Medicinal material surface soil cleaning device
By integrating components such as triangular force-bearing blocks and rectangular drive frames, the herb cleaning device solves the problem of disassembling and cleaning the barrier net components, achieving efficient and convenient cleaning of the barrier net components and improving operational convenience and cleaning efficiency.
Patent Information
- Application Number
- CN202422862981.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-23
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-23
AI Technical Summary
Existing medicinal herb cleaning devices require the filter screen to be disassembled and removed when cleaning the screen components, which is cumbersome and affects cleaning efficiency.
A device for cleaning mud from the surface of medicinal materials was designed. It integrates components such as a triangular force block, a rectangular drive frame, a vertical sliding shaft, and an I-beam force transmission frame. The continuous up-and-down sliding impact of the load-bearing barrier component is achieved through the reciprocating sliding of the longitudinal drive rod, and the cleaning is performed directly on the cleaning device, eliminating the need for disassembly.
It enables efficient and convenient cleaning of the load-bearing netting components, improves operational convenience and cleaning efficiency, and reduces the labor intensity of staff.
Smart Images

Figure CN223518100U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medicinal material cleaning technical field especially relates to a medicinal material surface soil cleaning device. BACKGROUND
[0002] Medicinal material surface soil cleaning device refers to a kind of equipment specially used for cleaning medicinal material surface soil.This device is usually designed to improve cleaning efficiency, ensure cleaning effect and reduce the complexity and labor intensity of manual operation.
[0003] The existing medicinal material cleaning device is generally provided with a screen component for loading and placing medicinal materials and draining cleaning water, but it usually lacks a cleaning mechanism for directly cleaning the screen component, which makes it necessary to disassemble and remove the screen from the device for cleaning, causing inconvenience and difficulty in operation and indirectly reducing the cleaning efficiency of the screen. UTILITY MODEL CONTENTS
[0004] Therefore, the utility model provides a medicinal material surface soil cleaning device to solve the problem of inconvenience and difficulty in operation when cleaning the screen component.
[0005] The technical scheme of the utility model is as follows: a medicinal material surface soil cleaning device, specifically comprising: a cleaning tank, two supports are symmetrically welded at the bottom of the cleaning tank on both sides;
[0006] A rectangular mounting frame is welded at the eaves position of the opening at the bottom of the cleaning tank, and a load-bearing screen component is installed in the opening at the bottom of the cleaning tank, which is composed of a peripheral rectangular retaining frame and a metal screen covering the inside of the rectangular retaining frame.
[0007] A longitudinal drive rod is installed below the cleaning tank and slides horizontally, the first end of the longitudinal drive rod is fixedly installed with a vertically arranged rectangular drive frame, which reciprocally slides with the longitudinal drive rod, and the top end of the rectangular drive frame is in abutting contact with the inclined surface of the row of triangular stress blocks in sequence.
[0008] A T-shaped drive rod is installed on one short side wall of the cleaning tank and slides vertically, and an inclined connecting rod is rotatably connected between the bottom end of the T-shaped drive rod and the tail end of the longitudinal drive rod.
[0009] Further,
[0010] Six-pronged cross support shafts are welded at the middle positions of the lower part of the cleaning tank, and two shaft sleeves are welded at the head end and the position deviated from the middle part of the longitudinal driving rod, the rectangular driving frame is fixedly welded with the shaft sleeve at the head end, and the two shaft sleeves are in sliding fit with the six-pronged cross support shafts.
[0011] Further,
[0012] A guide wheel is rotatably sleeved on the top end side shaft of the rectangular driving frame, and the top end of the rectangular driving frame is in abutting contact with the inclined surface of the triangular force block through the guide wheel.
[0013] Further,
[0014] A vertically arranged rod sleeve is welded at the middle position of a short side wall of the cleaning tank, and the vertical rod section of the T-shaped driving rod is in penetrating sliding fit with the rod sleeve.
[0015] Further,
[0016] An L-shaped vertical support rod is fastened at the middle position of the top end part of a long side wall of the cleaning tank through bolts, an inverted and longitudinally supported N-shaped water guide pipe is welded at the top end of the L-shaped vertical support rod, a cleaning spray head is screw-mounted at the head end of the N-shaped water guide pipe, and the cleaning spray head is centrally arranged above the cleaning tank.
[0017] Further,
[0018] A valve is mounted on the N-shaped water guide pipe, and the tail end of the N-shaped water guide pipe is connected to an external pressurized water source.
