Camellia seed shell belt cleaning device with adjustable inclination angle
By designing an inclination adjustable oil tea seed shell belt cleaning device, using vibration feed and inclination adjustment technology, the problems of low selection accuracy and easy tea seed loss in existing equipment are solved, and high efficiency, low loss, and separation of oil tea seed shells are achieved.
Patent Information
- Application Number
- CN202421282049.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-06
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-06-06
AI Technical Summary
The existing oil tea seed shell cleaning equipment has problems such as low selection accuracy, easy tea seed loss, damage, high energy consumption, and high production costs.
A tilt-angle adjustable oil tea seed shell belt cleaning device is designed, including a frame, a vibration feeding mechanism, a belt cleaning mechanism, an inclination transformation mechanism, a tea seed collection box and a tea shell collection mechanism, which can achieve efficient separation of tea seeds and tea shells through vibration feeding and inclination adjustment.
It realizes high efficiency, low loss, and separation of oil tea seed shells, improves the selection accuracy and operating efficiency, and is suitable for oil tea seed shells with multiple varieties and different moisture contents.
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Figure CN222872742U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to an inclination-adjustable camellia seed shell belt cleaning device, which can be used for cleaning and separating camellia seed shells of multiple varieties and different moisture contents, and belongs to the technical field of camellia fruit processing. Background Art
[0002] Camellia oleifera is known as the "Oriental Olive Oil" and is a woody edible oil crop unique to China. Since tea shells do not contain oil, the shelled tea shell mixture needs to be cleaned and separated. At present, the cleaning of tea shells mainly includes manual cleaning and machine cleaning, while manual cleaning has high labor intensity, low cleaning efficiency and high labor costs. Most of the current tea shell cleaning equipment cleans the shells based on size, shape and other cleaning methods. However, since the plane size, specific gravity and density of tea shells and tea seeds after shelling of tea fruits are relatively close, these cleaning methods generally have the problem of low cleaning accuracy and easy loss and damage of tea seeds.
[0003] Therefore, the utility model proposes a high-efficiency, low-loss, energy-saving and cost-saving inclination-adjustable tea seed shell belt cleaning device, which is very necessary and can overcome the shortcomings of the prior art such as low cleaning accuracy, easy damage and loss of tea seeds, high energy consumption and high production cost. Summary of the invention
[0004] In view of the shortcomings of the existing camellia seed shell cleaning devices, the utility model proposes a camellia seed shell belt cleaning device with adjustable inclination, which can achieve efficient, low-loss and cost-saving cleaning of camellia seed shells, has a simple and compact structure, is easy to operate and maintain, and is suitable for the cleaning and separation of camellia seed shells of multiple varieties and different moisture contents.
[0005] In order to achieve this purpose, the specific technical solution adopted by the utility model is as follows:
[0006] An inclination-adjustable tea seed shell belt cleaning device, characterized in that it comprises a frame, a vibrating feeding mechanism, a belt cleaning mechanism, an inclination conversion mechanism, a tea seed collection box and a tea shell collection mechanism. With respect to the feeding direction, the vibrating feeding mechanism is arranged at the top of the frame, a belt cleaning mechanism is arranged below the vibrating feeding mechanism, the belt cleaning mechanism is fixed on the frame and inclined at a certain angle to the ground, the inclination conversion mechanism is arranged below the belt cleaning mechanism, and the tea seed collection box and the tea shell collection mechanism are arranged at the lower end and the upper end of the belt cleaning mechanism respectively;
[0007] The belt cleaning mechanism comprises a cleaning conveyor belt, a conveyor belt side plate, a tea seed discharge port, a tea shell discharge port and a protruding slider;
[0008] The inclination angle conversion mechanism includes a connecting plate, a support rod, a support plate, a push rod, a straight rail bearing, a fixing plate, and an electric push rod;
[0009] The vibration feeding mechanism includes a vibration spring, a vibration box, a vibration feeding support plate, a feeding hopper, a vibrator, and a discharge port;
[0010] The tea husk collecting mechanism comprises a tea husk collecting box, a movable material blocking plate, an inclined husk sliding plate and a supporting frame.
