A tea sterilization and canning device

By designing tea sterilization and canning equipment, including ultraviolet sterilizers and a variety of auxiliary mechanisms, the problem that existing devices cannot directly sterilize tea leaves is solved, efficient sterilization and convenient canning of tea leaves are achieved, and operation convenience and tea quality are improved.

CN115771651BActive Publication Date: 2025-06-10HENGZHOU XIANGRUYI MO TEA BEVERAGE CO LTD
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Patent Information

Application Number
CN202211637644.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-20
Publication Date
2025-06-10
Estimated Expiration
2042-12-20

AI Technical Summary

Technical Problem

The existing tea canning device cannot directly sterilize the tea, and additional sterilization devices are required, which are inconvenient to operate and may affect the quality of the tea.

Method used

Design a tea sterilization and canning equipment, including an ultraviolet sterilizer, blocking mechanism, mounting mechanism, removal mechanism, reminder mechanism and discharge mechanism, to realize direct sterilization and convenient canning of tea.

Benefits of technology

The direct sterilization of tea leaves is achieved, the use of additional sterilization devices is avoided, the operation convenience is improved, and the tea waste and quality damage is prevented.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a canning device, and particularly to a tea sterilization and canning device. The present invention provides a tea sterilization and canning device. A tea sterilization and canning device includes a support and a feeding bucket. A feeding bucket for storing tea is connected to the middle of the support. It also includes a UV sterilizer, a protective shell, a placement plate, etc. A UV sterilizer for sterilizing tea is installed on the inner wall of the feeding bucket. The protective shell is connected to the inner bottom of the support. Six placement plates for placing tea cans are evenly and slidably connected to the inner bottom of the support along the circumferential direction. The UV sterilizer of the present invention can directly sterilize the tea without the need to additionally use a sterilization device to sterilize the tea. Such operation is convenient and can avoid affecting the quality of the tea at the same time.
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Description

Technical Field

[0001] The present invention relates to a canning device, and in particular to a tea sterilization and canning device. Background Art

[0002] Tea generally includes the leaves and buds of tea plants. The alias of tea is "cha". Common ways of storing tea include canning. To ensure the quality of tea, it is necessary to sterilize the tea before canning, and special canning equipment is required for tea canning.

[0003] Patent No. CN212580277U discloses a tea canning device, including a base. A tea canning box is fixedly installed on the top of the base. An observation window I is fixedly installed on the surface of the tea canning box. A tea placement cavity located on the top of the tea canning box is fixedly installed at the top of the observation window I. A partition board is fixedly installed at the bottom of the tea placement cavity. A tea canning port is opened at the bottom of the partition board. The above patent has the following problems:

[0004] To ensure the quality of tea, it is necessary to sterilize the tea before canning. However, the above patent cannot directly sterilize the tea. If tea sterilization is required, an additional sterilization device needs to be used for sterilization, which is inconvenient to operate.

[0005] In view of the above problem of using an additional sterilization device for sterilization, it is necessary to design a tea sterilization and canning device to solve the problems raised in the above background art. Summary of the Invention

[0006] In order to overcome the drawback of using an additional sterilization device for sterilization, the present invention provides a tea sterilization and canning device.

[0007] The purpose of the present invention is achieved as follows: A tea sterilization and canning device includes a bracket and a feeding bucket. A feeding bucket for storing tea is connected to the middle of the bracket. A plurality of feeding holes for discharging materials are opened at the bottom of the feeding bucket. It further includes an ultraviolet sterilizer, a protective shell, a placement plate, a return spring, a turntable, a blocking mechanism, and a positioning mechanism. An ultraviolet sterilizer for sterilizing tea is installed on the inner wall of the feeding bucket. The inner bottom of the bracket is connected with a protective shell. Six placement plates for placing tea cans are evenly and slidably connected to the inner bottom of the bracket in the circumferential direction. The six placement plates are located inside the protective shell. A return spring for resetting the placement plate is connected between each of the six placement plates and the inner bottom of the bracket. A turntable for blocking tea is rotatably connected to the lower part inside the feeding bucket. A plurality of blanking holes for discharging materials are opened on the turntable. A blocking mechanism for blocking tea is provided at the inner bottom of the bracket. A positioning mechanism for positioning the blocking mechanism is provided at the inner bottom of the bracket. The blocking mechanism and the positioning mechanism are located inside the protective shell.

