Stirring type paper pulp slag remover
By designing a stirring pulp deslagging device, a rotary motor drives a brush to clean and push impurities into the chamber, solving the problem of impurity residue in existing technologies and achieving efficient impurity discharge and improved filtration effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHONGQING NANCHUAN DISTRICTJIN PAPER CO LTD
- Filing Date
- 2025-05-15
- Publication Date
- 2026-05-08
AI Technical Summary
In existing technologies, impurities tend to remain on the filter plates when filtering pulp, resulting in poor filtration performance and inconvenient impurity removal.
The agitated pulp deslagging device uses a rotating motor to drive a rotating roller to sweep impurities off the filter plate with a brush, and a pushing component to push the impurities into the housing. The impurities can then be discharged by opening the cover.
It enables convenient and efficient removal of impurities from the filter plate, improving filtration efficiency and impurity discharge efficiency.
Smart Images

Figure CN224213035U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pulp deslagging technology, and in particular to a stirring pulp deslagging device. Background Technology
[0002] Pulp is the basic raw material of the papermaking industry. It is a fiber suspension formed by separating and purifying plant fibers (such as wood, bamboo, straw, etc.) through physical or chemical methods. During the process of removing impurities from the pulp in conventional equipment, the impurities in the pulp can easily adhere to the filter plate and cause blockage, thus affecting the filtration effect of the pulp.
[0003] Existing technology CN214362519U describes a pulp discharge device, including a pulp inlet pipe, a filter tank, a drive motor, a transmission shaft, rotating blades, a filter plate, a cleaning plate, a brush, a collection tank, and a cover plate. After the pulp is poured into the pulp inlet pipe, the funnel-shaped structure in the middle of the inlet pipe increases the velocity of the pulp flowing out. Furthermore, the outlet direction of the pulp inlet pipe is perpendicular to the vertical direction of the filter tank, making it easier for the pulp entering the filter tank to form a vortex. When the drive motor is turned on, it drives the rotating blades on the surface of the transmission shaft to rotate. The spiral arrangement of the rotating blades causes the pulp inside the filter tank to... As the pulp rotates, it forms a vortex. Heavy impurities settle onto the surface of the filter plate inside the filter tank. A brush at the bottom of the plate cleans the filter plate during rotation, sweeping impurities into a collection trough in the center of the filter plate to prevent accumulation. The inclined design of the collection trough allows impurities to slide to the bottom after entering. A cover plate is bolted to the collection trough, allowing the cover to be opened after pulp removal to remove impurities from the collection trough, preventing clogging of the filter screen and improving filtration efficiency.
[0004] In normal use, existing technology is time-consuming and labor-intensive when discharging filtered pulp, and impurities are easily left in the collection tank of the filter plate, making it inconvenient to discharge the filtered impurities. Utility Model Content
[0005] The purpose of this invention is to provide a stirring pulp deslagging device, which solves the problem that in the prior art, when discharging filtered pulp, it is time-consuming and laborious, and impurities are easily left in the collection tank of the filter plate, thus making it inconvenient to discharge the filtered impurities.
[0006] To achieve the above objectives, this utility model provides a stirring pulp desander, comprising a barrel and structural components. The structural components include a filter plate, a cover plate, a housing, a return pipe, a crossbar, a push plate, a brush, a rotating roller, a rotating motor, an adjusting component, and a pushing component. The filter plate is fixedly installed on one side of the barrel, and the housing is fixedly installed on the side of the barrel away from the filter plate. The cover plate is bolted to the side of the housing away from the barrel. One end of the return pipe communicates with the housing, and the other end communicates with the barrel. The adjusting component is connected to the barrel, and the rotating motor is connected to the adjusting component. The rotating roller is connected to the output shaft of the rotating motor. The brush is fixedly connected to the rotating roller and located on the side of the rotating roller closer to the filter plate. The pushing component is connected to the barrel, the crossbar is slidably connected to the barrel and connected to the pushing component, and the push plate is fixedly connected to the crossbar and slidably connected to the filter plate.
[0007] The pushing component includes a block, a base block, and a moving part. The base block is fixedly connected to the barrel and located on the side of the barrel away from the rotary motor. The block is fixedly connected to the crossbar and slidably connected to the base block. The moving part is connected to the base block and to the block.
[0008] The moving component includes a moving rod and a moving motor. The moving rod is rotatably connected to the base block and threadedly connected to the block. The moving motor is fixedly connected to the base block, and the output shaft of the moving motor is connected to the moving rod.
