Separated fruit tea machine

This modular, detachable fruit tea machine uses low-speed pounding and filter separation technology to solve the problem of separating fruit juice from fruit pits, achieving juice preservation and automated operation, and is suitable for home and catering services.

CN223979666UActive Publication Date: 2026-03-10YANSHAN UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2026-03-10

AI Technical Summary

Technical Problem

Existing fruit tea machines have a cumbersome production process, cannot effectively separate juice from seeds, leading to nutrient loss and juice oxidation. They also have a low level of intelligence and cannot meet personalized needs.

Method used

The modularly designed, separate fruit tea machine includes a pressing module, a pounding module, a water injection module, and a shaking module. It achieves automated separation of juice and pits through low-speed pounding and filter screen separation, combined with intelligent control.

Benefits of technology

It achieves efficient separation of juice and seeds, preserves fruit nutrients, reduces human intervention, has a compact structure, and is suitable for home and catering services.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a separated fruit tea machine which comprises a main framework, a stamping module, a beating module, a water injection module, a shaking module, a chassis, an upper end cover and a lower end cover, the stamping module, the hammering module and the water injection module are circumferentially and uniformly arranged in the main framework, and partitions are arranged among the three modules; the shaking module is arranged below the main framework; the chassis is arranged below the shake-up module; the upper end cover is arranged outside the main framework; and the lower end cover is arranged outside the shaking module. According to the fruit tea machine, the juicing mode and the control process of an original fruit tea machine are improved, and the problems that in the prior art, fruit tea making efficiency is low, nutrition is lost, and fruit and kernel separation is difficult are solved. The quick-return cam mechanism is adopted to simulate the manual beating and juicing process, nutrition loss is reduced, the drinking taste is improved, the ordinary gear train mechanism is adopted to achieve cup shifting and shaking up operation, and the integration degree of the whole machine is improved.
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Description

Technical Field

[0001] This utility model relates to the field of household appliance technology, and in particular to a detachable fruit tea machine. Background Technology

[0002] Traditional fruit tea making is a cumbersome process, requiring manual slicing, juicing, and mixing, which is time-consuming and labor-intensive. Existing juicers and fruit tea machines mostly use high-speed rotating blades to crush fruit, but these methods cannot effectively separate juice from seeds and peels. Direct juicing leads to nutrient loss and juice oxidation, and because some fruit seeds contain harmful substances such as hydrocyanic acid, direct consumption may be harmful to the human body. Furthermore, existing products have low levels of automation and cannot meet personalized needs such as mobile phone control and real-time monitoring.

[0003] Utility model patent CN202323584443.3 discloses a centrifugal juicer that uses high-speed centrifugation to some extent to separate fruit peels and seeds from pulp. However, the seeds and peels are easily ejected with the juice, and the mechanical structure is complex, resulting in high maintenance costs. Invention patent CN201810735468.3 discloses a novel fruit tea machine that slices fruit with a pulverizing blade, but the juicing method still relies on high-speed blade cutting, leading to severe oxidation of the juice.

[0004] In conclusion, existing commonly used equipment cannot simultaneously achieve high precision in separating fruit pulp, preserving fruit juice freshness, and ease of operation. Therefore, there is an urgent need for a home-use fruit tea machine that can both retain the original juice of the fruit and efficiently separate the fruit pits. Summary of the Invention

[0005] To address the aforementioned problems, the purpose of this utility model is to provide a separate fruit tea machine. By improving the juicing method and control process of the original fruit tea machine, it aims to solve the problems of low fruit tea production efficiency, nutrient loss, and difficulty in separating fruit pits in the existing technology.

[0006] The technical solution adopted in this utility model is as follows:

[0007] The present invention discloses a detachable fruit tea machine, comprising a main frame, a stamping module, a pounding module, a water injection module, a shaking module, a chassis, an upper cover, and a lower cover. The stamping module, pounding module, and water injection module are evenly distributed circumferentially within the main frame, and each of the three modules is separated by a partition. The shaking module is located below the main frame. The chassis is located below the shaking module. The upper cover is located outside the main frame. The lower cover is located outside the shaking module.