[0008] More preferably, the blocking mechanism includes a sliding rod, a sliding frame, a baffle and a limit rod, each of the sides of the placement plates away from each other is connected to a sliding rod, six groups of sliding frames are evenly and slidably connected to the bottom of the bracket along the circumferential direction, each group of sliding frames has two sliding frames, every two sliding frames are located on the sides of the adjacent placement plates away from each other, and every two sliding frames are slidably connected to the adjacent sliding rods, a baffle is connected between the tops of every two adjacent sliding frames, the baffle can block the turntable, a limit rod for limiting the sliding frame is connected to the outer side of the lower and middle part of the bracket, and the six groups of sliding frames are slidably connected to the limit rods.

[0009] More preferably, the locking mechanism includes a locking frame, a locking rod and a return spring, six locking frames are evenly connected along the circumferential direction in the middle of the bottom inner part of the bracket, a locking rod is connected to the side of each placement plate close to the locking frame, each locking rod is slidably connected to the adjacent locking frame, each locking frame is connected to the inside of the bracket by a return spring, and a locking groove for locking the locking rod is opened on the side of the lower part of each locking frame close to the bracket.

[0010] More preferably, it also includes a removal mechanism for conveniently removing the tea can, the removal mechanism includes a bottom plate and a pull rod, each placement plate is placed with a bottom plate, each bottom plate is connected to a pull rod on one side away from each other, and each pull rod is slidably connected to the protective shell.

[0011] More preferably, a prompting mechanism is included for indicating that the tea can is full of tea, the prompting mechanism includes a first sensor plate, a second sensor plate and a prompting light, a first sensor plate is installed at the bottom of each placement plate, six second sensor plates are evenly installed along the circumferential direction at the bottom of the bracket, each second sensor plate is located below a neighboring first sensor plate, a prompting light is installed on the outside of the protective shell, and the prompting light is electrically connected to the first sensor plate and the second sensor plate.

[0012] More preferably, it also includes a feeding mechanism for evenly feeding the tea leaves, the feeding mechanism includes a servo motor, a support shell, a propeller and a rotating plate, a servo motor for providing a power source is installed on the lower middle side of the bracket, the bottom of the feeding barrel is connected to the support shell, the output shaft of the servo motor passes through the bottom of the feeding barrel and the middle of the turntable, the output shaft of the servo motor is connected to a propeller for conveying the tea leaves downward, the propeller is located inside the feeding barrel, the lower outer side of the propeller is connected to a rotating plate for breaking up the tea leaves, the rotating plate is located in the support shell, and the rotating plate is located above the turntable.

[0013] More preferably, a funnel is further included, and the middle of the top of the discharge barrel is connected with the funnel.

[0014] More preferably, the top of the card frame is convex.

[0015] The beneficial effects and significant improvements of the present invention are:

[0016] 1. The ultraviolet sterilizer of the present invention can directly sterilize tea leaves without the need to additionally use a sterilization device to sterilize the tea leaves. This operation is convenient and can avoid affecting the quality of the tea leaves.

[0017] 2. Through the blocking mechanism of the present invention, the turntable can be blocked after the tea canister is filled, preventing the tea leaves from continuously leaking from the turntable, avoiding waste of tea leaves, and also facilitating the removal of the tea canister filled with a certain amount of tea leaves.

[0018] 3. Through the positioning mechanism of the present invention, the sliding frame can be blocked to prevent the sliding frame from immediately resetting after the tea canister is removed, avoiding interference with people's work.

