Bean grinding coffee machine
By introducing a rotary switching device and a snap-up device into the bean grinder, the problem of inconvenient switching between the bean grinder and the drip assembly is solved, and the operation efficiency and safety are improved, especially when making multiple coffee liquids.
Patent Information
- Application Number
- CN202422312602.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-23
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-23
AI Technical Summary
The existing bean grinders are inconvenient to operate when switching bean grinding components and drip components, resulting in low work efficiency, which is more obvious, especially when making coffee liquids more.
By using a rotary switching device, the rotary switching device is installed on the body to facilitate switching between the grinding component and the drip component, and the positioning device of the bracket and bracket is used for precise positioning to prevent the coffee powder from spilling out or hot water from spilling out.
The convenient switching between the powder cup assembly and the drip assembly is achieved, which improves work efficiency, and significantly improves the convenience and safety of operation when making multiple coffee liquids.
Smart Images

Figure CN223111496U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of coffee machines, and particularly relates to a bean grinding coffee machine. Background Art
[0002] The utility model patent with the authorization announcement number CN215127358U discloses an American coffee machine, which includes a machine body and a bean grinding assembly, a brewing assembly and a water sprinkling assembly arranged on the machine body; the bean grinding assembly is used for grinding coffee beans to form coffee powder; the brewing assembly includes a hand brewing cup and a filter screen that can be placed at the cup mouth of the hand brewing cup, and the filter screen is used for receiving the coffee powder ground by the bean grinding assembly; the water sprinkling assembly is used for spraying hot water on the coffee powder in the filter screen to brew American coffee and drip it into the hand brewing cup; when using this prior art, first place the filter screen at the cup mouth of the hand brewing cup to form the brewing assembly, then place the brewing assembly under the bean grinding assembly to receive the coffee powder, and then place the brewing assembly with the coffee powder under the water sprinkling assembly to receive hot water to realize coffee brewing; however, this prior art has the following defects when in use: when switching the brewing assembly located under the bean grinding assembly to under the water sprinkling assembly, or switching the brewing assembly located under the water sprinkling assembly to under the bean grinding assembly, the operation is not convenient, and when making a large amount of coffee liquid, the working efficiency is low.
[0003] Therefore, there is still room for improvement and development in the prior art. Summary of the Utility Model
[0004] In order to solve the problems of the prior art, the utility model provides a bean grinding coffee machine that can conveniently switch between powder receiving and brewing.
[0005] In order to achieve the above purpose, the technical solution applied by the utility model is as follows:
[0006] A bean grinding coffee machine includes a machine body, on which a bean grinding assembly and a drip assembly are provided; a rotary switching device, which is movably installed on the machine body; a powder cup assembly, which is detachably installed on the rotary switching device; the rotary switching device can reciprocally switch between a first position and a second position. In the first position, the rotary switching device drives the powder cup assembly to be directly below the bean grinding assembly, and in the second position, the rotary switching device drives the powder cup assembly to be directly below the drip assembly. With such a setting, by installing a rotary switching device on the machine body, the powder cup assembly can be very conveniently reciprocally switched between directly below the bean grinding assembly and directly below the drip assembly, the switching is convenient, and when making a large amount of coffee liquid, the working efficiency is high.
[0007] According to the above solution, the grinding component and the drip component are arranged side by side on the machine body. The rotation switching device includes a bracket and a support. The support is fixedly installed on the machine body, and the bracket is hinged to the support through a rotating shaft component. The powder cup component is detachably installed on the bracket. In the first position, the bracket drives the powder cup component to cooperate with the grinding component. In the second position, the bracket drives the powder cup component to cooperate with the drip component. A positioning device for positioning in the first and second positions is provided between the bracket and the support. With this arrangement, the grinding component and the drip component are arranged side by side on the machine body. In the first position, the bracket drives the powder cup component to cooperate with the grinding component to receive the ground coffee powder from the grinding component. In the second position, the bracket drives the powder cup component to cooperate with the drip component to receive the hot water dripped from the drip component, realizing coffee brewing.
