Water removal device for cleaned paris polyphylla
By designing a heavy building cleaning water removal device including a water removal mechanism and a rotating mechanism, the problems of low efficiency of existing equipment and difficulty in removing water stains on the bottom layer are solved, and efficient and thorough water removal effect is achieved.
Patent Information
- Application Number
- CN202421487404.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-27
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-06-27
AI Technical Summary
The existing heavy building has low efficiency after cleaning, and the water stains on the bottom layer are difficult to remove, which affects the water removal effect.
A water removal device after cleaning of heavy building is designed, including a water removal mechanism and a rotating mechanism. The water removal mechanism generates gas through the air guide box, and guides the gas into the rotating pipe through the jet pipe to blow off the water stains on the heavy floor; the rotating mechanism drives the motor to rotate the rotating pipe, and guides the heavy floor into the rotation process, and cooperates with the water removal mechanism to achieve water removal.
It improves the efficiency of water removal in the heavy building, avoids long-term contact between water stains on the bottom layer, and ensures the thoroughness and efficiency of water removal.
Smart Images

Figure CN222895443U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of equipment for cleaning floribunda, in particular to a water removal device after cleaning floribunda. Background Art
[0002] Paris polyphylla is an important traditional Chinese medicine, and cleaning is a key step in its processing. After cleaning, the surface of Paris polyphylla often has a lot of water attached to it.
[0003] In the prior art, there are usually some shortcomings in the water removal operation after the cleaning of the Paris polyphylla. The traditional water removal method may rely on natural drying or simple manual draining. These methods are inefficient and greatly affected by external factors such as weather, which can easily lead to incomplete water removal or take too much time. The existing automatic water removal equipment generally sets an air guide fan on the conveyor belt to remove water stains from top to bottom during the transportation of the Paris polyphylla. However, this water removal method cannot remove water stains on the bottom Paris polyphylla, and the effect is not good. Based on this, we designed a device that is easy to remove water and improves the efficiency of Paris polyphylla water removal. Utility Model Content
[0004] In view of the technical problems existing in the background technology, the utility model provides a device for removing water from the Paris polyphylla after cleaning, which can remove water from the Paris polyphylla during the rolling process, thereby improving the efficiency of removing water from the Paris polyphylla.
[0005] The technical implementation scheme of the utility model is:
[0006] A device for removing water from a gypsophila after cleaning comprises a first fixed frame, a second fixed frame, a water removal mechanism and a rotating mechanism, wherein the first fixed frame is a rectangular frame structure, and the water removal mechanism and the rotating mechanism are arranged on the upper part of the first fixed frame; the water removal mechanism comprises a water removal box, an air guide box, an air guide pipe and an air jet pipe, the water removal box is arranged on the first fixed frame, two air jet pipes are symmetrically arranged inside the water removal box, and the air jet pipes are connected to the air guide box through the air guide pipe; the rotating mechanism comprises a connecting base, a rotating pipe, a gear ring, a first driving motor and a receiving groove, the rotating pipe is connected to the first fixed frame through the connecting base, a gear ring is arranged on the upper part of the rotating pipe, and the gear ring is meshed with a gear on the first driving motor.
[0007] Optionally, the rotating tube is a rectangular hollow structure with openings at both ends, and a plurality of air holes are arranged on the outer wall of the rotating tube; a disturbance ring is arranged inside the rotating tube, and a disturbance rod is arranged on the inner wall of the disturbance ring.
[0008] Optionally, a receiving ring is provided inside the connecting base, and a plurality of rollers are provided on the receiving ring; the rotating tube is tiltedly provided on the first fixed frame through the connecting base, and the tilt angle is 5°-8°.
[0009] Optionally, the receiving groove is a rectangular hollow cavity structure with an opening at the top, the receiving groove is located directly below the rotating tube, and a discharge port is provided at the bottom of the receiving groove.
[0010] Optionally, the second fixing frame is arranged at one end of the first fixing frame, a feeding platform is arranged on the upper part of the second fixing frame, and a conveyor belt and a second driving motor are arranged on the feeding platform.
[0011] Optionally, rectangular openings are provided on both sides of the water removal tank, and opening and closing doors are provided on the rectangular openings, and lifting handles are provided on the opening and closing doors.
[0012] Optionally, the first drive motor is disposed in a motor base and connected to the first fixing frame via the motor base.
[0013] The utility model has the following advantages:
[0014] 1. The utility model is provided with a water removal mechanism and a rotating mechanism on the upper part of the first fixed frame, wherein the rotating mechanism drives the internal rotating tube through the first driving motor to rotate the entire rotating tube, thereby introducing the heavy tower on the feeding table into it, unloading the material during the rotation process, and cooperating with the water removal mechanism on the upper part to blow off the water stains on the heavy tower to achieve water removal.
