Raw material processing equipment for household paper
By using a multi-component collaborative raw material processing device, the problem of poor peeling effect of single-roller peeling machines has been solved, achieving complete removal of bark and unobstructed cutting channels, reducing equipment maintenance costs and improving the quality of tissue paper.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-25
- Publication Date
- 2026-04-03
AI Technical Summary
Existing single-roller bark peeling machines have limited peeling efficiency and are unable to completely remove residual bark from the surface of trees, leading to blockage of the cutting channel and pulp contamination, which affects the quality of tissue paper.
The raw material processing equipment employs a multi-component collaborative operation, including a peeling mechanism, a conveying mechanism, a cutting mechanism, and a pressing mechanism. Through multi-angle scraping of the peeling blocks and the reciprocating motion of the blades, it ensures that the bark is completely removed and avoids accumulation. Combined with the transmission mechanism, it achieves synchronous action of cutting and conveying.
It effectively removes bark, avoids clogging of cutting channels, reduces equipment maintenance costs, ensures that wood chip sizes meet papermaking requirements, and improves pulp quality.
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Figure CN121781453A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of raw material processing for household paper, specifically to a raw material processing device for household paper. Background Technology
[0002] As a daily necessity, the market demand for household paper continues to grow steadily. With the tightening of environmental protection policies and the transformation and upgrading of the industry, the production concepts of efficiency, environmental protection and precision have become the core orientation of the industry's development. As a key process at the front end of household paper production, the quality and efficiency of raw material processing directly affect the product quality, production energy consumption and cost control of subsequent pulping and papermaking processes.
[0003] Currently, the processing of raw materials for household paper typically involves two core processes: peeling and cutting. These processes are often carried out in separate equipment and steps. The peeling process mainly relies on a single-roller peeling machine to initially remove the bark from the trees. The cutting process uses traditional cutting equipment to cut the peeled wood into sheet-like raw materials that meet the requirements for papermaking. The transfer of raw materials mainly relies on simple conveying devices.
[0004] The peeling effect of existing single-roller peeling machines is limited. They rely solely on the contact between a single roller and the surface of the log to achieve peeling. The contact point between the roller and the log is concentrated and the force direction is unidirectional, which cannot form a comprehensive and multi-angle scraping force. It is difficult to completely remove the bark residue on the surface of the tree. This residual bark will be mixed into subsequent processes. When cutting trees, the cut bark is prone to accumulate and entangle in the cutting area, causing blockage of the cutting channel. In addition, the residual bark will contaminate the pulp after entering the pulping process, causing quality defects in the produced tissue paper. Summary of the Invention
[0005] Based on this, the purpose of this invention is to provide a raw material processing device for household paper, in order to solve the problem that the peeling effect of a single-roller peeling machine is limited. It relies on a single roller to contact the surface of the log to achieve peeling, which makes it difficult to completely remove the bark remaining on the surface of the tree. When cutting trees, the cut bark is easy to accumulate and entangle in the cutting area, causing blockage of the cutting channel. Furthermore, the residual bark will contaminate the pulp after entering the pulping process, resulting in quality defects in the produced household paper.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a raw material processing device for household paper, comprising a machine body, a cutting mechanism installed inside the machine body, movable rods fixedly installed on both sides of the cutting mechanism, auxiliary mechanisms provided on both sides of the cutting mechanism, and the cooperation between the movable rods and the auxiliary mechanisms enabling the cutting mechanism to reciprocate on a drive shaft, a drive shaft rotatably installed inside the machine body, and a transmission mechanism installed at one end of the drive shaft, a peeling mechanism provided inside the machine body, and a conveying mechanism provided at the top of the peeling mechanism, the peeling mechanism comprising a support member, a first peeling block, and a second peeling block, wherein the support member is fixedly installed inside the machine body. The first peeling block and the second peeling block are respectively fixedly installed on the side plates on both sides of the support member, and the first peeling block and the second peeling block serve to remove bark, the conveying mechanism comprising a rotating roller and drive blocks, wherein the rotating roller is movably installed inside the support member, and multiple sets of drive blocks are fixedly installed on the outer wall of the rotating roller.