[0009] The adjusting component includes an adjusting block, a frame, and a driving component. The adjusting block is fixedly connected to the rotary motor and located on the side of the rotary motor closer to the rotary roller. The frame is fixedly connected to the barrel and slidably connected to the adjusting block. The driving component is connected to the frame, the adjusting block, and the barrel.
[0010] The driving component includes a driving rod and a driving motor. The driving rod is rotatably connected to the barrel body, threadedly connected to the adjusting block, and rotatably connected to the frame. The driving motor is fixedly connected to the frame, and the output shaft of the driving motor is connected to the driving rod.
[0011] This utility model discloses a stirring-type pulp deslagging device. A drive motor drives a drive rod to rotate, which in turn drives an adjusting block to move on the frame. The adjusting block moves a rotary motor, a rotating roller, and a brush, adjusting the position and height of the brush. The rotary motor drives the rotating roller to rotate the brush, which cleans impurities from the filter plate. Subsequently, a moving motor drives a moving rod to rotate on a base block, which in turn moves the base block. The base block moves a crossbar on a barrel, and the crossbar moves a pusher plate on the filter plate, pushing accumulated impurities into the housing and collecting them in a cover plate. Opening the cover plate allows the impurities to be discharged, facilitating the removal of filtered impurities. Attached Figure Description
[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0013] Figure 1 This is a schematic diagram of the overall structure of the stirring pulp deslagging device according to the first embodiment of this utility model.
[0014] Figure 2 This is a schematic diagram of the crossbar and push plate of this utility model.
[0015] Figure 3 This is a structural schematic diagram of the barrel and filter plate of this utility model.
[0016] In the diagram: 101-Barrel body, 102-Filter plate, 103-Cover plate, 104-Box body, 105-Return pipe, 106-Horizontal bar, 107-Push plate, 108-Brush, 109-Rotating roller, 110-Rotating motor, 111-Block, 112-Bottom block, 113-Moving rod, 114-Moving motor, 115-Adjusting block, 116-Frame, 117-Drive rod, 118-Drive motor. Detailed Implementation
[0017] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0018] The first embodiment of this application is as follows:
[0019] Please see Figures 1-3 , Figure 1 This is a schematic diagram of the overall structure of the stirring pulp desander of the first embodiment of this utility model. Figure 2This is a structural schematic diagram of the crossbar and push plate of this utility model. Figure 3 This is a schematic diagram of the structure of the barrel and filter plate of this utility model. This utility model provides a stirring pulp desander, including a barrel 101 and structural components. The structural components include a filter plate 102, a cover plate 103, a box 104, a return pipe 105, a crossbar 106, a push plate 107, a brush 108, a rotating roller 109, a rotating motor 110, an adjusting component, and a pushing component. The pushing component includes a block 111, a bottom block 112, and a moving part. The moving part includes a moving rod 113 and a moving motor 114. The adjusting component includes an adjusting block 115, a frame 116, and a driving component. The driving component includes a driving rod 117 and a driving motor 118. The aforementioned solution solves the problem in the prior art where the discharge of filtered pulp is time-consuming and laborious, and impurities easily remain in the collection tank on the filter plate 102, making it inconvenient to discharge the filtered impurities. It can be understood that the aforementioned solution can be used in the case of the discharge of filtered pulp in the prior art.
[0020] In this specific embodiment, the rotary motor 110 drives the rotary roller 109 to rotate the brush 108. The brush 108 cleans the impurities on the filter plate 102. Then, the pushing component drives the crossbar 106 to move on the barrel 101. When the crossbar 106 moves, it drives the push plate 107 to move on the filter plate 102, pushing the accumulated impurities into the box 104 and collecting them in the cover plate 103. Opening the cover plate 103 allows the impurities to be discharged, thus facilitating the discharge of filtered impurities.
