belt pulley A can drive the connecting rod and the cutter group to rotate at a high speed, and the primary cutting treatment efficiency of the waste is improved, and the energy consumption of equipment is reduced.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 shows a protective case according to the present utility model an outer overall structure schematic diagram;
FIG. 3 is a schematic plan view showing the internal structure of the treatment tank of the present utility model;
FIG. 4 is a schematic perspective view of the internal structure of the treatment tank of the present utility model;
fig. 5 is a schematic diagram of the connection relationship between the crushing structure and the linkage structure according to the present utility model.
The device comprises a processing box 1, an electric opening door 11, a crushing structure 2, a cutting knife set 21, a connecting rod 22, a 23, a crushing column 3, a linkage structure 31, an A driving wheel 32, a driving gear 33, an A belt pulley 34, a belt 35, a B belt pulley 36, a B driving wheel 37, a connecting rod 38, a chain 4, a blanking plate 41, a guide plate 5, a blanking hopper 6, a protection box 61, a servo motor 7, a transmission belt 71, an inclined plate 8, an extrusion structure 81, an air cylinder 82, a forming die 83 and a forming box.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1 to 5, the utility model provides a waste treatment mechanism of corrugated paper production equipment, which comprises a treatment box 1, a crushing structure 2 positioned in the treatment box 1, and a linkage structure 3 assembled on the top and the back of the treatment box 1, wherein a blanking plate 4 is arranged below the crushing structure 2;
The crushing structure 2 comprises two cutting knife groups 21 which are symmetrically distributed, a connecting rod 22 fixedly connected to the tops of the two cutting knife groups 21, and three crushing columns 23 which are positioned below the two cutting knife groups 21 and are equidistantly distributed;
The linkage structure 3 comprises an A driving wheel 31 fixedly connected with the tops of the two connecting rods 22, three driving gears 32 fixedly installed on the back surfaces of the three grinding columns 23, an A belt pulley 33 fixedly connected with the back surfaces of the two driving gears 32 on the left side and the right side, a belt 34 sleeved on the outer wall of the A belt pulley 33, a B belt pulley 35 installed on one side surface of the inner wall of the belt 34 far away from the A belt pulley 33, a B driving wheel 36 connected with the outer wall of the A driving wheel 31 in a meshed manner, a connecting rod 37 fixedly connected between the B driving wheel 36 and the B belt pulley 35, and a chain 38 connected with the outer wall of the three driving gears 32 in a meshed manner.
By adopting the scheme, after the waste enters the treatment box 1, the cutter group 21 rotates at a high speed to primarily cut the waste, the three grinding columns 23 immediately grind the dropped waste, the double treatment mode greatly increases the treatment effect on the waste, the waste can be fully crushed, the recycling rate of the waste is improved, and under the ingenious design of the linkage structure 3, the rotating force of the connecting rod 37 and the B driving wheel 36 only drives the three driving gears 32 and the chain 38 to rotate through the rotation of the single servo motor 61, at the moment, the three driving gears 32 rotate while driving the three grinding columns 23 to realize secondary grinding operation on the waste, meanwhile, the two driving gears 32 positioned at two sides further drive the belt 34 wheel 33 to rotate, the belt 34 and the belt 34 wheel are further driven to rotate along with the rotation of the belt 34 wheel B, and the connecting rod 37 and the driving wheel B driving wheel 36 further drive the rotating wheel 31 to drive the connecting rod 21 to rotate, so that the cost of the cutter group A31 and the waste can be greatly reduced, and the cost of the primary cutting device can be greatly reduced.
As shown in fig. 1 to 5, the inner bottom wall of the blanking plate 4 is provided with a circulation groove, the inner wall of the blanking plate 4 is provided with two symmetrically distributed guide plates 41, the device further comprises a blanking hopper 5 assembled at the top of the processing box 1, a protection box 6 positioned at two sides of the blanking hopper 5 and positioned outside the linkage structure 3, a transmission belt 7 and an extrusion structure 8 assembled at the bottom of the blanking plate 4, a servo motor 61 is fixedly arranged at the back of the protection box 6, and the output end of the servo motor 61 extends to the inside of the protection box 6 and is fixedly connected with a transmission gear 32 in the middle.
By adopting the scheme, when waste enters the treatment box 1 from the discharging hopper 5 through the design of the guide plate 4, the guide plate 41 can guide the falling direction of the waste, the servo motor 61 provides a power output source for the crushing structure 2, the transmission gears 32 are provided with three and are all in meshed connection with the inner wall of the chain 38, the output end of the servo motor 61 is in meshed connection with the middle transmission gear 32, and when the servo motor 61 rotates, the middle transmission gear can be driven to rotate, so that the chain 38 and the two remaining transmission gears 32 are driven to rotate together, the transmission belt 7 is provided with a power system, and the transmission belt 7 is intermittently opened.
As shown in fig. 1 to 5, the pressing structure 8 includes an air cylinder 81, a molding die 82 fitted to an output end of the air cylinder 81, and a molding box 83 located below the molding die 82, and a side surface of the conveyor belt 7 near the molding die 82 is fitted with a swash plate 71.
By adopting the scheme, the forming box 83 is mainly used for receiving the crushed waste, a stable bearing platform is provided for subsequent waste treatment in the whole working flow, meanwhile, the air cylinder 81 plays a key driving role, when the waste needs to be further treated, the air cylinder 81 is started to push the forming die 82 to move downwards, in the process, the forming die 82 gradually approaches the waste in the forming box 83, and along with the continuous downward movement of the forming die 82, the forming die 82 applies pressure to the waste in the forming box 83 to carry out briquetting treatment, and loose waste can be effectively compressed into compact blocks in the way of briquetting treatment, so that the volume of the waste is reduced, the subsequent storage and transportation are convenient, and the treatment efficiency and the resource utilization rate of the waste are improved.
