Moisture removal net cleaning device for tobacco primary processing workshop
By designing a tide exhaust net cleaning device including a shell, cleaning member and suction component, the problems of uneven cleaning of the tide exhaust net and secondary blockage are solved, and uniform cleaning of the tide exhaust net and effective collection of trunk wires are achieved.
Patent Information
- Application Number
- CN202422023116.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-08-20
AI Technical Summary
In the prior art, the tide discharge net of the tobacco silk making workshop is unevenly cleaned and can easily lead to secondary blockage, affecting the tide discharge effect and the normal work of the workshop.
A tide exhaust net cleaning device for tobacco wire making workshops is designed, including a shell, cleaning member, driving component and suction component. The drive component drives the cleaning shrapnel to move back and forth along the tide exhaust net, and cooperates with the suction component to absorb the stitches to achieve uniform cleaning and collection.
The uniform cleaning of the tide discharge net is achieved, which avoids secondary clogging, improves the cleaning effect and facilitates the collection of stalks.
Smart Images

Figure CN223081082U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cleaning of moisture exhaust nets, and more specifically, to a moisture exhaust net cleaning device for a tobacco leaf primary processing workshop. Background Art
[0002] In the production process of drying cut stem in a tobacco leaf primary processing workshop, it is necessary to discharge excess hot and humid air to meet the requirements of the drying process regulations; after the cut stem is blown, it is in a loose state and floats under the action of blowing. Some small broken cut stems will float with the hot air and adhere to the moisture exhaust net under the action of the moisture exhaust negative pressure, causing blockage of the moisture exhaust screen mesh, thus affecting the moisture exhaust effect, the normal discharge of moisture, and resulting in the inability of the tobacco leaf primary processing workshop to operate normally.
[0003] In the prior art, the method of knocking the moisture exhaust net is usually adopted to clean the cut stems on the moisture exhaust net. However, due to the large vibration near the knocking point of the moisture exhaust net and the small vibration far from the knocking point, the overall cleaning effect on the moisture exhaust net is uneven, and it is difficult to collect the cut stems cleaned down, which easily causes the cut stems to block the moisture exhaust net again and further affects the cleaning effect.
[0004] In summary, how to effectively improve the cleaning effect of the moisture exhaust net, ensure the uniformity and effectiveness of the cleaning process, and at the same time effectively avoid the secondary blockage of the moisture exhaust net is an urgent problem to be solved by those skilled in the art at present. Summary of the Utility Model
[0005] In view of this, the purpose of the utility model is to provide a moisture exhaust net cleaning device for a tobacco leaf primary processing workshop, which can effectively improve the cleaning effect of the moisture exhaust net, ensure the uniformity and effectiveness of the cleaning process, and at the same time effectively avoid the secondary blockage of the moisture exhaust net.
[0006] In order to achieve the above purpose, the utility model provides the following technical solutions:
[0007] A moisture exhaust net cleaning device for a tobacco leaf primary processing workshop, comprising:
[0008] A housing arranged above the moisture exhaust net, a cleaning member is arranged on one side of the housing close to the moisture exhaust net, a cleaning elastic sheet is arranged at one end of the cleaning member away from the housing, and one end of the cleaning elastic sheet away from the cleaning member is used for abutting against the surface of the moisture exhaust net;
[0009] A driving assembly, the driving assembly is connected to the housing, and the driving assembly is used for driving the housing to reciprocate along the surface of the moisture exhaust net;
[0010] An air intake assembly is provided on the housing. The air intake assembly is used to suck cut tobacco in the air. A storage structure connected to the air intake assembly is provided inside the housing, and the storage structure stores the cut tobacco absorbed by the air intake assembly.
[0011] Preferably, a groove communicating with the storage structure is radially formed on the housing. The end of the cleaning member away from the cleaning elastic piece is slidably arranged in the groove. First guiding grooves parallel to the axis of the housing are formed on both inner walls of the groove on both sides. Activity pieces cooperating with the first guiding grooves are arranged on both sides of the cleaning member located in the groove. There are gaps between both ends of the cleaning member and both ends of the groove.