[0008] According to the above solution, the positioning device includes an elastic component provided on the bracket, and a first clamping hole and a second clamping hole provided on the support. When the bracket drives the powder cup component to be in the first position, the elastic component cooperates with the first clamping hole for positioning. When the bracket drives the powder cup component to be in the second position, the elastic component cooperates with the second clamping hole for positioning. With this arrangement, when the bracket drives the powder cup component to be in the first position, the elastic component cooperates with the first clamping hole for positioning, and the positioning is more accurate, preventing coffee powder from spilling due to inaccurate positioning when the powder cup component is placed below the grinding component, resulting in cost waste. When the bracket drives the powder cup component to be in the second position, the elastic component cooperates with the second clamping hole for positioning, and the positioning is more accurate, preventing hot water from spilling due to inaccurate positioning when the powder cup component is placed below the drip component, resulting in safety accidents.
[0009] According to the above solution, the elastic component includes a spring gland, a spring, and a clamping post. The spring gland is fixed on the bracket. A receiving groove is formed inside the spring gland. The spring is located inside the receiving groove. The first end of the clamping post extends into the receiving groove and abuts against the spring. The second end of the clamping post passes through the bracket and cooperates with the first clamping hole or the second clamping hole for positioning. With this arrangement, its structure is simple, and the clamping post cooperates with the first clamping hole or the second clamping hole for positioning through the elastic force of the spring.
[0010] According to the above solution, a limiting ring for cooperating with and abutting against the spring is formed at the first end of the clamping post, and a round head for cooperating with and engaging with the first clamping hole or the second clamping hole is formed at the end of the second end of the clamping post. With such a setting, in the first position, the clamping post engages with the first clamping hole. When it is necessary to switch to the second position, the bracket is pushed to swing relative to the support. Under the action of force, the first clamping hole drives the round head of the clamping post to move, realizing the retraction of the clamping post and compressing the spring. Until the clamping post corresponds to the second clamping hole, under the rebounding force of the spring, the clamping post engages with the second clamping hole. Similarly, in the second position, the clamping post engages with the second clamping hole. When it is necessary to switch to the first position, the bracket is pushed to swing relative to the support. Under the action of force, the second clamping hole drives the round head of the clamping post to move, realizing the retraction of the clamping post and compressing the spring. Until the clamping post corresponds to the first clamping hole, under the rebounding force of the spring, the clamping post engages with the first clamping hole.
[0011] According to the above solution, the rotating shaft assembly includes a rotating shaft and a clamping hoop. The first end of the rotating shaft is fixed to the support through the clamping hoop, and the bracket is sleeved on the second end of the rotating shaft, and the bracket can swing horizontally relative to the support around the rotating shaft. With such a setting, the rotating shaft is fixed to the support through the clamping hoop, which is convenient for assembly and can prevent the rotating shaft from displacing or falling off relative to the support.
[0012] According to the above solution, a limiting portion for cooperating with and limiting the bracket is formed at the end of the second end of the rotating shaft. With such a setting, on the one hand, the limiting portion can prevent the bracket from slipping out of the rotating shaft, and on the other hand, it can prevent the bracket from moving up and down relative to the support, so that the bracket can only swing relative to the support.
[0013] According to the above solution, the powder cup assembly includes a powder cup pressing cover, a powder cup and a powder cup filter base. An inner cavity is formed in the powder cup filter base, the powder cup is fixed in the inner cavity through the powder cup pressing cover, and the bottom of the powder cup is spaced from the bottom of the powder cup filter base. A plurality of through holes are provided on the bottom of the powder cup filter base. With such a setting, the powder cup is suspended and fixed in the inner cavity through the powder cup pressing cover, so that it can be used as a powder receiving cup and can also be used as a filter cup, making it more convenient to use.