[0008] Furthermore, the main frame includes an upper fixed plate, a lower fixed plate, a first partition plate, a cam partition plate, and a second partition plate; the upper fixed plate and the lower fixed plate are arranged longitudinally at a certain distance; the upper fixed plate and the lower fixed plate are evenly divided into three areas by the first partition plate, the cam partition plate, and the second partition plate arranged radially in sequence; the stamping module is located between the first partition plate and the second partition plate; the hammering module is located between the second partition plate and the cam partition plate; and the water injection module is located between the first partition plate and the cam partition plate.

[0009] Furthermore, the stamping module includes a first fruit feeding pipe, a stamping hammer, a first stepper motor, a feed rack, a main gear, a cutter, and a support cylinder; the support cylinder is vertically fixed to the upper surface of the lower fixed plate; the cutter is fixed to the upper end of the support cylinder via a flange; the stamping hammer is vertically positioned above the cutter; the feed rack is vertically fixed to the top of the stamping hammer, and the top of the feed rack extends out of the upper fixed plate; the first stepper motor is symmetrically positioned on one side of the upper surface of the upper fixed plate via a motor base, and the output end of the first stepper motor is fixedly connected to a main gear, with the two main gears meshing with the two sides of the feed rack located outside the upper fixed plate; the cutter flange is fixedly connected to one end of the first fruit feeding pipe, and the other end of the first fruit feeding pipe passes through the upper part of the first partition and is fixedly connected to the circular inlet on the surface of the upper fixed plate; the upper end cover is fixed between the outer edges of the upper and lower fixed plates.

[0010] Furthermore, the feed rack and main gear are provided with protective covers.

[0011] Furthermore, a feed sleeve is fixedly provided between the lower part of the upper fixed plate and the feed rack.

[0012] Furthermore, the hammering module includes a second fruit feeding pipe, a second stepper motor, a first coupling, a drive gear, a first driven gear, a second driven gear, a quick-return cam, a first driven gear shaft, a quick-return cam shaft, a hammer connecting rod, a hammer, and a filter screen; the lower fixed plate has a through hole in the area between the cam partition and the second partition, and a filter screen is installed inside the through hole; the upper end of the second fruit feeding pipe passes through the second partition and is fixedly connected to the upper part of the support cylinder, and the lower end is located above the filter screen; the first driven gear shaft is arranged parallel above the quick-return cam shaft and is rotatably connected to the cam partition; the first driven gear is coaxially fixed to the second stepper motor. A driven gear shaft meshes with a second driven gear; the second stepper motor is fixedly connected to the cam partition plate via a motor mount, and its output end is fixedly connected to a drive gear via a first coupling; the drive gear meshes with the first driven gear; the quick-return cam shaft is radially rotatably connected to the lower middle part of the cam partition plate, and its rear side is connected to a quick-return cam via an interference fit, while its front side is coaxially fixedly connected to a second driven gear; the hammer connecting rod is located below the quick-return cam, the upper side of the hammer connecting rod is rotatably connected to the cam partition plate, and the lower end is provided with a hammer, which corresponds to the filter screen; the upper end of the hammer connecting rod always maintains tangential contact with the outer contour of the quick-return cam.

[0013] Furthermore, the water injection module includes a water pump, a water injection support frame, and a water tank; the water injection support frame is vertically fixed to the upper surface of the lower fixed plate; the water pump is fixedly connected to the upper end of the water injection support frame; the water tank is fixed to one side of the top of the upper fixed plate; the water pump is connected to the water tank through a conduit.

