Lever type green leaf rocking unit
By designing a lever-type shaking machine, the tea leaves are automatically transported between the withering and shaking mechanisms, solving the problem of time-consuming and labor-intensive traditional manual handling, and improving the production efficiency and capacity of tea processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-03-24
AI Technical Summary
In traditional tea processing, the manual handling of the withering and shaking processes is time-consuming and labor-intensive, making it difficult to meet the needs of large-scale production and affecting production efficiency and capacity.
Design a lever-type shaking tea machine unit, including a drying mechanism, a shaking mechanism, a first conveying mechanism, and a second conveying mechanism. The shaking machine is driven to rotate around the shaft by a lifting mechanism, realizing the automatic transport of tea leaves between the drying and shaking mechanisms, forming a controllable lever structure and optimizing the flow path of the tea leaves.
It improves the production efficiency and capacity of tea processing, reduces manual intervention, realizes the automatic connection of withering and shaking processes, and enhances the overall production efficiency and capacity.
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Figure CN224022788U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to tea processing technical field, specifically, a lever type shaking machine set. BACKGROUND
[0002] Tea processing is also called tea making, which refers to the process of processing tea fresh buds and leaves into various semi-finished or finished products through various tea making processes. Tea making covers processes such as withering, airing, shaking, fixation and baking, and common finished products include oolong tea, black tea and green tea. Specifically, in the oolong tea primary processing technology, the airing process and the shaking process usually need to be alternately performed, which is also a key link for forming the quality of oolong tea.
[0003] In the traditional way, tea leaves are usually manually transported between the airing mechanism and the shaking mechanism, and are respectively spread on the airing mechanism and the shaking mechanism to alternately perform the airing process and the shaking process. However, manual transportation is time-consuming and laborious, affects the overall production efficiency, and is difficult to match the large-scale production demand, so that the production capacity is limited. SUMMARY
[0004] The utility model aims at providing a lever type shaking machine set, which solves the technical problem of how to improve the production efficiency and the production capacity.
[0005] To solve the above technical problems, the utility model adopts the following technical scheme.
[0006] The utility model provides a lever type shaking machine set, which comprises: an airing mechanism for airing tea leaves; a shaking mechanism comprising a base, a shaking machine and a lifting mechanism, wherein the base is provided with a shaft, the shaking machine is used for shaking tea leaves, and its two ends are respectively provided with a feeding port and a discharging port, and the lifting mechanism is arranged on the base; a first conveying mechanism for receiving tea leaves output by the airing mechanism and conveying them to the feeding port of the shaking machine; a second conveying mechanism for receiving tea leaves output from the discharging port of the shaking machine and conveying them to the airing mechanism; wherein the shaking machine is configured to rotate around the shaft under the drive of the lifting mechanism to adjust the height of the end where the feeding port is located and the end where the feeding port is located, and when the first conveying mechanism conveys tea leaves to the feeding port of the shaking machine, and when the second conveying mechanism receives tea leaves output from the discharging port of the shaking machine, the end where the feeding port is located is higher than the end where the discharging port is located, so that the shaking machine is inclined downward.
[0007] In some embodiments of the present application, the airing mechanism comprises a rack and a plurality of layers of conveying mechanisms arranged side by side and spaced apart in the vertical direction on the rack; the two ends of two adjacent layers of the conveying mechanisms are arranged in a staggered manner in the vertical direction, the two ends of two conveying mechanisms spaced apart by one layer are arranged in a non-staggered manner in the vertical direction, the conveying directions of two adjacent layers of the conveying mechanisms are opposite, and the conveying mechanism in the lower layer of the two adjacent layers of the conveying mechanisms receives the tea leaves falling from the conveying mechanism in the upper layer; the conveying mechanism in the top layer is used for being connected with the second conveying mechanism, and the conveying mechanism in the bottom layer is used for being connected with the first conveying mechanism.
[0008] In some embodiments of the present application, the conveying mechanism is provided with an odd number of layers, and the conveying mechanism in the bottom layer can convey in both directions; the lever-type rolling machine further comprises a third conveying mechanism, the third conveying mechanism and the first conveying mechanism are connected with the two ends of the conveying mechanism in the bottom layer in the conveying direction, and the third conveying mechanism is not connected with the rolling machine; wherein, when the conveying mechanism in the bottom layer conveys in the forward direction, the tea leaves thereon are output to the first conveying mechanism; when the conveying mechanism in the bottom layer conveys in the reverse direction, the tea leaves thereon are output to the third conveying mechanism.