[0012] Preferably, the cleaning member includes a first base body and a second base body that are mutually attached. Cleaning elastic pieces are arranged on the sides of the first base body and the second base body away from the housing. Activity pieces are arranged on the side of the first base body away from the second base body and the side of the second base body away from the first base body. The activity pieces can slide relatively along the corresponding first guiding grooves.
[0013] Guiding columns are arranged on the sides of the first base body and the second base body away from the cleaning elastic pieces. The two guiding columns are arranged vertically and offset. A slantingly arranged constraint member is connected between the two guiding columns. Second guiding grooves are formed at both ends of the constraint member. The two second guiding grooves cooperate with the two guiding columns respectively. The guiding columns slide along the corresponding second guiding grooves. A first electric motor is fixedly arranged inside the housing, and the output shaft of the first electric motor is connected to the shaft portion of the constraint member.
[0014] Preferably, the storage structure includes a storage groove formed inside the housing and communicating with the groove. A first filter screen is arranged in the storage groove. The first filter screen divides the storage groove into a filtering part and a storage part. An air intake is formed on the side of the storage part close to the housing. A second filter screen and an air intake assembly are sequentially arranged at the air intake from inside to outside along the housing.
[0015] Preferably, the air intake assembly includes a micro air extractor, and the micro air extractor is fixedly arranged in the air intake.
[0016] Preferably, there are two first filter screens, and the two first filter screens are arranged in a V shape, and the closer ends of the two first filter screens are close to the air intake.
[0017] Preferably, a storage hopper is arranged in the storage part. A detachable structure is arranged between the storage hopper and the housing, and the detachable structure is used to realize the separation and installation between the storage hopper and the housing.
[0018] The air inlet is opened on the storage hopper.
[0019] Preferably, the detachable structure includes elastic protrusions arranged on the outer sides of both ends of the storage hopper, and clamping grooves matching with the elastic protrusions are opened in the shell at the position of the storage hopper.
[0020] Preferably, the driving assembly includes two guiding members located on both sides of the shell. Guide blocks are arranged on both sides of the shell close to the two guiding members. Each guide block is slidably and limitedly arranged in the corresponding guiding member. A screw rod is rotatably arranged in each guiding member. A threaded connection is provided between each part of the guide block located in the guiding member and the screw rod. A second electric motor is arranged at one end of each guiding member, and the rotating shaft of each second electric motor is connected to the corresponding screw rod.
[0021] Preferably, each guide block includes a transmission shaft, a movable table and a base. The base is slidably and limitedly arranged in the guiding member, and a threaded connection is provided between the base and the corresponding screw rod. The movable table is fixedly arranged on the upper part of the base. One end of the transmission shaft is rotatably connected to the movable table, and the other end of the transmission shaft is fixedly connected to one side of the shell;
[0022] It further includes a rotating assembly. The rotating assembly is used to rotate the shell to adjust the included angle between the cleaning elastic sheet and the moisture exhaust net. The rotating assembly includes a third electric motor fixedly arranged on one side of one of the movable tables, and the rotating shaft of the third electric motor is connected to one of the transmission shafts.
[0023] The beneficial effect of the moisture exhaust net cleaning device for the tobacco leaf making workshop provided by the utility model is as follows: The driving assembly drives the cleaning elastic sheet to reciprocate along the moisture exhaust net to bounce the cut tobacco filaments on the moisture exhaust net, and then cooperates with the air suction assembly to absorb the cut tobacco filaments in the air into the storage structure in the shell, completing the cleaning and collection of the cut tobacco filaments on the moisture exhaust net, effectively realizing the uniform cleaning of the surface of the moisture exhaust net, and effectively avoiding the secondary blockage of the moisture exhaust net during the cleaning process.
