Electromagnetic suction deflection water outlet mechanism and brewing device

The electromagnetic deflection water outlet mechanism uses magnetic force to drive the magnetic turntable to adjust the water outlet position, which solves the problem of parts wear caused by mechanical drive and improves the operating efficiency and production efficiency of the equipment.

CN223746211UActive Publication Date: 2026-01-02HUIZHOU GUANGYI KITCHEN INTELLIGENT PRODUCTS TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520151057.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2026-01-02
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

When existing brewing equipment changes the water outlet position through mechanical drive, it is easy to cause wear and tear on parts and complicated assembly, which affects the operation and production efficiency of the equipment.

Method used

An electromagnetic deflection water outlet mechanism is adopted. Through the cooperation of the magnetic traction rotating body and the driver, the magnetic traction turntable is driven by magnetic force to deflect and adjust the water outlet position, avoiding mechanical contact and reducing parts wear and assembly complexity.

Benefits of technology

It enables contactless water outlet position adjustment, reduces wear and tear on mechanical parts, and improves equipment operating efficiency and production speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an electromagnetic suction deflection water outlet mechanism and a brewing device. The electromagnetic suction deflection water outlet mechanism comprises a magnetic suction rotating body, a driver, a water outlet pipe, a fixed concave plate, a magnetic suction driving piece and a magnetic suction rotating disc. The magnetic attraction rotating body is installed on the driver and driven by the driver to rotate. A magnetic suction cavity is formed in the magnetic suction rotating body, the fixed concave plate is arranged in an installation opening of the magnetic suction rotating body and extends to the magnetic suction cavity, and the magnetic suction rotating disc is rotationally arranged in the magnetic suction cavity. The magnetic attraction driving piece is arranged in a groove of the fixed concave plate and electrically connected with an external power source, the magnetic attraction rotating disc is driven to deflect through magnetic attraction, and therefore the water outlet position of the water outlet pipe is adjusted. In addition, an adsorption piece is embedded in the magnetic suction rotary table and is arranged corresponding to a magnetic suction area of the magnetic suction driving piece, and the magnetic suction effect and interactivity are improved. The water outlet position is changed in a non-contact mode, mechanical loss is reduced, and energy efficiency is improved; the device has the characteristics of simple structure, stable performance and high energy efficiency.
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Description

TECHNICAL FIELD

[0001] The present disclosure relates to the technical field of brewing devices, and in particular to a brewing device and an electromagnetic deflection water outlet mechanism. BACKGROUND

[0002] At present, with the improvement of people's living standards, the requirements for the quality of life are increasingly diversified and refined. Coffee and tea, as two popular beverage cultures, not only carry the historical deposits and regional specialities, but also become an indispensable leisure and enjoyment in modern people's daily life. Under this background, coffee and tea equipment based on brewing technology has also attracted the attention of merchants and manufacturers.

[0003] For beverage brewing equipment, changing the water outlet position of the equipment to simulate hand-poured beverages is particularly important. However, most of the brewing equipment on the market changes the water outlet position of the water outlet nozzle through internal mechanical driving. However, with the passage of time and the long-term operation of the equipment, the internal mechanical equipment may be worn out due to friction, thereby affecting the normal operation of the equipment. At the same time, it is relatively troublesome to assemble a large number of mechanical driving parts inside the equipment, which is not conducive to the production and maintenance of the equipment. CONTENT OF THE UTILITY MODEL

[0004] The purpose of the present disclosure is to overcome the shortcomings in the prior art and provide an electromagnetic deflection water outlet mechanism and a brewing device that reduces mechanical wear, improves energy efficiency, and facilitates installation and production.

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

[0006] An electromagnetic deflection water outlet mechanism includes a magnetic attraction rotating body, a driver, and a water outlet pipe. The magnetic attraction rotating body is connected to the power output end of the driver. The driver is installed on a brewing machine, and the magnetic attraction rotating body is rotationally connected to the brewing machine. The power output end of the driver is used to drive the magnetic attraction rotating body to rotate relative to the brewing machine.

