A waste paper recycling and processing equipment for papermaking
By designing a waste paper recycling and treatment equipment for papermaking, the rotating connections of the vertical plate and the horizontal plate and the jack assembly are used to pretreat the waste paper, the problem of low enzyme hydrolysis efficiency caused by unpretreated waste paper is solved, the pulp quality and production efficiency are improved, and the cost is reduced.
Patent Information
- Application Number
- CN202411525710.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2044-10-30
AI Technical Summary
During the waste paper treatment process, the fiber structure of unpretreated waste paper is relatively complete, resulting in low enzymatic hydrolysis efficiency, affecting the yield and strength of the pulp, increasing production costs and reducing production efficiency.
A waste paper recycling and treatment equipment for papermaking is designed, and the "L"-shaped plate structure is formed through the rotating connection between the vertical plate and the horizontal plate. The waste paper is pretreated by the jack assembly and tool, including the coordination of the installation plate, the tool, the active motor and the gear, so as to achieve effective jacking and crushing of the waste paper.
It improves the dispersion and uniformity of waste paper fibers, reduces subsequent mechanical action time, reduces energy consumption and equipment wear, improves pulp quality and production efficiency, and reduces production costs.
Smart Images

Figure CN119243500B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of the paper-making industry, and more specifically, to a waste paper recycling and treatment device for paper-making. Background Art
[0002] Papermaking, also known as the papermaking technique, is one of the four great inventions in ancient China. Paper is a sheet-like fiber product used for writing, printing, painting, packaging, etc. Generally, it is made from an aqueous suspension of plant fibers that have been pulped, combined alternately on a net, dehydrated preliminarily, and then compressed and dried. The basic method of traditional manual papermaking is to first make paper pulp from plant fibers, then filter water with a curtain mold to make the fibers overlap on it to form a thin sheet, and then peel it off and dry it into paper. The traditional papermaking techniques are mainly divided into the pouring method and the dipping method. In the pouring method, the paper pulp is directly poured onto the curtain mold to form a shape, so the surface of the product is rough and the fiber distribution is uneven. In the dipping method, paper medicine is added to the paper pulp, stirred with water, and after the paper pulp is suspended, the curtain mold is put into the water to dip out the paper. Therefore, the surface of the product is relatively smooth, often with curtain lines, and the fiber distribution is uniform. Waste paper treatment is the process of reprocessing the recycled waste paper to obtain qualified fibers for the production of paper products. The recycling and utilization of waste paper are beneficial to environmental protection, forest protection, and resource conservation. After the waste paper is collected and classified, it will be compressed to reduce its volume, which is convenient for subsequent transportation and processing.
[0003] However, in the subsequent process of making paper pulp from waste paper treatment, the fiber structure of the waste paper without pretreatment is relatively complete, which is not conducive to the effective penetration and action of enzymes, thus affecting the efficiency of enzymatic hydrolysis. The low efficiency of enzymatic hydrolysis may lead to a decrease in the pulp yield, that is, the amount of pulp obtained from the raw materials is reduced, which will directly increase the production cost because more raw materials are needed to achieve the same output. At the same time, the low efficiency of enzymatic hydrolysis may affect the strength of the pulp, including indexes such as tensile strength and breaking length, which is directly related to the quality and durability of the paper. And the waste paper without pretreatment may require additional steps on the pulp production line to ensure the quality of the pulp, which not only reduces the production efficiency but also increases the maintenance cost of the equipment. In view of this, we propose a waste paper recycling and treatment device for paper-making. Summary of the Invention
[0004] The purpose of the present invention is to provide a waste paper recycling and treatment device for paper-making to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the present invention provides a waste paper recycling and treatment device for paper-making, including a treatment device body. The treatment device body includes a treatment box, and a gathering component is arranged inside the treatment box. The gathering component includes a horizontal plate and a vertical plate, which are rotatably connected between them and jointly form an "L"-shaped plate structure.
[0006] A groove is formed on the outer wall of the vertical plate, and a jacking component is slidably connected inside the groove. An adjusting component is installed on the outer wall of the folding component, and the adjusting component is used to adjust the position of the jacking component. A track groove is formed on the inner bottom wall of the processing box, and an auxiliary component is arranged inside the track groove, and the auxiliary component is used to adjust the position of the folding component.