[0009] In some embodiments of the present application, the airing mechanism further comprises an airing elevator; the first conveying mechanism comprises a first flat conveyor and a first elevator, and the conveying mechanism in the bottom layer, the first flat conveyor, the first elevator and the feeding port of the rolling machine are connected in sequence; the second conveying mechanism comprises a second flat conveyor and a second elevator, and the discharging port of the rolling machine, the second elevator, the second flat conveyor, the airing elevator and the conveying mechanism in the top layer are connected in sequence.
[0010] In some embodiments of the present application, the conveying mechanism, the rolling machine, the first elevator, the second elevator and the airing elevator all extend in a first direction, the conveying mechanism and the rolling machine are arranged side by side and spaced apart in a second direction, the first flat conveyor and the second flat conveyor both extend in the second direction, and the first direction and the second direction are perpendicular to each other.
[0011] In some embodiments of the present application, the conveying mechanism comprises a driving shaft, a driven shaft, a conveying belt and a driving member, the driving shaft and the driven shaft are drivingly connected and are both rotatably arranged on the rack, the conveying belt is sleeved outside the driving shaft and the driven shaft, and the driving member is used for driving the driving shaft to rotate.
[0012] In some embodiments of the present application, the tea-leaf rolling machine comprises a support frame, a rolling drum and an air inlet assembly, the support frame is rotatably connected to the base through the shaft, the rolling drum is rotatably arranged on the support frame and has a tea-leaf rolling channel therein, one end of the tea-leaf rolling channel is the discharge port, and the air inlet assembly comprises a cylinder and a fan, the cylinder has the feeding port at the top and an input channel therein, the input channel is in communication with the feeding port and the tea-leaf rolling channel, and the fan is used to provide air flow sequentially through the input channel and the tea-leaf rolling channel.
[0013] In some embodiments of the present application, the support frame comprises a base frame rotatably connected to the base through the shaft and two side plates supported on the base frame, and the side plates are provided with guide rails; the tea-leaf rolling machine further comprises a door body and a driving cylinder, the door body and the rolling drum are located between the two side plates, the door body comprises a body and a guide rod connected to each other, the guide rod is slidably connected to the guide rails, and the driving cylinder is arranged on the base frame and used to drive the guide rod to slide relative to the guide rails and make the body close or open the discharge port.
[0014] From the above technical solution, the present application has at least the following advantages and positive effects:
[0015] In the lever-type tea-leaf rolling machine according to the present application, after the tea leaves are preliminarily dried on the tea-leaf airing mechanism, the first conveying mechanism conveys the tea leaves to the feeding port of the tea-leaf rolling machine, at this time, under the driving of the lifting mechanism, the tea-leaf rolling machine rotates around the shaft and inclines downward from the end where the feeding port is located to the end where the discharge port is located, the tea leaves can move from the feeding port to the side close to the discharge port under the action of gravity, thereby avoiding the accumulation of tea leaves at the feeding port, and the rapid feeding of the tea-leaf rolling machine is realized. After the tea leaves complete rolling in the tea-leaf rolling machine in the horizontal state, the tea leaves are output from the discharge port of the tea-leaf rolling machine to the second conveying mechanism, at this time, the lifting mechanism drives the tea-leaf rolling machine to rotate again so that the tea-leaf rolling machine inclines downward from the end where the feeding port is located to the end where the discharge port is located, and the tea leaves in the tea-leaf rolling machine can flow out of the discharge port rapidly under the action of gravity, thereby realizing the rapid discharging of the tea-leaf rolling machine. Subsequently, the second conveying mechanism conveys the tea leaves to the tea-leaf airing mechanism again, thereby completing the alternation of airing and rolling once, and the above-mentioned alternating operation can be repeated according to the actual needs of tea making.