[0015] 2. The utility model is designed with an independent water removal mechanism, which can generate gas through an air guide box and introduce it into the jet pipe through an air guide pipe to perform jet treatment on the rotating pipe to blow off the water stains on the heavy building inside the rotating pipe. Moreover, this rotating spraying method can avoid the inability to fully remove water from the heavy building on the bottom layer, thereby improving the water removal efficiency.
[0016] 3. In the utility model, a second fixing frame is arranged at one end of the first fixing frame, and a feeding platform is arranged on the upper part of the second fixing frame for automatic introduction of heavy buildings. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 It is a structural schematic diagram of the utility model.
[0018] Figure 2 It is a structural schematic diagram of the water removal mechanism of the utility model.
[0019] Figure 3 This is a schematic diagram of the structure of the air guide box connection of the utility model.
[0020] Figure 4 It is a structural schematic diagram of the rotating mechanism of the utility model.
[0021] Figure 5 It is a structural schematic diagram of the connection of the first drive motor of the utility model.
[0022] The meanings of the reference numerals in the figure are: 1-first fixed frame, 2-water removal mechanism, 201-water removal box, 202-air guide box, 203-air guide pipe, 205-opening and closing door, 206-lifting handle, 209-jet pipe, 3-rotating mechanism, 301-rotating pipe, 302-disturbance ring, 303-air vent, 304-gear ring, 305-gear, 306-first drive motor, 307-receiving groove, 308-connecting base, 309-motor base, 310-roller, 311-discharge port, 4-second fixed frame, 5-feeding table, 6-conveyor belt, 7-second drive motor. DETAILED DESCRIPTION
[0023] In order to make the purpose, technical solution and advantages of the utility model clearer, the utility model will be further described in detail with reference to the accompanying drawings. It is hereby stated that the directional words such as up, down, left, right, front, back, inside, outside, etc. that appear or will appear in the text of the utility model are only based on the accompanying drawings of the utility model, and are not specific limitations of the utility model.
[0024] like Figure 1-Figure 5 As shown, a dewatering device after cleaning of Rhizoma Polygoni Multiflori includes a first fixed frame 1, a second fixed frame 4, a dewatering mechanism 2 and a rotating mechanism 3. The first fixed frame 1 is a rectangular frame structure, and the dewatering mechanism 2 and the rotating mechanism 3 are arranged on the upper part of the first fixed frame 1; the dewatering mechanism 2 includes a dewatering box 201, an air guide box 202, an air guide pipe 203 and an air jet pipe 209. The dewatering box 201 is arranged on the first fixed frame 1, and two air jet pipes 209 are symmetrically arranged inside the dewatering box 201, and the air jet pipe 209 is connected to the air guide box 202 through the air guide pipe 203; the rotating mechanism 3 includes a connecting base 308, a rotating pipe 301, a gear ring 304, a first driving motor 306 and a receiving groove 307. The rotating pipe 301 is connected to the first fixed frame 1 through the connecting base 308, and a gear ring 304 is arranged on the upper part of the rotating pipe 301, and the gear ring 304 is meshed and connected with the gear 305 on the first driving motor 306.
[0025] It should be noted that after the Paris polyphylla is excavated and collected, we need to clean it. Generally, a cleaning tank is used for automatic cleaning. After cleaning, many water stains will remain on the surface. If they are not removed, subsequent processing will be affected. The existing water removal method generally sets a fan on the upper part of the stainless steel mesh belt during transportation after cleaning. The wind generated by the fan is used to blow the water stains off. However, the water stains on the Paris polyphylla at the bottom cannot be removed in this way. The reason is that the wind guides the air from top to bottom, and the water stains are also guided from top to bottom. In this way, the Paris polyphylla at the bottom will continue to be in contact with the remaining water stains, making water removal difficult.
[0026] It needs to be further explained that, in order to facilitate the removal of water from the Paris polyphylla, we have designed a rotating water removal mechanism, which can drive the rotating tube 301 to rotate through the first driving motor 306, and continuously guide air through the water removal mechanism 2 to remove water from the Paris polyphylla inside the rotating tube 301. This water removal method can prevent the Paris polyphylla at the bottom from being in contact with water stains for a long time, thereby improving the water removal efficiency.
[0027] like Figure 1-Figure 5 As shown, the rotating tube 301 is a rectangular hollow structure with openings at both ends, and a plurality of air holes 303 are arranged on the outer wall of the rotating tube 301; a disturbance ring 302 is arranged inside the rotating tube 301, and a disturbance rod is arranged on the inner wall of the disturbance ring 302; a receiving ring is arranged inside the connecting base 308, and a plurality of rollers 310 are arranged on the receiving ring; the rotating tube 301 is tiltedly arranged on the first fixed frame 1 through the connecting base 308, and the tilt angle is 6°.