[0007] As a further improvement of this technical solution, the jacking component includes a mounting plate, and a plurality of cutters are rotatably connected to the surface of the mounting plate. A cavity is formed inside the mounting plate, wherein: the bottom end of the cutter penetrates through the mounting plate to the inside of the cavity, a gear is installed on the outer wall of the bottom of the cutter, and two adjacent gears are meshed with each other. A driving motor is installed inside the cavity, and the output end of the driving motor is fixedly connected to the bottom end of one of the cutters.
[0008] As a further improvement of this technical solution, a plurality of matching holes are formed on the surface of the vertical plate, and the diameter size of the matching holes is adapted to the size of the cutter.
[0009] As a further improvement of this technical solution, a mounting seat is fixedly connected to the side wall of the horizontal plate. The mounting seat is arranged in a "U" shape. A driving motor is installed on the side wall of the mounting seat. A rotating block is fixedly connected to the bottom of the vertical plate. A support rod is rotatably connected between the opposite inner walls of the mounting seat, and the outer wall of the support rod is fixedly connected to the rotating block, wherein: the output end of the driving motor is fixedly connected to the end of the support rod.
[0010] As a further improvement of this technical solution, the adjusting component includes a link mechanism. Fixed blocks are installed on the opposite side walls of the horizontal plate. One end of the link mechanism is installed on the outer wall of the fixed block and is rotatably connected to the fixed block. The other end of the link mechanism is installed with a connecting plate, and the surface of the connecting plate is fixedly connected to the surface of the mounting plate.
[0011] As a further improvement of this technical solution, the adjusting component further includes support blocks. The support blocks are fixedly connected to both sides of one surface of the vertical plate. A limiting groove is formed on the surface of the support blocks. Limiting blocks are fixedly connected to both sides of the end of the mounting plate, wherein: the position of the mounting plate is adjusted by sliding the limiting blocks inside the limiting grooves through the adjusting component.
[0012] As a further improvement of this technical solution, the auxiliary component includes a slide rod and a slider. The slide rod is arranged in a structure with reverse threaded sections at both ends. There are two sliders, which are respectively arranged on the two reverse threaded sections of the outer wall of the slide rod and are threadedly connected to the slide rod. One end of the slide rod penetrates through the processing box to the outside, and a transmission motor is installed on the outer wall of the processing box. The output end of the transmission motor is fixedly connected to one end of the slide rod.
[0013] As a further improvement of the technical solution, closing doors are installed on both opposite side walls of the processing box. The closing doors are hinged to the processing box, where: the size of the closing door is larger than that of the vertical plate. A feeding port is installed at the center of the upper surface of the processing box. The feeding port is composed of a plate inclined at an angle to the processing box and two plates perpendicular to the upper surface of the processing box.
[0014] As a further improvement of the technical solution, the slider and the slide bar form a lead screw structure, so that the slider is converted from a rotational motion to a linear motion.
[0015] As a further improvement of the technical solution, guide plates are installed at the center of the upper surface inside the processing box. There are two guide plates. The guide plates are arranged directly below the feeding port. The two guide plates are inclined together to gather waste paper inward.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0017] 1. In this waste paper recycling and processing equipment for papermaking, through the rotational connection of the vertical plate and the horizontal plate, when the driving motor is started and the vertical plate rotates clockwise, the vertical plate is gradually unfolded and laid flat, which can be used as an auxiliary platform for loading and unloading waste paper, simplifies the loading and unloading process of waste paper, improves work efficiency, and at the same time facilitates the staff to quickly clean the inside of its processing box; and when the vertical plate rotates clockwise, it drives the link mechanism to pull the mounting plate to move away from the inner wall of the vertical plate. When the vertical plate rotates through the closing door and is laid flat, the folding coincidence point of the link mechanism and the support block contact the ground, which can further play a role in stable support. At the same time, as the mounting plate moves away from the inner wall of the vertical plate, it drives the cutter to gradually move to be hidden below the mating hole, playing a protective role for both the cutter and the staff. During the movement of the cutter, the waste paper that may be carried on the cutter will be blocked by the mating hole and continue to fall into the processing box.
