Novel tea powder machine
Through the design of the new tea powder machine, the problems of automated quantity collection, convenient cleaning and unified powder production are solved, and the efficiency, automatic operation and convenient cleaning of the tea powder machine are achieved, ensuring the consistency of the taste and production time of the drink.
Patent Information
- Application Number
- CN202510803178.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-16
- Publication Date
- 2025-08-12
AI Technical Summary
The existing tea powder machines cannot achieve automatic and accurate measurement of tea powder, which is inconvenient to disassemble and assemble, which leads to difficulty in cleaning, and inconsistent powder production time, which affects the efficiency and taste of the beverage.
A new type of tea powder machine is designed, including a silo and powder output assembly, which realizes automatic control of tea powder through the rotation of the powder guide mechanism, combines a sealing structure to prevent tea powder from getting damp, and detachable parts are easy to clean.
It realizes automatic and accurate measurement of tea powder, avoids moisture, facilitates cleaning, ensures uniform powder production time, and improves operating efficiency and beverage quality.
Smart Images

Figure CN120458421A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of tea powder machines, in particular to a novel tea powder machine. Background Art
[0002] A tea powder machine is a food processing device that can output tea powder to achieve the need to add tea powder to beverages containing tea powder (tea leaves). Existing tea powder machines still have the following shortcomings:
[0003] 1. It is often impossible to accurately measure tea powder automatically, resulting in a deviation between the weight of the tea powder and the required amount, which affects the taste of the drink. To ensure accurate measurement, some existing tea powder machines rely on manual weighing to measure the corresponding amount of tea powder. This has a low degree of automation, is cumbersome to operate, is inefficient, and is prone to errors.
[0004] 2. The parts of the tea powder machine that come into contact with the tea powder are inconvenient or even impossible to disassemble. As a result, after use, the tea powder will come into contact with the relevant parts inside the tea powder machine, making it impossible to clean efficiently or even impossible to clean because it cannot be disassembled.
[0005] 3. The area for storing tea powder in the existing tea powder machine cannot be well sealed, which easily causes the tea powder stored in the tea powder machine for a long time or temporarily to get damp.
[0006] 4. Due to manual or semi-automated operation, the powder discharge time (i.e., the discharge of tea powder) is not uniform or fixed, and the powder discharge time cannot be guaranteed, which may affect some practical applications. For example, in commercial beverage applications, a unified and specified time is expected for the production. If the powder discharge time cannot be guaranteed, it may affect the preparation time of the beverage, causing consumers to spend extra time waiting. Summary of the Invention
[0007] In view of the deficiencies in the prior art, the purpose of the present invention is to provide a new tea powder machine that can solve the problems described in the background technology.
[0008] The technical solution for achieving the purpose of the present invention is as follows: a novel tea powder machine includes a box body, and a hopper and a powder discharge assembly mounted on the box body, the hopper includes a discharge port, the powder discharge assembly includes a discharge nozzle and a powder guide mechanism, the hopper is connected to the powder guide mechanism, one end of the discharge nozzle is connected to the powder guide mechanism, and the other end extends to the outside of the box body, and the powder guide mechanism can be rotated to a first position and a second position.
[0009] First position: the powder guide mechanism is blocked at the discharge nozzle, so that the discharge nozzle is isolated from the discharge port of the silo;
[0010] Second position: the powder guiding mechanism is unblocked at the discharge nozzle, so that the discharge nozzle is connected with the discharge port of the silo.
[0011] Furthermore, the silo is installed on the top of the box body, and the powder discharge assembly is installed inside the box body.
[0012] Furthermore, the silo further comprises an outer shell, a cover plate and an inner shell. The inner shell is installed in the outer shell, and the cover plate is sealedly installed on the top of the outer shell, so that a sealed space is formed inside the silo.