[0014] Furthermore, the shaking module includes a third stepper motor, a central gear, planetary gears, an external gear ring, a fixed planetary carrier, a second coupling, bearing supports, a shaking cup holder, ball bearing legs, and balls. A central bearing support is located at the center of the upper surface of the chassis, and three bearing supports are evenly distributed around the outer circumference of the central bearing support. The central gear is rotatably connected to the central bearing support, and planetary gears are rotatably connected to the other three bearing supports. The tops of the planetary gears are connected by the fixed planetary carrier. The third stepper motor is located above the center of the fixed planetary carrier, and its output end passes through the center of the fixed planetary carrier and is connected to the central gear via the second coupling. The external gear ring is correspondingly located outside the three planetary gears, and its inner ring meshes with the planetary gears. A shaking cup holder is fixedly connected above the external gear ring. A groove for placing a water cup is correspondingly opened on the surface of the shaking cup holder. The lower end face of the external gear ring makes rolling contact with the chassis through evenly distributed ball bearing legs.

[0015] Furthermore, the outer circumference of the upper surface of the chassis has rolling grooves corresponding to the ball bearing legs.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. Modular design automates the entire process of slicing, juicing, water injection, and shaking, reducing manual intervention;

[0018] 2. Low-speed pounding and juicing retains the fruit's nutrients, and the filter separates the fruit pits to avoid the intake of harmful substances;

[0019] 3. Compact structure and controllable cost, making it especially suitable for industries such as home, travel and catering services. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall external structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the internal structure of the present invention;

[0022] Figure 3 for Figure 2 Schematic diagram of the structure of the stamping module;

[0023] Figure 4 for Figure 2 A schematic diagram of the structure of the hammering module;

[0024] Figure 5 for Figure 2 Schematic diagram of the water injection module;

[0025] Figure 6 for Figure 2 A schematic diagram of the shaking module.

[0026] In the attached drawings, the following reference numerals are used: 1-Punching module; 2-Hammering module; 3-Water injection module; 4-Shaking module; 5-Upper cover; 11-First stepper motor; 12-Upper fixed plate; 13-First stepper motor base; 14-Main gear; 15-Feed sleeve; 16-Feed rack; 17-Lower fixed plate; 18-Support cylinder; 19-Cutting tool; 110-First partition plate; 111-Punching hammer; 112-First fruit feeding pipe; 113-Protective cover; 21-Cam partition plate; 22-First coupling; 23-Drive gear; 24-First driven gear shaft; 25-First driven gear; 26-Second driven gear. 27-Quick-return camshaft; 28-Filter screen; 29-Hammer; 210-Hammer connecting rod; 211-Second fruit delivery pipe; 212-Quick-return cam; 213-Second stepper motor; 214-Second stepper motor mount; 31-Second partition; 32-Water pump; 33-Water injection support frame; 34-Water tank; 41-Third stepper motor; 42-Center gear; 43-Planetary gear; 44-External gear ring; 45-Ball bearing; 46-Chassis; 47-Ball bearing support leg; 48-Lower end cover; 49-Bearing support; 410-Shaking cup holder; 411-Fixed planetary carrier; 412-Second coupling; 413-Water cup. Detailed Implementation

[0027] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0028] It should be noted that in the description of this utility model, the terms "upper", "lower", "top", "bottom", "one side", "the other side", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not mean that the device or component must have a specific orientation, or be constructed and operated in a specific orientation.

[0029] like Figure 1-2 As shown, the present invention proposes a detachable fruit tea machine, which includes a main frame, a stamping module 1, a pounding module 2, a water injection module 3, a shaking module 4, a chassis 46, an upper cover 5, and a lower cover 48.

[0030] The stamping module 1, hammering module 2, and water injection module 3 are evenly distributed in a circle inside the main frame, and there are partitions between the three modules to prevent liquid splashing; the shaking module 4 is located below the main frame; the chassis 46 is located below the shaking module 4; the upper cover 5 is located outside the main frame and has a reserved opening on one side of its bottom; the lower cover 48 is located outside the shaking module 4.