[0018] 2. In this waste paper recycling and processing equipment for papermaking, through the rotational connection of the vertical plate and the horizontal plate, when the vertical plate is erected and locked perpendicular to the horizontal plate, it acts as a baffle in the vertical direction. The vertical plate and the horizontal plate form an "L"-shaped plate structure, preventing the lateral movement of waste paper during the jacking process, and at the same time being able to effectively surround the waste paper to prevent it from splashing out of the processing box during the jacking process. This helps to keep the working environment clean and reduces potential safety risks, increasing the applicability and flexibility of the machine.
[0019] 3. In the papermaking waste paper recycling and processing equipment, the vertical plate and the horizontal plate are rotatably connected. When the vertical plate is erected and locked perpendicularly with the horizontal plate, it acts as a baffle in the vertical direction. The vertical plate and the horizontal plate form an "L"-shaped plate structure. When the vertical plate is rotated counterclockwise by the drive motor, it simultaneously drives the connecting rod mechanism to push the mounting plate toward the inner wall of the vertical plate. Several knives are limited by the matching holes. Through the two-sided clamping of the "L"-shaped retracting component, the waste paper can be more effectively pushed to the center of the processing box. Due to the installation of the two guide plates, the waste paper can also be guided to be placed in the center of the processing box. The waste paper is inserted into the hole by starting the transmission motor and the active motor;
[0020] By inserting holes in the waste paper, it can be more effectively dissociated into fibers, and the dispersion of paper fibers in the pulp is improved, which is beneficial for the fibers to be more evenly distributed in the subsequent crushing and cooking processes, thereby obtaining pulp with better homogeneity; the holes can make the waste paper easier to decompose under subsequent mechanical action, reduce damage to the fibers during the pulping process, retain the integrity of more long fibers, and help improve the strength and quality of the final paper. At the same time, the subsequent mechanical action time required will be significantly reduced, which not only saves energy, but also reduces equipment wear and reduces production costs; the holes on the waste paper make it easier to separate impurities in the waste paper during the purification and screening process, improve the impurity removal efficiency, reduce the complexity of subsequent processing, and make the entire production process smoother; the holes enable the waste paper to absorb water more evenly in the subsequent compression and soaking process, thereby forming a uniform mixture in the pulp, which helps to ensure the quality stability of different batches of paper and greatly improve the quality of the pulp and subsequent processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a schematic diagram of the overall structure assembly of the present invention;
[0022] Figure 2 It is a schematic cross-sectional view of the overall structure of the present invention;
[0023] Figure 3 This is a schematic cross-sectional view of the overall structure of the present invention;
[0024] Figure 4 For the present invention Figure 3 Schematic diagram of the structure at A in FIG;
[0025] Figure 5 This is the second schematic cross-sectional view of the overall structure of the present invention;
[0026] Figure 6 This is a schematic diagram of the folding assembly structure of the present invention;
[0027] Figure 7 This is the second schematic diagram of the folding assembly structure of the present invention;
[0028] Figure 8 For the present invention Figure 7 Schematic diagram of the structure at position B in
[0029] Figure 9 Schematic diagram of the structure of the jack assembly of the present invention.
[0030] The meanings of each label in the figure are as follows:
[0031] 100, processing equipment body; 101, processing box; 105, track groove; 104, driving motor; 103, closing door; 102, feeding port; 106, guiding plate;
[0032] 200, folding assembly; 201, horizontal plate; 202, vertical plate; 2020, mating hole; 2010, mounting seat; 2012, rotating block; 2013, driving motor; 2011, support rod;
[0033] 300, jack assembly; 301, mounting plate; 302, cutter; 303, cavity; 3020, gear;
[0034] 400, adjusting assembly; 401, fixing block; 4,02, linkage mechanism; 4020, connecting plate; 403, support block; 4030, limiting groove;
[0035] 500, auxiliary assembly; 501, sliding rod; 502, slider. Detailed implementation manners