[0019] Further,
[0020] Two longitudinally arranged plug shafts are symmetrically mounted on the longitudinal support side rods of the I-shaped force transmission frame.
[0021] Two positioning ear plates are symmetrically welded on the end parts of the longitudinal support side rods of the I-shaped force transmission frame, the plug shafts are in penetrating sliding fit with the two positioning ear plates on the corresponding side through spring pushing, and the head end part of the plug shaft is in penetrating plug-in fit with the bottom end part of the vertical sliding shaft.
[0022] The medicine material surface soil cleaning device has the following beneficial effects:
[0023] One, through the power transmission of one row of triangular force blocks and rectangular driving frames and the cooperation of springs on four vertical sliding shafts, only the repeated and simple action of reciprocating sliding the longitudinal driving rod can drive the continuous up-down sliding impact of the bearing screen component, and the metal screen is efficiently and conveniently vibrated and cleaned; the continuous up-down impact action of the bearing screen component driven to implement can make the blocked impurities on the metal screen vibrate at high frequency and fall off, and the metal screen is more thoroughly and effectively cleaned.
[0024] The cleaning mechanism of the bearing and blocking net part is directly integrated on the cleaning device body, which can directly clean the bearing and blocking net part on the cleaning device without disassembling the bearing and blocking net part, compared with the prior art, the cleaning of the bearing and blocking net part can be directly implemented without disassembling the bearing and blocking net part from the cleaning device, the operation is convenient, and the cleaning operation efficiency of the bearing and blocking net part is indirectly improved.
[0025] The T-shaped driving rod has a certain supporting height, the top end extends to the top end of the cleaning tank, and is slidingly arranged in the open space outside the cleaning tank, which facilitates the staff to directly hold the driving T-shaped driving rod in a standing posture in the open space outside the cleaning tank to implement vibration cleaning of the bearing and blocking net part, compared with the conventional cleaning device without the T-shaped driving rod and the linkage heightening auxiliary driving mechanism, the staff can hold the driving T-shaped driving rod in the space at the bottom of the cleaning tank without bending over, and the vibration cleaning of the bearing and blocking net part is implemented, the operation is convenient, and the cleaning operation efficiency of the bearing and blocking net part is indirectly improved. BRIEF DESCRIPTION OF DRAWINGS
[0026] In order to more clearly illustrate the technical scheme of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.
[0027] The drawings described below only relate to some embodiments of the present application, and are not a limitation of the present application.
[0028] In the drawings:
[0029] Figure 1 The overall structure schematic diagram of the present application is shown;
[0030] Figure 2 The overall bottom side structure schematic diagram of the present application is shown;
[0031] Figure 3 The bearing and blocking net part disassembled state schematic diagram of the present application is shown;
[0032] Figure 4 The bearing and blocking net part bottom side structure schematic diagram of the present application is shown;
[0033] Figure 5 The disassembled state schematic diagram of the I-shaped force transmission frame of the present application is shown;
[0034] Figure 6 The disassembled state bottom side structure schematic diagram of the present application is shown.
[0035] List of reference signs:
[0036] 1, cleaning box; 101, L-shaped vertical support rod; 102, T-shaped drive rod; 103, rod sleeve; 104, connecting rod; 105, six-rib cross brace shaft; 106, bracket; 107, rectangular mounting frame;
[0037] 2, load blocking net component; 201, vertical sliding shaft;
[0038] 3, U-shaped water guide pipe;
[0039] 4, cleaning nozzle;
[0040] 5, longitudinal drive rod; 501, rectangular drive frame; 502, shaft sleeve;
[0041] 6, I-shaped force transmission frame; 601, insertion shaft; 6011, push plate; 602, triangular stress block; 603, positioning ear plate. DETAILED DESCRIPTION
[0042] In order to make the purpose, technical scheme and advantages of the present application more clear, the technical scheme of the present application will be described clearly and completely below in combination with the drawings of the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the described embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0043] Please refer to Figures 1 to 6 ; Embodiment one:
[0044] The utility model proposes a medicinal material surface soil cleaning device, include: cleaning box 1, the bottom both sides position symmetry of cleaning box 1 is welded with two supports 106 at two places;
[0045] The eaves position of the opening at the bottom of the cleaning box 1 is welded with a rectangular mounting frame 107, and a load blocking net component 2 is installed in the opening at the bottom of the cleaning box 1. The load blocking net component 2 is composed of a peripheral rectangular retaining frame and a metal blocking net arranged inside the rectangular retaining frame. Four vertical sliding shafts 201 are symmetrically welded to the bottom of the rectangular retaining frame. The four vertical sliding shafts 201 are in sliding fit with the rectangular mounting frame 107 through spring pushing. Under normal circumstances, the top end of the rectangular retaining frame abuts against the rectangular mounting frame 107. A I-shaped force transmission frame 6 is fixedly installed between the bottom ends of the four vertical sliding shafts 201. A row of triangular stress blocks 602 are welded to the middle section of the cross brace of the I-shaped force transmission frame 6.