[0031] The main frame includes an upper fixed plate 12, a lower fixed plate 17, a first partition 110, a cam partition 21, and a second partition 31. In this embodiment, the upper fixed plate 12 and the lower fixed plate 17 are arranged longitudinally at a certain distance and are both circular plates. The upper fixed plate 12 and the lower fixed plate 17 are radially and evenly divided into three regions by the first partition 110, the cam partition 21, and the second partition 31 arranged radially in sequence. The stamping module 1 is located between the first partition 110 and the second partition 31. The hammering module 2 is located between the second partition 31 and the cam partition 21. The water injection module 3 is located between the first partition 110 and the cam partition 21.

[0032] like Figure 3As shown, the stamping module 1 includes a first stepper motor 11, a main gear 14, a feed rack 16, a support cylinder 18, a cutter 19, a stamping hammer 111, and a first feeding pipe 112. The support cylinder 18 is vertically fixed to the upper surface of the lower fixed plate 17. The cutter 19 is fixed to the upper end of the support cylinder 18 through a flange, and the cutter 19 has a uniformly distributed blade structure. The stamping hammer 111 is vertically arranged above the cutter 19. The feed rack 16 is vertically fixed to the top of the stamping hammer 111, and the top of the feed rack 16 extends out of the upper fixed plate 17. The feed rack 16 can move freely up and down relative to the upper fixed plate 17. There are two first stepper motors 11, which are symmetrically fixed to one side of the upper surface of the upper fixed plate 12 through first stepper motor seats 13. The output ends of the two first stepper motors 11 are fixed to the main gears 14, and the two main gears 14 mesh with the two sides of the feed rack 16 located outside the upper fixed plate 17.

[0033] The punching hammer 111 at the end of the feed rack 16 is the actuating component, which, together with the lower cutter 19, can punch and slice the fruit. The upper end of the flange of the cutter 19 is fixedly connected to one end of the first fruit feeding pipe 112. The other end of the first fruit feeding pipe 112 passes through the upper part of the first partition plate 110 and is fixedly connected to a circular inlet on the surface of the upper fixed plate 12. This allows the fruit to roll directly from the circular inlet through the first fruit feeding pipe 112 onto the upper surface of the cutter 19. After the fruit rolls onto the upper surface of the cutter 19, the first stepper motor 11 drives the feed rack 16, which in turn drives the punching hammer 111 to move downward, thus realizing the punching and slicing operation of the fruit. The upper cover 5 is fixed between the outer edges of the upper fixed plate 12 and the lower fixed plate 17, serving to prevent liquid splashing and support the upper fixed plate 12.

[0034] In this embodiment, a protective cover 113 is provided on the portion of the feed rack 16 located outside the upper fixed plate 12 and on the outside of the main gear 14; a feed sleeve 15 is fixedly provided between the lower part of the upper fixed plate 12 and the feed rack 16, which serves to limit the movement of the feed rack 16.