[0014] According to the above solution, the coffee bean grinding assembly includes a coffee bean grinding bin, a coffee bean grinding motor, a coffee bean grinding cutter head and a bean bin assembly. The coffee bean grinding bin is fixed to the machine body, the coffee bean grinding motor is fixed in the coffee bean grinding bin, and the output end of the coffee bean grinding motor is connected to the coffee bean grinding cutter head; the bean bin assembly includes a bean bin cover and a bean storage bin, the bean storage bin is installed on the coffee bean grinding bin, the discharge port of the bean storage bin is communicated with the feed port of the coffee bean grinding bin, and the bean bin cover is detachably installed on the feed port of the bean storage bin. With such a setting, when grinding coffee beans, the bean bin cover is opened, coffee beans are put into the bean storage bin, the bean bin cover 11 is covered, and the coffee beans fall into the coffee bean grinding bin through the discharge port of the bean storage bin and the feed port of the coffee bean grinding bin. The coffee bean grinding motor drives the coffee bean grinding cutter head to act to grind the coffee beans into coffee powder.
[0015] According to the above solution, the body includes a base and a main unit. The main unit is fixed on the base, and a coffee cup is detachably installed on the base. The coffee cup is spaced directly below the drip assembly. In the second position, the rotary switching device drives the powder cup assembly to be located between the drip assembly and the coffee cup. The main unit is provided with a control panel and a water supply assembly. The water supply assembly includes a water tank, a water pump, and a heating assembly. The water inlet of the water pump is connected to the water tank, the water outlet of the water pump is connected to the water inlet of the heating assembly, and the water outlet of the heating assembly is connected to the drip assembly. With this setting, when making coffee, the rotary switching device drives the powder cup assembly to be located between the drip assembly and the coffee cup. The water coming out from the water supply assembly through the drip assembly falls on the powder cup assembly, and after making coffee, it flows into the coffee cup.
[0016] Advantages of the present utility model:
[0017] With the present utility model configured in this way, by installing a rotary switching device on the body, it is very convenient to switch the powder cup assembly back and forth between directly below the grinding assembly and directly below the drip assembly. The switching is convenient, and when making a relatively large amount of coffee liquid, the working efficiency is relatively high. Description of the drawings
[0018] Figure 1 is the front view of the overall structure of the present utility model;
[0019] Figure 2 is the side view of the overall structure of the present utility model;
[0020] Figure 3 is the exploded view of the overall structure of the present utility model;
[0021] Figure 4 is the exploded view of the rotary switching device of the present utility model;
[0022] Figure 5 is the exploded view of the powder cup assembly of the present utility model;
[0023] Figure 6 is the cross-sectional view of the powder cup assembly of the present utility model;
[0024] Figure 7 is the schematic diagram of the powder cup assembly in the powder receiving state (the first position) of the present utility model;
[0025] Figure 8 is the upper view of the rotary switching device when the powder cup assembly is in the powder receiving state of the present utility model;
[0026] Figure 9 is the bottom view of the rotary switching device when the powder cup assembly is in the powder receiving state of the present utility model;
[0027] Figure 10 is the schematic diagram of the powder cup assembly in the brewing state (the second position) of the present utility model;
[0028] Figure 11 It is the upper view of the rotation switching device of the powder cup assembly of the present utility model in the brewing state;
[0029] Figure 12 It is the bottom view of the rotation switching device of the powder cup assembly of the present utility model in the brewing state.
[0030] In the figure:
[0031] 1. Bean bin assembly; 11. Bean bin cover; 12. Bean storage bin; 2. Bean grinding assembly; 21. Bean grinding bin; 22. Bean grinding motor; 23. Bean grinding cutter head; 3. Powder cup assembly; 31. Powder cup pressing cover; 32. Powder cup; 33. Powder cup filter seat; 331. Inner cavity; 34. Through hole; 4. Drip assembly; 5. Machine body; 51. Base; 52. Main unit; 53. Control panel; 6. Coffee cup; 7. Rotation switching device; 71. Spring pressing cover; 72. Spring; 73. Clamping post; 731. Limiting ring; 732. Round head; 74. Bracket; 75. Rotating shaft; 751. Limiting part; 76. Bracket; 77. Clamp; 78. First clamping hole; 79. Second clamping hole; 8. Water supply assembly; 81. Water tank. Specific embodiments
[0032] The technical solution of the present utility model will be described below in conjunction with the drawings and embodiments.