As shown in fig. 1 to 5, the front surface of the treatment box 1 is provided with an electric opening door 11, the electric opening door 11 is positioned in front of the forming box 83, and the outer wall of the protection box 6 is provided with a plurality of heat dissipation grooves distributed at equal intervals.
The working principle and the using flow of the utility model are as follows:
Firstly, the waste material is poured into the treatment box 1 by pouring the waste material down to the hopper 5, and the servo motor is synchronously started, at this time, the servo motor 61 drives the three transmission gears 32 and the chain 38 to rotate, at this time, the three transmission gears 32 rotate, at the same time, the two transmission gears 32 positioned at two sides also drive the belt 34 wheel 33 to rotate, the rotation of the belt 34 wheel 33 further drives the belt 34 and the belt 34 wheel to rotate, the connecting rod 37 and the belt drive wheel 36 rotate along with the rotation of the belt 34 wheel, the belt drive wheel 36 drives the belt drive wheel 31 to rotate, finally, the belt drive wheel 31 drives the connecting rod 22 and the cutting knife set 21 to rotate at high speed, the waste material is subjected to primary cutting treatment, the three transmission gears 32 can be driven to rotate, the three crushing columns 23 are rotated, the secondary crushing operation of the waste material is realized, the cut and crushed waste material can drop to the transmission belt 7 through the circulation groove, and are transmitted through the transmission belt 7, then enter the forming box 83 through the guide 71, then the cylinder 81 is started, the forming die 82 is pushed to move downwards, the forming die 82 is gradually moved in the forming die 82, the forming die 82 is gradually, the waste material is compressed into a compact and the forming die 83, and the waste material can be continuously pressed into a compact and the waste material.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (7)
1. The waste treatment mechanism of the corrugated paper production equipment is characterized by comprising a treatment box (1), a crushing structure (2) positioned in the treatment box (1) and a linkage structure (3) assembled at the top and the back of the treatment box (1), wherein a blanking plate (4) is arranged below the crushing structure (2);
The crushing structure (2) comprises two cutting knife groups (21) which are symmetrically distributed, a connecting rod (22) which is fixedly connected to the tops of the two cutting knife groups (21), and three crushing columns (23) which are positioned below the two cutting knife groups (21) and are equidistantly distributed;
The linkage structure (3) comprises an A driving wheel (31) fixedly connected with the tops of two connecting rods (22) and three driving gears (32) fixedly mounted on the back of three crushing columns (23), and an A belt pulley (33) fixedly connected with the back of two driving gears (32) on the left side and the right side, a belt (34) is sleeved on the outer wall of the A belt pulley (33), a B belt pulley (35) is mounted on one side surface, far away from the A belt pulley (33), of the inner wall of the belt (34), a B driving wheel (36) is connected with the outer wall of the A driving wheel (31) in a meshed manner, the B driving wheel (36) is fixedly connected with the B belt pulley (35) through a connecting rod (37), and chains (38) are connected with the outer wall of the three driving gears (32) in a meshed manner.
2. The waste treatment mechanism of corrugated paper production equipment according to claim 1, wherein the inner bottom wall of the blanking plate (4) is provided with a circulation groove, and the inner wall of the blanking plate (4) is provided with two symmetrically distributed guide plates (41).
3. The waste treatment mechanism of corrugated paper production equipment according to claim 1, further comprising a discharging hopper (5) assembled at the top of the treatment box (1), a protection box (6) positioned at two sides of the discharging hopper (5) and positioned outside the linkage structure (3), a transmission belt (7) and an extrusion structure (8) assembled at the bottom of the discharging plate (4), wherein a servo motor (61) is fixedly arranged on the back of the protection box (6), and the output end of the servo motor (61) extends into the protection box (6) and is fixedly connected with a transmission gear (32) in the middle.
4. A waste disposal mechanism of a corrugated paper production apparatus as claimed in claim 3, wherein the pressing structure (8) comprises an air cylinder (81) and a forming die (82) fitted to an output end of the air cylinder (81), and a forming box (83) located below the forming die (82).
5. A waste disposal mechanism of a corrugated paper production apparatus as claimed in claim 3, wherein a side surface of the conveyor belt (7) adjacent to the forming die (82) is provided with a sloping plate (71).
6. A waste disposal mechanism of corrugated paper production equipment as claimed in claim 1, wherein the front face of the disposal box (1) is equipped with an electrically opened door (11), and the electrically opened door (11) is located in front of the forming box (83).
7. A waste treatment mechanism of corrugated paper production equipment according to claim 3, wherein the outer wall of the protection box (6) is provided with a plurality of heat dissipation grooves which are distributed at equal intervals.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421549915.3U CN223197719U (en) | 2024-07-03 | 2024-07-03 | Waste material treatment mechanism of corrugated paper production equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421549915.3U CN223197719U (en) | 2024-07-03 | 2024-07-03 | Waste material treatment mechanism of corrugated paper production equipment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223197719U true CN223197719U (en) | 2025-08-08 |
Family
ID=96603969
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421549915.3U Active CN223197719U (en) | 2024-07-03 | 2024-07-03 | Waste material treatment mechanism of corrugated paper production equipment |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223197719U (en) |
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2024
- 2024-07-03 CN CN202421549915.3U patent/CN223197719U/en active Active
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