[0013] The inner shell includes the discharge port, and also includes a protrusion and a guide inclined plate. The guide inclined plate is tilted downward and gathered to form a protrusion with a cylindrical structure. The end of the narrower part forms a protrusion. The discharge port is located at the protrusion. The guide inclined plate is located inside the outer shell. The guide inclined plate is tilted. The discharge port is located at the end of the protrusion. The guide inclined plate is also provided with the upwardly protruding protrusion. The cover plate is provided with a concave hole adapted to the protrusion, and the protrusion can be engaged in the concave hole.
[0014] The protruding portion of the silo is inserted into the powder guiding mechanism, so that the silo and the powder guiding mechanism are sealed and connected.
[0015] Furthermore, the powder guide mechanism includes a material storage seat, a powder guide shaft, a first gear, a second gear, a first motor, a second motor and an impeller. The first motor material storage seat is installed on the box body, the powder guide shaft and the impeller are both installed on the material storage seat, the output end of the first motor is connected to the first gear, one end of the powder guide shaft is connected to the second gear, and the first gear and the second gear are meshed and connected.
[0016] A powder guide through hole is dug on the powder guide shaft, and the powder guide through hole penetrates the powder guide shaft along the radial direction of the powder guide shaft. When the powder guide shaft is driven by the second gear, it can be rotated to at least the third position and the fourth position, so that the powder guide mechanism rotates to the first position and the second position accordingly.
[0017] The third position: the powder guide hole of the powder guide shaft is staggered with the discharge port on the protruding part of the silo, so that the non-powder guide hole part of the powder guide shaft is sealed against the discharge port.
[0018] Fourth position: the powder guiding through hole of the powder guiding shaft is opposite to the discharge port on the protruding part of the hopper, so that the discharge port and the powder guiding through hole are kept in communication, and the powder guiding through hole and the inlet of the discharge nozzle are also kept in communication synchronously.
[0019] Furthermore, a first through hole is provided in the material storage seat, the powder guide shaft is detachably installed in the first through hole, one end of the powder guide shaft connected to the first gear extends out of the through hole, and the first gear is located outside the through hole.
[0020] The extending direction of the first through hole is perpendicular to the first motor, so that the powder guide shaft installed on the first through hole and the first motor are arranged in two perpendicular directions to each other.
[0021] A groove is dug from the outside to the inside on the top of the material storage seat, and the protrusion of the material bin is inserted into the groove, and the protrusion is sealed and connected to the groove.
[0022] Furthermore, the groove is located in the inner cavity of the storage seat, and a feeding port is provided on the side wall of the groove. When the powder guide shaft rotates to the third position, the feeding port remains disconnected from the inner cavity of the storage seat; when the powder guide shaft rotates to the fourth position, the feeding port remains connected to the inner cavity of the storage seat.
[0023] The impeller is installed in the groove, the powder guide through hole of the powder guide shaft is located in the inner cavity, and the feed inlet of the discharge nozzle is connected to the inner cavity and is located at the bottom of the inner cavity.
[0024] The output end of the second motor passes through the bottom of the material storage seat and extends into the groove to be connected with the impeller to drive the impeller to rotate. The joint between the output end of the second motor and the material storage seat remains sealed.
[0025] Furthermore, a sealing cover is connected to the top of the storage seat, and the sealing cover is flush with the top surface of the box body.
[0026] Furthermore, the storage seat is also provided with a second through hole, which passes through the bottom of the storage seat and is connected with the inner cavity of the storage seat. The top of the discharge nozzle abuts against the bottom outer wall of the storage seat, so that the inlet of the discharge nozzle is opposite to the second through hole.
[0027] Furthermore, the powder guiding mechanism further comprises a base, the material storage seat is mounted on the base, the base is mounted on the box body and is located inside the box body, the first motor is mounted on the box body and is located inside the box body,
[0028] The first gear and the second gear are both bevel gears.
[0029] The base is a rectangular body, and the material storage seat is also a rectangular body structure. The material storage seat is embedded in the concave groove of the base.
[0030] Furthermore, the novel tea powder machine further comprises a support plate, which is mounted inside the box body, and the base, the material storage seat and the second motor are all mounted on the support plate.
[0031] A controller is also included, and the first motor and the second motor are both electrically connected to the controller.