[0007] The magnetic attraction rotating body is provided with a water inlet and a water outlet. The water inlet is in communication with one end of the water outlet pipe. The magnetic attraction rotating body is provided with a mounting hole and a magnetic attraction cavity in communication,

[0008] The electromagnetic attraction deflection water outlet mechanism further comprises a fixed concave plate, a magnetic attraction driving element and a magnetic attraction turntable. The fixed concave plate is arranged in the mounting port, and the protruding part of the fixed concave plate extends to the magnetic attraction cavity. The magnetic attraction turntable is provided with a central alignment cavity. The fixed concave plate is provided with a groove, and the magnetic attraction driving element is arranged in the groove. The magnetic attraction turntable is rotationally arranged in the magnetic attraction cavity. The other end of the water outlet pipe is arranged in the central alignment cavity and communicates with the water outlet. The magnetic attraction driving element drives the magnetic attraction turntable to rotate in the magnetic attraction cavity to a predetermined angle to adjust the water outlet position of the water outlet pipe.

[0009] In one of the embodiments, the magnetic attraction driving element comprises a magnetic attraction element body and an energized terminal. One end of the energized terminal is electrically connected to the magnetic attraction element body, and the other end of the energized terminal is electrically connected to an external power supply.

[0010] In one of the embodiments, the fixed concave plate is provided with a first magnetic attraction surface arranged on the side close to the magnetic attraction turntable. The magnetic attraction turntable is provided with a second magnetic attraction surface arranged on the side close to the fixed concave plate. The second magnetic attraction surface is attracted to the first magnetic attraction surface.

[0011] In one of the embodiments, the electromagnetic attraction deflection water outlet mechanism further comprises an elastic abutting element arranged in the magnetic attraction cavity. One end of the elastic abutting element abuts against the magnetic attraction turntable, and the other end of the elastic abutting element abuts against the magnetic attraction rotating body.

[0012] In one of the embodiments, the magnetic attraction turntable is provided with a limiting groove, and the elastic abutting element abuts against the limiting groove. In addition or alternatively,

[0013] The number of the elastic abutting elements is two. The two elastic abutting elements are symmetrically arranged in the magnetic attraction cavity along the rotation center of the magnetic attraction rotating body.

[0014] In one of the embodiments, the electromagnetic attraction deflection water outlet mechanism further comprises a rotating shaft. The outer wall of the magnetic attraction rotating body is provided with a through hole, and the outer peripheral wall of the magnetic attraction turntable is provided with a connecting hole. The through hole is communicated with the connecting hole through the magnetic attraction cavity, and the rotating shaft passes through the through hole and is rotationally connected to the connecting hole.

[0015] In one of the embodiments, the magnetic attraction turntable is embedded with an attraction accessory. The attraction area of the attraction accessory corresponds to the magnetic attraction area of the magnetic attraction driving element. The position where the magnetic attraction turntable abuts against the elastic abutting element is a first position, and the position where the attraction accessory is embedded in the magnetic attraction turntable is a second position. The first position is arranged adjacent to the rotation center position of the magnetic attraction turntable, and the second position is arranged away from the rotation center position of the magnetic attraction turntable.

[0016] In one of the embodiments, the magnetic attraction driving member is in a ring structure; and / or,

[0017] The projection area of the magnetic attraction accessory on the magnetic attraction turntable is less than the projection area of the magnetic attraction driving member on the magnetic attraction turntable.

[0018] In one of the embodiments, the magnetic attraction driving member is an electromagnet.

[0019] A brewing device comprising the electromagnetic attraction deflection water outlet mechanism according to any one of the above embodiments.

[0020] Compared with the prior art, the present disclosure has at least the following advantages:

[0021] By mounting the driver on the brewing machine, and mounting the magnetic attraction rotating body on the driver, and connecting the magnetic attraction rotating body to the power output end of the driver, the magnetic attraction rotating body rotates relative to the brewing machine; the fixed concave plate is arranged at the mounting port, and the protruding part of the fixed concave plate extends to the magnetic attraction cavity of the magnetic attraction rotating body; the fixed concave plate is provided with a groove, the magnetic attraction driving member is arranged in the groove, and the energized end of the magnetic attraction driving member is electrically connected to the external power source, so that the magnetic attraction driving member can generate a magnetic force to attract the magnetic attraction turntable below the magnetic attraction driving member to rotate and deflect in the magnetic attraction cavity; at the same time, the magnetic attraction turntable is provided with a central alignment cavity, one end of the water delivery pipe is connected to the water inlet, and the other end of the water delivery pipe penetrates the central alignment cavity and is connected to the water outlet; when the magnetic attraction driving member is connected to the external power source, the magnetic field generated by the magnetic attraction driving member has a certain magnetic force to attract the magnetic attraction turntable to rotate in the magnetic attraction cavity, so that the magnetic attraction turntable rotates to a predetermined angle in the magnetic attraction cavity, thereby adjusting the water outlet position of the water outlet pipe; at the same time, the driver drives the magnetic attraction rotating body to rotate relative to the brewing machine; at the same time, the magnetic attraction rotating body rotates, and the magnetic attraction rotating disc in the magnetic attraction rotating body deflects at the same time, so that the water source of the water outlet pipe is injected in a spiral and reciprocating manner; by arranging the magnetic attraction driving member on the fixed concave plate, the deflection angle of the magnetic attraction turntable is changed, the water outlet position of the water outlet pipe is changed in a non-contact manner, the mechanical driving for changing the water outlet position of the water outlet pipe is avoided, the wear of internal parts caused by mechanical movement is reduced, the process of assembling a large number of mechanical parts of the equipment is reduced, and the production speed of the equipment is accelerated. BRIEF DESCRIPTION OF DRAWINGS

[0022] 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.

[0023] Figure 1A cross-sectional view of the electromagnetic attraction deflection water outlet mechanism of an embodiment of the present disclosure;

[0024] Figure 2 A cross-sectional view of the electromagnetic attraction deflection water outlet mechanism of an embodiment of the present disclosure;

[0025] Figure 3 A structural schematic diagram of the electromagnetic attraction deflection water outlet mechanism of an embodiment of the present disclosure.

[0026] Reference signs: 10, electromagnetic attraction deflection water outlet mechanism; 100, magnetic attraction rotating body; 110, water inlet; 120, water outlet; 130, mounting port; 140, magnetic attraction cavity; 150, via hole; 200, driver; 300, water outlet pipe; 400, fixed concave plate; 410, concave groove; 420, first magnetic attraction surface; 500, magnetic attraction driving piece; 510, magnetic attraction piece body; 520, power terminal; 600, magnetic attraction rotating disc; 610, center alignment cavity; 620, second magnetic attraction surface; 630, limiting concave groove; 640, adapter hole; 650, attraction accessory; 700, elastic abutting piece; 800, rotating shaft. DETAILED DESCRIPTION

[0027] 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, the purpose of providing these embodiments is to make the disclosure of the present disclosure more thorough and comprehensive.

[0028] 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 a middle 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 a middle element. The terms "vertical", "horizontal", "left", "right", and similar expressions used herein are for illustrative purposes only and are not intended to be the only implementation.

[0029] 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 the present disclosure belongs. The terminology used in the description of the present disclosure herein is only for the purpose of describing the specific embodiments and is not intended to limit the present disclosure. The term "and / or" used herein includes any and all combinations of one or more of the associated listed items.

[0030] 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 combination with specific embodiments:

[0031] As Figures 1 to 3As shown, the electromagnetic deflection water outlet mechanism 10 of an embodiment comprises a magnetic rotation body 100, a driver 200, a water outlet pipe 300, a fixed concave plate 400, a magnetic driving element 500 and a magnetic rotating disc 600. The magnetic rotation body 100 is mounted on the power output shaft of the driver 200, the driver 200 is mounted on the brewing machine, the power output shaft of the driver 200 is used to drive the magnetic rotation body 100 to rotate relative to the brewing machine; the magnetic rotation body 100 is provided with a water inlet 110 and a water outlet 120, the water inlet 110 is communicated with one end of the water outlet pipe 300, the magnetic rotation body 100 is sequentially provided with a mounting hole 130 and a magnetic cavity 140,

[0032] In the embodiment, the fixed concave plate 400 is arranged in the mounting hole 130, and the protruding part of the fixed concave plate 400 extends to the magnetic cavity 140; the magnetic rotating disc 600 is provided with a central alignment cavity 610 at the center position, the fixed concave plate 400 is provided with a groove 410, the magnetic driving element 500 is arranged in the groove 410, the energized end of the magnetic driving element 500 is electrically connected to an external power supply, the magnetic rotating disc 600 is located below the magnetic driving element 500 and is rotationally arranged in the magnetic cavity 140, the other end of the water outlet pipe 300 penetrates the central alignment cavity 610 and is communicated with the water outlet 120, the magnetic driving element 500 attracts and drives the magnetic rotating disc 600 to deviate from the initial vertical line of the central alignment cavity 610, so as to adjust the water outlet position of the water outlet pipe 300.