[0024] In the further solution provided by this application, at least one of the following beneficial technical effects can also be achieved:
[0025] The first electric motor can drive the restraint member to rotate along the shaft portion, so as to guide the relative movement of the two guide posts in the two second guide grooves, so as to effectively adjust the staggered position between the first base body and the second base body, so as to effectively adjust the overall width of the cleaning member, and further ensure that the device can be adapted to moisture exhaust nets of different sizes;
[0026] With the detachable structure between the storage hopper and the housing, when it is necessary to discharge the cut tobacco in the housing for cleaning, the housing can be rotated to a position where the storage hopper is located below the housing, and the storage hopper can be pulled to make the elastic protrusions on both sides thereof disengage from the clamping grooves, thereby completing the separation between the storage hopper and the housing, facilitating the processing of the cut tobacco in the housing;
[0027] The third electric motor is used to drive the transmission shaft to rotate, and then the cleaning elastic piece located on the housing can be driven to rotate along the axial part of the housing, so as to realize the adjustment of the angle between the cleaning elastic piece and the moisture exhaust net, thereby facilitating the adaptation to moisture exhaust nets of different thicknesses and further improving the cleaning effect of the device on the moisture exhaust net. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.
[0029] Figure 1 It is a schematic diagram of the overall structure of the moisture exhaust net cleaning device in the present embodiment from the first perspective;
[0030] Figure 2 It is a longitudinal sectional view of the housing structure in the present embodiment;
[0031] Figure 3 It is a schematic diagram of the overall structure of the cleaning member in the present embodiment;
[0032] Figure 4 It is a schematic diagram of the cooperation between the constraint member and the guide post in the present embodiment;
[0033] Figure 5 It is a longitudinal sectional view at the guide member in the present embodiment.
[0034] Figures 1-5 Among them, the reference numerals include:
[0035] 110, moisture exhaust net; 11, cleaning member; 12, cleaning elastic piece; 13, housing; 14, transmission shaft; 15, movable table; 16, base; 17, guide member; 18, screw; 19, second electric motor; 21, groove; 2112, first guide groove; 212, first base; 213, second base; 214, movable piece; 22, constraint member; 2212, second guide groove; 23, guide post; 24, first electric motor; 25, third electric motor; 26, first filter screen; 27, elastic protrusion; 28, storage hopper; 29, second filter screen; 30, micro air extractor. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0036] Next, in conjunction with the accompanying drawings in the embodiments of the present utility model, the technical solutions in the embodiments of the present utility model will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without making creative efforts belong to the scope of protection of the present utility model.
[0037] Unless otherwise defined, the technical terms or scientific terms used in the disclosure of this application should have the ordinary meaning understood by those of ordinary skill in the field to which the present utility model belongs. The "first", "second" and similar terms used in the present utility model do not indicate any order, quantity or importance. "Connection" or "connected" and similar terms are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "Up", "down", "left", "right", etc. are only used to represent relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship can also change accordingly. An embodiment of this application discloses a cleaning device for a moisture exhaust net in a tobacco leaf primary processing workshop.
[0038] The core of the present utility model is to provide a cleaning device for a moisture exhaust net in a tobacco leaf primary processing workshop.
[0039] Please refer to Figures 1 to 5 , in which Figure 1 is a schematic diagram of the overall structure of the moisture exhaust net cleaning device, Figure 2 is a longitudinal sectional view of the housing structure, Figure 3 is a schematic diagram of the overall structure of the cleaning member, Figure 4 is a schematic diagram of the cooperation between the restraint member and the guide post, Figure 5 is a longitudinal sectional view at the guide member.
[0040] The cleaning device for a moisture exhaust net in a tobacco leaf primary processing workshop provided by the present utility model includes a housing 13 disposed above the moisture exhaust net 110 and a driving assembly located beside the moisture exhaust net 110. A cleaning assembly is disposed on one side of the housing 13 close to the moisture exhaust net 110, and the cleaning assembly is used to clean the cut tobacco on the moisture exhaust net 110. An air suction assembly is also disposed on the housing 13, and the air suction assembly is used to suck the cut tobacco in the air into the housing 13. At the same time, a storage structure is provided inside the housing 13, and the storage structure is used to collect the sucked cut tobacco. The driving assembly is used to drive the housing 13 to reciprocate along the moisture exhaust net 110, and cooperate with the cleaning assembly to clean the moisture exhaust net 110 evenly.