[0032] The beneficial effects of the present invention are as follows: the present invention facilitates the disassembly of parts that can come into contact with tea powder, can be efficiently cleaned, can well prevent the tea powder from getting damp, can more accurately control the amount of tea powder output, and can be completed within a preset unified time, has a high degree of automation, does not require manual operation, is easy to operate, and is highly efficient. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1It is a structural schematic diagram of the present invention;
[0034] Figure 2-13 They are schematic structural diagrams of the present invention after different parts are hidden;
[0035] Figure 14-16 Schematic diagram of the cup holder structure;
[0036] In the figure, 1- silo, 101- discharge port, 102- protrusion, 103- guide inclined plate, 104- outer shell, 2- box body, 3- discharge nozzle, 301- feed port, 302- baffle plate, 4- sealing cover, 5- impeller, 6- powder guide shaft, 601- powder guide through hole, 602- first gear, 7- first motor, 701- second gear, 8- controller, 9- support plate, 10- second motor Machine, 11-base, 12-storage seat, 1201-groove, 1202-first through hole, 1203-second through hole, 13-cup holder, 1301-cup holder handle, 1302-cup tray, 1303-material guide column, 14-tray rack, 1401-support part, 1402-limiting part, 1403-support plate, 1404-first notch, 1405-second notch, 15-weighing sensor. DETAILED DESCRIPTION
[0037] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:
[0038] like Figures 1-16 As shown, a new type of tea powder machine includes a housing 2, a silo 1 and a powder discharge assembly mounted on the housing 2. The silo 1 is mounted on the top of the housing 2, and the powder discharge assembly is mounted inside the housing 2. The silo 1 includes a discharge port 101, and the powder discharge assembly includes a discharge nozzle 3 and a powder guide mechanism. The silo 1 is connected to the powder guide mechanism so that the tea powder in the silo 1 can be transported to the powder guide mechanism. The powder guide mechanism is located inside the housing 2. One end of the discharge nozzle 3 is connected to the powder guide mechanism, and the other end extends to the outside of the housing 2 to discharge the tea powder. The powder guide mechanism can be rotated to a first position and a second position.
[0039] First position: the powder guide mechanism is blocked at the discharge nozzle 3, so that the discharge nozzle 3 is isolated from the discharge port 101 of the silo 1, that is, in a non-connected state;
[0040] Second position: the powder guiding mechanism is unblocked at the discharge nozzle 3 , so that the discharge nozzle 3 is connected to the discharge port 101 of the silo 1 .
[0041] The powder guiding mechanism is controllably rotated to the first position and the second position respectively, so that the powder discharging mechanism can be connected and disconnected with the silo 1, thereby allowing the tea powder to be discharged or prohibited from being discharged, so that whether to discharge the tea powder and the amount of tea powder discharged can be controlled as needed.
[0042] Exemplarily, the silo 1 further includes an outer shell 104, a cover plate and an inner shell (not shown in the figure), the inner shell is installed in the outer shell 104, and the cover plate is sealedly installed on the top of the outer shell 104, so that a sealed space is formed inside the silo 1, and the sealed space can store tea powder.
[0043] The inner shell includes the discharge port 101, as well as a protrusion 102 and a guide ramp 103. The guide ramp 103 is tilted downward and gathered to form a cylindrical protrusion, that is, it is wide at the top and narrow at the bottom, and the end of the narrower part forms a protrusion, and the discharge port 101 is located at the protrusion. The guide ramp 103 is located inside the outer shell 104. The guide ramp 103 is tilted, and the discharge port 101 is located at the end of the protrusion, that is, at the end of the convergence of the guide ramp 103. The guide ramp 103 is also provided with an upwardly protruding protrusion 102, and the cover plate is provided with a concave hole that matches the protrusion 102. The protrusion 102 can be engaged in the concave hole, thereby connecting the inner shell and the cover plate, thereby connecting the outer shell 104, the inner shell and the cover plate together to form the silo 1.
