Brewing mechanism and brewing equipment

By using a power-operated slip ring and a rotary drive assembly in the beverage brewing equipment, the problem of malfunctions caused by power cord tangling is solved, thereby improving the stability and safety of the equipment and ensuring the uniformity and safety of the brewing effect.

CN224099172UActive Publication Date: 2026-04-10HUIZHOU GUANGYI KITCHEN INTELLIGENT PRODUCTS TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUIZHOU GUANGYI KITCHEN INTELLIGENT PRODUCTS TECHNOLOGY CO LTD
Filing Date
2025-01-21
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing beverage brewing equipment is prone to malfunctions during rotation due to power cord tangling, which affects the brewing effect and poses safety hazards.

Method used

A power-taking slip ring is installed in the receiving cavity of the turntable. The rotation drive assembly is installed on the machine body. The tank body forms a connected mounting hole, adjustment cavity and clearance hole. The surrounding cavity of the power-taking slip ring is used to place the power cord. The push rod assembly is connected to the external power source through the power-taking slip ring to adjust the water outlet position of the water source carrier and avoid the power cord from getting tangled.

Benefits of technology

This effectively prevents the power cord from getting tangled during rotation, reduces equipment failure rate, improves equipment stability and safety, and ensures uniformity and safety in brewing results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a brewing mechanism and brewing equipment. The brewing mechanism comprises a rotary driving assembly, a tank body, an electricity taking slip ring and a push rod assembly, the machine body is convexly provided with a rotary table, the rotary table is provided with an accommodating cavity, and the power taking slip ring is arranged in the accommodating cavity; the rotary driving assembly is installed on the machine body, an installation hole, an adjusting cavity and a receding hole which are sequentially communicated are formed in the tank body, the rotary table is arranged in the installation hole in a penetrating mode and rotationally connected with the tank body, the power output end of the rotary driving assembly is connected to the tank body, and a part of the electricity taking sliding ring extends into the adjusting cavity. The surrounding cavity is used for placing a power line; the water source carrier is located in the adjusting cavity and movably connected with the tank body, one end of the water source carrier communicates with a water inlet hole communicating with the machine body through the surrounding cavity, and the other end of the water source carrier extends to a water outlet hole of the machine body through the receding hole. The situation that the water outlet direction of the push rod assembly to the water source carrier is affected due to power line winding caused by rotation of the power line in the tank body is avoided.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of beverage making, and in particular to a brewing mechanism and a brewing device. BACKGROUND

[0002] At present, with the continuous improvement of people's living standards, people also like to taste tea and coffee. In order to save costs and taste the original taste of tea and coffee, most people are keen on brewing their own coffee and tea when tasting coffee and tea. With the growth of this demand, the market demand for high-quality brewing equipment is increasing, so that some automatic beverage brewing equipment has been produced on the market.

[0003] However, the existing beverage brewing equipment usually simulates manual brewing, so that the brewing effect reaches the state of manual brewing. Most of the brewing machines on the market usually rotate the body of the rotating brewing machine to achieve the effect of uniform brewing. The internal drive of the brewing machine often needs to be connected to the external power supply through a circuit line, so as to achieve the effect of rotating brewing of the equipment. However, when the brewing machine rotates, the internal line may be wound together with the internal parts due to the rotating motion. When the lines are wound together or with the parts, it may cause equipment failure, affect the brewing effect, and even cause safety hazards. CONTENT OF THE UTILITY MODEL

[0004] The purpose of the present disclosure is to overcome the shortcomings in the prior art, and to provide a brewing mechanism and a brewing device which can prevent internal power lines from winding and has low equipment failure rate and high equipment safety.