[0041] Specifically, the cleaning component includes a cleaning member 11 and a cleaning elastic piece 12. The cleaning member 11 is arranged on one side of the housing close to the moisture exhaust net 110, and the cleaning elastic piece 12 is arranged at one end of the cleaning member 11 away from the housing 13. One end of the cleaning elastic piece 12 away from the cleaning member 11 abuts against the surface of the moisture exhaust net 110.
[0042] During the process of cleaning the moisture exhaust net 110, one end of the cleaning elastic piece 12 away from the housing 13 is abutted against the surface of the moisture exhaust net 110. Then, the driving component is controlled to drive the cleaning elastic piece 12 to reciprocate along the moisture exhaust net 110. During the process that the cleaning elastic piece 12 presses on the surface of the moisture exhaust net 110 and moves, the cleaning elastic piece 12 is extruded by the moisture exhaust net 110 and continuously impacts the surface of the moisture exhaust net 110 due to the movement. As a result, the cut tobacco filaments located on the surface of the moisture exhaust net 110 are bounced up. In this embodiment, the cleaning elastic piece 12 is composed of multiple elastic pieces arranged in parallel on the cleaning member 11, and the ends of the multiple elastic pieces are flush with each other. During the continuous movement of the cleaning elastic piece 12, the suction component is controlled to suck the cut tobacco filaments bounced up in the air and suck them into the storage structure. The storage structure can collect the cut tobacco filaments sucked into the housing 13. Optionally, the storage structure and the housing 13 can also be set as a detachable connection structure, so as to facilitate the cleaning of the cut tobacco filaments in the housing.
[0043] The above moisture exhaust net cleaning device effectively solves the problem of uneven cleaning of the surface of the moisture exhaust net 110. The multiple elastic pieces arranged side by side can better bounce up the cut tobacco filaments on the same horizontal plane of the moisture exhaust net 110, so as to facilitate the subsequent suction of the suction component. At the same time, the above moisture exhaust net cleaning device can also effectively collect the cut tobacco filaments cleaned down, and use the suction component to suck the cut tobacco filaments in the air into the storage structure, thus effectively avoiding the secondary blockage of the moisture exhaust net 110 during the cleaning process.
[0044] The moisture exhaust net cleaning device provided by the present utility model for the tobacco leaf processing workshop will be introduced in more detail below with reference to the accompanying drawings and specific embodiments.
[0045] In a specific embodiment, referring to Figure 2 and Figure 3 , a groove 21 communicating with the storage structure is formed on the housing 13. The side wall of the groove 21 encloses a rectangular cavity and cooperates with the cleaning member 11. One end of the cleaning member 11 away from the cleaning elastic piece 12 is slidably arranged in the groove 21. First guiding grooves 2112 parallel to the axis of the housing 13 are formed on both inner walls of the groove 21 on both sides. Moving pieces 214 cooperating with the first guiding grooves 2112 are arranged on both sides of the cleaning member 11 located in the groove 21. In order to facilitate the suction component to suck the cut tobacco filaments in the air into the storage structure, there are gaps between both ends of the cleaning member 11 and both ends of the groove 21.
[0046] The groove 21 facilitates the arrangement of the cleaning member 11 inside the housing 13, so that it can move along with the housing 13. And through the cooperation of the first guiding groove 2112 and the movable piece 214, the cleaning member 11 is clamped inside the housing 13, effectively enhancing the stability between the cleaning member 11 and the housing 13. And through the setting of the gap, it effectively facilitates the suction component on the housing to suck the cut tobacco in the air into the storage structure of the housing, effectively realizing the linkage between various structural components.