[0007] By adopting the above technical solution, this invention uses a pressing mechanism linked with a conveying mechanism to drive a rotating roller to rise and fall smoothly and keep it close to the tree, preventing the tree from shifting or swaying during processing. The special structure of the driving block on the outer wall of the rotating roller enhances friction, ensuring smooth rotation and movement of the tree. The peeling mechanism works in conjunction with the conveying mechanism, using peeling blocks of different orientations to perform secondary peeling on the tree. The rollers ensure smooth movement of the tree, and the peeled bark can be collected directly through a dedicated channel to avoid residue and scattering. The cutting mechanism, with its moving rod and auxiliary mechanism, enables the cutting mechanism to reciprocate, allowing the blade to move laterally back and forth while rotating and cutting, avoiding continuous wear in a single position. This ensures that the wood chip size meets the papermaking requirements, distributes blade wear, and reduces equipment maintenance costs. The collaborative work of multiple components allows the transmission mechanism to adapt to changes in the position of the conveying mechanism. Only a single power input is needed to achieve synchronous cutting and conveying, simplifying the equipment structure and ensuring consistent power transmission.
[0008] Furthermore, the cutting mechanism includes a rotating component, a cutting head, and a driving component. The driving component is fixedly installed on the outer wall of the driving shaft and has a cross-shaped design. The rotating component slides on the outer wall of the driving component. Multiple sets of cutting heads are fixedly installed on the outer wall of the rotating component. A blanking plate is fixedly installed inside the machine body and is located at the bottom of the rotating component. The blanking plate cuts wood chips by cooperating with the rotating component. One end of the driving shaft passes through the machine body and is fixedly connected to the output end of an external driving motor.
[0009] By adopting the above technical solution, the drive shaft drives the rotating component to rotate through the drive component, so that the cutter head rotates synchronously. After the tree enters the area where the cutter head rotates, it will be quickly cut into slices and then carried into the cutting mechanism and the blanking plate. The outer wall of the rotating component is in contact with the top of the blanking plate, so the sliced wood will be squeezed and then fall through the blanking plate. In this process, the tree will be made into the size required for papermaking.
[0010] Furthermore, the auxiliary mechanism includes a fixed base and a sliding groove. The fixed base is fixedly installed on both sides inside the machine body. The sliding groove is opened inside the fixed base and has an overall oblique annular design. One end of the moving rod is located inside the sliding groove and has an overall spherical shape. The cross-sectional size of the sliding groove matches the cross-sectional size of one end of the moving rod. The moving rod is slidably connected to the fixed base through the sliding groove. The rotating component slides on the drive shaft through the cooperation of the moving rod and the sliding groove.
[0011] By adopting the above technical solution, when the rotating part rotates, the moving rod will slide inside the sliding groove. Since the length of the moving rod is fixed, the rotating part will be carried by the moving rod to move laterally back and forth on the outer wall of the drive shaft, so that the rotating part rotates and moves back and forth on the drive shaft at the same time.
[0012] Furthermore, the peeling mechanism also includes a roller and a discharge chute, wherein the roller is rotatably connected to the inner side of the support member, and the discharge chute is located at the bottom of the support member.
[0013] By adopting the above technical solution, the fallen bark will fall into the bark collection mechanism through the discharge chute.
[0014] Furthermore, the transmission mechanism includes a bevel gear set, a first transmission shaft, a universal joint, a transmission telescopic rod, a second transmission shaft, and a sprocket set. The bevel gear set is fixedly installed at one end of the drive shaft, the first transmission shaft is fixedly installed on one side of the bevel gear set, and one side of the first transmission shaft is movably connected to the transmission telescopic rod. Both ends of the transmission telescopic rod are movably connected to universal joints, and the transmission telescopic rod is movably connected to the first transmission shaft and the second transmission shaft respectively through two sets of universal joints. One side of the first transmission shaft is movably connected to the rotating roller through the sprocket set.
[0015] By adopting the above technical solution, when the drive shaft rotates, it will cause the first drive shaft to start rotating through the bevel gear set installed at one end. Two sets of universal joints and transmission telescopic rods are installed between the first drive shaft and the second drive shaft. Therefore, the rotation of the first drive shaft can cause the second drive shaft to rotate. A sprocket set is installed on one side of the second drive shaft, and the other end of the sprocket set is connected to the rotating roller. Therefore, the rotation of the second drive shaft can cause the rotating roller to rotate clockwise through the sprocket set.