[0046] The lower part of the cleaning box 1 is provided with a transversely sliding longitudinal driving rod 5, the front end of the longitudinal driving rod 5 is fixedly provided with a vertically arranged rectangular driving frame 501, the top end of the rectangular driving frame 501 is in turn in abutting contact with the inclined surface of a row of triangular stress blocks 602;
[0047] Through the inclined surface guiding principle of the row of triangular stress blocks 602, the reciprocating sliding longitudinal driving rod 5 and the rectangular driving frame 501 can push and drive the I-shaped force transmission frame 6 and the bearing screen component 2 to compress the springs on the four vertically arranged slide shafts 201 to slide upward, and when the rectangular driving frame 501 slides to the outside of the outermost triangular stress block 602 and the interval space between every two adjacent triangular stress blocks 602 and is separated from the triangular stress blocks 602, the bearing screen component 2 loses the upward pushing and retaining force from the rectangular driving frame 501 and is automatically bounced downward by the springs on the four vertically arranged slide shafts 201 to impact the rectangular mounting frame 107, thereby implementing vibration cleaning of the impurities blocked on the metal screen, and through the power transmission of the row of triangular stress blocks 602 and the rectangular driving frame 501 and the cooperation of the springs on the four vertically arranged slide shafts 201, only the repeated and simple action of reciprocating sliding the longitudinal driving rod 5 can drive the bearing screen component 2 to continuously slide upward and downward to efficiently and conveniently implement vibration cleaning of the metal screen; the continuous upward and downward impact action of the bearing screen component 2 driven to implement can vibrate and fall off the impurities blocked on the metal screen, thereby implementing relatively thorough and effective cleaning of the metal screen.
[0048] The four vertically arranged slide shafts 201, the I-shaped force transmission frame 6, the row of triangular stress blocks 602, the rectangular driving frame 501 and the longitudinal driving rod 5 are directly integrated on the cleaning device body as the cleaning mechanism of the bearing screen component 2, which can directly implement cleaning of the bearing screen component 2 on the cleaning device without disassembling and removing the bearing screen component 2, thereby avoiding the trouble of disassembling and removing the bearing screen component 2 from the cleaning device to implement cleaning, being convenient to operate and use, and being helpful to indirectly improving the cleaning operation efficiency of the bearing screen component 2;
[0049] A T-shaped driving rod 102 vertically sliding is installed on a short side wall of the cleaning box 1, and an inclined connecting rod 104 is rotationally connected between the bottom end of the T-shaped driving rod 102 and the tail end of the longitudinal driving rod 5;
[0050] The T-shaped driving rod 102, the connecting rod 104 and the longitudinal driving rod 5 are jointly connected to form a crank slider mechanism, and the up-and-down sliding of the T-shaped driving rod 102 can drive the longitudinal driving rod 5 to reciprocatingly slide, thereby providing the driving force for the vibration cleaning of the bearing barrier net part 2; the T-shaped driving rod 102 has a certain supporting height, the top end extends to the top end of the cleaning tank 1, and is slidingly arranged in the open space outside the cleaning tank 1, which facilitates the staff to directly stand in the open space outside the cleaning tank 1 to hold the driving T-shaped driving rod 102 to implement the vibration cleaning of the bearing barrier net part 2. Compared with the conventional cleaning device without the T-shaped driving rod 102, the connecting rod 104 and other heightening auxiliary driving mechanisms, the staff can be saved from the trouble of bending over to hold the driving T-shaped driving rod 102 in the occluded space at the bottom of the cleaning tank 1 to implement the vibration cleaning of the bearing barrier net part 2, and the operation and use are convenient, which is helpful to further indirectly improve the cleaning operation efficiency of the bearing barrier net part 2.