[0047] Based on any one of the above embodiments, refer to Figure 3 and Figure 4 , the cleaning member 11 includes a first base body 212 and a second base body 213 that are arranged in mutual contact. On the sides of the first base body 212 and the second base body 213 away from the housing 13, cleaning elastic pieces 12 are provided. As described above, the cleaning elastic pieces 12 are composed of a plurality of elastic pieces arranged in parallel on the first base body 212 and the second base body 213, and the ends between the plurality of elastic pieces are flush. On the side of the first base body 212 away from the second base body 213 and on the side of the second base body 213 away from the first base body 212, movable pieces 214 are provided, and the movable pieces 214 can slide relatively along the corresponding first guiding grooves 2112. On the sides of the first base body 212 and the second base body 213 away from the cleaning elastic pieces 12, guiding columns 23 are provided. The two guiding columns 23 are arranged vertically and offset, that is, one is high and the other is low and symmetrically arranged with respect to the shaft portion of the restraint member 22. An inclined restraint member 22 is connected between the two guiding columns 23. Second guiding grooves 2212 are opened at both ends of the restraint member 22, and the two second guiding grooves 2212 are respectively matched with the two guiding columns 23, and the guiding columns 23 slide along the corresponding second guiding grooves 2212. A first electric motor 24 is fixedly arranged inside the housing 13, and the output shaft of the first electric motor 24 is connected to the shaft portion of the restraint member 22. The first electric motor 24 can be fixedly connected to the housing 13 through a connecting rod (not shown in the figure) inside the housing 13.
[0048] By controlling the first electric motor 24 to drive the restraint member 22 to rotate along the axial portion of the restraint member 22, the rotation of the restraint member 22 will guide the two guide posts 23 to move relative to each other in the two second guide grooves 2212, thereby driving a relative displacement between the first base body 212 and the second base body 213, effectively adjusting the staggered position between the first base body 212 and the second base body 213, and then realizing the adjustment of the overall width of the cleaning member 11, so as to ensure that the moisture exhaust net cleaning device can be adapted to moisture exhaust nets 110 of different widths. When encountering moisture exhaust nets 110 of different sizes, by controlling the first electric motor 24 for adjustment, the two elastic pieces located at the outer ends of the first base body 212 and the second base body 213 respectively abut against both ends of the inner wall of the moisture exhaust net 110, so as to be adapted to moisture exhaust nets 110 of different sizes. And after the first base body 212 and the second base body 213 are staggered and unfolded driven by the first electric motor 24, there will be no blockage at both ends of the cleaning member 11, and there are gaps between both ends of the cleaning member 11 and both ends of the groove 21, so that the normal operation of the air suction assembly will not be affected.
[0049] Based on any one of the above embodiments, referring to Figure 2 , the storage structure includes a storage groove (not shown in the figure, and the structure surrounded by its inner wall is cylindrical) opened in the housing 13 and communicating with the groove 21. A first filter screen 26 is arranged in the storage groove. The first filter screen 26 divides the storage groove into a filtering part and a storage part. The storage part is located below the first filter screen 26. An air suction port is opened on one side of the storage part close to the housing 13. A second filter screen 29 and an air suction assembly are sequentially arranged at the air suction port along the housing 13 from the inside to the outside. The cut tobacco can pass through the first filter screen 26, but will be blocked by the second filter screen 29, so that the cut tobacco is stored in the storage part of the housing 13. Control the air suction assembly to suck the cut tobacco in the air into the housing 13 through the gap between the cleaning member 11 and the housing 13. The cut tobacco passes through the first filter screen 26 in the housing 13 and is blocked by the second filter screen 29, so that the cut tobacco is temporarily stored between the first filter screen 26 and the second filter screen 29, realizing the temporary storage of the cut tobacco cleaned, and effectively avoiding the secondary blockage of the moisture exhaust net 110 during the cleaning process.
[0050] Further, two first filter screens 26 can be provided, and the two first filter screens 26 are arranged in a V-shaped manner in the housing 13, and the closer ends of the two first filter screens 26 are close to the air suction port. With this structure, it is more convenient for the air suction assembly to quickly pass through the first filter screen 26 when sucking the cut tobacco.
[0051] The housing 13 is provided with a notch at the storage part, and a storage hopper 28 is arranged at the notch of the housing 13. The suction component absorbs the cut tobacco into the storage hopper 28. A detachable structure is arranged between the storage hopper 28 and the housing 13, and the detachable structure is used to realize the separation and installation between the storage hopper 28 and the housing 13. Furthermore, the suction port is penetrated and opened in the middle of the storage hopper 28.