[0011] Furthermore, the belt cleaning mechanism is fixed on the frame and inclined at a certain angle to the ground, the angle is 10°~90°, the cleaning conveyor belt of the belt cleaning mechanism is 100~10000mm in length and 50~5000mm in width, and the cleaning conveyor belt is made of flexible material with a rough surface; the conveyor belt side panels are arranged on both sides of the cleaning conveyor belt to cover the gaps on both sides of the cleaning conveyor belt, and the outer side of the conveyor belt side panels is provided with a protruding slider connected to the inclination angle conversion mechanism, so as to realize the slippage and inclination angle change of the belt cleaning mechanism; the tea seed discharge port is arranged at the lower end of the cleaning conveyor belt, and the tea shell discharge port is arranged at the upper end of the cleaning conveyor belt, and the outlet widths of the tea seed discharge port and the tea shell discharge port are both smaller than the width of the cleaning conveyor belt.
[0012] Furthermore, slide grooves are provided on both sides of the connecting plate in the inclination angle conversion mechanism, which are connected to the protruding sliders of the conveyor belt side plates in the belt cleaning mechanism to form a connection mode of the slider slide grooves, and are parallel to the cleaning conveyor belt in the belt cleaning mechanism. The belt cleaning mechanism can slide on the connecting plate, and at the same time, power-off type electromagnets are provided in the slide grooves on both sides of the connecting plate. In the case of power failure, the protruding sliders can be fixedly locked by magnetic force, thereby fixing the position of the belt cleaning mechanism; when the power is on, the magnetic force disappears and the protruding sliders can slide freely on the connecting plate, thereby changing the position of the belt cleaning mechanism; the connecting plate is connected to the support rod. The connection method is a hinge connection that can change the connection angle. The support rod is placed vertically. Therefore, the inclination angle of the belt cleaning mechanism can be changed by changing the angle between the connecting plate and the support rod; the support rod is arranged above the support plate, and four push rods are connected to the bottom of the support plate, and the four push rods are respectively matched with corresponding straight rail bearings; the straight rail bearing is arranged on the fixed plate, and an electric push rod is also arranged on the fixed plate. The top of the electric push rod is connected to the bottom of the support plate to push the support plate, and the support plate pushes the support rod to change its height. Since the connecting plate and the support rod are hinged, the inclination angle of the belt cleaning mechanism can be changed;
[0013] The pushing stroke of the electric push rod is 10~1000mm, the push rod length is 50~2000mm, and the support rod length is 50~2000mm;
[0014] Furthermore, a funnel-shaped feeding hopper is provided in the vibration box in the vibration feeding mechanism and is fixed in the vibration box through a vibration feeding support plate. A discharge port is provided at the bottom of the vibration box, and the discharge port is fixedly connected to the vibration box by welding. Four vibration springs are symmetrically arranged at the bottom of the vibration box, and a vibrator is fixed at the center of the bottom of the vibration box. The vibrator drives the vibration springs and the vibration box to vibrate, thereby realizing the vibration and flat feeding of the tea seed shell mixture.
[0015] Furthermore, the tea seed collecting box is arranged at the lower end of the tea seed discharging port of the belt cleaning mechanism, and the tea seed collecting box has a length of 100-5000 mm and a width of 100-5000 mm, which is convenient for collecting tea seeds.
[0016] Furthermore, the height of the tea shell collecting box in the tea shell collecting mechanism is 100~5000mm, and an inclined sliding shell plate is arranged inside the tea shell collecting box. The inclination angle between the inclined sliding shell plate and the bottom of the tea shell collecting box is 10°~80°, and the inclined sliding shell plate is close to the discharge port, which is convenient for taking out the tea shells from the tea shell collecting box. At the same time, a movable baffle plate is arranged, and the closing and opening of the tea shell collecting box are controlled by the movable baffle plate. The support frame is arranged at the bottom of the tea shell collecting box, and the height of the support frame is 100~1000mm, which provides stability for the tea shell collecting box and increases the height of the discharge port for easy discharge.