[0016] On one hand, the lever-type tea-leaf rolling machine set realizes automatic carrying of tea leaves between the withering mechanism and the tea-leaf rolling machine through the first conveying mechanism and the second conveying mechanism, so as to replace manual carrying with mechanical carrying, thereby improving production efficiency. On the other hand, the tea-leaf rolling machine, the base, the shaft member and the lifting mechanism cooperatively form a controllable lever-type structure, which accelerates the flow of tea leaves during the process of feeding tea leaves into the tea-leaf rolling machine and discharging tea leaves from the tea-leaf rolling machine, and can further improve production efficiency. In addition, the processes can be automatically connected, and human intervention is less, thereby effectively improving production capacity. BRIEF DESCRIPTION OF DRAWINGS
[0017] The various objects, features and advantages of the present application will become more apparent to those skilled in the art from the following detailed description of preferred embodiments of the present application, when considered in conjunction with the accompanying drawings. The drawings are not necessarily to scale, and the various features of the present application are not necessarily drawn to scale in the drawings. In the drawings, like reference numerals refer to like parts throughout the various views. In the drawings:
[0018] Figure 1 is a perspective structural schematic view of a lever-type tea-leaf rolling machine set according to an exemplary embodiment.
[0019] Figure 2 is a plan structural schematic view of Figure 1 .
[0020] Figure 3 is a sectional view of the tea-leaf rolling mechanism in Figure 1 .
[0021] Figure 4 is a sectional view of the withering mechanism in Figure 1 .
[0022] The reference numerals are explained as follows:
[0023] 1, withering mechanism; 11, rack; 12, conveying mechanism; 121, driving shaft; 122, driven shaft; 123, conveying belt; 13, withering elevator;
[0024] 2, tea-leaf rolling mechanism; 21, base; 211, shaft member; 22, tea-leaf rolling machine; 221, support frame; 2211, base frame; 2212, side plate; 2213, guide rail; 222, roller; 2221, discharge port; 2222, rolling channel; 223, air inlet assembly; 2231, cylinder; 2232, fan; 2233, feeding hopper; 2234, feeding port; 2235, input channel; 224, door body; 2241, body; 2242, guide rod; 225, driving cylinder; 23, lifting mechanism;
[0025] 3, first conveying mechanism; 31, first flat conveyor; 32, first elevator; 33, discharge hopper;
[0026] 4. second conveying means; 41. second flat conveyor; 42. second elevator; 43. ingredient flat conveyor;
[0027] 5. third conveying means;
[0028] D1. first direction; D2. second direction. DETAILED DESCRIPTION
[0029] While the present application can be susceptible to embodiment in different forms, there are shown in the drawings, and will be described herein in detail, specific embodiments with the understanding that the present description is to be considered an exemplification of the principles of the application, and is not intended to limit the application to that as illustrated.
[0030] From this disclosure it will be understood that, although a feature can have been disclosed in one embodiment of the application, this does not in any way limit the scope of the application to that embodiment. A feature disclosed in one embodiment can be combined with features of another embodiment. It will also be understood that the disclosure of a range implies disclosure of all values and sub-ranges within that range. These and other aspects, embodiments and / or particulars of the application will become apparent from a reading of the following detailed description when taken in conjunction with the accompanying drawings.
[0031] In the embodiments shown in the drawings, the indications of direction, such as up, down, left, right, front and back, are used to explain the structure and movement of the various elements of the application are not absolute but relative. These indications are appropriate when the elements are in the position shown in the drawings. If the position of the elements is changed, the indications of direction will change accordingly.
[0032] Reference is made to Figures 1 to 3The utility model discloses a lever type tea leaf shaking machine 22 groups, which mainly comprises an airing mechanism 1, a shaking mechanism 2, a first conveying mechanism 3 and a second conveying mechanism 4. The airing mechanism 1 is used for airing tea leaves. The shaking mechanism 2 comprises a base 21, a shaking machine 22 and a lifting mechanism 23. The base 21 is provided with a shaft 211. The shaking machine 22 is used for shaking tea leaves, and its two ends are respectively provided with an inlet 2234 and an outlet 2221. The lifting mechanism 23 is arranged on the base 21. The first conveying mechanism 3 is used for receiving tea leaves output by the airing mechanism 1 and conveying the tea leaves to the inlet 2234 of the shaking machine 22. The second conveying mechanism 4 is used for receiving tea leaves output from the outlet 2221 of the shaking machine 22 and conveying the tea leaves to the airing mechanism 1. The shaking machine 22 is configured to rotate around the shaft 211 under the drive of the lifting mechanism 23 to adjust the height of the end where the inlet 2234 is located and the end where the outlet 2221 is located. When the first conveying mechanism 3 conveys tea leaves to the inlet 2234 of the shaking machine 22, and when the second conveying mechanism 4 receives tea leaves output from the outlet 2221 of the shaking machine 22, the end where the inlet 2234 is located is higher than the end where the outlet 2221 is located, so that the shaking machine 22 is inclined downward.