[0019] 4. Through the removal mechanism of the present invention, the tea canister can be ejected, facilitating the staff to remove the tea canister and making the operation of the staff more convenient.

[0020] 5. Through the prompting mechanism of the present invention, a prompt can be given after the tea canister is filled, thus facilitating people to remove the tea canister and ensuring work efficiency.

[0021] 6. Through the propeller of the present invention, the tea leaves can be conveyed downward to facilitate feeding. The rotating plate can disperse the tea leaves, making the feeding of the tea leaves uniform and ensuring the canning efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is a three-dimensional structure diagram of the present invention.

[0023] Figure 2 It is the first partial sectional view of the present invention.

[0024] Figure 3 It is the second partial sectional view of the present invention.

[0025] Figure 4 It is the first three-dimensional structure diagram of the blocking mechanism of the present invention.

[0026] Figure 5 It is the second three-dimensional structure diagram of the blocking mechanism of the present invention.

[0027] Figure 6 It is the first partial three-dimensional structure diagram of the blocking mechanism of the present invention.

[0028] Figure 7 It is the second partial three-dimensional structure diagram of the blocking mechanism of the present invention.

[0029] Figure 8 It is the first three-dimensional structure diagram of the positioning mechanism of the present invention.

[0030] Figure 9Schematic diagram of the second three-dimensional structure of the card position mechanism of the present invention.

[0031] Figure 10 Schematic diagram of the partial three-dimensional structure of the card position mechanism of the present invention.

[0032] Figure 11 Schematic diagram of the three-dimensional structure of the taking-out mechanism of the present invention.

[0033] Figure 12 Schematic diagram of the partial three-dimensional structure of the taking-out mechanism of the present invention.

[0034] Figure 13 Schematic diagram of the three-dimensional structure of the prompting mechanism of the present invention.

[0035] Figure 14 Schematic diagram of the partial three-dimensional structure of the prompting mechanism of the present invention.

[0036] Figure 15 Schematic diagram of the three-dimensional structure of the blanking mechanism of the present invention.

[0037] Among them, the above-mentioned drawings include the following reference numerals: 1, bracket; 2, material storage barrel; 3, funnel; 4, ultraviolet sterilizer; 5, protective shell; 6, placement plate; 7, return spring; 70, turntable; 8, blocking mechanism; 80, sliding rod; 81, sliding frame; 82, baffle; 83, limiting rod; 9, card position mechanism; 90, card frame; 91, card rod; 92, return spring; 93, card slot; 10, taking-out mechanism; 100, bottom plate; 101, pull rod; 11, prompting mechanism; 110, first induction piece; 111, second induction piece; 112, prompting lamp; 13, blanking mechanism; 130, servo motor; 131, support shell; 132, propeller; 133, rotating plate. Detailed implementation manners

[0038] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0039] Embodiment 1

[0040] A tea sterilization and canning device, refer to Figures 1 to 3, including a bracket 1, a feeding bucket 2, an ultraviolet sterilizer 4, a protective shell 5, a placement plate 6, a return spring 7, a turntable 70, a blocking mechanism 8 and a positioning mechanism 9. The middle of the bracket 1 is connected to the feeding bucket 2. Multiple feeding holes for discharging materials are opened at the bottom of the feeding bucket 2. An ultraviolet sterilizer 4 for sterilizing tea leaves is installed on the inner wall of the feeding bucket 2. The inner bottom of the bracket 1 is connected to a protective shell 5. Six placement plates 6 for placing tea cans are evenly and slidably connected to the inner bottom of the bracket 1 along the circumferential direction. The six placement plates 6 are located inside the protective shell 5. A return spring 7 for resetting the placement plate 6 is welded between each of the six placement plates 6 and the inner bottom of the bracket 1. The lower part inside the feeding bucket 2 is rotatably connected to a turntable 70 for blocking tea leaves. Multiple blanking holes for discharging materials are opened on the turntable 70. A blocking mechanism 8 for blocking tea leaves is provided at the inner bottom of the bracket 1. A positioning mechanism 9 for positioning the blocking mechanism 8 is provided at the inner bottom of the bracket 1. The blocking mechanism 8 and the positioning mechanism 9 are located inside the protective shell 5.