[0017] In summary, the utility model has the following beneficial effects:
[0018] When working, the inclination-adjustable camellia shell belt cleaning device can make the camellia shell mixture fall evenly onto the belt cleaning mechanism through the vibrating feeding mechanism to improve the uniformity of feeding. When the camellia shell mixture is discharged from the vibrating feeding mechanism, it will fall and collide with the belt cleaning mechanism. Because the hardness and elasticity of tea seeds are higher than those of tea shells, and the organizational structure of tea shells is relatively loose and has vibration absorption, the bouncing property of tea seeds is higher than that of tea shells, and the bouncing time of tea seeds is long, and they are easy to roll down on the cleaning conveyor belt; while tea shells have poor bouncing property, are not easy to roll or stop rolling quickly. At the same time, since the cleaning conveyor belt in the belt cleaning mechanism is inclined at a certain angle to the ground and is made of flexible material with a rough surface, the tea seeds have a smooth surface and a small friction coefficient, so the tea seeds will roll down the cleaning conveyor belt and roll into the tea seed collection box below; while the tea shells have a rough surface and a large friction coefficient, the tea shells will move with the cleaning conveyor belt to the top of the cleaning conveyor belt and then fall into the tea shell collection box, thereby realizing efficient, low-loss and cost-saving cleaning and separation of tea seed shells. The inclination angle conversion mechanism is arranged below the belt cleaning mechanism, and the support plate is pushed by the electric push rod to drive the support rod to move, and the support rod drives the change of the height of the higher end of the belt cleaning mechanism, thereby changing the inclination angle of the belt cleaning mechanism. The power-off type electromagnet provided in the connecting plate can ensure that it loses magnetism when energized, and can make the protruding slider slide in the slide groove of the connecting plate, thereby driving the belt cleaning mechanism to slide, and then realizing the change of the inclination angle of the belt cleaning mechanism; when the power-off type electromagnet is powered off, it generates strong magnetism, which can timely fix and lock the protruding slider, and the fixed position of the belt cleaning mechanism remains stable. This structure ensures the stability and smoothness of the inclination angle conversion. Therefore, the utility model can adjust the inclination angle of the belt cleaning mechanism according to the material characteristics of the oil tea seed shell of different varieties and different moisture contents, realize the efficient, low-loss and cost-saving cleaning and separation of oil tea seed shells of multiple varieties and different moisture contents, and improve the operating efficiency and universality of the oil tea seed shell belt cleaning device with adjustable inclination angle. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Attached Figure 1 The utility model is a structural schematic diagram of an inclination-adjustable camellia seed shell belt cleaning device.
[0020] Attached Figure 2 This is a schematic structural diagram of another preferred viewing angle of the inclination-adjustable camellia seed shell belt cleaning device of the utility model.
[0021] Attached Figure 3 It is an important connection structure schematic diagram of the utility model.
[0022] Attached Figure 4 It is a structural schematic diagram of the inclination angle conversion mechanism of the utility model.
[0023] Attached Figure 5 It is a structural schematic diagram of the belt cleaning mechanism of the utility model.
[0024] Attached Figure 6 It is a structural schematic diagram of the vibration feeding mechanism of the utility model.
[0025] Attached Figure 7 It is a structural schematic diagram of the tea shell collecting mechanism of the utility model.
[0026] Icons in the figure: 1. tea seed collecting box, 2. frame, 3. belt cleaning mechanism, 4. vibration feeding mechanism, 5. tea shell collecting mechanism, 6. inclination angle conversion mechanism, 301. tea seed discharging port, 302. cleaning conveyor belt, 303. conveyor belt side plate, 304. tea shell discharging port, 305. protruding slider, 401. vibration spring, 402. vibration box, 403. vibration feeding support plate, 404. feeding hopper, 405. vibrator, 406. discharging port, 501. tea shell collecting box, 502. movable baffle plate, 503. inclined sliding shell plate, 504. supporting frame, 601. connecting plate, 602. supporting rod, 603. supporting plate, 604. pushing rod, 605. straight rail bearing, 606. fixing plate, 607. electric pushing rod, 608. slide chute.
[0027] In order to make the purpose, technical solution and advantages of the utility model more clear, the utility model is further described in detail below in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described here are only used to explain the utility model and are not used to limit the utility model.
[0028] It should be noted that when an element is referred to as being "fixed to" or "disposed on" another element, it can be directly on the other element or indirectly on the other element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or indirectly connected to the other element.
[0029] In the description of the present invention, it should be understood that the terms "length", "width", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside", "outside", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.
[0030] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of the present utility model, the meaning of "plurality" is two or more, unless otherwise clearly and specifically defined.
[0031] In order to better understand the above technical solution, the above technical solution will be described in detail below in conjunction with the accompanying drawings and specific implementation methods.