[0052] By using the detachable structure, the separation between the storage hopper 28 and the housing 13 can be realized, so that it is convenient to separate the cut tobacco in the storage hopper 28 from the housing 13 by disassembling the storage hopper 28, and then it is convenient to clean the cut tobacco in the storage hopper 28. After the cleaning is completed, the storage hopper 28 is installed on the housing 13, and the overall operation is convenient.
[0053] In a specific embodiment provided by the present application, the suction component can adopt a micro air pump 30. The micro air pump 30 is fixedly arranged in the suction port, and the micro air pump 30 can better adapt to the suction port, which is convenient for sucking the cut tobacco in the air.
[0054] On the basis of any of the above embodiments, refer to Figure 2 The detachable structure includes elastic protrusions 27 arranged on the outer sides of both ends of the storage hopper 28, and clamping grooves matched with the elastic protrusions 27 are arranged in the housing 13 at the position of the storage hopper 28. When it is necessary to discharge the cut tobacco cleaned in the housing 13, the storage hopper 28 is pulled so that the elastic protrusions 27 on both sides of it are disengaged from the clamping grooves, and then the separation between the storage hopper 28 and the housing 13 is completed, which is convenient for processing the cut tobacco in the housing 13.
[0055] On the basis of any of the above embodiments, refer to Figure 1 and Figure 5 The driving component includes two guiding members 17 arranged on both sides of the housing 13. A screw rod 18 is rotatably connected in each guiding member 17, and a guiding block is slidably and limit-connected in each guiding member 17. Each guiding block is slidably and limit-arranged in the corresponding guiding member 17. A screw rod 18 is rotatably arranged in each guiding member 17. The part of each guiding block located in the guiding member 17 is threadedly connected with the screw rod 18. A second electric motor 19 is arranged at one end of each guiding member 17, and the rotating shaft of each second electric motor 19 is connected to the corresponding screw rod 18.
[0056] By controlling the two second electric motors 19 to synchronously drive the corresponding screw rods 18 to rotate, the guiding blocks threadedly connected with the screw rods 18 are driven to move along the guiding members 17, so as to drive the housing 13 to move along the guiding members 17. By changing the forward and reverse rotation of the second electric motors 19, the reciprocating movement of the housing 13 is realized, effectively improving the cleaning effect and cleaning uniformity of the moisture exhaust net cleaning device.
[0057] Optionally, the guiding block may include a movable table 15 and a base table 16. The base table 16 is slidably limited within the guiding member 17, and is threadedly connected to the screw 18. By rotating the screw 18, the base table 16 can be driven to slide along the guiding member 17. The movable table 15 is fixedly arranged on the upper part of the base table 16, and drive shafts 14 are arranged at both ends of the housing 13. Each drive shaft 14 is rotatably connected to the corresponding movable table 15. That is, an installation hole for inserting the drive shaft 14 is provided on the movable table 15. One end of the drive shaft 14 away from the housing 13 is inserted into the installation hole, and an annular slider and an annular chute that cooperate with each other are provided on the drive shaft 14 and the installation hole. Thus, the housing 13 can rotate along the axial portion of the drive shaft 14. When disassembling the receiving hopper 28 within the housing 13, the housing 13 can be rotated to a position where the receiving hopper 28 is located below the housing 13 before disassembly, so that as much cut tobacco within the housing 13 as possible is located within the receiving hopper 28, making the cleaning more thorough.
[0058] Based on any one of the above embodiments, a rotation assembly for driving the housing 13 to rotate may be provided. The rotation assembly includes a third electric motor 25 arranged on one of the above movable tables 15. The rotating shaft of the third electric motor 25 is coaxially and fixedly arranged with the corresponding drive shaft 14 on the movable table 15. By controlling the third electric motor 25, the housing 13 can be effectively driven to rotate, thereby adjusting the angle between the cleaning elastic piece 12 and the moisture exhaust net 110, further improving the adaptability of the cleaning device. And during the process of disassembling the receiving hopper 28, the housing 13 can be rotated to a position where the receiving hopper 28 is located below the housing 13 by controlling the third electric motor 25 before disassembly.