[0051] Preferably,
[0052] Six-pronged cross bracing shafts 105 are welded at the lower middle positions of the cleaning tank 1, and two shaft sleeves 502 are welded at the head end and the position deviated from the middle section of the longitudinal driving rod 5, the rectangular driving frame 501 and the shaft sleeve 502 at the head end are welded and fixed together, and the two shaft sleeves 502 are slidingly matched with the six-pronged cross bracing shafts 105.
[0053] Preferably,
[0054] A guide wheel is rotatably sleeved on the top end side shaft of the rectangular driving frame 501, and the top end of the rectangular driving frame 501 abuts against the inclined surface of the triangular stress block 602 through the guide wheel.
[0055] The guide wheel is used to reduce the relative wear between the rectangular driving frame 501 and the row of triangular stress blocks 602.
[0056] Preferably,
[0057] A vertically arranged rod sleeve 103 is welded at the middle position of a short side wall of the cleaning tank 1, and the vertical rod section of the T-shaped driving rod 102 is slidingly matched with the rod sleeve 103.
[0058] Preferably,
[0059] An L-shaped vertical support rod 101 is fastened at the middle position of the top end portion of a long side wall of the cleaning tank 1 through bolts, an inverted and longitudinally supported N-shaped water guide pipe 3 is welded at the top end of the L-shaped vertical support rod 101, a cleaning spray head 4 is screw-mounted at the head end of the N-shaped water guide pipe 3, and the cleaning spray head 4 is centrally arranged above the cleaning tank 1.
[0060] Preferably,
[0061] A valve is mounted on the N-shaped water guide pipe 3, and the tail end of the N-shaped water guide pipe 3 is connected to an external pressurized water source.
[0062] Preferably,
[0063] Two longitudinally arranged insertion shafts 601 are symmetrically installed on the longitudinal support side rods of the I-shaped force transmission frame 6;
[0064] Two positioning ear plates 603 are symmetrically welded on the two ends of the longitudinal support side rods of the I-shaped force transmission frame 6, the insertion shaft 601 is in sliding fit with the two positioning ear plates 603 on the corresponding side through spring pushing, and the head end of the insertion shaft 601 is in insertion fit with the bottom end of the vertical sliding shaft 201;
[0065] The I-shaped force transmission frame 6 is used to block and limit the bearing barrier net component 2 on the rectangular mounting frame 107, the I-shaped force transmission frame 6 is positioned on the bottom end of the four vertical sliding shafts 201 through the four insertion shafts 601, the four insertion shafts 601 are separated from the four vertical sliding shafts 201, the I-shaped force transmission frame 6 can be loosened, the I-shaped force transmission frame 6 and the four vertical sliding shafts 201 are disassembled, and the bearing barrier net component 2 can be disassembled and taken off from the rectangular mounting frame 107 and taken out of the cleaning box 1, and the bearing barrier net component 2 can be thoroughly and effectively washed.
[0066] The tail end of the insertion shaft 601 is welded with a downward supporting push plate 6011, the insertion shaft 601 can be inserted and loosened through the push plate 6011, the insertion shaft 601 is automatically reset in insertion fit with the vertical sliding shaft 201 through the rebound pushing of the spring sleeved on the head end, and then the insertion shaft 601 can be automatically reset in insertion fit with the vertical sliding shaft 201 when the push plate 6011 is loosened, the four push plates 6011 are arranged close to each other in pairs, which facilitates the simultaneous holding of the two push plates 6011 on the corresponding side by both hands, the synchronous insertion and loosening of the four insertion shafts 601, saves the trouble of manually inserting and loosening the four insertion shafts 601 in turn, helps to simplify the loosening and disassembling steps of the I-shaped force transmission frame 6, and indirectly improves the disassembling and cleaning efficiency of the bearing barrier net component 2.
[0067] The working principle of the embodiment is as follows: in use, first, the medicine to be cleaned is placed in the cleaning box 1 and carried on the top end of the upper bearing barrier net component 2, then the valve on the V-shaped water guide pipe 3 is opened, the cleaning nozzle 4 is supplied with water, the cleaning nozzle 4 directly sprays the cleaning water with pressure downward on the medicine after being supplied with water, and starts to wash the soil on the surface of the medicine, the medicine needs to be rolled by hand from time to time during the washing process, so that all parts on the surface of the medicine can be exposed to the cleaning nozzle 4 below to be washed thoroughly, and the above steps are sequentially implemented to complete the washing and cleaning of the soil on the surface of the medicine.