[0035] like Figure 4As shown, the hammering module 2 includes a first coupling 22, a drive gear 23, a first driven gear shaft 24, a first driven gear 25, a second driven gear 26, a quick-return camshaft 27, a filter screen 28, a hammer 29, a hammer connecting rod 210, a second fruit feeding pipe 211, a quick-return cam 212, and a second stepper motor 213. The lower fixed plate 17 has a through hole in the area between the cam partition 21 and the second partition 31, and the filter screen 28 is installed inside the through hole. The upper end of the second fruit feeding pipe 211 passes through the second partition 31 and is fixedly connected to the upper middle part of the support cylinder 18, while the lower end is located above the filter screen 28. The quick-return camshaft 27 is radially rotatably connected to the lower middle part of the cam partition 21, and the rear side of the quick-return camshaft 27 is connected to the quick-return cam 212 via an interference fit, while the front side is coaxially fixedly connected to the second driven gear 26. The first driven gear shaft 24 is arranged parallel above the quick-return camshaft 27 and rotates with the cam partition 21. The first driven gear 25 is coaxially fixed to the first driven gear shaft 24 and meshes with the second driven gear 26; the second stepper motor 213 is fixed to the upper part of the cam partition 21 through the second stepper motor seat 214, and the output end of the second stepper motor 213 is fixed to the drive gear 23 through the first coupling 22; the drive gear 23 meshes with the first driven gear 25; the hammer connecting rod 210 is located below the quick-return cam 212, and the upper side of the hammer connecting rod 210 is rotatably connected to the cam partition 21, and can rotate around the rotation center; the lower end of the hammer connecting rod 210 is provided with a hammer 29, which directly contacts the fruit during the pounding process, and the hammer 29 is longitudinally aligned with the filter screen 28; the upper end of the hammer connecting rod 210 always maintains tangential contact with the outer contour of the quick-return cam 212, and the quick-return motion is realized by the rotation of the quick-return cam 212, thereby realizing the pounding impact and juicing operation of the hammer end on the fruit in the filter screen 28. The bottom of the filter screen 28 corresponds to the shaking cup holder in the shaking module 4. After the juice is squeezed out, it can drip into the cup 413 in the shaking cup holder 410 directly below.

[0036] like Figure 5 As shown, the water injection module 3 includes a water pump 32, a water injection support frame 33, and a water tank 34; the water injection support frame 33 is vertically fixed to the upper surface of the lower fixed plate 17 and has a cup-removing opening on its outer side; the water pump 32 is fixedly connected to the upper end of the water injection support frame 33; the water tank 34 is fixed to one side of the top of the upper fixed plate 12; the water pump 32 is connected to the water tank 34 through a conduit and can inject water downwards to realize the supply of water source and water injection operation.

[0037] like Figure 6 As shown, the shaking module 4 includes a third stepper motor 41, a central gear 42, a planetary gear 43, an external gear ring 44, a ball bearing 45, a ball bearing support leg 47, a bearing support 49, a shaking cup holder 410, a fixed planetary carrier 411, a second coupling 412, and a water cup 413.

[0038] The shaking module 4 is located below the lower plate 17, with the stamping module 1, hammering module 2, and water injection module 3 above it. The shaking module 4 is also encased in a coaxial lower end cover 48, which is fixed to the chassis 46 and supports the lower plate 17 and the components located on it.

[0039] A central bearing support 49 is provided in the middle of the upper surface of the chassis 46, and three other bearing supports 49 are evenly distributed around the outer circumference of the central bearing support 49. The central gear 42 is rotatably connected to the central bearing support 49, and a planetary gear 43 is rotatably connected to each of the other three bearing supports 49. The tops of the planetary gears 43 are connected by a fixed planetary carrier 411. The third stepper motor 41 is located above the middle of the fixed planetary carrier 411, and the output end of the third stepper motor 41 passes through the middle of the fixed planetary carrier and is coaxially fixed to the central gear 42 through a second coupling 412, thereby driving the central gear 42 to rotate. The external gear ring 44 is correspondingly located on the outside of the three planetary gears 43, and the inner ring of the external gear ring 44 meshes with each planetary gear 43. A shaker cup holder 410 is fixedly connected above the external gear ring 44. The surface of the shaker cup holder 410 has a corresponding groove for placing a water cup 413.

[0040] The lower end face of the outer gear ring 44 is uniformly fixed with several ball bearing legs 47, each equipped with a ball bearing 45 to reduce friction. The outer circumference of the upper surface of the base 46 has rolling grooves corresponding to the ball bearings 45 at the bottom of the ball bearing legs 47. The outer gear ring 44 can roll in contact with the base 46 through the evenly distributed ball bearing legs 47, and the ball bearings 45 can drive the outer gear ring 44 and the shaker cup holder 410 to rotate circumferentially within the rolling grooves. Therefore, when the third stepper motor 41 drives the central gear 42 to rotate, it will ultimately drive the outer gear ring 44 and the shaker cup holder 410 to rotate, thereby achieving the mixing of the liquid in the water cup 413 in the shaker cup holder 410 and the movement of the water cup 413 in different steps. After all steps are completed, the user can remove the water cup 413 through the pre-reserved opening in the upper cover 5 for drinking.