[0021] The filter plate 102 is fixedly installed on one side of the barrel 101, the housing 104 is fixedly installed on the side of the barrel 101 away from the filter plate 102, the cover plate 103 is bolted to the side of the housing 104 away from the barrel 101, one end of the return pipe 105 is connected to the housing 104, and the other end of the return pipe 105 is connected to the barrel 101, the adjusting member is connected to the barrel 101, the rotary motor 110 is connected to the adjusting member, the rotary roller 109 is connected to the output shaft of the rotary motor 110, and the brush 108 is fixedly connected to the rotary roller 109 and located on the side of the rotary roller 109 closer to the filter plate 102. The pushing component is connected to the barrel 101, the crossbar 106 is slidably connected to the barrel 101 and connected to the pushing component, the push plate 107 is fixedly connected to the crossbar 106 and slidably connected to the filter plate 102, the barrel 101 is hollow inside, the bottom four corners of the barrel 101 are designed with support pillars, the lower front end of the barrel 101 is designed with a pulp outlet pipe and is connected to discharge the filtered pulp, the top center of the barrel 101 is designed with a through hole, the top right side of the barrel 101 is designed with a pulp inlet pipe and is connected to feed the pulp to be filtered, the lower left side of the barrel 101 is designed with a discharge port, the lower right side of the barrel 101 is designed with a sliding hole, and the filter plate The outer side of 102 is fixedly connected to the lower inner side of the barrel 101. The left end of the box 104 is designed with a cavity. The right side of the box 104 is fixedly connected to the lower left side of the barrel. The top of the horizontal end of the cover plate 103 is hollow. The bottom of the horizontal end of the cover plate 103 is designed with multiple water outlet holes. The vertical end of the cover plate 103 is bolted to the cavity of the box 104. The top end of the return pipe 105 is connected to the bottom of the box 104. The bottom end of the return pipe 105 is connected to the lower left side of the barrel 101. The adjusting component is located on the top left side of the barrel 101. The adjusting component drives the rotary motor 110 to move up and down. The top of the vertical end of the rotating roller 109 is connected to the cavity of the barrel 104. The barrel 101 is connected to the output shaft of the rotary motor 110 through a through hole. The brush 108 is located at the bottom of the vertical end of the rotating roller 109. The outer side of the push plate 107 is slidably connected to the inner side of the filter plate 102. The left end of the crossbar 106 is fixedly connected to the right side of the push plate 107. The pushing member is located at the bottom of the barrel 101. The pushing member drives the outer side of the crossbar 106 to move on the sliding hole of the barrel 101. The rotary motor 110 drives the rotating roller 109 to rotate the brush 108. The brush 108 cleans the impurities on the filter plate 102. Subsequently, the pushing member drives the crossbar 106 to move on the barrel 101.When the crossbar 106 moves, it drives the pusher plate 107 to move on the filter plate 102, pushing the accumulated impurities into the housing 104 and collecting them in the cover plate 103. Opening the cover plate 103 allows the impurities to be discharged, thus facilitating the removal of filtered impurities.
[0022] Secondly, the bottom block 112 is fixedly connected to the barrel body 101 and is located on the side of the barrel body 101 away from the rotary motor 110; the block 111 is fixedly connected to the crossbar 106 and slidably connected to the bottom block 112; the moving component is connected to the bottom block 112 and to the block 111. The right end of the bottom block 112 is hollow, and the left end of the bottom block 112 is designed with a rotating hole. The inner side of the vertical end of the block 111 is fixedly connected to the right end of the crossbar 106. The moving component drives the outer side of the horizontal end of the block 111 to move inside the bottom block 112 through the rotating hole of the bottom block 112. The moving component drives the block 111 to move on the bottom block 112. When the block 111 moves, it drives the crossbar 106 to move, thereby driving the crossbar 106 to move on the barrel body 101.
[0023] Meanwhile, the moving rod 113 is rotatably connected to the base block 112 and threadedly connected to the block 111; the moving motor 114 is fixedly connected to the base block 112, and the output shaft of the moving motor 114 is connected to the moving rod 113. The left side of the horizontal end of the block 111 is designed with an internal threaded hole, and the outer side of the moving rod 113 is designed with an external thread. The external thread of the moving rod 113 meshes with the internal threaded hole of the block 111. The left end of the moving rod 113 is connected to the output shaft of the moving motor 114 through the rotating hole of the base block 112. The moving motor 114 drives the moving rod 113 to rotate on the base block 112. When the moving rod 113 rotates, it drives the block 111 to move on the base block 112, thereby driving the block 111 to move horizontally.
[0024] Then, the adjusting block 115 is fixedly connected to the rotary motor 110 and located on the side of the rotary motor 110 near the rotary roller 109; the frame 116 is fixedly connected to the barrel 101 and slidably connected to the adjusting block 115; the driving component is connected to the frame 116, the adjusting block 115, and the barrel 101; a through hole is designed on the top right side of the adjusting block 115, and a through threaded hole is designed on the top left side of the adjusting block 115; the top right side of the adjusting block 115 is connected to... The rotary motor 110 is fixedly connected. The closed end of the frame 116 is designed with a through hole. The open end of the frame 116 is fixedly connected to the top left side of the barrel 101. The driving component drives the adjusting block 115 to move on the inside of the open end of the frame 116 through the through hole of the frame 116. The driving component drives the adjusting block 115 to move on the frame 116. The adjusting block 115 drives the rotary motor 110 to move, thereby adjusting the position and height of the rotary motor 110.