[0041] Reference Figure 2 , Figure 4 , Figure 5 , Figure 6 and Figure 7 , the blocking mechanism 8 includes a sliding rod 80, a sliding frame 81, a baffle 82 and a limiting rod 83. A sliding rod 80 is connected to one side of each placement plate 6 away from each other. Six groups of sliding frames 81 are evenly and slidably connected to the inner bottom of the bracket 1 along the circumferential direction. The number of each group of sliding frames 81 is two. Every two sliding frames 81 are located on one side of the adjacent placement plates 6 away from each other, and every two sliding frames 81 are slidably connected to the adjacent sliding rod 80. A baffle 82 is connected between the tops of every two adjacent sliding frames 81. The baffle 82 can block the turntable 70. A limiting rod 83 for limiting the sliding frame 81 is connected to the outer side of the middle and lower part of the bracket 1. The six groups of sliding frames 81 are all slidably connected to the limiting rod 83.

[0042] Reference Figure 2 , Figure 8 , Figure 9 and Figure 10 , the positioning mechanism 9 includes a clamping frame 90, a clamping rod 91 and a return spring 92. Six clamping frames 90 are evenly connected to the middle of the inner bottom of the bracket 1 along the circumferential direction. The top of the clamping frame 90 is convex, which is convenient for pulling the clamping frame 90. A clamping rod 91 is connected to one side of each placement plate 6 close to the clamping frame 90. Each clamping rod 91 is slidably connected to the adjacent clamping frame 90. A return spring 92 is connected between each clamping frame 90 and the inside of the bracket 1. A clamping groove 93 for clamping the clamping rod 91 is opened on one side of the lower part of each clamping frame 90 close to the bracket 1.

[0043] Reference Figure 1 , it further includes a funnel 3. The middle of the top of the feeding bucket 2 is communicated with the funnel 3, which is convenient for feeding.

[0044] Tea generally includes the leaves and buds of the tea plant. The alias of tea is "cha". Common ways to store tea include putting it in cans. To ensure the quality of tea, before canning the tea, it is necessary to sterilize the tea. And for tea canning, special canning equipment is required. Initially, the blanking holes on the turntable 70 do not correspond to the feeding holes on the feeding bucket 2. When it is necessary to sterilize and can the tea, first place six tea cans on six placement plates 6 respectively. After placement, start the ultraviolet sterilizer 4. Then pour a certain amount of tea into the feeding bucket 2. The ultraviolet sterilizer 4 will sterilize the tea. After the tea is sterilized, rotate the turntable 70 so that the blanking holes on the turntable 70 are aligned with the feeding holes on the feeding bucket 2. In this way, the tea in the feeding bucket 2 will fall into the tea cans. When the tea cans are filled with tea, the tea cans will drive the placement plates 6 to move downward due to the gravity of the tea, and the return spring 7 will be compressed. When the placement plates 6 move downward, the placement plates 6 will drive the sliding rods 80 to move downward. The sliding rods 80 will move downward along the sliding frames 81. When the sliding rods 80 move downward a certain distance, the sliding rods 80 will push the sliding frames 81 to move outward. Thus, the sliding frames 81 drive the baffle plates 82 to move outward along the limiting rods 83. Furthermore, the baffle plates 82 will gradually block the feeding bucket 2 and the turntable 70, so that the tea is blocked. When the tea cans drive the placement plates 6 to move downward, the placement plates 6 will also drive the clamping rods 91 to move downward along the clamping frames 90. When the clamping rods 91 move downward to the position of the clamping grooves 93, the clamping rods 91 will snap into the clamping grooves 93. In this way, the clamping rods 91 will be clamped by the clamping frames 90. When the clamping rods 91 move downward along the clamping frames 90, the clamping frames 90 will also be squeezed and move outward, and the return spring 92 will be compressed. After a certain amount of tea is filled in all six tea cans, the staff needs to take out the six tea cans. After taking them out, place six new tea cans on the six placement plates 6 in sequence. After placement, the staff push the clamping frames 90 inward. Thus, the clamping frames 90 will move inward and reset under the action of the return of the return spring 92. Furthermore, the clamping rods 91 will disengage from the clamping grooves 93, and the clamping rods 91 will no longer be clamped. Then the placement plates 6 will move upward under the action of the return of the return spring 7. When the placement plates 6 move upward, they will also drive the sliding rods 80 to move upward. The sliding rods 80 move upward along the sliding frames 81 and reset. When the sliding rods 80 move upward to a certain position, the sliding rods 80 will push the sliding frames 81 to move inward. The sliding frames 81 drive the baffle plates 82 to move inward, so that the baffle plates 82 gradually no longer block the feeding bucket 2 and the turntable 70. Then the tea in the feeding bucket 2 will continue to flow into the corresponding tea cans through the feeding bucket 2 and the turntable 70. By operating in this way repeatedly, the tea can be quickly and conveniently canned. When it is not necessary to sterilize and can the tea, the staff can turn off the ultraviolet sterilizer 4.