[0044] The protruding portion of the silo 1 is inserted into the powder guiding mechanism, so that the silo 1 is sealed and connected to the powder guiding mechanism. The tea powder stored in the silo 1 can be stored in a sealed manner and will not come into contact with the outside air when transported to the powder guiding mechanism, thereby ensuring that the tea powder is not damp through sealing.
[0045] The powder guiding mechanism includes a base 11, a material storage seat 12, a powder guiding shaft 6, a first gear 602, a second gear 701, a first motor 7, a second motor 10 and an impeller 5. The material storage seat 12 is mounted on the base 11, the base 11 is mounted on the housing 2 and is located inside the housing 2, and the powder guiding shaft 6 and the impeller 5 are both mounted in the material storage seat 12. The first motor 7 is mounted on the housing 2 and is located inside the housing 2, the output end of the first motor 7 is connected to the first gear 602, one end of the powder guiding shaft 6 is connected to the second gear 701, the first gear 602 and the second gear 701 are meshed and connected, the first motor 7 drives the first gear 602 to rotate, and then drives the second gear 701 to rotate through the first gear 602, and the second gear 701 drives the powder guiding shaft 6 to rotate.
[0046] For example, in order to save installation space and facilitate disassembly of the powder guide shaft 6, the first motor 7 and the powder guide shaft 6 are respectively installed in two directions perpendicular to each other, and the first gear 602 and the second gear 701 are both bevel gears.
[0047] Exemplarily, the base 11 is a rectangular body, and the storage seat 12 is also a rectangular body structure. The storage seat 12 is embedded in the concave groove of the base 11.
[0048] The powder guide shaft 6 is provided with a powder guide hole 601, which penetrates the powder guide shaft 6 along the radial direction of the powder guide shaft 6. When the powder guide shaft 6 is driven by the second gear 701, it can rotate to at least the third position and the fourth position, so that the powder guide mechanism rotates to the first position and the second position accordingly.
[0049] The third position: the powder guiding through hole 601 of the powder guiding shaft 6 is staggered with the discharge port 101 on the protruding part of the silo 1, so that the non-powder guiding through hole 601 of the powder guiding shaft 6 is sealed against the discharge port 101, thereby keeping the silo 1 and the powder guiding through hole 601 in a non-connected state, and keeping the powder guiding through hole 601 and the inlet 301 of the discharge nozzle 3 in a non-connected state, so that the tea powder in the silo 1 cannot be transported to the discharge nozzle 3, and keeps the tea powder non-delivery state, that is, the tea powder output function is turned off.
[0050] Fourth position: the powder guiding through hole 601 of the powder guiding shaft 6 is opposite to the discharge port 101 on the protruding part of the silo 1, so that the discharge port 101 and the powder guiding through hole 601 are kept in communication, and the powder guiding through hole 601 and the inlet 301 of the discharge nozzle 3 are also kept in communication synchronously, so that the tea powder in the silo 1 can be fed into the inlet 301 of the discharge nozzle 3 through the discharge port 101, and then output through the discharge nozzle 3 to maintain the tea powder conveying state, that is, to turn on the tea powder output function.
[0051] By driving the powder guiding shaft 6 to rotate to the third position and the fourth position, automatic control of whether to output tea powder can be achieved. Since the amount of tea powder passing through the powder guiding hole 601 per unit time is fixed, the desired target amount of tea powder can be delivered by keeping the powder guiding shaft 6 in the second position, that is, controlling the interval time when the powder guiding shaft 6 rotates to the third position and the fourth position, as well as the time at the third position and the fourth position.
[0052] Exemplarily, a first through hole 1202 is provided in the material storage base 12, and the powder guide shaft 6 is detachably mounted in the first through hole 1202. One end of the powder guide shaft 6 connected to the first gear 602 extends out of the through hole, and the first gear 602 is located outside the through hole. The extension direction of the first through hole 1202 is perpendicular to the first motor 7, so that the powder guide shaft 6 mounted on the first through hole 1202 and the first motor 7 are arranged in two perpendicular directions to each other.