[0016] Furthermore, a pressing mechanism is provided on the top of the machine body. The pressing mechanism includes a hydraulic module and a support frame. The hydraulic module is fixedly installed on the top of the machine body, and the output end of the hydraulic module is fixedly connected to the support frame. The rotating roller is rotatably installed inside the support frame. A control module is provided inside the machine body. The pressing mechanism and the drive motor are both electrically connected to the control module.
[0017] By adopting the above technical solution, after the tree enters the machine body, the control module set inside the machine body is activated, which will cause the pressing mechanism to start working. The hydraulic module is equipped with a hydraulic system, and its output end is driven by the internal hydraulic system to begin to descend, thereby causing the support frame installed at the bottom of the hydraulic module output end to descend synchronously. The conveying mechanism is installed on the support frame, and the conveying mechanism will also descend along with the support frame.
[0018] In summary, the present invention has the following main beneficial effects:
[0019] 1. This invention uses a pressing mechanism and a conveying mechanism to drive a rotating roller to rise and fall smoothly and keep it close to the tree, which can prevent the tree from shifting or shaking during the process. The special structure of the driving block on the outer wall of the rotating roller can enhance friction and ensure that the tree rotates and moves smoothly. The peeling mechanism works with the conveying mechanism to use peeling blocks with different orientations to perform secondary peeling on the tree. The roller ensures that the tree moves smoothly. The peeled bark can be collected directly through a special channel to avoid residue and scattering.
[0020] 2. This invention uses a cutting mechanism combined with a moving rod and an auxiliary mechanism to make the cutting mechanism reciprocate, so that the cutter head moves laterally back and forth while rotating to cut, avoiding continuous wear in a single position, ensuring that the wood chip size meets the papermaking requirements, dispersing the wear of the cutter head, and reducing equipment maintenance costs.
[0021] 3. This invention enables the transmission mechanism to adapt to changes in the position of the conveying mechanism through the coordinated work of multiple components. Only a single power input is needed to achieve synchronous cutting and conveying, simplifying the equipment structure and ensuring consistent power transmission. Attached Figure Description
[0022] Figure 1 This is a cross-sectional view of the present invention;
[0023] Figure 2 This is a schematic diagram of the internal structure of the present invention;
[0024] Figure 3 This is a schematic diagram of the structure of some parts of the present invention;
[0025] Figure 4 For the present invention Figure 3 Enlarged view of point A;
[0026] Figure 5 For the present invention Figure 3 Enlarged view of point B;
[0027] Figure 6 This is a schematic diagram of the structure of a partial part of the present invention;
[0028] Figure 7 For the present invention Figure 6 Enlarged view of point C;
[0029] Figure 8 This is a schematic diagram of the peeling mechanism of the present invention;
[0030] Figure 9 This is a schematic diagram of the material blanking plate of the present invention.
[0031] In the diagram: 1. Machine body; 2. Cutting mechanism; 201. Rotating component; 202. Cutting head; 203. Driving component; 3. Moving rod; 4. Auxiliary mechanism; 401. Fixed base; 402. Sliding groove; 5. Transmission mechanism; 501. Bevel gear set; 502. First transmission shaft; 503. Universal joint; 504. Transmission telescopic rod; 505. Second transmission shaft; 506. Sprocket set; 6. Conveying mechanism; 601. Rotating roller; 602. Driving block; 7. Peeling mechanism; 701. Support component; 702. First peeling block; 703. Second peeling block; 704. Roller; 705. Discharge chute; 8. Pressing mechanism; 801. Hydraulic module; 802. Support frame; 9. Drop plate; 10. Driving shaft. Detailed Implementation
[0032] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0033] The embodiments of the present invention will now be described.