[0033] In the lever type tea leaf shaking machine 22 group, after the tea leaves are preliminarily dried by the airing mechanism 1, the first conveying mechanism 3 conveys the tea leaves to the inlet 2234 of the shaking machine 22. At this time, under the drive of the lifting mechanism 23, the shaking machine 22 rotates around the shaft 211 and is inclined downward from the end where the inlet 2234 is located to the end where the outlet 2221 is located. The tea leaves can move from the inlet 2234 to the side close to the outlet 2221 under the action of gravity, so that the tea leaves are prevented from accumulating at the inlet 2234, thereby realizing rapid feeding of the shaking machine 22. After the tea leaves complete shaking in the shaking machine 22 in a horizontal state, the tea leaves are output from the outlet 2221 of the shaking machine 22 to the second conveying mechanism 4. At this time, the lifting mechanism 23 drives the shaking machine 22 to rotate again, so that the shaking machine 22 is inclined downward from the end where the inlet 2234 is located to the end where the outlet 2221 is located. The tea leaves in the shaking machine 22 can flow out of the outlet 2221 rapidly under the action of gravity, thereby realizing rapid discharging of the shaking machine 22. Subsequently, the second conveying mechanism 4 conveys the tea leaves to the airing mechanism 1 again, thereby completing one cycle of alternation of airing and shaking. The above-mentioned alternating actions can be repeated according to actual needs of tea making.
[0034] On the one hand, the lever-type tea rolling machine 22 group realizes automatic carrying of tea between the withering mechanism 1 and the tea rolling machine 22 through the first conveying mechanism 3 and the second conveying mechanism 4, so as to replace manual carrying with mechanism carrying, thereby improving production efficiency. On the other hand, the tea rolling machine 22, the base 21, the shaft member 211 and the lifting mechanism 23 cooperatively form a controllable lever-type structure, which accelerates the flow of tea during the process of feeding tea into the tea rolling machine 22 and discharging tea from the tea rolling machine 22, thereby further improving production efficiency. In addition, automatic connection between processes can be realized, and manual intervention is less, thereby effectively improving production capacity.
[0035] Please refer to Figure 2 and Figure 4 In specific embodiments, the withering mechanism 1 comprises a rack 11 and a plurality of layers of conveying mechanisms 12 arranged side by side and spaced apart in the vertical direction on the rack 11. The two ends of adjacent two layers of conveying mechanisms 12 are arranged in a staggered manner in the vertical direction, the two ends of two conveying mechanisms 12 spaced apart by one layer are arranged in a non-staggered manner in the vertical direction, the conveying directions of adjacent two layers of conveying mechanisms 12 are opposite, and the conveying mechanism 12 located in the lower layer of the adjacent two layers of conveying mechanisms 12 receives tea falling from the conveying mechanism 12 located in the upper layer. The conveying mechanism 12 located in the topmost layer is used to connect with the second conveying mechanism 4, and the conveying mechanism 12 located in the bottommost layer is used to connect with the first conveying mechanism 3.
[0036] Tea is fed to the conveying mechanism 12 located in the topmost layer and falls layer by layer to the bottommost layer, and then is output to the first conveying mechanism 3. The arrangement of the multilayer conveying mechanisms 12 on the rack 11 enables tea to naturally fall from the upper layer to the lower layer and to be naturally rolled during the falling process. The flow paths of tea on the conveying mechanisms 12 are clear and do not interfere with each other, and the vertical multilayer structure formed by the multilayer conveying mechanisms 12 is more compact than the traditional planar withering, which is beneficial to save space.
[0037] It should be noted that tea can be fed to the conveying mechanism 12 located in the topmost layer by other equipment before tea rolling, or tea can be fed to the conveying mechanism 12 located in the topmost layer by the second conveying mechanism 4 after tea rolling.