[0041] The working principle of this utility model is as follows: Fruit rolls into the stamping module 1 through the circular inlet of the upper fixed plate 12 and along the first fruit feeding pipe 112. The stamping module 1 is mainly responsible for slicing the fed fruit so that the pounding mechanism can extract juice, thereby increasing the juice yield. This module mainly realizes the fruit slicing operation through a set of stamping mechanisms. After completion, the sliced ​​fruit enters the filter screen 28 of the pounding module 2 through the second fruit feeding pipe 211. The function of the pounding module 2 is to pound and extract juice from the sliced ​​fruit. The freshly squeezed juice will drip through the filter screen 28 into the reserved water cup 413 below. The pounding module 2 is controlled by the quick return cam 21. 2. The rotation drives the hammer connecting rod 210 and the hammer 29 to make a rapid return motion, thereby impacting the fruit in the filter screen 28 and performing the juicing operation. Subsequently, the shaking module 4 drives the shaking cup holder 410 and the water cup 413 to move below the water injection module 3. The water injection module 3 can then inject hot water or tea into the cup to dilute the juice and add flavor. In addition to driving the shaking cup holder 410 and the water cup 413 to the designated position, the shaking module 4 is also a key component in the shaking process. The third stepper motor 41 drives the shaking cup holder 410 to rotate, ensuring that the juice, tea, or water in the cup are fully dissolved for a better taste. Finally, the user can remove the water cup 413 through the reserved opening in the upper cover 5 to drink.

[0042] Matters not covered in this utility model are common knowledge.

[0043] The embodiments described above are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Various modifications and improvements made to the technical solutions of the present utility model by those skilled in the art without departing from the spirit of the present utility model should fall within the protection scope defined by the claims of the present utility model.

Claims

1. A separate fruit tea machine, characterized by: The fruit tea machine comprises a main skeleton, a stamping module, a beating module, a water injection module, a shaking module, a bottom plate, an upper end cover and a lower end cover; the stamping module, the beating module and the water injection module are arranged in the main skeleton in a circumferential uniform distribution, and a partition is arranged between the three modules; the shaking module is arranged below the main skeleton; the bottom plate is arranged below the shaking module; the upper end cover is arranged outside the main skeleton; and the lower end cover is arranged outside the shaking module.

2. The separable fruit tea machine according to claim 1, characterized in that: The main skeleton comprises an upper fixed plate, a lower fixed plate, a first partition, a cam partition and a second partition; the upper fixed plate and the lower fixed plate are arranged in correspondence in a longitudinal interval; the upper fixed plate and the lower fixed plate are evenly divided into three areas through the first partition, the cam partition and the second partition arranged in sequence in a radial direction; the stamping module is located between the first partition and the second partition; the beating module is located between the second partition and the cam partition; and the water injection module is located between the first partition and the cam partition.

3. A separate fruit tea machine according to claim 2, characterized in that: The stamping module comprises a first fruit feeding pipe, a stamping hammer, a first stepping motor, a feeding rack, a main gear, a cutter and a support cylinder; the support cylinder is vertically fixed on the upper surface of the lower fixed plate; the cutter is fixed on the upper end of the support cylinder through a flange; the stamping hammer is vertically arranged above the cutter in correspondence; the feeding rack is vertically fixed on the top of the stamping hammer, and the top of the feeding rack penetrates through the upper fixed plate; the first stepping motor is symmetrically arranged on one side of the upper surface of the upper fixed plate through a motor base, and the output end of the first stepping motor is fixed with the main gear respectively, and the two sides of the main gear are engaged with the two sides of the feeding rack located outside the upper fixed plate; the cutter flange is fixed with one end of the first fruit feeding pipe, and the other end of the first fruit feeding pipe is fixed with a circular inlet on the surface of the upper fixed plate after penetrating through the upper part of the first partition; and the upper end cover is fixed between the outer edges of the upper fixed plate and the lower fixed plate.