[0033] As Figures 1 to 12 shown, a bean grinding coffee machine of the present utility model includes a machine body 5, a bean grinding assembly 2 and a drip assembly 4 are provided on the machine body 5; a rotation switching device 7, the rotation switching device 7 is movably installed on the machine body 5; a powder cup assembly 3, the powder cup assembly 3 is detachably installed on the rotation switching device 7; the rotation switching device 7 can reciprocally switch between a first position and a second position. When in the first position, the rotation switching device 7 drives the powder cup assembly 3 to be directly below the bean grinding assembly 2. When in the second position, the rotation switching device 7 drives the powder cup assembly 3 to be directly below the drip assembly 4. With such a setting, by installing a rotation switching device 7 on the machine body 5, it is very convenient to reciprocally switch the powder cup assembly 3 between directly below the bean grinding assembly 2 and directly below the drip assembly 4. The switching is convenient, and when making a large amount of coffee liquid, the working efficiency is high.
[0034] Among them, the powder cup assembly 3 is detachably installed on the rotation switching device 7, which is convenient for cleaning the powder cup assembly 3.
[0035] Furthermore, the coffee grinding assembly 2 and the drip assembly 4 are arranged side by side on the machine body 5. The rotation switching device 7 includes a bracket 74 and a support 76. The support 76 is fixedly installed on the machine body 5. The bracket 74 is hinged to the support 76 through a rotating shaft assembly. The powder cup assembly 3 is detachably installed on the bracket 74. In the first position, the bracket 74 drives the powder cup assembly 3 to cooperate with the coffee grinding assembly 2. In the second position, the bracket 74 drives the powder cup assembly 3 to cooperate with the drip assembly 4. A positioning device for positioning in the first and second positions is provided between the bracket 74 and the support 76. With such an arrangement, the coffee grinding assembly 2 and the drip assembly 4 are arranged side by side on the machine body 5. In the first position, the bracket 74 drives the powder cup assembly 3 to cooperate with the coffee grinding assembly 2 for receiving the ground coffee powder from the coffee grinding assembly 2. In the second position, the bracket 74 drives the powder cup assembly 3 to cooperate with the drip assembly 4 for receiving the hot water dripping from the drip assembly 4, realizing coffee brewing.
[0036] In practical applications, the support 76 is directly below the middle of the coffee grinding assembly 2 and the drip assembly 4; the hole position on the bracket 74 for assembling the powder cup assembly 3.
[0037] Furthermore, the positioning device includes an elastic component provided on the bracket 74, and a first clamping hole 78 and a second clamping hole 79 provided on the support 76. When the bracket 74 drives the powder cup assembly 3 to be in the first position, the elastic component cooperates with the first clamping hole 78 for positioning. When the bracket 74 drives the powder cup assembly 3 to be in the second position, the elastic component cooperates with the second clamping hole 79 for positioning. With such an arrangement, when the bracket 74 drives the powder cup assembly 3 to be in the first position, the elastic component cooperates with the first clamping hole 78 for positioning, which is more accurate in positioning and prevents coffee powder from spilling out due to inaccurate positioning when the powder cup assembly 3 is placed below the coffee grinding assembly 2, resulting in waste of cost. When the bracket 74 drives the powder cup assembly 3 to be in the second position, the elastic component cooperates with the second clamping hole 79 for positioning, which is more accurate in positioning and prevents hot water from spilling out due to inaccurate positioning when the powder cup assembly 3 is placed below the drip assembly 4, resulting in safety accidents.
[0038] Of course, the positions of the elastic component and the clamping hole can also be interchanged, that is, the elastic component is provided on the support 76 and the clamping hole is provided on the bracket 74, which can achieve the same purpose.