[0053] The top of the material storage seat 12 is dug with a groove 1201 from the outside to the inside. The protrusion of the material bin 1 is inserted into the groove 1201, and the protrusion and the groove 1201 are sealed. For example, by providing a sealing ring at the junction of the protrusion and the groove 1201, good sealing performance can be achieved.
[0054] The groove 1201 is located in the inner cavity of the storage seat 12, and a feeding port is provided on the side wall of the groove 1201. When the powder guiding shaft 6 rotates to the third position, the feeding port remains disconnected from the inner cavity of the storage seat 12, so that the tea powder in the groove 1201 cannot be fed into the groove 1201 of the storage seat 12, and further cannot be fed into the inlet 301 of the discharge nozzle 3. When the powder guiding shaft 6 rotates to the fourth position, the feeding port remains connected to the inner cavity of the storage seat 12, so that the tea powder in the groove 1201 can enter the inner cavity of the storage seat 12 and further can be fed into the inlet 301 of the discharge nozzle 3. The impeller 5 is installed in the groove 1201, the powder guiding through hole 601 of the powder guiding shaft 6 is located in the inner cavity, and the inlet 301 of the discharge nozzle 3 is connected to the inner cavity and is located at the bottom of the inner cavity. The top of the material storage seat 12 is also connected to a sealing cover plate 4, which is flush with the top surface of the box body 2, that is, the sealing cover plate 4 and the top surface of the box body 2 are on the same plane. Of course, in actual use, the sealing cover plate 4 can also be omitted, and the top of the material storage seat 12 can be directly set flush with the top surface of the box body 2.
[0055] The output end of the second motor 10 passes through the bottom of the material storage base 12 and then extends into the groove 1201 to connect with the impeller 5, thereby driving the impeller 5 to rotate. The junction between the output end of the second motor 10 and the material storage base 12 remains sealed. The second motor 10 drives the impeller 5 to rotate, and the impeller 5 drives the tea powder in the groove 1201, thereby throwing the tea powder in the groove 1201 into the feeding port. When the powder guide shaft 6 has not rotated to the third position, that is, when the feeding port and the inner cavity of the material storage base 12 remain connected, the tea powder can be fed into the tea outlet, thereby discharging the tea powder.
[0056] Exemplarily, the material storage seat 12 is further provided with a second through hole 1203, which passes through the bottom of the material storage seat 12 and is connected to the inner cavity of the material storage seat 12. The top of the discharge nozzle 3 abuts against the bottom outer wall of the material storage seat 12, so that the inlet 301 of the discharge nozzle 3 is opposite to the second through hole 1203, so that the discharge nozzle 3 does not need to extend into the interior of the material storage seat 12, and the inlet 301 and the inner cavity of the material storage seat 12 can remain connected, which facilitates the disassembly of the discharge nozzle 3.
[0057] Exemplarily, the discharge nozzle 3 also includes a baffle plate 302, which is arranged at one end of the discharge nozzle 3 where the inlet 301 is located. The baffle plate 302 abuts against the bottom of the storage seat 12, thereby detachably connecting the discharge nozzle 3 to the storage seat 12.
[0058] After the tea powder is fed into the powder guide mechanism from the discharge port 101 of the silo 1, only the area where the groove 1201 of the powder guide mechanism is located, the area where the feed port on the inner wall of the groove 1201 is located, the area where the inner cavity of the storage seat 12 is located, the area where the second through hole 1203 is located, and the discharge nozzle 3 can contact the tea powder. After use, when these parts that have contacted the tea powder need to be cleaned, it is only necessary to disassemble the discharge nozzle 3, the silo 1, and the powder guide storage seat 12 to clean these parts. This is very efficient and convenient to disassemble and assemble, and thus the cleaning is completed efficiently. In addition, the storage seat 12 has good sealing performance, which can effectively prevent the tea powder from getting damp. The entire process of discharging the powder can be completely automated, without relying on manual weighing, and is more efficient. And by rotating the impeller 5 according to the preset time, it can be ensured that the amount of tea powder discharged within a certain time period is within the preset range. According to the inventor's actual research and test, the error of the powder discharge amount is within the range of ±0.4 grams, which can ensure that the preset amount of tea powder can be completed within a uniform time, and the powder discharge time can be guaranteed.