[0045] Embodiment 2

[0046] On the basis of Embodiment 1, referring to Figure 1 、Figure 2 , Figure 11 and Figure 12 , further comprising a taking-out mechanism 10 for facilitating the taking out of the tea cans. The taking-out mechanism 10 includes a bottom plate 100 and a pull rod 101. A bottom plate 100 is placed in each placing plate 6. One side of each bottom plate 100 away from each other is connected with a pull rod 101. Each pull rod 101 is slidably connected to the protective shell 5.

[0047] When it is necessary to take out the tea cans filled with a certain amount of tea, the pull rod 101 can be pulled upward. The pull rod 101 will drive the bottom plate 100 to move upward, and the bottom plate 100 will drive the tea cans filled with tea to move upward. In this way, the tea cans can be taken out conveniently, making people's operations more convenient. When it is necessary to place new tea cans, then pull the pull rod 101 downward, and the pull rod 101 will drive the bottom plate 100 to move downward to the initial position.

[0048] Embodiment 3

[0049] On the basis of Embodiment 2, referring to Figure 1 , Figure 2 , Figure 13 and Figure 14 , further comprising a prompting mechanism 11 for prompting the message that the tea cans are filled with tea. The prompting mechanism 11 includes a first sensing piece 110, a second sensing piece 111 and a prompting lamp 112. A first sensing piece 110 is installed at the bottom of each placing plate 6. Six second sensing pieces 111 are evenly installed along the circumference at the inner bottom of the bracket 1. Each second sensing piece 111 is located below the adjacent first sensing piece 110. A prompting lamp 112 is installed on the outer side of the protective shell 5. The prompting lamp 112 is electrically connected to the first sensing piece 110 and the second sensing piece 111.

[0050] During the process of filling and taking out tea in the tea cans, the placing plate 6 will move downward under the action of gravity. Thus, during the downward movement of the placing plate 6, the placing plate 6 will drive the second sensing piece 111 to move downward. When the second sensing piece 111 moves downward to contact the first sensing piece 110, the first sensing piece 110 and the second sensing piece 111 will send signals to the prompting lamp 112. After receiving the signals, the prompting lamp 112 will automatically light up, prompting people that the tea in the tea cans has been filled to a certain amount and the tea cans need to be taken out. After the tea cans are taken out, the placing plate 6 will drive the second sensing piece 111 to move upward, and then the second sensing piece 111 will be separated from the first sensing piece 110. Subsequently, the prompting lamp 112 will go out. Such an operation can play a prompting role for the staff, thus bringing convenience to people's work.