[0005] The purpose of the present disclosure is achieved by the following technical solutions:

[0006] A brewing mechanism, comprising a body and a water source carrier, the water source carrier being used for conveying a brewing water source;

[0007] The brewing mechanism further comprises a rotating drive assembly, a tank body, a power taking slip ring, and a push rod assembly;

[0008] The body is provided with a rotating table, the rotating table is provided with a containing cavity, and the power taking slip ring is arranged in the containing cavity; the rotating drive assembly is mounted on the body, the tank body is formed with a mounting hole, an adjusting cavity and an avoiding hole which are sequentially communicated, the rotating table is arranged in the mounting hole and is rotationally connected with the tank body, the power output end of the rotating drive assembly is connected with the tank body, part of the power taking slip ring extends into the adjusting cavity, the power taking slip ring is provided with a surrounding cavity, and the surrounding cavity is used for placing a power line; the water source carrier is located in the adjusting cavity and is movably connected with the tank body, one end of the water source carrier is communicated with the water inlet hole of the body through the surrounding cavity, and the other end of the water source carrier extends to the water outlet hole of the body through the avoiding hole;

[0009] The push rod assembly is located in the adjusting cavity, and the power receiving end of the push rod assembly is electrically connected to the external power source through the power taking slip ring, that is, one end of the power taking slip ring is electrically connected to the power receiving end of the push rod assembly, and the other end of the power taking slip ring is electrically connected to the external power source; the acting end of the push rod assembly abuts against the water source carrier to adjust the water outlet position of the water source carrier.

[0010] In one of the embodiments, the rotating drive assembly comprises an energy supplier and a rotating gear; the power output end of the energy supplier is connected to the rotating gear, the outer peripheral wall of the tank body is provided with a gear ring, and the rotating gear is engaged with the gear ring to enable the tank body to rotate relative to the machine body.

[0011] In one of the embodiments, the brewing mechanism further comprises an adjusting cross plate, the adjusting cross plate is rotationally arranged in the machine body, the adjusting cross plate is provided with a movable cavity, the movable cavity is in communication with the water outlet hole, and the water source carrier is respectively arranged in the movable cavity and the water outlet hole.

[0012] In one of the embodiments, the push rod assembly comprises a pushing driver and an extension driving member, one end of the extension driving member is rotationally connected to the power output rod of the pushing driver, and the other end of the extension driving member abuts against one end of the adjusting cross plate.

[0013] In one of the embodiments, the extension driving member is provided with a threaded rotation cavity, and the power output rod of the pushing driver is threadedly connected to the threaded rotation cavity.

[0014] In one of the embodiments, the brewing mechanism further comprises an elastic reset member, one end of the elastic reset member abuts against the inner peripheral wall of the machine body, and the other end of the elastic reset member abuts against the end face of the adjusting cross plate.

[0015] In one of the embodiments, the tank body comprises a tank body and a rotating shaft, the rotating shaft is protruded from the inner peripheral wall of the tank body, the adjusting cross plate is provided with a rotating cavity, one end of the rotating shaft is rotationally connected to one side wall of the adjusting cavity, and the other end of the rotating shaft is rotationally connected to the other side wall of the adjusting cavity through the rotating cavity.

[0016] In one of the embodiments, the end face of the adjusting cross plate is protruded with a first fixing column, the inner peripheral wall of the tank body is protruded with a second fixing column, the first fixing column and the second fixing column are oppositely arranged along the length direction of the elastic reset member, one end of the elastic reset member is sleeved with the first fixing column, and the other end of the elastic reset member is sleeved with the second fixing column.

[0017] In one of the embodiments, two guide sliding strips are arranged on opposite sides of the telescopic driving member, and two sliding guide rails are arranged on opposite sides of the adjusting horizontal plate, and each guide sliding strip is slidingly arranged in each sliding guide rail.

[0018] A brewing device comprising the brewing mechanism of any of the above embodiments.