[0038] In specific embodiments, the conveying mechanism 12 is provided with an odd number of layers, and the conveying mechanism 12 located in the bottommost layer can convey in both directions. The lever-type tea rolling machine 22 group further comprises a third conveying mechanism 5, the third conveying mechanism 5 and the first conveying mechanism 3 are connected with the two ends of the conveying mechanism 12 located in the bottommost layer in the conveying direction, respectively, and the third conveying mechanism 5 is not connected with the tea rolling machine 22. When the conveying mechanism 12 located in the bottommost layer is positively conveyed, tea thereon is output to the first conveying mechanism 3. When the conveying mechanism 12 located in the bottommost layer is reversely conveyed, tea thereon is output to the third conveying mechanism 5.
[0039] Since the conveying mechanism 12 is provided with odd layers, the conveying direction of the conveying mechanism 12 at the bottom layer is the same as that of the conveying mechanism 12 at the top layer, and the tea on the conveying mechanism 12 at the bottom layer is output to the first conveying mechanism 3 when the conveying mechanism 12 at the bottom layer is positively conveyed, so the feeding side and the discharging side of the two layers of conveying mechanisms 12 are the same, and since the second conveying mechanism 4 is arranged between the discharging port 2221 of the rolling machine 22 and the feeding side of the conveying mechanism 12 at the top layer, and the first conveying mechanism 3 is arranged between the feeding port 2234 of the rolling machine 22 and the discharging side of the conveying mechanism 12 at the bottom layer, the first conveying mechanism 3 and the second conveying mechanism 4 are conveniently arranged. The third conveying mechanism 5 is used to connect with the subsequent machine group, and after the tea completes the set number of alternating actions of airing and rolling, the conveying mechanism 12 at the bottom layer is reversely conveyed, and can be conveyed to the subsequent machine group through the third conveying mechanism 5 for subsequent process.
[0040] In a specific embodiment, the airing mechanism 1 further comprises an airing elevator 13. The first conveying mechanism 3 comprises a first flat conveying machine 31 and a first elevator 32, and the conveying mechanism 12 at the bottom layer, the first flat conveying machine 31, the first elevator 32 and the feeding port 2234 of the rolling machine 22 are sequentially connected. The second conveying mechanism 4 comprises a second flat conveying machine 41 and a second elevator 42, and the discharging port 2221 of the rolling machine 22, the second elevator 42, the second flat conveying machine 41, the airing elevator 13 and the conveying mechanism 12 at the top layer are sequentially connected. The first flat conveying machine 31 is used to receive the tea falling from one end of the conveying mechanism 12 at the bottom layer, the first elevator 32 lifts the tea upward and drops it into the feeding port 2234 of the rolling machine 22, the second elevator 42 lifts the tea falling from the discharging port 2221 of the rolling machine 22 to the second flat conveying machine 41, and the airing elevator 13 receives the tea falling from the second flat conveying machine 41 and lifts it to the conveying mechanism 12 at the top layer. Through the cooperation of each flat conveying machine and elevator, a circulating closed loop is formed between the rolling mechanism 2 and the airing mechanism 1, which can realize automatic continuous processing and optimize the tea circulation path.
[0041] In a further embodiment, the second conveying mechanism 4 further comprises a dosing flat conveying machine 43, which is horizontally movably arranged below the second flat conveying machine 41 and is used to receive the tea falling from the second flat conveying machine 41 and horizontally move to make the tea on it fall evenly on the feeding end of the airing elevator 13.
[0042] It should be noted that the tea not subjected to rolling is conveyed to the conveying mechanism 12 at the top layer through the airing elevator 13, and falls layer by layer to the bottom layer until it is output, and the tea is aired when it is stationary in each layer of the conveying mechanism 12.
[0043] Please refer to Figure 1 andFigure 2 In the embodiment, the conveying mechanism 12, the rocking machine 22, the first lifting machine 32, the second lifting machine 42 and the airing lifting machine 13 all extend along the first direction D1, the conveying mechanism 12 and the rocking machine 22 are arranged side by side in the second direction D2, the first flat conveyor 31 and the second flat conveyor 41 both extend along the second direction D2, and the first direction D1 and the second direction D2 are perpendicular to each other. An orthogonal arrangement structure is formed between the above components, which can shorten the material transfer distance, reduce the energy consumption, avoid the interference between the components, and optimize the spatial layout of the overall machine set.