4. The separable fruit tea machine according to claim 3, characterized in that: A protective cover is arranged outside the feeding rack and the main gear.

5. The separable fruit tea machine according to claim 3, characterized in that: A feeding sleeve is fixed between the lower part of the upper fixed plate and the feeding rack. The first fruit feeding pipe is fixed with the cutter flange.

6. The separable fruit tea machine according to claim 3, characterized in that: The hammering module comprises a second fruit feeding pipe, a second stepping motor, a first coupling, a driving gear, a first driven gear, a second driven gear, a quick-return cam, a first driven gear shaft, a quick-return cam shaft, a hammering link, a hammer and a filter screen; the through hole is provided in the area between the cam partition plate and the second partition plate, and the filter screen is arranged inside the through hole; the upper end of the second fruit feeding pipe is fixedly communicated with the upper middle part of the supporting cylinder after penetrating through the second partition plate, and the lower end is located above the filter screen; the first driven gear shaft is arranged in parallel above the quick-return cam shaft and is rotatably connected with the cam partition plate; the first driven gear is coaxially fixedly connected with the first driven gear shaft and is engaged with the second driven gear; the second stepping motor is fixedly connected with the cam partition plate through the motor base, and the output end of the second stepping motor is fixedly connected with the driving gear through the first coupling; the driving gear is engaged with the first driven gear; the quick-return cam shaft is rotatably connected with the middle lower part of the cam partition plate in the radial direction, the quick-return cam is connected with the rear side of the quick-return cam shaft through interference fit, and the second driven gear is coaxially fixedly connected with the front side of the quick-return cam shaft; the hammering link is located below the quick-return cam, the upper side of the hammering link is rotatably connected with the cam partition plate, the lower end of the hammering link is provided with the hammer, and the hammer corresponds to the filter screen; the upper end of the hammering link always keeps tangential contact with the outer contour of the quick-return cam.

7. The separable fruit tea machine according to claim 1, characterized in that: The water injection module comprises a water pump, a water injection support frame and a water tank; the water injection support frame is vertically fixed on the upper surface of the lower fixed plate; the water pump is fixedly connected with the upper end of the water injection support frame; the water tank is fixed on one side of the top of the upper fixed plate; the water pump is connected to the water tank through a conduit.

8. The separable fruit tea machine according to claim 6, characterized in that: The shaking module comprises a third stepping motor, a center gear, a planetary gear, an outer gear ring, a fixed planet carrier, a second coupling, a bearing support, a shaking cup seat, a ball leg and a ball; the center bearing support is arranged on the middle part of the upper surface of the base, and three bearing supports are uniformly arranged on the outer side of the center bearing support; the center gear is rotatably connected with the center bearing support, and the remaining three planetary gears are rotatably connected with the three bearing supports, respectively; the top parts of the planetary gears are connected through the fixed planet carrier; the third stepping motor is arranged above the middle part of the fixed planet carrier, and the output end of the third stepping motor is connected with the center gear through the second coupling after penetrating through the middle part of the fixed planet carrier; the outer gear ring is correspondingly arranged on the outer side of the three planetary gears, and the inner ring of the outer gear ring is correspondingly engaged with the planetary gears; the shaking cup seat is fixedly connected above the outer gear ring; the surface of the shaking cup seat is correspondingly provided with a placing groove for placing a water cup; the lower end surface of the outer gear ring is in rolling contact with the base through the uniformly arranged ball legs.

9. A separate fruit tea machine according to claim 8, characterized in that: The upper surface of the base is provided with rolling grooves corresponding to the ball legs.

Citation Information

Patent Citations

  • Novel fruit tea machine

    CN108968629A

  • Centrifugal juicer

    CN221813691U