[0019] Compared with the prior art, the present disclosure has at least the following advantages:

[0020] The power collecting slip ring is arranged in the accommodating cavity of the rotating table, and the rotating driving assembly is mounted on the machine body, and the tank body is formed with a mounting hole, an adjusting cavity and an avoiding hole which are sequentially communicated, the rotating table is rotatably connected with the tank body through the mounting hole, so that the rotating driving assembly can drive the tank body to rotate, and part of the power collecting slip ring extends into the adjusting cavity, and the power collecting slip ring is provided with a surrounding cavity, the surrounding cavity of the power collecting slip ring is used for placing a power supply, and the power collecting end of the push rod assembly is electrically connected to an external power supply through the power collecting slip ring, and one end of the water source carrier is communicated with the water inlet hole of the machine body through the surrounding cavity, and the other end of the water source carrier extends to the water outlet hole of the machine body through the avoiding hole; when the rotating driving assembly drives the tank body to rotate, the power collecting ends at both ends of the power collecting slip ring are connected to the external power supply and the power collecting end of the push rod assembly respectively, so that the acting end of the push rod assembly abuts against the water source carrier, thereby adjusting the water outlet position of the water source carrier. By providing the surrounding cavity in the power collecting slip ring and placing the power supply line in the accommodating cavity of the power collecting slip ring, the external power supply and the push rod assembly are connected through the power collecting slip ring, so that the power driving push rod assembly acts on the water source carrier to change the water outlet position of the water source carrier, thereby avoiding the situation that the power supply line in the tank body is wound together due to rotation of the tank body, affecting the water outlet direction of the water source carrier by the push rod assembly, and ensuring the durability of the power supply line during rotation, reducing the probability of failure of the brewing mechanism due to winding of the power supply line, and improving the stability and safety of the equipment during operation. BRIEF DESCRIPTION OF DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following will briefly introduce the drawings needed to be used in the embodiments. It should be understood that the following drawings only show some embodiments of the present disclosure, and therefore should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0022] Figure 1 A cross-sectional view of the brewing mechanism of an embodiment of the present disclosure;

[0023] Figure 2 A cross-sectional view of the brewing mechanism of an embodiment of the present disclosure;

[0024] Figure 3Structure schematic view of the brewing mechanism of another embodiment of the present disclosure;

[0025] Figure 4 Structure schematic view of the brewing mechanism of another embodiment of the present disclosure;

[0026] Figure 5 Structure schematic view of the brewing mechanism of another embodiment of the present disclosure; Figure 4 Enlarged view of the part shown at A.

[0027] Reference signs: 10, brewing mechanism; 100, machine body; 110, turntable; 1110, accommodating cavity; 200, water source carrier; 300, rotary driving assembly; 310, energy supplier; 320, rotating gear; 400, power take-off slip ring; 410, surrounding cavity; 500, push rod assembly; 510, push driving device; 520, telescopic driving member; 5210, threaded rotating cavity; 5220, guide slide bar; 600, adjusting cross plate; 610, movable cavity; 620, first fixed column; 630, sliding guide rail; 640, rotating cavity; 700, elastic reset member; 800, tank body; 810, mounting hole; 820, adjusting cavity; 830, position avoiding hole; 840, rotating shaft; 850, second fixed column; 860, gear ring. DETAILED DESCRIPTION

[0028] In order to facilitate the understanding of the present disclosure, the present disclosure will be described more fully below with reference to the accompanying drawings. The preferred embodiments of the present disclosure are shown in the drawings. However, the present disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that the disclosure of the present disclosure can be more thoroughly and completely understood.

[0029] It should be noted that when an element is referred to as being "fixed" to another element, it can be directly on the other element or there can be an intervening element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or there can be an intervening element. The terms "vertical", "horizontal", "left", "right", and similar expressions used herein are for illustrative purposes only and are not intended to be limiting.