[0033] It can be understood that by installing the driver 200 on the brewing machine, the magnetic rotating body 100 is installed on the driver 200, and the magnetic rotating body 100 is connected to the power output end of the driver 200, so that the magnetic rotating body 100 rotates relative to the brewing machine; the fixed concave plate 400 is arranged at the mounting port 130, and the protruding part of the fixed concave plate 400 extends to the magnetic suction cavity 140 of the magnetic rotating body 100; the fixed concave plate 400 is provided with a groove 410, the magnetic driving part 500 is arranged in the groove 410, and the energized end of the magnetic driving part 500 is electrically connected to the external power supply, so that the magnetic driving part 500 can generate a magnetic force to attract the magnetic rotating disc 600 below the magnetic driving part 500 to rotate and deviate in the magnetic suction cavity 140, and the magnetic rotating disc 600 is provided with a center alignment cavity 610, one end of the water delivery pipe is connected to the water inlet 110, and the other end of the water delivery pipe penetrates the center alignment cavity 610 and is connected to the water outlet 120; when the magnetic driving part 500 is connected to the external power supply, the magnetic field generated by the magnetic driving part 500 attracts the magnetic rotating disc 600 in the magnetic suction cavity 140 to rotate, so that the magnetic rotating disc 600 rotates to a predetermined angle in the magnetic suction cavity 140, thereby adjusting the water outlet position of the water outlet pipe 300, and the driver 200 drives the magnetic rotating body 100 to rotate relative to the brewing machine, and the magnetic rotating disc in the magnetic rotating body 100 deviates at the same time, so that the water source of the water outlet pipe 300 is injected in a spiral and reciprocating manner; by arranging the magnetic driving part 500 on the fixed concave plate 400, the deviation angle of the magnetic rotating disc 600 is changed, the water outlet position of the water outlet pipe 300 is changed in a non-contact manner, the use of mechanical driving to change the water outlet position of the water outlet pipe 300 is avoided, the wear of internal parts caused by mechanical movement is reduced, and the process of assembling a large number of mechanical parts of the equipment is reduced, thereby accelerating the production speed of the equipment.

[0034] The gear of the driver 200 drives the magnetic rotating body to rotate, which is a prior art and will not be described here.

[0035] In combination Figure 1 With Figure 3As shown, in one of the embodiments, the magnetic attraction driving member 500 comprises a magnetic attraction member body 510 and a power terminal 520, one end of the power terminal 520 is electrically connected to the magnetic attraction member body 510, and the other end of the power terminal 520 is electrically connected to an external power source. It can be understood that when one end of the power terminal 520 is electrically connected to the magnetic attraction member body 510, and the other end of the power terminal 520 is electrically connected to the external power source, when the external power source is powered on to the power terminal 520, the magnetic attraction member body 510 receives the current of the external power source, and the magnetic attraction member body 510 generates a magnetic attraction force, so that the magnetic attraction turntable 600 is adsorbed and swung due to the magnetic attraction force, and the conveying pipe is arranged in the central alignment cavity 610, thereby changing the water outlet position of the water outlet pipe 300 due to the swing of the magnetic attraction turntable 600.

[0036] In combination Figure 1 With Figure 2 As shown, further, the fixed concave plate 400 is provided with a first magnetic attraction surface 420 arranged on the side close to the magnetic attraction turntable 600, the magnetic attraction turntable 600 is provided with a second magnetic attraction surface 620 arranged on the side close to the fixed concave plate 400, and the second magnetic attraction surface 620 is adsorbed to the first magnetic attraction surface 420. It can be understood that by arranging the first magnetic attraction surface 420 on the side of the fixed concave plate 400 close to the magnetic attraction turntable 600, and arranging the second magnetic attraction surface 620 on the side of the magnetic attraction turntable 600 close to the fixed concave plate 400, the magnetic attraction effect and control ability of the magnetic attraction driving member 500 on the magnetic attraction turntable 600 can be further enhanced. When the magnetic attraction driving member 500 is powered on to generate a magnetic force, the interaction between the first magnetic attraction surface 420 and the second magnetic attraction surface 620 can more stably guide the magnetic attraction turntable 600 to deflect, ensuring that the water outlet position of the water outlet pipe 300 can be adjusted as expected. The first magnetic attraction surface 420 and the second magnetic attraction surface 620 can be made of materials with high magnetic permeability and good wear resistance, such as neodymium iron boron magnets or ferrite magnets, to ensure the stability and durability of the magnetic attraction effect.