[0044] Please refer to Figure 4 In the specific embodiment, the conveying mechanism 12 comprises a driving shaft 121, a driven shaft 122, a conveying belt 123 and a driving member (not shown in the drawings), the driving shaft 121 and the driven shaft 122 are in transmission connection and are both rotatably arranged on the rack 11, the conveying belt 123 is sleeved on the driving shaft 121 and the driven shaft 122, and the driving member is used to drive the driving shaft 121 to rotate. The driving member is used to provide driving force for driving the driving shaft 121 to rotate, the driving shaft 121 drives the driven shaft 122 to rotate synchronously, so as to drive the conveying belt 123 on the driven shaft 122 to start operation. The conveying belt 123 is used to carry and transport tea leaves, and through the cooperation between the driving member, the driving shaft 121, the driven shaft 122 and the conveying belt 123, a feasible, stable and reliable structure scheme is provided for the conveying mechanism 12.
[0045] In the embodiment, the driving member is located on one side of the driving shaft 121 in the horizontal direction and is engaged with the driving shaft 121 through a gear, the driving member rotates to drive the driving shaft 121 to rotate, and the driving member is a rotating motor in the embodiment.
[0046] Please refer to Figure 2 and Figure 3 In the specific embodiment, the rocking machine 22 comprises a support frame 221, a roller 222 and an air inlet assembly 223, the support frame 221 is rotatably connected with the base 21 through the shaft 211, the roller 222 is rotatably arranged on the support frame 221 and is internally provided with a rocking passage 2222, one end of the rocking passage 2222 is an outlet 2221, the air inlet assembly 223 comprises a cylinder 2231 and a fan 2232, the cylinder 2231 is provided with an inlet 2234 at the top, and is internally provided with an input passage 2235, the input passage 2235 is in communication with the inlet 2234 and the rocking passage 2222 respectively, and the fan 2232 is used to provide airflow which sequentially passes through the input passage 2235 and the rocking passage 2222. On one hand, the fan 2232 is used to promote the evaporation of the moisture of the tea leaves, and on the other hand, it can further reduce the accumulation of the tea leaves in the input passage 2235, and further accelerate the feeding and discharging speed of the tea leaves in the rocking machine 22.
[0047] In the embodiment, the top of the barrel 2231 is provided with a feeding hopper 2233, the feeding port 2234 is located in the feeding hopper 2233, the discharge end of the first elevator 32 is provided with a discharge hopper 33, and the feeding hopper 2233 and the discharge hopper 33 are matched in position to ensure that the tea leaves can be accurately discharged.
[0048] In specific embodiments, the support frame 221 includes a base frame 2211 rotationally connected to the base 21 through the shaft 211 and two side plates 2212 supported on the base frame 2211, and the side plates 2212 are provided with guide rails 2213. The shaking machine 22 further includes a door body 224 and a driving cylinder 225, the door body 224 and the drum 222 are located between the two side plates 2212, the door body 224 includes a body 2241 and a guide rod 2242 connected with each other, the guide rod 2242 is slidingly connected with the guide rail 2213, the driving cylinder 225 is arranged on the base frame 2211 and is used to drive the guide rod 2242 to slide relative to the guide rail 2213 and to make the body 2241 close or open the discharge port 2221. The body 2241 can close the discharge port 2221 during the shaking process to avoid accidental spilling of tea leaves, and can open the discharge port 2221 during discharging to ensure normal discharging of the shaking machine 22. Through cooperation between the driving cylinder 225, the guide rail 2213 and the guide rod 2242, the opening and closing of the body 2241 to the discharge port 2221 can be accurately controlled.
[0049] Although the present application has been described with reference to several exemplary embodiments, it is understood that the words that have been used are words of description and illustration, rather than words of limitation. Since the present application can be embodied in various forms without departing from the spirit or essential characteristics thereof, it is understood that the embodiments are not limited to any particular combinations of the recited features. It should be understood that the present application is broad in scope and is defined, only by the appended claims, which express the true scope of these rights, wherefore it is not intended that the application be limited by the recited combination of means.