[0034] A raw material processing device for household paper, such as Figure 1-9 As shown, the machine includes a body 1, inside which a cutting mechanism 2 is installed. Moving rods 3 are fixedly installed on both sides of the cutting mechanism 2. Auxiliary mechanisms 4 are provided on both sides of the cutting mechanism 2. The cooperation between the moving rods 3 and the auxiliary mechanisms 4 enables the cutting mechanism 2 to reciprocate on the drive shaft 10. The drive shaft 10 is rotatably installed inside the machine body 1, and a transmission mechanism 5 is installed at one end of the drive shaft 10. A peeling mechanism 7 is provided inside the machine body 1. An external conveying device will transport the trees processed by the single-roller peeling machine to the feed port of the machine body 1. Although the outer bark of some trees has been processed by the single-roller peeling machine, there will still be residual bark that has not been removed.
[0035] Furthermore, a conveying mechanism 6 is provided on the top of the peeling mechanism 7. The peeling mechanism 7 includes a support member 701, a first peeling block 702, and a second peeling block 703, wherein the support member 701 is fixedly installed inside the machine body 1. The first peeling block 702 and the second peeling block 703 are respectively fixedly installed on the side plates on both sides of the support member 701, and the first peeling block 702 and the second peeling block 703 play the role of removing bark. The conveying mechanism 6 includes a rotating roller 601 and a drive block 602, wherein the rotating roller 601 is movably installed inside the support member 701, and multiple sets of drive blocks 602 are fixedly installed on the outer wall of the rotating roller 601.
[0036] When the tree enters the machine body 1, it will first be located at the peeling mechanism 7. Therefore, when the conveyor mechanism 6 moves the tree, the bottom of the pressed tree will contact the roller 704, which can reduce the friction between the tree and the equipment, so that the tree can move smoothly. Since the rotating roller 601 rotates clockwise, the tree that is in close contact with it will be rotated counterclockwise. The first peeling block 702 and the second peeling block 703 have different orientations, so that the bark of the tree that rotates counterclockwise can be removed by the first peeling block 702 and the second peeling block 703.
[0037] In the example, the peeling mechanism 7 also includes a roller 704 and a discharge chute 705, wherein the roller 704 is rotatably connected to the inside of the support 701, and the discharge chute 705 is opened at the bottom of the support 701, wherein the fallen bark will fall into the bark collection mechanism through the discharge chute 705.
[0038] In the example, a pressing mechanism 8 is provided on the top of the machine body 1. The pressing mechanism 8 includes a hydraulic module 801 and a support frame 802. The hydraulic module 801 is fixedly installed on the top of the machine body 1. The output end of the hydraulic module 801 is fixedly connected to the support frame 802. The rotating roller 601 is rotatably installed inside the support frame 802. A control module is provided inside the machine body 1. The pressing mechanism 8 and the drive motor are both electrically connected to the control module.
[0039] Once the tree enters the machine body 1, the control module inside the machine body 1 is activated, which will cause the pressing mechanism 8 to start working. The hydraulic module 801 is equipped with a hydraulic system, and its output end is driven by the internal hydraulic system to begin to descend, thereby causing the support frame 802 installed at the bottom of the output end of the hydraulic module 801 to descend synchronously. The conveying mechanism 6 is installed on the support frame 802, and the conveying mechanism 6 will also descend along with the support frame 802.
[0040] In the example, the auxiliary mechanism 4 includes a fixed seat 401 and a sliding groove 402. The fixed seat 401 is fixedly installed on both sides inside the body 1. The sliding groove 402 is opened inside the fixed seat 401 and has an overall oblique annular design. One end of the moving rod 3 is located inside the sliding groove 402 and has an overall spherical shape. The cross-sectional size of the sliding groove 402 matches the cross-sectional size of one end of the moving rod 3. The moving rod 3 is slidably connected to the fixed seat 401 through the sliding groove 402. The rotating part 201 slides on the drive shaft 10 through the cooperation of the moving rod 3 and the sliding groove 402.
[0041] When the rotating part 201 rotates, the moving rod 3 will slide inside the sliding groove 402. Since the length of the moving rod 3 is fixed, the rotating part 201 will be carried by the moving rod 3 to move laterally back and forth on the outer wall of the drive shaft 10, so that the rotating part 201 rotates and moves back and forth on the drive shaft 10 at the same time.