[0037] As Figure 1As shown, in one of the embodiments, the electromagnetic deflection water outlet mechanism 10 further comprises a resilient abutting member 700, which is arranged in the magnetic attraction cavity 140, one end of the resilient abutting member 700 abuts against the magnetic attraction turntable 600, and the other end of the resilient abutting member 700 abuts against the magnetic attraction rotating body 100, so as to elastically connect the magnetic attraction rotating body 100 and the magnetic attraction turntable 600. In this embodiment, one end of the resilient abutting member 700 abuts against the bottom of the magnetic attraction turntable 600, and the other end of the resilient abutting member 700 abuts against the bottom wall of the magnetic attraction rotating body 100. It can be understood that the resilient abutting member 700 is arranged in the magnetic attraction cavity 140, and one end of the resilient abutting member 700 abuts against the bottom of the magnetic attraction turntable 600, and the other end of the resilient abutting member 700 abuts against the bottom wall of the magnetic attraction rotating body 100, so that when the magnetic attraction member body 510 attracts the magnetic attraction turntable 600, the elastic force generated by the resilient abutting member 700 stabilizes the magnetic attraction turntable 600 from excessive deflection, and when the magnetic attraction member body 510 loses the magnetic attraction force, the elastic force of the resilient abutting member 700 acting on the magnetic attraction turntable 600 will make the magnetic attraction turntable 600 return to the original position.

[0038] As shown in the drawings, Figure 2 Further, the bottom of the magnetic attraction turntable 600 is provided with a limiting groove 630, and one end of the resilient abutting member 700 abuts against the limiting groove 630. It can be understood that the limiting groove 630 is arranged in the bottom of the magnetic attraction turntable 600, and one end of the resilient abutting member 700 abuts against the limiting groove 630, so that the resilient abutting member 700 is stabilized by abutting against the limiting groove 630, and when the magnetic attraction turntable 600 rotates, the limiting groove 630 limits the resilient abutting member 700 from deviating from the bottom of the magnetic attraction turntable 600 due to deflection.

[0039] As shown in the drawings, Figure 2 In another embodiment, the number of resilient abutting members 700 is two, and the two resilient abutting members 700 are symmetrically arranged along the rotation center of the magnetic attraction rotating body 100 in the magnetic attraction cavity 140. It can be understood that the two resilient abutting members 700 abut against the bottom of the magnetic attraction turntable 600 and the bottom wall of the magnetic attraction rotating body 100, and the two resilient abutting members 700 are symmetrically arranged relative to each other, so that when the magnetic attraction turntable 600 loses the attraction force, one resilient abutting member 700 makes one side of the magnetic attraction turntable 600 deflect back to the initial position by pressure, and the other resilient abutting member 700 makes the other side of the magnetic attraction turntable 600 return to the initial position by tension, so that the two resilient abutting members 700 can stabilize the magnetic attraction turntable 600 to return to the initial position, i.e., the initial vertical line position of the center alignment cavity 610.

[0040] In combination with Figure 1 With Figure 2As shown in the drawings, in one embodiment, the electromagnetic suction deflection water outlet mechanism 10 further comprises a rotating shaft 800, the outer wall of the magnetic suction rotating body 100 is provided with a through hole 150, the outer peripheral wall of the magnetic suction rotating disc 600 is provided with a rotating hole 640, the through hole 150 is communicated with the rotating hole 640 through the magnetic suction cavity 140, and the rotating shaft 800 penetrates through the through hole 150 and is rotationally connected to the rotating hole 640. It can be understood that the outer wall of the magnetic suction rotating body 100 is provided with a through hole 150, and the outer peripheral wall of the magnetic suction rotating disc 600 is provided with a rotating hole 640, the through hole 150 is communicated with the rotating hole 640 through the magnetic suction cavity 140, and the rotating shaft 800 penetrates through the through hole 150 and is rotationally connected to the rotating hole 640, so that the rotating shaft 800 is rotationally connected to the magnetic suction rotating disc 600, and when the magnetic suction rotating disc 600 is subjected to the suction force of the magnetic suction body, the magnetic suction rotating disc 600 can be deflected through the rotating shaft 800 because the rotating shaft 800 is rotationally connected to the magnetic suction rotating disc 600.