[0036] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0037] Papermaking, also known as the art of papermaking, is one of the four great inventions of ancient my country. Paper is a sheet-like fiber product used for writing, printing, painting, and packaging. It is typically made from a water suspension of pulped plant fibers, interlaced on a web, initially dehydrated, compressed, and dried. Traditional handmade papermaking involves first creating a pulp from plant fibers, then filtering the water through a screen mold, allowing the fibers to overlap to form a thin sheet, which is then peeled and dried to create paper. Traditional papermaking techniques are mainly divided into casting and papermaking. The casting method is to pour the paper pulp directly onto a curtain mold to form it. Therefore, the product surface is rough and the fiber distribution is uneven. The papermaking method is to add paper medicine to the pulp, stir it with water, and suspend the pulp. Then, the curtain mold is placed in water and paper is slid out. As a result, the product surface is smoother, often with curtain lines, and the fiber distribution is even. Waste paper processing is the process of reprocessing recycled waste paper to obtain qualified fibers for the production of paper products. The recycling and utilization of waste paper is beneficial to protecting the environment, protecting forests, and conserving resources. After the waste paper is collected and sorted, it is compressed to reduce the volume of the waste paper and facilitate subsequent transportation and processing. Figures 1-9 As shown, this embodiment provides a papermaking waste paper recycling and processing device, including a processing device body 100, the processing device body 100 includes a processing box 101, and a gathering assembly 200 is provided inside the processing box 101. The gathering assembly 200 includes a horizontal plate 201 and a vertical plate 202. The horizontal plate 201 and the vertical plate 202 are rotatably connected and together form an "L"-shaped plate structure;
[0038] A groove is provided on the outer wall of the vertical plate 202, and a socket assembly 300 is slidably connected inside the groove. An adjustment assembly 400 is installed on the outer wall of the folding assembly 200, and the adjustment assembly 400 is used to adjust the position of the socket assembly 300. A track groove 105 is provided on the bottom wall of the processing box 101, and an auxiliary assembly 500 is arranged inside the track groove 105. The auxiliary assembly 500 is used to adjust the position of the folding assembly 200.
[0039] The improvement of this embodiment is that:
[0040] Through the rotational connection between the vertical plate 202 and the horizontal plate 201, when the vertical plate 202 rotates clockwise, the vertical plate 202 is gradually unfolded and laid flat, which can be used as an auxiliary platform for loading and unloading waste paper, simplifying the loading and unloading process of waste paper, improving work efficiency, and at the same time facilitating the staff to quickly clean the inside of its treatment box 101; and when the vertical plate 202 rotates clockwise, it drives the linkage mechanism 402 to pull the mounting plate 301 to move away from the inner wall of the vertical plate 202. When the vertical plate 202 rotates through the closing door 103 and is laid flat, the folding coincidence point of the linkage mechanism 402 and the support block 403 contact the ground, which can further play a role in stable support. At the same time, the mounting plate 301 moves away from the inner wall of the vertical plate 202, driving the cutting tool 302 to also move to be hidden below the mating hole 2020, playing a protective role for both the cutting tool 302 and the staff; during the counterclockwise rotation of the vertical plate 202, it drives the adjustment component 400 to push the jacking component 300 towards the inner wall of the vertical plate 202. At the same time, through the two-sided clamping of the "L"-shaped folding component 200, the waste paper can be more effectively pushed towards the center of the treatment box 101 for pre-hole treatment of the waste paper.
[0041] Considering that the unpretreated waste paper is more difficult to be dispersed during the mechanical crushing process due to its relatively complete fiber structure, therefore, the jacking component 300 includes a mounting plate 301, and several cutting tools 302 are rotatably connected to the surface of the mounting plate 301. A cavity 303 is formed inside the mounting plate 301, where: the bottom end of the cutting tool 302 penetrates through the mounting plate 301 to the inside of the cavity 303, and a gear 3020 is installed on the outer wall of the bottom of the cutting tool 302. Two adjacent gears 3020 are meshed with each other. A driving motor is installed inside the cavity 303, and the output end of the driving motor is fixedly connected to the bottom end of one of the cutting tools 302. A plurality of mating holes 2020 are formed on the surface of the vertical plate 202, and the diameter size of the mating holes 2020 is adapted to the size of the cutting tool 302;
[0042] During the counterclockwise rotation of the vertical plate 202, it drives the adjustment component 400 to push the mounting plate 301 towards the inner wall of the vertical plate 202, and several cutting tools 302 pass through the mating holes 2020 for positioning. Through the two-sided clamping of the "L"-shaped folding component 200, the waste paper can be more effectively pushed towards the center of the treatment box 101. Due to the installation of the two guide plates 106, the waste paper can also be guided to be placed at the center of the treatment box 101. By starting the driving motor, several meshed gears 3020 rotate, thereby driving several cutting tools 302 to rotate simultaneously to accelerate the hole-making and crushing treatment of the waste paper.