[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs. The terminology used in the description of the disclosure herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the disclosure. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0031] In order to better understand the technical solutions and beneficial effects of the present disclosure, the present disclosure will be further described in detail below in conjunction with specific embodiments:

[0032] As shown in FIG. 1, a brewing mechanism 10 of an embodiment includes a body 100 and a water source carrier 200 for conveying a brewing water source;

[0033] In the embodiment, the brewing mechanism 10 further includes a rotary drive assembly 300, a tank 800, a power take-off slip ring 400, and a push rod assembly 500. The body 100 is provided with a rotating table 110 having a receiving cavity 1110, and the power take-off slip ring 400 is arranged in the receiving cavity 1110. The rotary drive assembly 300 is mounted on the body 100. The tank 800 is formed with a mounting hole 810, an adjusting cavity 820, and an avoiding hole 830 which are sequentially connected. The rotating table 110 is arranged in the mounting hole 810 and is rotationally connected with the tank 800. A power output end of the rotary drive assembly 300 is connected with the tank 800. Part of the power take-off slip ring 400 extends into the adjusting cavity 820. The power take-off slip ring 400 is provided with a surrounding cavity 410 for placing a power supply wire. The water source carrier 200 is arranged in the adjusting cavity 820 and is movably connected with the tank 800. One end of the water source carrier 200 is connected with a water inlet hole of the body 100 through the surrounding cavity 410. The other end of the water source carrier 200 extends to a water outlet hole of the body 100 through the avoiding hole 830. The push rod assembly 500 is arranged in the adjusting cavity 820. An electrical connection end of the push rod assembly 500 is electrically connected with an external power supply through the power take-off slip ring 400, i.e., one end of the power take-off slip ring 400 is electrically connected with the electrical connection end of the push rod assembly 500, and the other end of the power take-off slip ring 400 is electrically connected with the external power supply. An acting end of the push rod assembly 500 abuts against the water source carrier 200 to adjust a water outlet position of the water source carrier 200.

[0034] It can be understood that the power collecting slip ring 400 is arranged in the accommodating cavity 1110 of the rotating table 110, and the rotating driving assembly 300 is installed on the machine body 100, and the tank body 800 is formed with the mounting hole 810, the adjusting cavity 820 and the avoiding hole 830 which are sequentially communicated, the rotating table 110 is rotatably connected with the tank body 800 through the mounting hole 810, so that the rotating driving assembly 300 can drive the tank body 800 to rotate; meanwhile, part of the power collecting slip ring 400 extends into the adjusting cavity 820, and the power collecting slip ring 400 is provided with the surrounding cavity 410, the surrounding cavity 410 of the power collecting slip ring 400 is used for placing the power supply, and the power collecting end of the push rod assembly 500 is electrically connected to the external power supply through the power collecting slip ring 400, and one end of the water source carrier 200 is communicated with the water inlet hole of the machine body 100 through the surrounding cavity 410, and the other end of the water source carrier 200 extends to the water outlet hole of the machine body 100 through the avoiding hole 830; when the rotating driving assembly 300 drives the tank body 800 to rotate, because the power collecting ends at both ends of the power collecting slip ring 400 are connected to the external power supply and the power collecting end of the push rod assembly 500 respectively, the acting end of the push rod assembly 500 abuts against the water source carrier 200, so that the water outlet position of the water source carrier 200 is adjusted. By providing the surrounding cavity 410 in the power collecting slip ring 400 and placing the power supply line in the accommodating cavity 1110 of the power collecting slip ring 400, the external power supply and the push rod assembly 500 are connected through the power collecting slip ring 400, so that the power driving push rod assembly 500 acts on the water source carrier 200 to change the water outlet position of the water source carrier 200, avoiding the situation that the power supply line in the tank body 800 is wound together due to the rotation of the tank body 800, thereby affecting the water outlet direction of the water source carrier 200 by the push rod assembly 500, and the power collecting slip ring 400 ensures the durability of the power supply line during rotation, reduces the probability of failure of the brewing mechanism 10 due to the winding of the power supply line together, and improves the stability and safety of the equipment during operation.