[0042] In the example, one end of the drive shaft 10 passes through the machine body 1, and the drive shaft 10 is fixedly connected to the output end of the external drive motor. The cutting mechanism 2 includes a rotating part 201, a cutter head 202 and a drive part 203. The drive part 203 is fixedly installed on the outer wall of the drive shaft 10, and the drive part 203 is designed in a cross shape. The rotating part 201 slides on the outer wall of the drive part 203. Multiple sets of cutter heads 202 are fixedly installed on the outer wall of the rotating part 201. A blanking plate 9 is fixedly installed inside the machine body 1, and the blanking plate 9 is located at the bottom of the rotating part 201. The blanking plate 9 plays the role of cutting wood chips by cooperating with the rotating part 201.
[0043] The drive shaft 10 drives the rotating component 201 to rotate via the drive component 203, thereby causing the cutter head 202 to rotate synchronously. After the tree enters the area where the cutter head 202 rotates, it will be quickly cut into slices and then carried between the cutting mechanism 2 and the dropping plate 9. The outer wall of the rotating component 201 is in contact with the top of the dropping plate 9, so the sliced wood will be squeezed and then fall through the dropping plate 9. In this process, the tree will be made into the size required for papermaking.
[0044] In the example, the transmission mechanism 5 includes a bevel gear set 501, a first transmission shaft 502, a universal joint 503, a transmission telescopic rod 504, a second transmission shaft 505, and a sprocket set 506. The bevel gear set 501 is fixedly installed at one end of the drive shaft 10, the first transmission shaft 502 is fixedly installed on one side of the bevel gear set 501, one side of the first transmission shaft 502 is movably connected to the transmission telescopic rod 504, both ends of the transmission telescopic rod 504 are movably connected to universal joints 503, and the transmission telescopic rod 504 is movably connected to the first transmission shaft 502 and the second transmission shaft 505 respectively through two sets of universal joints 503. One side of the first transmission shaft 502 is movably connected to the rotating roller 601 through the sprocket set 506.
[0045] When the drive shaft 10 rotates, it causes the first drive shaft 502 to start rotating through the bevel gear set 501 installed at one end. Two sets of universal joints 503 and transmission telescopic rods 504 are installed between the first drive shaft 502 and the second drive shaft 505. Therefore, the rotation of the first drive shaft 502 can cause the second drive shaft 505 to rotate. A sprocket set 506 is installed on one side of the second drive shaft 505. The other end of the sprocket set 506 is connected to the rotating roller 601. Therefore, the rotation of the second drive shaft 505 can cause the rotating roller 601 to rotate clockwise through the sprocket set 506.
[0046] The working principle of the present invention is as follows: When in use, a drive motor is first installed on the outer side of the body 1, and the output end of the drive motor is fixedly connected to the drive shaft 10. Therefore, the drive motor can rotate together with the drive shaft 10 when it is working.
[0047] After the power is turned on and the equipment is started, the drive motor will rotate the drive shaft 10, so the cutting mechanism 2 installed on the outer wall of the drive shaft 10 will also rotate synchronously. The transmission mechanism 5 is installed at the other end of the drive shaft 10, so the transmission mechanism 5 will also start working, thereby causing the conveying mechanism 6 to start working as well.
[0048] At this time, the external conveying device will transport the trees processed by the single-roller bark peeler to the feed port of the machine body 1. Although the outer bark of some trees has been processed by the single-roller bark peeler, there will still be residual bark that has not been removed.
[0049] Therefore, after the tree enters the machine body 1, the control module inside the machine body 1 is activated, which will cause the pressing mechanism 8 to start working. The hydraulic module 801 is equipped with a hydraulic system, and its output end is driven by the hydraulic system inside it to begin to descend, thereby causing the support frame 802 installed at the bottom of the output end of the hydraulic module 801 to descend synchronously. The conveying mechanism 6 is installed on the support frame 802, and the conveying mechanism 6 will also descend along with the support frame 802.
[0050] When the drive shaft 10 rotates, it causes the first drive shaft 502 to start rotating through the bevel gear set 501 installed at one end. Two sets of universal joints 503 and transmission telescopic rods 504 are installed between the first drive shaft 502 and the second drive shaft 505. Therefore, the rotation of the first drive shaft 502 can cause the second drive shaft 505 to rotate. A sprocket set 506 is installed on one side of the second drive shaft 505. The other end of the sprocket set 506 is connected to the rotating roller 601. Therefore, the rotation of the second drive shaft 505 can cause the rotating roller 601 to rotate clockwise through the sprocket set 506.