[0068] In this paper, the following points need attention:
[0069] 1. The embodiment of the utility model only relates to the structure related to the embodiment of the utility model, and other structures can refer to the general design.
[0070] 2. In the case of no conflict, the embodiments and the features in the embodiments can be combined to obtain new embodiments.
[0071] The above is only a specific embodiment of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can easily think of changes or replacements within the technical range disclosed by the utility model, which should be covered in the protection scope of the utility model. Therefore, the protection scope of the utility model should be subject to the protection scope of the claims.
Claims
1. A medicinal material surface soil cleaning device, comprising: The washing box (1) is symmetrically welded with two supports (106) at the bottom of both sides; Its characterized in that, the outer edge of the opening at the bottom of the washing box (1) is welded with a rectangular mounting frame (107), and the bottom opening of the washing box (1) is installed with a bearing screen component (2), which is composed of a peripheral rectangular retaining frame and a metal screen covering the inside of the rectangular retaining frame, wherein the bottom of the rectangular retaining frame is symmetrically welded with four vertical slide shafts (201), and the four vertical slide shafts (201) are all in through sliding fit with the rectangular mounting frame (107) through spring pushing, and the top end of the rectangular retaining frame and the rectangular mounting frame (107) is in abutting contact under normal circumstances; a I-beam transmission frame (6) is fixedly installed between the bottom ends of the four vertical slide shafts (201), and a row of triangular stress blocks (602) are hung on the middle section of the cross brace of the I-beam transmission frame (6) by welding; The bottom of the washing box (1) is installed with a transversely sliding longitudinal drive rod (5), the top end of the rectangular drive frame (501) is in abutting contact with the inclined surface of a row of triangular stress blocks (602) in sequence, and the rectangular drive frame (501) is vertically arranged and reciprocally slides along the longitudinal drive rod (5); The short side wall of the washing box (1) is installed with a T-shaped drive rod (102) which slides vertically, and the bottom end of the T-shaped drive rod (102) is rotationally connected with an inclined connecting rod (104) between the tail end of the longitudinal drive rod (5).
2. The medicine surface soil cleaning device according to claim 1, wherein, The middle position of the bottom of the washing box (1) is welded with a six-pronged cross brace shaft (105), and the first end of the longitudinal drive rod (5) and the position deviating from the middle section are welded with two shaft sleeves (502), the rectangular drive frame (501) and the shaft sleeve (502) at the first end are welded and fixed together, and the two shaft sleeves (502) are in sliding fit with the six-pronged cross brace shaft (105).
3. The medicine surface soil cleaning device according to claim 1, wherein, The top end of the rectangular drive frame (501) is rotationally sleeved with a guide wheel on the side shaft, and the top end of the rectangular drive frame (501) is in abutting contact with the inclined surface of the triangular stress block (602) through the guide wheel.
4. The medicine surface soil cleaning device according to claim 1, wherein, The middle position of the short side wall of the washing box (1) is welded with a vertically arranged rod sleeve (103), and the vertical rod section of the T-shaped drive rod (102) is in through sliding fit with the rod sleeve (103).
5. The medicine surface soil cleaning device according to claim 1, wherein, The middle position of the top end of the long side wall of the washing box (1) is fastened with an L-shaped vertical support rod (101) by bolts, the top end of the L-shaped vertical support rod (101) is welded with an inverted and longitudinally supported N-shaped water guide pipe (3), the first end of the N-shaped water guide pipe (3) is screwed with a cleaning nozzle (4), and the cleaning nozzle (4) is centrally arranged above the washing box (1).
6. The medicinal material surface soil cleaning device according to claim 5, characterized in that, The U-shaped water guide pipe (3) is provided with a valve, and the tail end of the U-shaped water guide pipe (3) is connected to an external pressurized water source.
7. The medicinal material surface soil cleaning device according to claim 1, characterized in that, Two symmetrically arranged plug shafts (601) are arranged on the longitudinal support side rods of the I-shaped force transmission frame (6); Two symmetrically arranged positioning ear plates (603) are welded on the two ends of the longitudinal support side rods of the I-shaped force transmission frame (6), the plug shafts (601) are in sliding fit with the two positioning ear plates (603) on the corresponding side through spring pushing, and the head end of the plug shaft (601) is in plug-in fit with the bottom end of the vertical sliding shaft (201).