[0043] Considering the need for the vertical plate 202 to rotate and deform relative to the horizontal plate 201, the vertical plate 202 can be unfolded and laid flat or perpendicular to the horizontal plate 201 to form a baffle. Therefore, a mounting seat 2010 is fixedly connected to the side wall of the horizontal plate 201. The mounting seat 2010 is set in a "U" - shaped structure. A driving motor 2013 is installed on the side wall of the mounting seat 2010. A rotating block 2012 is fixedly connected to the bottom of the vertical plate 202. A support rod 2011 is rotatably connected between the opposite inner walls of the mounting seat 2010. The outer wall of the support rod 2011 is fixedly connected to the rotating block 2012. Among them, the output end of the driving motor 2013 is fixedly connected to the end of the support rod 2011;
[0044] By starting the driving motor 2013, the support rod 2011 rotates clockwise or counterclockwise, thereby driving the vertical plate 202 to rotate clockwise or counterclockwise, so as to unfold and lay flat the vertical plate 202 or make it perpendicular to the horizontal plate 201 to form a baffle.
[0045] In order to adjust the position movement of the mounting plate 301 and push or retract the cutting tool 302, the adjusting assembly 400 includes a link mechanism 402. Fixed blocks 401 are installed on the opposite side walls of the horizontal plate 201. One end of the link mechanism 402 is installed on the outer wall of the fixed block 401 and is rotatably connected to the fixed block 401. The other end of the link mechanism 402 is installed with a connecting plate 4020. The surface of the connecting plate 4020 is fixedly connected to the surface of the mounting plate 301. The adjusting assembly 400 further includes a support block 403. The support block 403 is fixedly connected to both sides of one surface of the vertical plate 202. A limiting groove 4030 is formed on the surface of the support block 403. Limiting blocks are fixedly connected to the opposite side walls of the end of the mounting plate 301. Among them, the position of the mounting plate 301 is adjusted by making the limiting blocks slide inside the limiting groove 4030 through the adjusting assembly 400;
[0046] Through the connection and hinge of several rigid components in the linkage mechanism 402, the movement and force transmission are realized. Since one end of the linkage mechanism 402 is rotatably connected to the fixed block 401, and the connecting plate 4020 installed at the other end is fixedly connected to the mounting plate 301, when the driving motor 2013 is started to rotate the support rod 2011 clockwise to drive the vertical plate 202 to rotate clockwise, the linkage mechanism 402 is driven to pull the mounting plate 301 to move away from the inner wall of the vertical plate 202, and the cutting tool 302 is also gradually moved to be hidden below the fitting hole 2020, which plays a protective role for both the cutting tool 302 and the staff. During the movement of the cutting tool 302, the waste paper that may be carried on the cutting tool 302 will be blocked by the fitting hole 2020 and continue to fall into the treatment box 101. On the contrary, when the support rod 2011 is rotated counterclockwise and the vertical plate 202 is erected and locked perpendicular to the horizontal plate 201, the vertical plate 202 and the horizontal plate 201 form an "L"-shaped plate structure, which plays the role of a baffle in the vertical direction. At the same time, the linkage mechanism 402 is driven to push the mounting plate 301 towards the inner wall of the vertical plate 202, and several cutting tools 302 pass through the fitting hole 2020 for positioning to perform the jacking treatment on the waste paper.
[0047] In order to make the two sets of gathering components move inward to gather the waste paper while better performing the jacking treatment, the auxiliary component 500 includes a slide rod 501 and a slider 502. The slide rod 501 is provided with a structure of reverse threaded sections at both ends. There are two sliders 502, which are respectively arranged on the two reverse threaded sections of the outer wall of the slide rod 501 and are threadedly connected to the slide rod 501. One end of the slide rod 501 penetrates through the treatment box 101 to the outside, and a transmission motor 104 is installed on the outer wall of the treatment box 101. The output end of the transmission motor 104 is fixedly connected to one end of the slide rod 501. By starting the transmission motor 104, due to the application of the lead screw structure, while the slide rod 501 rotates, the slider 502 moves left and right on the slide rod 501 to control the left and right movement of the gathering component. [[ID=,5]]
[0048] Secondly, closing doors 103 are installed on both opposite side walls of the treatment box 101. The closing doors 103 are hinged to the treatment box 101. Among them: the size of the closing door 103 is larger than that of the vertical plate 202. A feeding port 102 is installed at the center of the upper surface of the treatment box 101. The feeding port 102 is composed of a plate inclined at an angle to the treatment box 101 and two plates perpendicular to the upper surface of the treatment box 101, which is convenient for the staff to put waste paper into the treatment box 101. The inclined plate helps to guide the waste paper to smoothly enter the treatment box 101, reducing the accumulation and retention of waste paper at the feeding port 102. At the same time, the two plates at right angles can limit the spreading range of waste paper in the area of the feeding port 102, further concentrating the waste paper into the central area of the treatment box 101 and preventing the waste paper from spreading to both sides of the treatment box 101.