[0051] As the support frame 802 descends, it brings the rotating roller 601 down with it. Under the control of the control system inside the machine body 1, the rotating roller 601 will press against the outer wall of the tree and then press the tree down. Multiple sets of drive blocks 602 are designed on the outer wall of the rotating roller 601. The drive blocks 602 are narrow at the top and wide at the bottom, and there is a gap of three to four centimeters between each two sets of drive blocks 602.
[0052] When the tree enters the machine body 1, it will first be located at the peeling mechanism 7. Therefore, when the conveyor mechanism 6 moves the tree, the bottom of the compressed tree will contact the roller 704, which can reduce the friction between the tree and the equipment, thus allowing the tree to move smoothly.
[0053] Since the rotating roller 601 rotates clockwise, the trees that are in close contact with it will be rotated counterclockwise. Since the first peeling block 702 and the second peeling block 703 are oriented differently, the bark of the trees that are rotating counterclockwise can be removed by the first peeling block 702 and the second peeling block 703. The fallen bark will fall into the bark collection mechanism through the discharge chute 705.
[0054] The tree continues to be conveyed by the conveyor mechanism 6, allowing it to penetrate deeper into the machine body 1. It then reaches the area of the cutting mechanism 2, where the drive shaft 10 drives the rotating component 201 to rotate via the drive component 203, causing the cutter head 202 to rotate synchronously. After entering the area where the cutter head 202 rotates, the tree is quickly cut into slices and then carried between the cutting mechanism 2 and the dropping plate 9. The outer wall of the rotating component 201 is in contact with the top of the dropping plate 9, so the sliced wood is compressed and then falls through the dropping plate 9. During this process, the tree will be sized to the size required for papermaking. The wood slices will then detach from the machine body 1 through the discharge port and be conveyed by the conveyor device to the next process.
[0055] During the rotation of the cutting mechanism 2 with the drive shaft 10, two sets of moving rods 3 are installed opposite each other at both ends of the rotating part 201. One end of the moving rod 3 extends into the auxiliary mechanism 4, while two sets of fixed seats 401 are fixedly installed on both sides inside the machine body 1. An annular sliding groove 402 with a certain slope is opened inside the auxiliary mechanism 4. One end of the moving rod 3 is spherical, and its design matches the cross-sectional size of the sliding groove 402.
[0056] Therefore, when the rotating part 201 rotates, the moving rod 3 will slide inside the sliding groove 402. Since the length of the moving rod 3 is fixed, the rotating part 201 will be carried by the moving rod 3 to move laterally back and forth on the outer wall of the drive shaft 10, so that the rotating part 201 rotates and moves back and forth on the drive shaft 10 at the same time.
[0057] This design can prevent the blade 202 from always cutting trees in the same position, which would reduce the service life of the blade 202. The reciprocating rotating part 201 will move the blade 202 back and forth synchronously, so that the blade 202 can cut trees in different positions.
[0058] The above structure can solve the problem of limited peeling effect of single-roller peeling machines. They rely on a single roller to contact the surface of the log to peel the bark, which is difficult to completely remove the bark residue on the tree surface. When cutting trees, the cut bark is easy to accumulate and entangle in the cutting area, causing blockage of the cutting channel. Furthermore, the residual bark will contaminate the pulp after entering the pulping process, causing quality defects in the produced tissue paper.
[0059] Although embodiments of the present invention have been shown and described, these specific embodiments are merely explanations of the invention and are not intended to limit it. The specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. After reading this specification, those skilled in the art may make modifications, substitutions, and variations to the embodiments as needed without departing from the principles and spirit of the invention, but such modifications, substitutions, and variations are protected by patent law as long as they are within the scope of the claims of the present invention.