[0041] As shown in the drawings, Figure 1 As shown in the drawings, in one embodiment, the magnetic suction rotating disc 600 is embedded with a suction accessory 650, and the suction area of the suction accessory 650 is correspondingly arranged with the magnetic suction area of the magnetic suction driving element 500. It can be understood that the magnetic suction rotating disc 600 is embedded with the suction accessory 650, which further enhances the magnetic suction effect and interactivity between the magnetic suction rotating disc 600 and the magnetic suction driving element 500; the suction area of the suction accessory 650 is correspondingly arranged with the magnetic suction area of the magnetic suction driving element 500, which ensures that when the magnetic suction driving element 500 is electrified to generate a magnetic force, it can accurately attract and drive the magnetic suction rotating disc 600 to deflect. The use of the suction accessory 650 not only improves the response speed and deflection accuracy of the magnetic suction rotating disc 600, but also helps to reduce energy loss and friction loss during the magnetic suction process. At the same time, since the magnetic attraction between the suction accessory 650 and the magnetic suction driving element 500 is more direct and efficient, the power consumption of the external power supply can be reduced to a certain extent, and the energy efficiency of the entire electromagnetic suction deflection water outlet mechanism 10 can be improved. In specific implementation, the suction accessory 650 can be made of materials with high magnetic permeability and strong magnetism, such as neodymium iron boron magnet, samarium cobalt magnet or ferrite magnet. In addition, in order to further optimize the magnetic attraction relationship between the magnetic suction rotating disc 600 and the magnetic suction driving element 500, the shape, size and position of the suction accessory 650 can also be accurately designed and adjusted. For example, the suction accessory 650 can be designed into an arc or fan structure matching the magnetic suction area of the magnetic suction driving element 500 to improve the magnetic attraction efficiency and stability.

[0042] As shown in the drawings, Figure 1 With Figure 2As shown, in another embodiment, the position where the magnetic rotating disc abuts against the elastic abutting member is a first position, and the position where the suction accessory is embedded in the magnetic rotating disc is a second position. The first position is arranged adjacent to the position of the rotation center of the magnetic rotating disc, and the second position is arranged away from the position of the rotation center of the magnetic rotating disc. In this embodiment, the position where the suction accessory is embedded in the magnetic rotating disc is the second position, the position where the magnetic rotating disc abuts against the elastic abutting member is the first position, and the first position is arranged adjacent to the position of the rotation center of the magnetic rotating disc, and the second position is arranged away from the position of the rotation center of the magnetic rotating disc. The second position is away from the rotation center of the magnetic rotating disc, and when the suction accessory is driven by the magnetic force of the magnetic driving member, the suction accessory is away from the rotation center of the magnetic rotating disc, and the elastic abutting member is close to the rotation center of the magnetic rotating disc. Therefore, the suction force of the magnetic driving member is not limited by the elastic force of the elastic abutting member, and the magnetic rotating disc can be driven to rotate at all times.

[0043] As shown in FIG. 1, in one embodiment, the magnetic driving member 500 is arranged in the magnetic cavity 140 of the fixed concave plate 400, and the magnetic rotating disc 600 is arranged on the magnetic driving member 500. Figure 1 As shown in FIG. 1, in one embodiment, the magnetic driving member 500 is arranged in the magnetic cavity 140 of the fixed concave plate 400, and the magnetic rotating disc 600 is arranged on the magnetic driving member 500. Figure 3 As shown in one embodiment, the magnetic driving member 500 is in a ring structure. In this embodiment, the ring structure of the magnetic driving member 500 can be more uniformly distributed in the groove 410 of the fixed concave plate 400, ensuring that the magnetic rotating disc 600 is subjected to uniform magnetic force in the magnetic cavity 140, thereby more stably deflecting. Secondly, the ring structure helps to expand the magnetic attraction contact area between the magnetic driving member 500 and the magnetic rotating disc 600, enhancing the magnetic attraction effect, so that the magnetic rotating disc 600 can more accurately deflect at a predetermined angle, thereby more accurately adjusting the water outlet position of the water outlet pipe 300. In addition, the ring structure of the magnetic driving member 500 can also match the shape of the magnetic rotating disc 600 to further improve the magnetic attraction efficiency and stability.