[0049] In addition, a guide plate 106 is installed at the center of the inner upper surface of the processing box 101. There are two guide plates 106, which are arranged directly below the feeding port 102. The two guide plates 106 are jointly arranged at an inclined angle to gather waste paper inward. Through the inclined guide plates 106, the waste paper naturally slides towards the center under the action of gravity, effectively reducing the dispersion of waste paper inside the processing box 101, thereby improving the collection efficiency.
[0050] Specifically, the slider 502 and the slide bar 501 form a lead screw structure, so that the slider 502 is converted from a rotational motion to a linear motion. The lead screw structure is essentially composed of a screw and a nut. The thread on the screw meshes with the thread in the nut. When the screw rotates, the nut will move linearly along the axis of the screw because the angle and shape design of the thread convert the rotational motion into a linear motion.
[0051] When the waste paper recycling and processing equipment for papermaking of the present invention is specifically used, the staff moves the processing box 101 to any required position through the self-locking universal wheels, and then throws the waste paper into the processing box 101 through the feeding port 102. Start the driving motor 2013 to rotate the support rod 2011 counterclockwise. When the vertical plate 202 is erected and locked perpendicular to the horizontal plate 201, the vertical plate 202 and the horizontal plate 201 form an "L"-shaped plate structure, which acts as a baffle in the vertical direction. At the same time, it drives the link mechanism 402 to push the mounting plate 301 towards the inner wall of the vertical plate 202. Several cutting tools 302 pass through the fitting holes 2020 for positioning. Then, close the closing door 103 and start the driving motor and the transmission motor 104. Due to the application of the lead screw structure, while the slide bar 501 rotates, the slider 502 moves left and right on the slide bar 501 to control the left and right movement of the gathering assembly. The start of the driving motor causes several meshing gears 3020 to rotate, thereby driving several cutting tools 302 to rotate simultaneously to accelerate the jacking and crushing treatment of the waste paper; on the contrary, when the driving motor 2013 rotates the support rod 2011 clockwise to drive the vertical plate 202 to rotate clockwise, it drives the link mechanism 402 to pull the mounting plate 301 to move away from the inner wall of the vertical plate 202, driving the cutting tools 302 to gradually move to below the fitting holes 2020 and be hidden, playing a protective role for both the cutting tools 302 and the staff. During the movement of the cutting tools 302, the waste paper that may be carried on the cutting tools 302 will be blocked by the fitting holes 2020 and continue to fall into the processing box 101. At this time, the vertical plate 202 is gradually unfolded and laid flat, which can be used as an auxiliary platform for loading and unloading waste paper, simplifying the loading and unloading process of waste paper and improving the work efficiency. At the same time, when the vertical plate 202 passes through the closing door 103 and is laid flat, the folding coincidence point of the link mechanism 402 and the support block 403 contact the ground, which can further play a role in stable support.
[0052] The basic principles, main features and advantages of the present invention have been shown and described above. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.