[0035] It should be noted that the water source carrier 200 is a silica gel hose.

[0036] In combination Figures 1 to 3As shown, in one embodiment, the rotary drive assembly 300 includes a power supply 310 and a rotating gear 320. The power output end of the power supply 310 is connected to the rotating gear 320. A toothed ring 860 is provided on the outer peripheral wall of the tank 800, and the rotating gear 320 meshes with the toothed ring 860 to make the tank 800 rotate relative to the machine body 100. It can be understood that by rotatably connecting the power output end of the power supply 310 to the rotating gear 320, the rotating gear 320 makes circular motion. The machine body 100 has a toothed ring 860 at its end, and the teeth of the rotating gear 320 are engaged with the toothed ring 860. Thus, when the rotating gear 320 makes circular motion, it drives the machine body 100 on the toothed ring 860 to rotate synchronously, realizing the precise circumferential movement of the machine body 100. This design allows the water carrier 200 to deliver water to the outlet in a spiral pattern, simulating the swirling pouring effect of pouring water for hand-drip coffee. This improves brewing uniformity and flavor profile, satisfying coffee lovers' pursuit of high-quality coffee. Furthermore, the power supply 310 of the rotary drive assembly 300 uses a high-efficiency motor to ensure stable and continuous power output, further optimizing the smoothness of the brewing process. The gear ring 860 is made of wear-resistant material, extending the equipment's lifespan and enhancing the user experience.

[0037] like Figure 1 As shown, in one embodiment, the brewing mechanism 10 further includes an adjusting horizontal plate 600, which is rotatably disposed within the body 100. The adjusting horizontal plate 600 has a movable cavity 610, which is connected to the water outlet. The water source carrier 200 passes through both the movable cavity 610 and the water outlet. It can be understood that by rotatably disposing the adjusting horizontal plate 600 within the body 100 and having the movable cavity 610 connected to the water outlet, the water source carrier 200 communicates with the water outlet after passing through the adjusting cavity 820. Because the adjusting horizontal plate 600 is rotatably disposed within the body 100, when the adjusting horizontal plate 600 swings, the water source carrier 200 can flexibly adjust the water outlet direction according to the rotation angle of the adjusting horizontal plate 600 when delivering water, achieving multi-angle water injection and further optimizing the brewing effect.

[0038] like Figure 1As shown, in one embodiment, the push rod assembly 500 includes a push driver 510 and a telescopic driving member 520, one end of the telescopic driving member 520 is rotatably connected to the power output rod of the push driver 510, and the other end of the telescopic driving member 520 abuts one end of the adjusting cross plate 600. It can be understood that one end of the telescopic driving member 520 is rotatably connected to the power output rod of the push driver 510, and when the power output rod of the push driver 510 rotates, the telescopic driving member 520 telescopes, pushes the adjusting cross plate 600 to swing, so that the water source carrier 200 passing through the adjusting cavity 820 changes the water outlet path, thereby changing the water outlet direction of the water source carrier 200, making the water outlet coverage more extensive, improving the overall uniformity and taste level of coffee brewing, and meeting the individualized needs of different users for coffee taste; in this example, the power supply slip ring 400 provides power to make the push driver 510 work on the telescopic driving member 520.

[0039] As shown, Figure 1 As shown, in one embodiment, the telescopic driving member 520 is provided with a threaded rotating cavity 5210, and the power output rod of the push driver 510 is threadedly connected to the threaded rotating cavity 5210. In this embodiment, the telescopic driving member 520 is provided with a threaded rotating cavity 5210, and the power output rod of the push driver 510 is threadedly connected to the threaded rotating cavity 5210. The telescopic driving member 520 is driven by threaded connection, so that the transmission efficiency of the push driver 510 is higher and the transmission between the two is more stable, and at the same time, the structure of the push driver 510 and the telescopic driving member 520 is more compact, facilitating installation and maintenance, reducing equipment failure rate, and improving overall user experience.