[0032] As attached Figure 1-7 As shown, an inclination-adjustable tea seed shell belt cleaning device is characterized in that it includes a frame 2, a vibrating feeding mechanism 4, a belt cleaning mechanism 3, an inclination conversion mechanism 6, a tea seed collection box 1 and a tea shell collection mechanism 5. Relative to the feeding direction, the vibrating feeding mechanism 4 is arranged at the top of the frame 2, and the belt cleaning mechanism 3 is arranged below the vibrating feeding mechanism 4. The belt cleaning mechanism 3 is fixed on the frame 2 and inclined at a certain angle to the ground. The inclination conversion mechanism 6 is arranged below the belt cleaning mechanism 3, and the tea seed collection box 1 and the tea shell collection mechanism 5 are respectively arranged at the lower end and the upper end of the belt cleaning mechanism 3;
[0033] The belt cleaning mechanism 3 includes a cleaning conveyor belt 302, a conveyor belt side plate 303, a tea seed discharge port 301, a tea shell discharge port 304 and a protruding slider 305;
[0034] The tilt angle conversion mechanism 6 includes a connecting plate 601, a support rod 602, a support plate 603, a push rod 604, a straight rail bearing 605, a fixing plate 606, and an electric push rod 607;
[0035] The vibrating feeding mechanism 4 includes a vibrating spring 401, a vibrating box 402, a vibrating feeding support plate 403, a feeding hopper 404, a vibrator 405, and a discharge port 406;
[0036] The tea husk collecting mechanism 5 comprises a tea husk collecting box 501 , a movable material blocking plate 502 , an inclined sliding plate 503 and a supporting frame 504 .
[0037] Furthermore, the belt cleaning mechanism 3 is fixed on the frame 2 and inclined at a certain angle to the ground, the angle is 10°~90°, the cleaning conveyor belt 302 of the belt cleaning mechanism 3 is 100~10000mm long and 50~5000mm wide, and the cleaning conveyor belt 302 is made of a flexible material with a rough surface; the conveyor belt side panels 303 are arranged on both sides of the cleaning conveyor belt 302 to cover the gaps on both sides of the cleaning conveyor belt 302, and the outer side of the conveyor belt side panels 303 is provided with a protruding slider 305 connected to the inclination angle conversion mechanism 6, so as to realize the slippage and inclination angle change of the belt cleaning mechanism 3; the tea seed discharge port 301 is arranged at the lower end of the cleaning conveyor belt 302, and the tea shell discharge port 304 is arranged at the upper end of the cleaning conveyor belt 302, and the outlet widths of the tea shell discharge port 304 and the tea seed discharge port 301 are both smaller than the width of the cleaning conveyor belt 302.
[0038] Furthermore, slide grooves 608 are provided on both sides of the connecting plate 601 in the inclination angle conversion mechanism 6, which are connected to the protruding slider 305 in the belt cleaning mechanism 3 to form a slider slide connection mode, and are parallel to the cleaning conveyor belt 302 in the belt cleaning mechanism. The belt cleaning mechanism 3 can slide on the connecting plate 601. At the same time, power-off type electromagnets are provided in the slide grooves 608 on both sides of the connecting plate 601. In the case of power failure, the protruding slider 305 can be locked by magnetic force, thereby fixing the position of the belt cleaning mechanism 3; when the power is on, the magnetic force disappears and the protruding slider 305 can slide freely on the connecting plate, thereby changing the position of the belt cleaning mechanism 3; the connecting plate 601 is connected to the support rod 602, and the connection mode is a hinge that can change the connection angle. The support rod 602 is vertically placed and therefore the angle between the connecting plate 601 and the support rod 602 can be changed to change the inclination angle of the belt cleaning mechanism 3; the support rod 602 is arranged above the support plate 603, and four push rods 604 are connected to the bottom of the support plate, and the four push rods 604 are respectively matched with the corresponding straight rail bearings 605; the straight rail bearings 605 are arranged on the fixed plate 606, and the fixed plate 606 is also provided with an electric push rod 607, the top of the electric push rod 607 is connected to the bottom of the support plate 603, and can push the support plate 603, and the support plate 603 pushes the support rod 602 to change the height. Since the connecting plate (601) and the support rod (602) are hingedly connected, the inclination angle of the belt cleaning mechanism 3 can be changed;
[0039] The pushing stroke of the electric push rod 607 is 10-1000 mm, the length of the push rod 604 is 50-2000 mm, and the length of the support rod 602 is 50-2000 mm;
[0040] Furthermore, a funnel-shaped feeding hopper 404 is provided in the vibration box 402 in the vibration feeding mechanism, and is fixed in the vibration box 402 through a vibration feeding support plate 403, a discharge port 406 is provided below the vibration box (402), and the discharge port 406 is fixedly connected to the vibration box 402 by welding, four vibration springs 401 are symmetrically arranged at the bottom of the vibration box 402, a vibrator 405 is fixed at the center of the bottom of the vibration box 402, and the vibrator 405 drives the vibration springs 401 and the vibration box 402 to vibrate, so as to realize vibration and flat feeding of the tea seed shell mixture;
[0041] Furthermore, the tea seed collecting box 1 is arranged at the lower end of the tea seed discharging port 301 of the belt cleaning mechanism 3, and the tea seed collecting box 1 has a length of 100-5000 mm and a width of 100-5000 mm, which is convenient for collecting tea seeds.