[0059] Exemplarily, it also includes a support plate 9 , which is installed inside the box body 2 , and the base 11 , the material storage seat 12 and the second motor 10 are all installed on the support plate 9 .
[0060] Exemplarily, a controller 8 is also included. The controller 8 is a hardware device based on a circuit board. The first motor 7 and the second motor 10 are both electrically connected to the controller 8 to control the start and stop of the first motor 7 and the second motor 10 through the controller 8.
[0061] Illustratively, the tea powder machine further includes a cup holder 13 structure, which includes the cup holder 13, a tray frame 14, and a weighing sensor 15. The cup holder 13 is detachably mounted on the tray frame 14, and the weighing sensor 15 is mounted on an end of the tray frame 14 away from the cup holder 13. The cup holder 13 is used to receive the tea powder output by the powder dispensing assembly, and the weighing sensor 15 is used to weigh the weight of the tea powder received by the cup holder 13.
[0062] Exemplarily, the cup holder 13 and the tray rack 14 are detachably connected, so that the cup holder 13 can be detachably mounted on the weighing sensor 15 .
[0063] The cup holder 13 includes a cup holder handle 1301, a cup tray 1302, and a material guide post 1303. One end of the cup holder handle 1301 is fixedly or detachably connected to the cup tray 1302, and the cup holder handle 1301 is located on one radial side of the cup tray 1302. The material guide post 1303 is fixedly or detachably connected to the cup tray 1302, and is located on one axial side of the cup tray 1302. The material guide post 1303 gradually narrows as it moves away from the cup tray 1302, presenting a structure that is wider at the top and narrower at the bottom.
[0064] The cup tray 1302 is provided with a concave receiving space for holding the tea powder, and the cup tray 1302 may be circular.
[0065] Illustratively, the cup holder handle 1301 is a long cylindrical structure, which can be a solid structure or a hollow structure.
[0066] Illustratively, a limiting ring (not shown in the figure) is further provided on one end of the cup holder handle 1301 close to the cup tray 1302 , and the limiting ring is sleeved on the cup holder handle 1301 .
[0067] Exemplarily, the material guiding column 1303 is a columnar structure with a through cavity, and the through cavity is arranged along the axial direction of the material guiding column 1303 .
[0068] Exemplarily, the material guide column 1303 is further provided with a switch for opening and closing the through-cavity. When the switch is on, the tea powder in the cup tray 1302 can be discharged to the outside of the material guide column 1303 through the through-cavity on the material guide column 1303. When the switch is off, the tea powder in the cup tray 1302 cannot be discharged to the outside of the column through the through-cavity on the material guide column 1303. The switch can be a paddle or other blocking piece. When the paddle or blocking piece completely covers the cross-section of the through-cavity, the through-cavity is closed. When the paddle or blocking piece completely does not cover or partially covers the cross-section of the through-cavity, the through-cavity is opened.
[0069] The pallet rack 14 includes a support portion 1401, a limiting portion 1402 and a support plate 1403. The support portion is connected to one end of the limiting portion 1402, and the other end of the limiting portion 1402 is connected to the support plate 1403. The support plate is also connected to a weighing sensor 15, which can be installed on the box body 2. The support portion 1401 includes a first limiting plate (not shown in the figure) and a second limiting plate. The first limiting plate and the second limiting plate are both connected to the same end of the support plate 1403, and the support portion 1401 is connected to one end of the second limiting plate. The first limiting plate and the second limiting plate are spaced apart so that a first recess 1404 is formed between the first limiting plate and the second limiting plate. The first limiting plate and the second limiting plate are both arranged obliquely upward relative to the support plate 1403. Correspondingly, the first recess 1404 is also arranged obliquely upward, and the opening is arranged at an end away from the support plate 1403 and facing outward.
[0070] It is understandable that, by coordinating the amount of tea powder currently measured by the weighing sensor 15 , the remaining required powder output time can be evaluated in real time, thereby accurately controlling the final output amount of tea powder.