[0051] Embodiment 4

[0052] On the basis of Embodiment 3, referring to Figure 2 and Figure 15, further comprising a feeding mechanism 13 for evenly feeding the tea leaves. The feeding mechanism 13 includes a servo motor 130, a support shell 131, a propeller 132 and a rotating plate 133. A servo motor 130 for providing a power source is installed on the lower side of the middle part inside the bracket 1. The bottom of the feeding barrel is connected with a support shell 131. The output shaft of the servo motor 130 passes through the bottom of the feeding barrel and the middle part of the turntable 70. The output shaft of the servo motor 130 is connected with a propeller 132 for downwardly conveying the tea leaves. The propeller 132 is located inside the discharging barrel 2. The outer side of the lower part of the propeller 132 is connected with a rotating plate 133 for dispersing the tea leaves. The rotating plate 133 is located inside the support shell 131 and above the turntable 70.

[0053] When pouring a certain amount of tea leaves into the discharging barrel 2, the servo motor 130 can be started. The output shaft of the servo motor 130 will drive the propeller 132 to rotate. The propeller 132 will convey the tea leaves downward. Subsequently, the tea leaves will fall onto the turntable 70. While the propeller 132 is rotating, the propeller 132 will also drive the rotating plate 133 to rotate. The rotating plate 133 will disperse the tea leaves falling onto the turntable 70. In this way, the tea leaves can be evenly fed, avoiding the accumulation of tea leaves on the turntable 70. When the servo motor 130 works for a certain period of time, the servo motor 130 will automatically stop working. In this way, the propeller 132 and the rotating plate 133 will stop rotating. The propeller 132 stops conveying the tea leaves downward, and the rotating plate 133 stops dispersing the tea leaves on the turntable 70. When the servo motor 130 stops working for the specified time, the servo motor 130 will work again. Thus, the propeller 132 and the rotating plate 133 will rotate again. Furthermore, the propeller 132 continues to convey the tea leaves downward, and the rotating plate 133 continues to disperse the tea leaves on the turntable 70. In this way, by intermittently conveying and dispersing the tea leaves through the propeller 132 and the rotating plate 133, the tea leaves can be evenly fed, which is beneficial to the canning of the tea leaves.

[0054] Although the present disclosure has been shown and described with reference to specific exemplary embodiments thereof, those skilled in the art should understand that various changes in form and detail may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. Therefore, the scope of the present disclosure should not be limited to the above embodiments, but should be determined not only by the appended claims but also by the equivalents of the appended claims.