[0040] In combination Figure 1 As shown, Figure 4 As shown, in one embodiment, the brewing mechanism 10 further includes an elastic return member 700, one end of the elastic return member 700 abutting the inner circumferential wall of the body 100 adjacent to the power supply slip ring 400, and the other end of the elastic return member 700 abutting the end face of the adjusting cross plate 600. It can be understood that one end of the elastic return member 700 abuts the inner circumferential wall of the body 100, and the other end abuts the end face of the adjusting cross plate 600, so that when the push driver 510 releases kinetic energy, the adjusting cross plate 600 can be automatically returned to the initial position according to the elastic force of the elastic return member 700, ensuring that the adjusting cross plate 600 can return to the original position after brewing, so that the water outlet direction of the water source carrier 200 is accurately reset, avoiding water injection deviation caused by the deviation of the adjusting cross plate 600, further ensuring the stability and consistency of the brewing process, and ensuring that each brewing can achieve the best effect; the elastic return member 700 of this embodiment can be a spiral spring and an elastic spring.

[0041] Combination Figure 1 and Figure 5 As shown, in one embodiment, the tank 800 includes a tank body and a rotating shaft 840. The rotating shaft 840 protrudes from the inner peripheral wall of the tank body. The adjusting plate 600 has a rotating cavity 640. One end of the rotating shaft 840 is rotatably connected to one side wall of the adjusting cavity 820, and the other end of the rotating shaft 840 passes through the rotating cavity 640 and is rotatably connected to the other side wall of the adjusting cavity 820. It can be understood that the adjusting plate 600 is connected to both sides of the accommodating cavity 1110 via the rotating shaft 840. When the adjusting plate 600 is acted upon by the push driver 510, the rotating shaft 840 is rotatably connected to the rotating cavity 640 of the adjusting plate 600. This causes the water source carrier 200 to move in a circular motion around the rotation center as the water nozzle shifts under the swing of the adjusting plate 600, thus simulating the effect of hand-drip coffee. In this example, by adjusting the swing of the horizontal plate 600, the water source carrier 200 changes the water outlet direction, and the rotating shaft 840 is rotatably connected to the rotating cavity 640 of the adjusting horizontal plate 600, so that the water source carrier 200 can achieve spiral, central and surrounding water outlet methods to brew in the cup.

[0042] like Figure 1 As shown, in one embodiment, a first fixing post 620 protrudes from the end face of the adjusting plate 600, and a second fixing post 850 protrudes from the inner peripheral wall of the body 100. The first fixing post 620 and the second fixing post are arranged opposite to each other along the length direction of the elastic reset member 700. One end of the elastic reset member 700 is sleeved on the first fixing post 620, and the other end of the elastic reset member 700 is sleeved on the second fixing post 850. It can be understood that the relative arrangement of the first fixing post 620 and the second fixing post 850 ensures stable support of the elastic reset member 700 in the length direction. Furthermore, the fact that both ends of the elastic reset member 700 are sleeved on the first fixing post 620 and the second fixing post 850 allows the elastic reset member 700 to stably connect the adjusting plate 600 and the body 100 when the adjusting plate 600 swings, preventing the elastic reset member 700 from falling off or shifting due to frequent swinging of the adjusting plate 600, further enhancing the stability and reliability of the elastic reset member 700.