[0042] Furthermore, the height of the tea shell collecting box 501 in the tea shell collecting mechanism 5 is 100~5000mm, and an inclined sliding shell plate 503 is arranged inside the tea shell collecting box 501. The inclination angle of the inclined sliding shell plate 503 and the bottom of the tea shell collecting box 501 is 10°~80°, and the inclined sliding shell plate 503 is close to the discharge port, which is convenient for tea shells to be taken out of the tea shell collecting box 501. At the same time, a movable baffle plate 502 is provided, and the closing and opening of the tea shell collecting box 501 can be controlled by the movable baffle plate 503. A support frame 504 is arranged at the bottom of the tea shell collecting box 501, and the height of the support frame 504 is 100~1000mm, which provides stability for the tea shell collecting box 501 and increases the height of the discharge port for discharging.
[0043] The specific working process of the utility model is as follows:
[0044] First, according to different varieties of tea fruit, the belt cleaning mechanism 3 is adjusted to a suitable inclination angle through the inclination conversion mechanism 6, and then the tea seed shell mixture of the variety is vibrated and evenly fed through the vibrating feeding mechanism 4, and the tea seed shell mixture moves to the cleaning conveyor belt 302 through falling body motion and collides with the cleaning conveyor belt 302. Because the hardness and elasticity of tea seeds are higher than those of tea shells, and the organizational structure of tea shells is relatively loose and has vibration absorption, the bouncing time of tea seeds is longer than that of tea shells, the bouncing distance of tea seeds is far, and it is easier to roll down on the cleaning conveyor belt 302; while the bouncing property of tea shells is poor, it is not easy to roll down or stop quickly Stop rolling; at the same time, since the cleaning conveyor belt 302 in the belt cleaning mechanism 3 is inclined at a certain angle to the ground and adopts a flexible material with a rough surface and a certain friction coefficient, the tea seeds have a smooth surface and a small friction coefficient, so the tea seeds will roll down on the cleaning conveyor belt 302, roll to the tea seed discharge port 301 below, and enter the tea seed collecting box 1. The tea shells will move upward to the tea shell discharge port 304 along with the cleaning conveyor belt 302 due to their loose texture, rough surface and large friction coefficient, and enter the tea shell collecting mechanism 5, thereby finally realizing the efficient, low-loss and cost-saving cleaning and separation of tea shells and tea seeds.
[0045] Although the preferred embodiments of the present invention have been described, those skilled in the art may make other changes and modifications to these embodiments once they have learned the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications falling within the scope of the present invention.
[0046] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.
Claims
1. A belt cleaning device with adjustable inclination angle for camellia hulls, characterized in that: The invention comprises a frame (2), a vibrating feeding mechanism (4), a belt cleaning mechanism (3), an inclination angle conversion mechanism (6), a tea seed collection box (1) and a tea husk collection mechanism (5); relative to the feeding direction, the vibrating feeding mechanism (4) is arranged at the top of the frame (2); a belt cleaning mechanism (3) is arranged below the vibrating feeding mechanism (4); the belt cleaning mechanism (3) is fixed on the frame (2) and is inclined at a certain angle to the ground; the inclination angle conversion mechanism (6) is arranged below the belt cleaning mechanism (3); the tea seed collection box (1) and the tea husk collection mechanism (5) are arranged at the lower end and the upper end of the belt cleaning mechanism (3), respectively; The belt cleaning mechanism (3) comprises a cleaning conveyor belt (302), a conveyor belt side plate (303), a tea seed discharge port (301), a tea shell discharge port (304) and a protruding slider (305); The tilt angle conversion mechanism (6) comprises a connecting plate (601), a support rod (602), a support plate (603), a push rod (604), a straight rail bearing (605), a fixing plate (606), and an electric push rod (607); The vibrating feeding mechanism (4) comprises a vibrating spring (401), a vibrating box (402), a vibrating feeding support plate (403), a feeding hopper (404), a vibrator (405), and a discharge port (406); The tea husk collecting mechanism (5) comprises a tea husk collecting box (501), an inclined husk sliding plate (503), a movable material blocking plate (502) and a supporting frame (504).