Claims

1. A tea sterilization and canning device, comprising a support (1) and a feeding bucket (2). The middle of the support (1) is connected with a feeding bucket (2) for storing tea. A plurality of feeding holes for discharging materials are opened at the bottom of the feeding bucket (2). It is characterized in that: It further comprises an ultraviolet sterilizer (4), a protective shell (5), a placement plate (6), a return spring (7), a turntable (70), a blocking mechanism (8) and a positioning mechanism (9). An ultraviolet sterilizer (4) for sterilizing tea is installed on the inner wall of the feeding bucket (2). The inner bottom of the support (1) is connected with a protective shell (5). Six placement plates (6) for placing tea cans are evenly and slidably connected along the circumferential direction at the inner bottom of the support (1). The six placement plates (6) are located inside the protective shell (5). A return spring (7) for resetting the placement plate (6) is connected between each of the six placement plates (6) and the inner bottom of the support (1). A turntable (70) for blocking tea is rotatably connected to the lower part inside the feeding bucket (2). A plurality of blanking holes for discharging materials are opened on the turntable (70). A blocking mechanism (8) for blocking tea is arranged at the inner bottom of the support (1). A positioning mechanism (9) for positioning the blocking mechanism (8) is arranged at the inner bottom of the support (1). The blocking mechanism (8) and the positioning mechanism (9) are located inside the protective shell (5). The blocking mechanism (8) comprises a sliding rod (80), a sliding frame (81), a baffle (82) and a limiting rod (83). A sliding rod (80) is connected to the mutually remote side of each placement plate (6). Six groups of sliding frames (81) are evenly and slidably connected along the circumferential direction at the inner bottom of the support (1). The number of each group of sliding frames (81) is two. The two sliding frames (81) of each group are located on the mutually remote side of the adjacent placement plates (6), and the two sliding frames (81) of each group are slidably connected to the adjacent sliding rod (80). A baffle (82) is connected between the tops of every two adjacent sliding frames (81). The baffle (82) can block the turntable (70). A limiting rod (83) for limiting the sliding frame (81) is connected to the outer side of the middle and lower part of the support (1). The six groups of sliding frames (81) are all slidably connected to the limiting rod (83). The positioning mechanism (9) comprises a clamping frame (90), a clamping rod (91) and a return spring (92). Six clamping frames (90) are evenly connected along the circumferential direction at the middle of the inner bottom of the support (1). A clamping rod (91) is connected to the side of each placement plate (6) close to the clamping frame (90). Each clamping rod (91) is slidably connected to the adjacent clamping frame (90). A return spring (92) is connected between each clamping frame (90) and the inside of the support (1). A clamping groove (93) for clamping the clamping rod (91) is opened on the side of the lower part of each clamping frame (90) close to the support (1).

2. A tea sterilization and canning device according to claim 1, characterized in that, It also includes a removal mechanism (10) for conveniently removing the tea can. The removal mechanism (10) includes a bottom plate (100) and a pull rod (101). Each placement plate (6) is provided with a bottom plate (100). A side of each bottom plate (100) that is away from each other is connected to a pull rod (101). Each pull rod (101) is slidably connected to the protective shell (5).

3. A tea sterilizing and canning device according to claim 2, Its characteristics are: It also includes a prompting mechanism (11) for prompting that the tea can is full of tea leaves. The prompting mechanism (11) includes a first sensing sheet (110), a second sensing sheet (111) and a prompting light (112). The bottom of each placement plate (6) is mounted with a first sensing sheet (110). Six second sensing sheets (111) are evenly mounted along the circumferential direction on the bottom of the bracket (1). Each second sensing sheet (111) is located below a first sensing sheet (110) adjacent to the first sensing sheet. The outer side of the protective shell (5) is mounted with a prompting light (112). The prompting light (112) is electrically connected to the first sensing sheet (110) and the second sensing sheet (111).

4. A tea sterilizing and canning device according to claim 3, Its characteristics are: The invention also comprises a feeding mechanism (13) for evenly feeding the tea leaves. The feeding mechanism (13) comprises a servo motor (130), a support shell (131), a propeller (132) and a rotating plate (133). The servo motor (130) for providing a power source is installed on the lower middle side of the bracket (1). The bottom of the feeding barrel is connected to the support shell (131). The output shaft of the servo motor (130) passes through the bottom of the feeding barrel and the middle of the rotating plate (70). The output shaft of the servo motor (130) is connected to the propeller (132) for conveying the tea leaves downward. The propeller (132) is located inside the feeding barrel (2). The lower outer side of the propeller (132) is connected to the rotating plate (133) for breaking up the tea leaves. The rotating plate (133) is located inside the support shell (131). The rotating plate (133) is located above the rotating plate (70).

5. A tea sterilizing and canning device according to claim 4, Its characteristics are: It also includes a funnel (3), and the middle of the top of the discharge barrel (2) is connected to the funnel (3).

6. A tea sterilizing and canning device according to claim 5, Its characteristics are: The top of the card frame (90) is convex.

Citation Information

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    CN212580277U

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