[0044] As shown in FIG. 2, in another embodiment, the projection area of the suction accessory 650 on the magnetic rotating disc 600 is smaller than the projection area of the magnetic driving member 500 on the magnetic rotating disc 600. In this embodiment, the projection area of the suction accessory 650 on the magnetic rotating disc 600 is smaller than the projection area of the magnetic driving member 500 on the magnetic rotating disc 600, so that the magnetic driving member 500 can always maintain a stable magnetic attraction force to attract the suction accessory 650. It can be ensured that the magnetic attraction coverage area of the magnetic driving member 500 is always greater than the suction area of the suction accessory 650, ensuring that the magnetic driving member 500 can attract the suction accessory 650 in the magnetic rotating disc 600.

[0045] As shown in FIG. 1, in one embodiment, the magnetic driving member 500 is arranged in the magnetic cavity 140 of the fixed concave plate 400, and the magnetic rotating disc 600 is arranged on the magnetic driving member 500. Figure 1 As shown in one embodiment, the magnetic driving member 500 is an electromagnet. It can be understood that the magnetic driving member 500 is an electromagnet, which is electrically connected to an external power source, thereby enabling the magnetic driving member 500 to have a magnetic force, so that the magnetic driving member 500 interacts with the magnetic rotating disc 600.

[0046] The application also provides a brewing device comprising the electromagnetic deflection water outlet mechanism 10 of any of the above embodiments. It can be understood that by applying the electromagnetic deflection water outlet mechanism 10 of the present application to the brewing device, by arranging the magnetic driving member 500 on the fixed concave plate 400, the deflection angle of the magnetic deflection disc 600 is changed, the water outlet position of the water outlet pipe 300 is changed in a non-contact manner, the mechanical driving for changing the water outlet position of the water outlet pipe 300 is avoided, and the wear of internal parts caused by mechanical movement is reduced.

[0047] Compared with the prior art, the present application has at least the following advantages:

[0048] By installing the driver 200 on the brewing machine, the magnetic rotating body 100 is installed on the driver 200, and the magnetic rotating body 100 is connected to the power output end of the driver 200, so that the magnetic rotating body 100 rotates relative to the brewing machine; the fixed concave plate 400 is arranged at the mounting port 130, and the protruding part of the fixed concave plate 400 extends to the magnetic cavity 140 of the magnetic rotating body 100; the fixed concave plate 400 is provided with a groove 410, the magnetic driving member 500 is arranged in the groove 410, and the energized end of the magnetic driving member 500 is electrically connected to the external power source, so that the magnetic driving member 500 can generate a magnetic force to attract the magnetic deflection disc 600 below the magnetic driving member 500 to rotate and deflect in the magnetic cavity 140, and the magnetic deflection disc 600 is provided with a center alignment cavity 610, one end of the water inlet pipe is connected to the water inlet 110, and the other end of the water inlet pipe penetrates the center alignment cavity 610 and is connected to the water outlet 120; when the magnetic driving member 500 is connected to the external power source, the magnetic field generated by the magnetic driving member 500 attracts the magnetic deflection disc 600 in the magnetic cavity 140 to rotate, so that the magnetic deflection disc 600 rotates to a predetermined angle in the magnetic cavity 140, thereby adjusting the water outlet position of the water outlet pipe 300, and the driver 200 drives the magnetic rotating body 100 to rotate relative to the brewing machine, and the magnetic rotating disc in the magnetic rotating body 100 deflects at the same time, so that the water source of the water outlet pipe 300 is injected in a spiral and reciprocating manner; by arranging the magnetic driving member 500 on the fixed concave plate 400, the deflection angle of the magnetic deflection disc 600 is changed, the water outlet position of the water outlet pipe 300 is changed in a non-contact manner, the mechanical driving for changing the water outlet position of the water outlet pipe 300 is avoided, the wear of internal parts caused by mechanical movement is reduced, the process of assembling a large number of mechanical parts of the equipment is reduced, and the production speed of the equipment is accelerated.