2. The inclination-adjustable camellia seed shell belt cleaning device according to claim 1, characterized in that: The belt cleaning mechanism (3) is fixed on the frame (2) and is inclined at a certain angle to the ground, the angle being 10° to 90°. The cleaning conveyor belt (302) of the belt cleaning mechanism (3) has a length of 100 to 10,000 mm and a width of 50 to 5,000 mm. The cleaning conveyor belt (302) is made of a flexible material with a rough surface. Conveyor belt side plates (303) are arranged on both sides of the cleaning conveyor belt (302). The outer sides of the conveyor belt side plates (303) are provided with protruding sliders (305) and The tea seed discharge port (301) is arranged at the lower end of the cleaning conveyor belt (302), and the tea shell discharge port (304) is arranged at the upper end of the cleaning conveyor belt (302). The outlet widths of the tea seed discharge port (301) and the tea shell discharge port (304) are both smaller than the width of the cleaning conveyor belt (302).
3. The inclination-adjustable camellia seed shell belt cleaning device according to claim 1, characterized in that: Slide grooves (608) are arranged on both sides of the connecting plate (601) in the inclination angle conversion mechanism (6), which are connected to the protruding slider (305) in the belt cleaning mechanism (3) to form a slider slide connection mode, and are parallel to the cleaning conveyor belt (302) in the belt cleaning mechanism. The belt cleaning mechanism (3) can slide on the connecting plate (601). At the same time, power-off type electromagnets are arranged in the slide grooves (608) on both sides of the connecting plate (601). When the power is off, the protruding slider (305) can be locked by magnetic force, thereby fixing the position of the belt cleaning mechanism (3); when the power is on, the magnetic force disappears and the protruding slider (305) can slide freely on the connecting plate, thereby changing the position of the belt cleaning mechanism (3); the connecting plate (601) is connected to the support rod (602) in a hinge connection mode that can change the connection angle. The support rod (602) is placed vertically, so the inclination angle of the belt cleaning mechanism (3) can be changed by changing the angle between the connecting plate (601) and the support rod (602); the support rod (602) is arranged above the support plate (603), and four push rods (604) are connected to the bottom of the support plate, and the four push rods (604) are respectively matched with corresponding straight rail bearings (605); the straight rail bearing (605) is arranged on the fixed plate (606), and the fixed plate (606) is also provided with an electric push rod (607), the top end of the electric push rod (607) is connected to the bottom of the support plate (603), and can push the support plate (603), and the support plate (603) pushes the support rod (602) to change the height. Since the connecting plate (601) and the support rod (602) are hingedly connected, the inclination angle of the belt cleaning mechanism (3) can be changed; The pushing stroke of the electric push rod (607) is 10-1000 mm, the length of the push rod (604) is 50-2000 mm, and the length of the support rod (602) is 50-2000 mm.
4. The inclination-adjustable camellia seed shell belt cleaning device according to claim 1, characterized in that: A funnel-shaped feeding hopper (404) is arranged in the vibration box (402) of the vibration feeding mechanism (4), and is fixed in the vibration box (402) via a vibration feeding support plate (403); a discharge port (406) is arranged below the vibration box (402); four vibration springs (401) are symmetrically arranged at the bottom of the vibration box (402); a vibrator (405) is fixed at the center of the bottom of the vibration box (402); the vibrator (405) drives the vibration springs (401) and the vibration box (402) to vibrate, thereby achieving uniform vibration feeding of the tea seed shell mixture.
5. The inclination-adjustable camellia seed shell belt cleaning device according to claim 1, characterized in that: The height of the tea husk collection box (501) in the tea husk collection mechanism (5) is 100-5000 mm. An inclined sliding shell plate (503) is arranged inside the tea husk collection box (501). The inclined sliding shell plate (503) and the bottom of the tea husk collection box (501) have an inclination angle of 10°-80°. The inclined sliding shell plate (503) is close to the discharge port, so that the tea husks can be easily taken out of the tea husk collection box (501). A movable material blocking plate (502) is also arranged. The closing and opening of the tea husk collection box (501) are controlled by the movable material blocking plate (502). The support frame (504) is arranged at the bottom of the tea husk collection box (501) so as to increase the height of the discharge port for easy discharge.
Citation Information
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