[0043] Combination Figure 1 and Figure 5As shown, in one of the embodiments, two guide sliding strips 5220 are protruded on the opposite sides of the telescopic driving member 520, and two sliding rails 630 are arranged on the opposite sides of the adjusting horizontal plate 600, and each guide sliding strip 5220 is slidingly arranged in each sliding rail 630. It can be understood that, by protruding the guide sliding strips 5220 on the opposite sides of the telescopic driving member 520, and arranging the two sliding rails 630 on the opposite sides of the adjusting horizontal plate 600, and slidingly arranging each guide sliding strip 5220 in each sliding rail 630, it is ensured that the telescopic driving member 520 can push the adjusting horizontal plate 600 to swing along the track direction of the sliding rail 630 when pushing the adjusting horizontal plate 600, and the preset swing track of the adjusting horizontal plate 600 is prevented from deviating due to the deviation of the telescopic driving member 520 in the pushing process, and it is ensured that the water outlet angle of the water source carrier 200 reaches the preset deviation angle according to the swing angle of the adjusting horizontal plate 600.

[0044] The present application also provides a brewing device comprising the brewing mechanism 10 of any of the above embodiments. It can be understood that the power cord is arranged in the surrounding cavity 410 of the power taking slip ring 400, which avoids the situation that the power cord in the body 100 is wound together due to rotation, and avoids the situation that the power cord is wound together with the internal parts of the push rod assembly 500 and the tank 800, so that the brewing mechanism 10 is more stable when changing the water outlet direction of the water source carrier 200 by using the push rod assembly 500, and the situation that the power cord is wound together due to rotation in the tank 800 is avoided, which affects the change of the water outlet direction of the water source carrier 200 by the push rod assembly 500.

[0045] Compared with the prior art, the present application has at least the following advantages:

[0046] The power collecting slip ring 400 is arranged in the accommodating cavity 1110 of the rotating table 110, and the rotating driving assembly 300 is installed on the machine body 100, and the tank body 800 is formed with the mounting hole 810, the adjusting cavity 820 and the avoiding hole 830 which are sequentially communicated, the rotating table 110 is rotatably connected with the tank body 800 through the mounting hole 810, so that the rotating driving assembly 300 can drive the tank body 800 to rotate; meanwhile, part of the power collecting slip ring 400 extends into the adjusting cavity 820, and the power collecting slip ring 400 is provided with the surrounding cavity 410, the surrounding cavity 410 of the power collecting slip ring 400 is used for placing the power supply, and the power collecting end of the push rod assembly 500 is electrically connected to the external power supply through the power collecting slip ring 400, and one end of the water source carrier 200 is communicated with the water inlet hole of the machine body 100 through the surrounding cavity 410, and the other end of the water source carrier 200 extends to the water outlet hole of the machine body 100 through the avoiding hole 830; when the rotating driving assembly 300 drives the tank body 800 to rotate, because the power collecting ends at both ends of the power collecting slip ring 400 are connected to the external power supply and the power collecting end of the push rod assembly 500 respectively, the acting end of the push rod assembly 500 abuts against the water source carrier 200, so that the water outlet position of the water source carrier 200 is adjusted. By providing the surrounding cavity 410 in the power collecting slip ring 400 and placing the power supply line in the accommodating cavity 1110 of the power collecting slip ring 400, the external power supply and the push rod assembly 500 are connected through the power collecting slip ring 400, so that the power driving push rod assembly 500 acts on the water source carrier 200 to change the water outlet position of the water source carrier 200, avoiding the situation that the power supply line in the tank body 800 is wound together due to the rotation of the tank body 800, thereby affecting the water outlet direction of the water source carrier 200 by the push rod assembly 500, and the power collecting slip ring 400 ensures the durability of the power supply line during rotation, reduces the probability of failure of the brewing mechanism 10 due to the winding of the power supply line together, and improves the stability and safety of the equipment during operation.

[0047] The above-described embodiments only express several embodiments of the present disclosure, and the description is relatively specific and detailed, but it cannot be understood as limiting the scope of the utility model patent. It should be noted that, for ordinary skilled persons in the art, without departing from the concept of the present disclosure, several modifications and improvements can be made, which belong to the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure patent should be subject to the appended claims.