[0059] Optionally, the housing 13 may be of a cylindrical structure. Thus, the groove 21 is opened along the radial direction of the housing 13. The cylindrical structure can better facilitate the third electric motor 25 to drive the housing 13 to rotate, and better facilitate the adjustment of the angle of the housing 13, avoiding interference with other components.
[0060] Based on any one of the above embodiments, horizontal mounting plates (not shown in the figure) may be fixedly welded to one end of each of the two guiding members 17, and through slots for installing screws are provided on the mounting plates. When installing the guiding members 17, place them on both sides of the moisture exhaust net 110 and fix them with screws, facilitating the fixed arrangement of the two guiding members 17 on both sides of the moisture exhaust net 110, thereby facilitating the operation of the moisture exhaust net cleaning device.
[0061] It should be noted in this embodiment that the first electric motor 24, the second electric motor 19, the third electric motor 25, and the suction assembly are all electrically connected to a controller, and the controller is electrically connected to an external power supply.
[0062] The implementation principle of a moisture exhaust net cleaning device for a tobacco leaf processing workshop in an embodiment of the present application is as follows: Place two guiding members 17 on both sides of the moisture exhaust net 110, such that the housing 13 is located above the moisture exhaust net 110, and fix the positions of the guiding members 17 with screws.
[0063] Control the first electric motor 24 to drive the restraint member 22 to rotate, so that the first base body 212 and the second base body 213 are staggered, thereby adjusting the width of the entire cleaning member 11 to adapt to the moisture exhaust net 110 to be cleaned.
[0064] Control the third electric motor 25 to drive the housing 13 to rotate, thereby adjusting the angle between the cleaning elastic sheet 12 and the moisture exhaust net 110, and then adapting to the moisture exhaust net 110 to be cleaned.
[0065] Control the second electric motor 19 to drive the screw rod 18 to rotate, thereby driving the housing 13 and the cleaning elastic sheet 12 to reciprocally move along the moisture exhaust net 110, and then use it to bounce the cut tobacco filaments on the moisture exhaust net 110. In cooperation with the micro air extractor 30, absorb the cut tobacco filaments in the air into the housing 13. The cut tobacco filaments in the housing 13 enter the storage hopper 28 through the first filter screen 26 and are blocked by the second filter screen 29 to prevent them from leaving the housing 13.
[0066] When it is necessary to clean the cut tobacco filaments in the storage hopper 28, control the third electric motor 25 to drive the housing 13 to rotate, so that the storage hopper 28 is located below the housing 13. Pull out the storage hopper 28 to separate the elastic protrusions 27 from the clamping grooves, realizing the separation between the storage hopper 28 and the housing 13, and completing the cleaning of the cut tobacco filaments.
[0067] The above has introduced in detail a moisture exhaust net cleaning device for a tobacco leaf processing workshop provided by the present utility model. Specific examples are used in this article to elaborate on the principle and implementation manner of the present utility model. The description of the above embodiments is only used to help understand the method and its core idea of the present utility model. It should be noted that for those of ordinary skill in the art in this technical field, without departing from the principle of the present utility model, several improvements and modifications can still be made to the present utility model, and these improvements and modifications also fall within the protection scope of the present utility model.
Claims
1. A moisture exhaust net cleaning device for a tobacco silk processing workshop, characterized in that Including: A housing disposed above the moisture exhaust net. A cleaning member is provided on one side of the housing close to the moisture exhaust net. A cleaning elastic piece is provided at one end of the cleaning member away from the housing, and one end of the cleaning elastic piece away from the cleaning member is used to abut against the surface of the moisture exhaust net. A driving assembly, which is connected to the housing and is used to drive the housing to reciprocate along the surface of the moisture exhaust net. An air suction assembly, which is provided on the housing and is used to suck the cut tobacco in the air. A storage structure connected to the air suction assembly is provided in the housing, and the storage structure stores the cut tobacco absorbed by the air suction assembly.