Claims
1. A lever-type shaking machine unit, characterized in that, The utility model relates to a kind of tea processing equipment, including: Wilt mechanism for tea is wilted; Rolling mechanism, including base, rolling machine and lifting mechanism, the base is equipped with shaft, the rolling machine is used to tea is rolled, and its two ends are equipped with inlet and outlet respectively, the lifting mechanism is equipped on the base; First conveying mechanism, for receiving the tea that the wilt mechanism outputs, and it is conveyed to the inlet of the rolling machine; Second conveying mechanism, for receiving the tea that the outlet of the rolling machine outputs, and it is conveyed to the wilt mechanism; Wherein, the rolling machine is configured to rotate around the shaft under the drive of the lifting mechanism, to adjust the height of the end where the inlet is located and the end where the inlet is located, and when the first conveying mechanism conveys tea to the inlet of the rolling machine, and when the second conveying mechanism receives the tea that the outlet of the rolling machine outputs, the end where the inlet is located is higher than the end where the outlet is located, so that the rolling machine is inclined downward.
2. The lever-type agitator set according to claim 1, characterized by The wilt mechanism includes a rack and a plurality of layers of conveying mechanisms arranged side by side and spaced apart in the vertical direction on the rack; The two ends of two adjacent layers of the conveying mechanisms are vertically misaligned, the two ends of two conveying mechanisms spaced apart by one layer are vertically aligned, the conveying directions of two adjacent layers of the conveying mechanisms are opposite, and the conveying mechanism located in the lower layer of the two adjacent layers of the conveying mechanisms receives the tea falling from the conveying mechanism located in the upper layer; The conveying mechanism located in the topmost layer is used to connect with the second conveying mechanism, and the conveying mechanism located in the bottommost layer is used to connect with the first conveying mechanism.
3. The lever-type agitator set according to claim 2, wherein The conveying mechanism has an odd number of layers, and the conveying mechanism located in the bottommost layer can convey tea in both directions; The lever-type rolling machine set further includes a third conveying mechanism, the third conveying mechanism and the first conveying mechanism are connected with the two ends of the conveying mechanism located in the bottommost layer in the conveying direction, and the third conveying mechanism is not connected with the rolling machine; When the conveying mechanism located in the bottommost layer conveys tea in the forward direction, the tea on the conveying mechanism is output to the first conveying mechanism; When the conveying mechanism located in the bottommost layer conveys tea in the reverse direction, the tea on the conveying mechanism is output to the third conveying mechanism.
4. The lever-type agitator set according to claim 3, wherein The wilt mechanism further includes a wilt lifting machine; The first conveying mechanism includes a first flat conveyor and a first lifting machine, and the conveying mechanism located in the bottommost layer, the first flat conveyor, the first lifting machine, and the inlet of the rolling machine are connected in sequence; The second conveying mechanism includes a second flat conveyor and a second lifting machine, and the outlet of the rolling machine, the second lifting machine, the second flat conveyor, the wilt lifting machine, and the conveying mechanism located in the topmost layer are connected in sequence.
5. The lever-type agitator set according to claim 4, wherein The conveying mechanism, the rolling machine, the first lifting machine, the second lifting machine, and the wilt lifting machine all extend in a first direction, the conveying mechanism and the rolling machine are arranged side by side and spaced apart in a second direction, the first flat conveyor and the second flat conveyor both extend in the second direction, and the first direction and the second direction are perpendicular to each other.
6. The lever-type agitator set according to claim 2, wherein The conveying mechanism includes a drive shaft, a driven shaft, a conveyor belt, and a driving component. The drive shaft and the driven shaft are connected by a drive mechanism and are rotatably mounted on the frame. The conveyor belt is sleeved on the drive shaft and the driven shaft. The driving component is used to drive the drive shaft to rotate.
7. The lever-type agitator set according to claim 1, wherein The shaking machine includes a support frame, a roller, and an air inlet assembly. The support frame is rotatably connected to the base via the shaft. The roller is rotatably mounted on the support frame and has a shaking channel inside it. One end of the shaking channel is the discharge port. The air inlet assembly includes a cylinder and a fan. The top of the cylinder has the feed port and an input channel inside it. The input channel is connected to both the feed port and the shaking channel. The fan provides airflow that passes sequentially through the input channel and the shaking channel.
8. The lever-type agitator set according to claim 7, wherein The support frame includes a base frame rotatably connected to the base via the shaft and two side plates supported on the base frame, with guide rails provided on the side plates; The shaking machine also includes a door and a drive cylinder. The door and the roller are both located between the two side plates. The door includes a connected body and a guide rod. The guide rod is slidably connected to the guide rail. The drive cylinder is mounted on the base frame and is used to drive the guide rod to slide relative to the guide rail and to close or open the discharge port of the body.