[0049] The above-described embodiments only express several implementation manners of the present disclosure, which are described in a more specific and detailed manner, but cannot be understood as a limitation on the scope of the utility model patent. It should be noted that, for ordinary skilled persons in the art, several modifications and improvements can be made without departing from the concept of the present disclosure, which all 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. An electromagnetic deflection water outlet mechanism, comprising a magnetic deflection rotating body, a driver and a water outlet pipe, the magnetic deflection rotating body being connected to a power output end of the driver, the driver being installed on a brewing machine, the magnetic deflection rotating body being rotationally connected to the brewing machine, the power output end of the driver being used to drive the magnetic deflection rotating body to rotate relative to the brewing machine; the magnetic deflection rotating body being provided with a water inlet and a water outlet, the water inlet being in communication with one end of the water outlet pipe, the magnetic deflection rotating body being provided with an installation opening and a magnetic deflection cavity in communication; characterized in that the electromagnetic deflection water outlet mechanism further comprising a fixed concave plate, a magnetic deflection driving member and a magnetic deflection rotating disc, the fixed concave plate being arranged in the installation opening, a protruding part of the fixed concave plate extending into the magnetic deflection cavity, the magnetic deflection rotating disc being provided with a central alignment cavity, the fixed concave plate being provided with a groove, the magnetic deflection driving member being arranged in the groove, the magnetic deflection rotating disc being rotationally arranged in the magnetic deflection cavity, the other end of the water outlet pipe being arranged in the central alignment cavity and in communication with the water outlet, the magnetic deflection driving member being used to drive the magnetic deflection rotating disc to rotate in the magnetic deflection cavity to a predetermined angle, so as to adjust the water outlet position of the water outlet pipe. the magnetic deflection driving member comprising a magnetic deflection member body and an energized terminal, one end of the energized terminal being electrically connected to the magnetic deflection member body, the other end of the energized terminal being electrically connected to an external power supply.

2. The electromagnetic deflection water outlet mechanism according to claim 1, characterized in that, the fixed concave plate being provided with a first magnetic deflection surface, the first magnetic deflection surface being arranged on a side close to the magnetic deflection rotating disc, the magnetic deflection rotating disc being provided with a second magnetic deflection surface, the second magnetic deflection surface being arranged on a side close to the fixed concave plate, the second magnetic deflection surface being attracted to the first magnetic deflection surface.

3. The electromagnetic deflection water outlet mechanism according to claim 1, characterized in that, the electromagnetic deflection water outlet mechanism further comprising an elastic abutting member, the elastic abutting member being arranged in the magnetic deflection cavity, one end of the elastic abutting member abutting against the magnetic deflection rotating disc, the other end of the elastic abutting member abutting against the magnetic deflection rotating body.

4. The electromagnetic deflection water outlet mechanism according to claim 1, characterized in that, the magnetic deflection rotating disc being provided with a limiting groove, the elastic abutting member abutting against the limiting groove; and / or, 5. The electromagnetic deflection water outlet mechanism according to claim 4, characterized in that, the number of the elastic abutting members being two, the two elastic abutting members being symmetrically arranged in the magnetic deflection cavity along the rotation center of the magnetic deflection rotating body. the electromagnetic deflection water outlet mechanism further comprising a rotating shaft, the outer wall of the magnetic deflection rotating body being provided with a through hole, the outer peripheral wall of the magnetic deflection rotating disc being provided with a rotating hole, the through hole being in communication with the rotating hole through the magnetic deflection cavity, the rotating shaft passing through the through hole and being rotationally connected to the rotating hole.

6. The electromagnetic deflection water outlet mechanism according to claim 1, wherein, the magnetic deflection rotating disc being embedded with a suction accessory, the suction area of the suction accessory corresponding to the magnetic deflection area of the magnetic deflection driving member, the position of the magnetic deflection rotating disc abutting against the elastic abutting member being a first position, the position of the suction accessory embedded in the magnetic deflection rotating disc being a second position, the first position being arranged adjacent to the rotation center position of the magnetic deflection rotating disc, the second position being arranged away from the rotation center position of the magnetic deflection rotating disc.

7. The electromagnetic deflection water outlet mechanism according to claim 4, characterized in that, the magnetic deflection driving member being in an annular structure; and / or, 8. The electromagnetic deflection water outlet mechanism according to claim 7, characterized in that, the projection area of the suction accessory on the magnetic deflection rotating disc being smaller than the projection area of the magnetic deflection driving member on the magnetic deflection rotating disc. the magnetic deflection driving member being an electromagnet.

9. The electromagnetic deflection water outlet mechanism according to claim 1, wherein, the electromagnetic deflection water outlet mechanism comprising any one of claims 1 to 9.

10. A brewing device characterized by, ​