Claims
1. A waste paper recycling and treatment device for papermaking, comprising a treatment device body (100), characterized in that: The processing device body (100) includes a processing box (101). Inside the processing box (101), there is a folding component (200). The folding component (200) includes a horizontal plate (201) and a vertical plate (202). The horizontal plate (201) and the vertical plate (202) are rotatably connected to each other and jointly form an "L"-shaped plate structure. A groove is formed on the outer wall of the vertical plate (202). A jacking component (300) is slidably connected inside the groove. An adjusting component (400) is installed on the outer wall of the folding component (200). The adjusting component (400) is used to adjust the position of the jacking component (300). A track groove (105) is formed on the inner bottom wall of the processing box (101). An auxiliary component (500) is arranged inside the track groove (105). The auxiliary component (500) is used to adjust the position of the folding component (200). The jacking component (300) includes a mounting plate (301). A plurality of cutting tools (302) are rotatably connected to the surface of the mounting plate (301). A cavity (303) is formed inside the mounting plate (301). Specifically, the bottom end of the cutting tool (302) penetrates through the mounting plate (301) and extends into the cavity (303). The adjusting component (400) includes a link mechanism (402). Fixed blocks (401) are installed on both opposite side walls of the horizontal plate (201). One end of the link mechanism (402) is installed on the outer wall of the fixed block (401) and is rotatably connected to the fixed block (401). The other end of the link mechanism (402) is installed with a connecting plate (4020). The surface of the connecting plate (4020) is fixedly connected to the surface of the mounting plate (301). The adjusting component (400) further includes a support block (403). The support block (403) is fixedly connected to both sides of one surface of the vertical plate (202). A limiting groove (4030) is formed on the surface of the support block (403). Limiting blocks are fixedly connected to both opposite side walls of the end of the mounting plate (301). Specifically, the position of the mounting plate (301) is adjusted by sliding the limiting blocks inside the limiting groove (4030) through the adjusting component (400). The auxiliary component (500) includes a sliding rod (501) and a sliding block (502). The sliding rod (501) is configured with reverse threaded sections at both ends. There are two sliding blocks (502), which are respectively arranged on the two reverse threaded sections of the outer wall of the sliding rod (501) and are threadedly connected to the sliding rod (501). One end of the sliding rod (501) penetrates through the processing box (101) to the outside. A driving motor (104) is installed on the outer wall of the processing box (101). The output end of the driving motor (104) is fixedly connected to one end of the sliding rod (501).
2. The waste paper recycling and treatment equipment for papermaking according to claim 1, characterized in that: A gear (3020) is installed on the outer wall of the bottom of the cutting tool (302). Two adjacent gears (3020) are meshed with each other. A driving motor is installed inside the cavity (303). The output end of the driving motor is fixedly connected to the bottom end of one of the cutting tools (302).
3. The waste paper recycling and treatment equipment for papermaking according to claim 1, wherein: A plurality of mating holes (2020) are formed on the surface of the vertical plate (202), and the diameter size of the mating holes (2020) is adapted to the size of the cutting tool (302).
4. The waste paper recycling and treatment equipment for papermaking according to claim 1, characterized in that: A mounting seat (2010) is fixedly connected to the side wall of the horizontal plate (201). The mounting seat (2010) is arranged in a "U" shape. A driving motor (2013) is mounted on the side wall of the mounting seat (2010). A rotating block (2012) is fixedly connected to the bottom of the vertical plate (202). A support rod (2011) is rotatably connected between the opposite inner walls of the mounting seat (2010). The outer wall of the support rod (2011) is fixedly connected to the rotating block (2012). Among them: the output end of the driving motor (2013) is fixedly connected to the end of the support rod (2011).
5. The waste paper recycling and treatment equipment for papermaking according to claim 1, characterized in that: Closing doors (103) are mounted on both opposite side walls of the processing box (101). The closing doors (103) are hinged to the processing box (101). Among them: the size of the closing doors (103) is larger than the size of the vertical plate (202). A feeding port (102) is mounted at the center of the upper surface of the processing box (101). The feeding port (102) is composed of a plate inclined at an angle to the processing box (101) and two plates perpendicular to the upper surface of the processing box (101).
6. The waste paper recycling and treatment equipment for papermaking according to claim 5, wherein: The slider (502) and the slide rod (501) form a lead screw structure, so that the slider (502) is converted from rotational motion to linear motion.
7. The waste paper recycling and treatment equipment for papermaking according to claim 1, characterized in that: A guide plate (106) is mounted at the center of the inner upper surface of the processing box (101). There are two guide plates (106). The guide plates (106) are arranged directly below the feeding port (102). The two guide plates (106) are inclined together to gather waste paper inward.
Citation Information
Patent Citations
Waste paper recycling device
CN214089208U
Waste treatment and recovery device for papermaking production
CN218049628U
Cited By
Waste paper treatment equipment with automatic recovery structure
CN121538855A