[0028] It should be noted that the rotating tube 301 is connected to the connecting base 308 at an angle, and a receiving ring is provided at the connection between the rotating tube 301 and the connecting base 308. The roller 310 on the receiving ring assists the rotation, thereby rotating the entire rotating tube 301. The advantage of this design is that the heavy tower can be guided out from one end of the rotating tube 301 during the rotation, thereby facilitating water removal in cooperation with the upper jet pipe 209.
[0029] like Figure 1-Figure 5 As shown, the receiving groove 307 is a rectangular hollow structure with an opening at the top, the receiving groove 307 is located directly below the rotating tube 301, and a discharge port 311 is provided at the bottom of the receiving groove 307; the second fixed frame 4 is provided at one end of the first fixed frame 1, and a feeding platform 5 is provided on the upper part of the second fixed frame 4, and a conveyor belt 6 and a second driving motor 7 are provided on the feeding platform 5; rectangular openings are provided on both sides of the dewatering tank 201, and an opening and closing door 205 is provided on the rectangular opening, and a lifting handle 206 is provided on the opening and closing door 205.
[0030] It should be noted that the receiving groove 307 is provided to receive the water stains dripping from the rotating tube 301, and a filter net can be provided inside the receiving groove 307 as needed to filter out the remaining impurities. The collected water stains are processed uniformly to avoid contamination of the working area.
[0031] It should be further explained that the feeding platform 5 is provided with a conveyor belt 6 for guiding the lindens and transporting the lindens to the feeding end of the rotating tube 301 to realize automatic feeding.
[0032] like Figure 1-Figure 5 As shown, the first driving motor 306 is disposed in a motor base 309 and is connected to the first fixing frame 1 through the motor base 309 .
[0033] It should be noted that the first drive motor 306 is arranged to be driven by meshing the gear 305 on its output shaft with the gear ring 304.
[0034] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the scope of knowledge possessed by those skilled in the art.
Claims
1. A device for removing water from a cypress after cleaning, comprising a first fixed frame (1), a second fixed frame (4), a water removal mechanism (2) and a rotating mechanism (3), wherein: The first fixed frame (1) is a rectangular frame structure, and a water removal mechanism (2) and a rotating mechanism (3) are arranged on the upper part of the first fixed frame (1); The water removal mechanism (2) comprises a water removal box (201), an air guide box (202), an air guide pipe (203) and an air jet pipe (209); the water removal box (201) is arranged on the first fixed frame (1); two air jet pipes (209) are symmetrically arranged inside the water removal box (201); and the air jet pipes (209) are connected to the air guide box (202) via the air guide pipe (203); The rotating mechanism (3) comprises a connecting base (308), a rotating tube (301), a gear ring (304), a first driving motor (306) and a receiving groove (307); the rotating tube (301) is connected to the first fixed frame (1) via the connecting base (308); a gear ring (304) is provided on the upper part of the rotating tube (301), and the gear ring (304) is meshedly connected with a gear (305) on the first driving motor (306).
2. A device for removing water after cleaning heavy buildings according to claim 1, characterized in that: The rotating tube (301) is a rectangular hollow structure with openings at both ends, and a plurality of air holes (303) are provided on the outer wall of the rotating tube (301); A disturbance ring (302) is arranged inside the rotating tube (301), and a disturbance rod is arranged on the inner wall of the disturbance ring (302).
3. A device for removing water after cleaning heavy buildings according to claim 1, characterized in that: A receiving ring is provided inside the connecting base (308), and a plurality of rollers (310) are provided on the receiving ring; The rotating tube (301) is tiltedly arranged on the first fixing frame (1) via a connecting base (308), with an inclination angle of 5°-8°.
4. A device for removing water from a heavy building after cleaning according to claim 1, characterized in that: The receiving groove (307) is a rectangular hollow structure with an opening at the top. The receiving groove (307) is located directly below the rotating tube (301). A discharge port (311) is provided at the bottom of the receiving groove (307).
5. A device for removing water after cleaning heavy buildings according to claim 1, characterized in that: The second fixed frame (4) is arranged at one end of the first fixed frame (1), a feeding platform (5) is arranged on the upper part of the second fixed frame (4), and a conveyor belt (6) and a second drive motor (7) are arranged on the feeding platform (5).
6. A device for removing water after cleaning heavy buildings according to claim 1, characterized in that: Rectangular openings are provided on both sides of the dewatering tank (201), and opening and closing doors (205) are provided on the rectangular openings. The opening and closing doors (205) are provided with lifting handles (206).
7. A device for removing water after cleaning heavy buildings according to claim 1, characterized in that: The first driving motor (306) is arranged in a motor base (309) and is connected to the first fixing frame (1) via the motor base (309).