2. The moisture exhaust net cleaning device for a tobacco leaf primary processing workshop according to claim 1, wherein, A groove communicating with the storage structure is radially formed on the housing. One end of the cleaning member away from the cleaning elastic piece is slidably disposed in the groove. First guiding grooves parallel to the axis of the housing are formed on both inner walls of the groove on both sides. Activity pieces cooperating with the first guiding grooves are provided on both sides of the cleaning member located in the groove, and there are gaps between both ends of the cleaning member and both ends of the groove.
3. The moisture exhaust net cleaning device for a tobacco leaf primary processing workshop according to claim 2, wherein, The cleaning member includes a first base body and a second base body which are mutually attached. Cleaning elastic pieces are provided on one side of the first base body and the second base body away from the housing. Activity pieces are provided on one side of the first base body away from the second base body and one side of the second base body away from the first base body, and the activity pieces can slide relatively along the corresponding first guiding grooves. Guide columns are provided on one side of the first base body and the second base body away from the cleaning elastic piece. The two guide columns are arranged vertically offset. A slantingly arranged restraint member is connected between the two guide columns. Second guiding grooves are formed at both ends of the restraint member, and the two second guiding grooves respectively cooperate with the two guide columns. The guide columns slide along the corresponding second guiding grooves. A first electric motor is fixedly provided in the housing, and the output shaft of the first electric motor is connected to the shaft portion of the restraint member.
4. The moisture exhaust net cleaning device for a tobacco primary processing workshop according to claim 2, wherein, The storage structure includes a storage groove formed in the housing and communicating with the groove. A first filter screen is provided in the storage groove. The first filter screen divides the storage groove into a filtering portion and a storage portion. An air suction port is formed on one side of the storage portion close to the housing. A second filter screen and an air suction assembly are sequentially arranged at the air suction port along the housing from inside to outside.
5. A moisture exhaust net cleaning device for a tobacco leaf primary processing workshop according to claim 4, characterized in that, The air suction assembly includes a micro air extractor, and the micro air extractor is fixedly provided in the air suction port.
6. The moisture exhaust net cleaning device for a tobacco leaf primary processing workshop according to claim 4, characterized in that, There are two first filter screens, and the two first filter screens are arranged in a V shape, and the closer ends of the two first filter screens are close to the air suction port.
7. A moisture exhaust net cleaning device for a tobacco primary processing workshop according to claim 6, characterized in that, A storage hopper is provided in the storage portion. A detachable structure is provided between the storage hopper and the housing, and the detachable structure is used to realize the separation and installation between the storage hopper and the housing. The air suction port is formed on the storage hopper.
8. A moisture exhaust net cleaning device for a tobacco leaf primary processing workshop according to claim 7, characterized in that The detachable structure includes elastic protrusions provided on the outer sides of both ends of the storage hopper, and clamping grooves cooperating with the elastic protrusions are formed in the housing at the position of the storage hopper.
9. A moisture exhaust net cleaning device for a tobacco primary processing workshop according to any one of claims 1-8, characterized in that, The driving assembly includes two guiding members located on both sides of the housing. Guiding blocks are provided on both sides of the housing close to the two guiding members. Each guiding block is slidably and limitedly arranged in the corresponding guiding member. A screw rod is rotatably arranged in each guiding member. The part of each guiding block located in the guiding member is threadedly connected to the screw rod. A second electric motor is provided at one end of each guiding member, and the rotating shaft of each second electric motor is connected to the corresponding screw rod.
10. A moisture exhaust net cleaning device for a tobacco primary processing workshop according to claim 9, characterized in that, Each guiding block includes a transmission shaft, a movable table and a base. The base is slidably and limitedly arranged in the guiding member, and the base is threadedly connected to the corresponding screw rod. The movable table is fixedly arranged on the upper part of the base. One end of the transmission shaft is rotatably connected to the movable table, and the other end of the transmission shaft is fixedly connected to one side of the housing. It further includes a rotating assembly. The rotating assembly is used to rotate the housing to adjust the angle between the cleaning elastic piece and the moisture exhaust net. The rotating assembly includes a third electric motor fixedly arranged on one side of one movable table, and the rotating shaft of the third electric motor is connected to one transmission shaft.