[0071] The supporting portion 1401 is located below the limiting portion 1402, that is, below the second limiting plate. A second recess 1405 is provided on the supporting portion 1401. The opening of the second recess 1405 is set upward. The first recess 1404 and the second recess 1405 are connected to each other, and a third recess is formed between the connected areas. The opening of the third recess is located on the side away from the second limiting plate and is set outward.
[0072] When the cup holder 13 is placed on the tray rack 14, the cup tray 1302 of the cup holder 13 is suspended and engaged with the second notch 1405. The retaining ring on the cup holder 13 is located between the first notch 1404 and the second notch 1405. This prevents the cup holder 13 from being removed directly from the tray rack 14 when pulled horizontally, preventing accidental removal. A guide post 1303 passes through the second notch 1405, and the cup holder handle 1301 abuts against the first notch 1404. The diameter of the guide post 1303 is smaller than the width of the first notch 1404, smaller than the diameter of the cup tray 1302, and the diameter of the guide post 1303 is smaller than the diameter of the third notch. This dimensional relationship allows the cup holder 13 to be placed on and removed from the tray rack 14 vertically. Similarly, the cup holder 13 can also be moved horizontally (front-back and left-right). When the guide post 1303 on the cup holder 13 is aligned with and located to one side of the third notch, the cup holder 13 can be moved left or right, allowing the cup holder 13 to be placed on or removed from the tray rack 14 by moving it horizontally. This arrangement allows the cup holder 13 to be manipulated in both the vertical and horizontal directions (front-back and left-right) when sufficient space is available. When space is insufficient, particularly when vertical space is insufficient, the cup holder 13 can be manipulated solely in the horizontal direction to install or remove it.
[0073] The cup holder 13 structure allows for easy placement on the tea powder machine, conveniently receiving tea powder. The cup holder 13 structure, through the arrangement of the first notch 1404, the second notch 1405, and the third notch, can be operated in both vertical and horizontal directions, making it easy to install and remove the cup holder 13 regardless of whether space is sufficient or limited, adapting to a wider range of application scenarios and improving user experience.
[0074] The embodiment disclosed in this specification is merely an illustration of a single aspect of the present invention. The scope of protection of the present invention is not limited to this embodiment. Any other functionally equivalent embodiments fall within the scope of protection of the present invention. Those skilled in the art can make various other corresponding changes and modifications based on the technical solutions and concepts described above, and all such changes and modifications should fall within the scope of protection of the claims of the present invention.
Claims
1. A new type of tea powder machine, characterized in that, The powder discharging device comprises a box body, a hopper and a powder discharging assembly mounted on the box body, the hopper comprises a discharging port, the powder discharging assembly comprises a discharging nozzle and a powder guiding mechanism, the hopper is connected to the powder guiding mechanism, one end of the discharging nozzle is connected to the powder guiding mechanism, and the other end extends to the outside of the box body, and the powder guiding mechanism can be rotated to a first position and a second position. First position: the powder guide mechanism is blocked at the discharge nozzle, so that the discharge nozzle is isolated from the discharge port of the silo; Second position: the powder guiding mechanism is unblocked at the discharge nozzle, so that the discharge nozzle is connected with the discharge port of the silo.
2. The novel tea powder machine according to claim 1, characterized in that: The silo is installed on the top of the box, and the powder discharge assembly is installed inside the box.
3. The novel tea powder machine according to claim 1 or 2, characterized in that: The silo also includes an outer shell, a cover plate and an inner shell. The inner shell is installed in the outer shell, and the cover plate is sealed and installed on the top of the outer shell, so that a sealed space is formed inside the silo. The inner shell includes the discharge port, and also includes a protrusion and a guide inclined plate. The guide inclined plate is tilted downward and gathered to form a protrusion with a cylindrical structure. The end of the narrower part forms a protrusion. The discharge port is located at the protrusion. The guide inclined plate is located inside the outer shell. The guide inclined plate is tilted. The discharge port is located at the end of the protrusion. The guide inclined plate is also provided with the upwardly protruding protrusion. The cover plate is provided with a concave hole adapted to the protrusion, and the protrusion can be engaged in the concave hole. The protruding portion of the silo is inserted into the powder guiding mechanism, so that the silo and the powder guiding mechanism are sealed and connected.