[0025] Finally, the drive rod 117 is rotatably connected to the barrel 101, threadedly connected to the adjusting block 115, and rotatably connected to the frame 116; the drive motor 118 is fixedly connected to the frame 116, the output shaft of the drive motor 118 is connected to the drive rod 117, the outer side of the drive rod 117 is designed with external threads, the external threads of the drive rod 117 engage with the through threaded hole of the adjusting block 115, the bottom end of the drive rod 117 is rotatably connected to the top left side of the barrel 101, and the top end of the drive rod 117 is connected to the output shaft of the drive motor 118 through the through hole of the frame 116. The drive motor 118 drives the drive rod 117 to rotate, and when the drive rod 117 rotates, it drives the adjusting block 115 to move on the frame 116, thereby driving the adjusting block 115 to move up and down.
[0026] When using the stirring pulp desander of this embodiment, the drive motor 118 drives the drive rod 117 to rotate. When the drive rod 117 rotates, it drives the adjusting block 115 to move on the frame 116. The adjusting block 115 drives the rotary motor 110, the rotary roller 109, and the brush 108 to move, adjusting the position and height of the brush 108. The rotary motor 110 drives the rotary roller 109 to rotate the brush 108, and the brush 108 removes impurities from the filter plate 102. After cleaning, the moving motor 114 drives the moving rod 113 to rotate on the base block 112. When the moving rod 113 rotates, it drives the block 111 to move on the base block 112. The block 111 drives the crossbar 106 to move on the barrel 101. When the crossbar 106 moves, it drives the push plate 107 to move on the filter plate 102, pushing the accumulated impurities into the box 104 and collecting them in the cover plate 103. Opening the cover plate 103 allows the impurities to be discharged, thus facilitating the discharge of filtered impurities.
[0027] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A stirring-type pulp deslagging device, comprising a tank body, characterized in that: It also includes structural components; The structural components include a filter plate, a cover plate, a housing, a return pipe, a crossbar, a push plate, a brush, a rotating roller, a rotating motor, an adjusting component, and a pushing component. The filter plate is fixedly installed on one side of the housing, the housing is fixedly installed on the side of the housing away from the filter plate, the cover plate is bolted to the side of the housing away from the housing, one end of the return pipe is connected to the housing, and the other end of the return pipe is connected to the housing, the adjusting component is connected to the housing, the rotating motor is connected to the adjusting component, the rotating roller is connected to the output shaft of the rotating motor, the brush is fixedly connected to the rotating roller and located on the side of the rotating roller closer to the filter plate, the pushing component is connected to the housing, the crossbar is slidably connected to the housing and connected to the pushing component, and the push plate is fixedly connected to the crossbar and slidably connected to the filter plate. The pushing component includes a block, a base block, and a moving part. The base block is fixedly connected to the barrel and located on the side of the barrel away from the rotary motor. The block is fixedly connected to the crossbar and slidably connected to the base block. The moving part is connected to the base block and to the block.
2. The stirred pulp deslagging device as described in claim 1, characterized in that: The moving component includes a moving rod and a moving motor. The moving rod is rotatably connected to the base block and threadedly connected to the block. The moving motor is fixedly connected to the base block, and the output shaft of the moving motor is connected to the moving rod.
3. The stirred pulp deslagging device as described in claim 1, characterized in that: The adjusting component includes an adjusting block, a frame, and a driving component. The adjusting block is fixedly connected to the rotary motor and located on the side of the rotary motor closer to the rotary roller. The frame is fixedly connected to the barrel and slidably connected to the adjusting block. The driving component is connected to the frame, the adjusting block, and the barrel.
4. The stirred pulp deslagging device as described in claim 3, characterized in that: The driving component includes a driving rod and a driving motor. The driving rod is rotatably connected to the barrel body, threadedly connected to the adjusting block, and rotatably connected to the frame. The driving motor is fixedly connected to the frame, and the output shaft of the driving motor is connected to the driving rod.
Citation Information
Patent Citations
Paper pulp slag remover
CN214362519U