Claims

1. A brewing mechanism comprising a machine body and a water source carrier for conveying a brewing water source; characterized in that The brewing mechanism further comprises a rotary drive assembly, a tank body, a power take-off slip ring, and a push rod assembly; The machine body is provided with a rotating table, the rotating table is provided with a receiving cavity, and the power take-off slip ring is arranged in the receiving cavity; the rotary drive assembly is mounted on the machine body, the tank body is formed with a mounting hole, an adjusting cavity and a avoiding hole which are sequentially communicated, the rotating table is arranged in the mounting hole and is rotationally connected with the tank body, the power output end of the rotary drive assembly is connected with the tank body, part of the power take-off slip ring extends into the adjusting cavity, the power take-off slip ring is provided with a surrounding cavity for placing a power supply line; the water source carrier is located in the adjusting cavity and is movably connected with the tank body, one end of the water source carrier is communicated with a water inlet hole of the machine body through the surrounding cavity, and the other end of the water source carrier extends to a water outlet hole of the machine body through the avoiding hole; The push rod assembly is located in the adjusting cavity, the power connection end of the push rod assembly is electrically connected with an external power source through the power take-off slip ring, that is, one end of the power take-off slip ring is electrically connected with the power connection end of the push rod assembly, and the other end of the power take-off slip ring is electrically connected with the external power source; the acting end of the push rod assembly abuts against the water source carrier to adjust the water outlet position of the water source carrier.

2. The brewing mechanism of claim 1, wherein, The rotary drive assembly comprises an energy supplier and a rotating gear; the power output end of the energy supplier is connected with the rotating gear, the outer peripheral wall of the tank body is provided with a gear ring, and the rotating gear is engaged with the gear ring to enable the tank body to rotate relative to the machine body.

3. The brewing mechanism of claim 2, wherein, The brewing mechanism further comprises an adjusting cross plate, the adjusting cross plate is rotationally arranged in the machine body, the adjusting cross plate is provided with a movable cavity, the movable cavity is communicated with the water outlet hole, and the water source carrier is arranged in the movable cavity and the water outlet hole respectively.

4. The brewing mechanism of claim 3, wherein, The push rod assembly comprises a pushing driver and a telescopic driving piece, one end of the telescopic driving piece is rotationally connected with the power output rod of the pushing driver, and the other end of the telescopic driving piece abuts against one end of the adjusting cross plate.

5. The brewing mechanism of claim 4, wherein, The telescopic driving piece is provided with a threaded rotating cavity, and the power output rod of the pushing driver is threadedly connected with the threaded rotating cavity.

6. The brewing mechanism of claim 3, wherein, The brewing mechanism further comprises an elastic reset piece, one end of the elastic reset piece abuts against the inner peripheral wall of the machine body, and the other end of the elastic reset piece abuts against the end face of the adjusting cross plate.

7. The brewing mechanism of claim 6, wherein, The tank body comprises a tank body and a rotating shaft, the rotating shaft is arranged on the inner peripheral wall of the tank body, the adjusting cross plate is provided with a rotating cavity, one end of the rotating shaft is rotationally connected with one side wall of the adjusting cavity, and the other end of the rotating shaft rotationally penetrates through the rotating cavity and is connected with the other side wall of the adjusting cavity.

8. The brewing mechanism of claim 7, wherein, The end face of the adjusting cross plate is provided with a first fixing column, the inner peripheral wall of the tank body is provided with a second fixing column, the first fixing column and the second fixing column are oppositely arranged along the length direction of the elastic reset piece, one end of the elastic reset piece is sleeved with the first fixing column, and the other end of the elastic reset piece is sleeved with the second fixing column.

9. The brewing mechanism of claim 4, wherein, Two guide sliding strips are protruded on opposite sides of the telescopic driving member, and two sliding guide rails are arranged on opposite sides of the adjusting horizontal plate, and each guide sliding strip is correspondingly and slidingly arranged in each sliding guide rail.

10. A brewing apparatus, characterized in that The brewing mechanism of any one of claims 1 to 9.