4. The novel tea powder machine according to claim 3, characterized in that: The powder guide mechanism includes a material storage seat, a powder guide shaft, a first gear, a second gear, a first motor, a second motor and an impeller. The first motor material storage seat is installed on the box body, the powder guide shaft and the impeller are both installed on the material storage seat, the output end of the first motor is connected to the first gear, one end of the powder guide shaft is connected to the second gear, and the first gear and the second gear are meshed and connected. A powder guide through hole is dug on the powder guide shaft, and the powder guide through hole penetrates the powder guide shaft along the radial direction of the powder guide shaft. When the powder guide shaft is driven by the second gear, it can be rotated to at least the third position and the fourth position, so that the powder guide mechanism rotates to the first position and the second position accordingly. The third position: the powder guide hole of the powder guide shaft is staggered with the discharge port on the protruding part of the silo, so that the non-powder guide hole part of the powder guide shaft is sealed against the discharge port. Fourth position: the powder guiding through hole of the powder guiding shaft is opposite to the discharge port on the protruding part of the hopper, so that the discharge port and the powder guiding through hole are kept in communication, and the powder guiding through hole and the inlet of the discharge nozzle are also kept in communication synchronously.
5. The novel tea powder machine according to claim 4, characterized in that: A first through hole is provided in the material storage seat, and the powder guide shaft is detachably installed in the first through hole. One end of the powder guide shaft connected to the first gear extends out of the through hole, and the first gear is located outside the through hole. The extending direction of the first through hole is perpendicular to the first motor, so that the powder guide shaft installed on the first through hole and the first motor are arranged in two perpendicular directions to each other. A groove is dug from the outside to the inside on the top of the material storage seat, and the protrusion of the material bin is inserted into the groove, and the protrusion is sealed and connected to the groove.
6. The novel tea powder machine according to claim 5, characterized in that: The groove is located in the inner cavity of the storage seat, and a feeding port is provided on the side wall of the groove. When the powder guide shaft rotates to the third position, the feeding port and the inner cavity of the storage seat remain disconnected; when the powder guide shaft rotates to the fourth position, the feeding port and the inner cavity of the storage seat remain connected. The impeller is installed in the groove, the powder guide through hole of the powder guide shaft is located in the inner cavity, and the feed inlet of the discharge nozzle is connected to the inner cavity and is located at the bottom of the inner cavity. The output end of the second motor passes through the bottom of the material storage seat and extends into the groove to be connected with the impeller to drive the impeller to rotate. The joint between the output end of the second motor and the material storage seat remains sealed.
7. The novel tea powder machine according to claim 6, characterized in that: The top of the material storage seat is also connected with a sealing cover plate, which is flush with the top surface of the box body.
8. The novel tea powder machine according to claim 7, characterized in that: The material storage seat is also provided with a second through hole, which passes through the bottom of the material storage seat and is connected with the inner cavity of the material storage seat. The top of the discharge nozzle abuts against the bottom outer wall of the material storage seat, so that the inlet of the discharge nozzle is opposite to the second through hole.
9. The novel tea powder machine according to claim 8, characterized in that: The powder guiding mechanism further comprises a base, the material storage seat is mounted on the base, the base is mounted on the box body and is located inside the box body, the first motor is mounted on the box body and is located inside the box body, The first gear and the second gear are both bevel gears. The base is a rectangular body, and the material storage seat is also a rectangular body structure. The material storage seat is embedded in the concave groove of the base.
10. The novel tea powder machine according to claim 9, characterized in that: The novel tea powder machine also includes a support plate, which is installed inside the box body, and the base, the material storage seat and the second motor are all installed on the support plate. A controller is also included, and the first motor and the second motor are both electrically connected to the controller.