Claims
1. A raw material processing device for household paper, comprising a machine body (1), characterized in that: The machine body (1) is equipped with a cutting mechanism (2), and moving rods (3) are fixedly installed on both sides of the cutting mechanism (2). Auxiliary mechanisms (4) are provided on both sides of the cutting mechanism (2). The cooperation between the moving rods (3) and the auxiliary mechanisms (4) enables the cutting mechanism (2) to reciprocate on the drive shaft (10). The machine body (1) is rotatably equipped with a drive shaft (10), and a transmission mechanism (5) is installed at one end of the drive shaft (10). The machine body (1) is equipped with a peeling mechanism (7), and a conveying mechanism (6) is provided on the top of the peeling mechanism (7). The peeling mechanism (7) includes a support member (701), a first peeling block (702), and a second peeling block (703), wherein the support member (701) is fixedly installed inside the machine body (1). The first peeling block (702) and the second peeling block (703) are respectively fixedly installed on the side plates on both sides of the support member (701), and the first peeling block (702) and the second peeling block (703) serve to remove bark. The conveying mechanism (6) includes a rotating roller (601) and a drive block (602), wherein the rotating roller (601) is movably installed inside the support member (701), and multiple sets of the drive blocks (602) are fixedly installed on the outer wall of the rotating roller (601).
2. The raw material processing equipment for household paper as described in claim 1, characterized in that: The cutting mechanism (2) includes a rotating component (201), a cutting head (202) and a driving component (203), wherein the driving component (203) is fixedly installed on the outer wall of the driving shaft (10), and the driving component (203) is designed in a cross shape. The rotating component (201) slides on the outer wall of the driving component (203), and multiple sets of cutting heads (202) are fixedly installed on the outer wall of the rotating component (201).
3. The raw material processing equipment for household paper according to claim 1, characterized in that: The auxiliary mechanism (4) includes a fixed seat (401) and a sliding groove (402). The fixed seat (401) is fixedly installed on both sides inside the body (1). The sliding groove (402) is opened inside the fixed seat (401) and the sliding groove (402) is an inclined annular design. One end of the moving rod (3) is located inside the sliding groove (402) and the moving rod (3) is spherical. The cross-sectional size of the sliding groove (402) matches the cross-sectional size of one end of the moving rod (3).
4. The raw material processing equipment for household paper according to claim 1, characterized in that: The peeling mechanism (7) further includes a roller (704) and a discharge trough (705), wherein the roller (704) is rotatably connected to the inner side of the support (701), and the discharge trough (705) is opened at the bottom of the support (701).
5. The raw material processing equipment for household paper according to claim 1, characterized in that: The transmission mechanism (5) includes a bevel gear set (501), a first transmission shaft (502), a universal joint (503), a transmission telescopic rod (504), a second transmission shaft (505), and a sprocket set (506). The bevel gear set (501) is fixedly installed at one end of the drive shaft (10). The first transmission shaft (502) is fixedly installed on one side of the bevel gear set (501). One side of the first transmission shaft (502) is movably connected to the transmission telescopic rod (504). Both ends of the transmission telescopic rod (504) are movably connected to universal joints (503). The transmission telescopic rod (504) is movably connected to the first transmission shaft (502) and the second transmission shaft (505) through two sets of universal joints (503). One side of the first transmission shaft (502) is movably connected to the rotating roller (601) through the sprocket set (506).
6. The raw material processing equipment for household paper according to claim 1, characterized in that: The top of the machine body (1) is provided with a pressing mechanism (8), which includes a hydraulic module (801) and a support frame (802). The hydraulic module (801) is fixedly installed on the top of the machine body (1), and the output end of the hydraulic module (801) is fixedly connected to the support frame (802). The rotating roller (601) is rotatably installed inside the support frame (802).
7. The raw material processing equipment for household paper according to claim 2, characterized in that: The machine body (1) is fixedly installed with a cutting plate (9), and the cutting plate (9) is located at the bottom of the rotating part (201). The cutting plate (9) plays the role of cutting wood chips by cooperating with the rotating part (201).
8. The raw material processing equipment for household paper according to claim 1, characterized in that: One end of the drive shaft (10) passes through the body (1), and the drive shaft (10) is fixedly connected to the output end of an external drive motor.
9. The raw material processing equipment for household paper according to claim 3, characterized in that: The movable rod (3) is slidably connected to the fixed seat (401) through the sliding groove (402), and the rotating part (201) slides on the drive shaft (10) through the cooperation of the movable rod (3) and the sliding groove (402).
10. The raw material processing equipment for household paper according to claim 1, characterized in that: The machine body (1) is equipped with a control module, and the pressing mechanism (8) and the drive motor are both electrically connected to the control module.