[0039] Furthermore, the elastic component includes a spring gland 71, a spring 72 and a clamping post 73. The spring gland 71 is fixed on the bracket 74. A receiving groove is formed in the spring gland 71. The spring 72 is located in the receiving groove. The first end of the clamping post 73 extends into the receiving groove and abuts against the spring 72. The second end of the clamping post 73 passes through the bracket 74 and cooperates with the first clamping hole 78 or the second clamping hole 79 for positioning. With such an arrangement, its structure is simple, and the elastic force of the spring 72 enables the clamping post 73 to cooperate with the first clamping hole 78 or the second clamping hole 79 for positioning.
[0040] Further, a limiting ring 731 which is matched and abutted with the spring 72 is formed at the first end of the clamping post 73, and a round head 732 which is matched and clamped with the first clamping hole 78 or the second clamping hole 79 is formed at the end of the second end of the clamping post 73. With such a setting, at the first position, the clamping post 73 is matched and clamped with the first clamping hole 78. When it is necessary to switch to the second position, the bracket 74 is pushed to swing relative to the bracket 76. Under the action of force, the first clamping hole 78 drives the round head 732 of the clamping post 73 to act, so that the clamping post 73 retracts and compresses the spring 72. Until the clamping post 73 corresponds to the second clamping hole 79, under the rebounding force of the spring 72, the clamping post 73 is matched and clamped with the second clamping hole 79. Similarly, at the second position, the clamping post 73 is matched and clamped with the second clamping hole 79. When it is necessary to switch to the first position, the bracket 74 is pushed to swing relative to the bracket 76. Under the action of force, the second clamping hole 79 drives the round head 732 of the clamping post 73 to act, so that the clamping post 73 retracts and compresses the spring 72. Until the clamping post 73 corresponds to the first clamping hole 78, under the rebounding force of the spring 72, the clamping post 73 is matched and clamped with the first clamping hole 78.
[0041] Further, the rotating shaft assembly includes a rotating shaft 75 and a clamping hoop 77. The first end of the rotating shaft 75 is fixed to the bracket 76 through the clamping hoop 77. The bracket 74 is sleeved on the second end of the rotating shaft 75, and the bracket 74 can swing horizontally relative to the bracket 76 around the rotating shaft 75. With such a setting, the rotating shaft 75 is fixed to the bracket 76 through the clamping hoop 77, which is convenient for assembly and can prevent the rotating shaft 75 from displacing or falling off relative to the bracket 76.
[0042] Of course, the first end of the rotating shaft 75 can also be fixed to the bracket 74, and the bracket 76 is sleeved on the second end of the rotating shaft 75, which can achieve the same purpose.
[0043] Further, a limiting portion 751 which is matched with the bracket 74 for limiting is formed at the end of the second end of the rotating shaft 75. With such a setting, on the one hand, the limiting portion 751 can prevent the bracket 74 from coming out of the rotating shaft 75, and on the other hand, it can prevent the bracket 74 from moving up and down relative to the bracket 76, so that the bracket 74 can only swing relative to the bracket 76.
[0044] Further, the powder cup assembly 3 includes a powder cup pressing cover 31, a powder cup 32 and a powder cup filter base 33. An inner cavity 331 is formed in the powder cup filter base 33. The powder cup 32 is fixed in the inner cavity 331 through the powder cup pressing cover 31, and the bottom of the powder cup 32 is spaced from the bottom of the powder cup filter base 33. A plurality of through holes 34 are provided on the bottom of the powder cup filter base 33. With such a setting, the powder cup 32 is suspended and fixed in the inner cavity 331 through the powder cup pressing cover 31, so that it can be used as a powder receiving cup and can also be used as a filter cup, which is more convenient to use.
[0045] In practical applications, the powder cup cap 31 and the powder cup filter base 33 are threadedly connected, which is convenient for loading and unloading and easy to clean. To prevent coffee powder from leaking out through the powder cup 32 from the through hole 34 during powder reception, the powder cup 32 can be a powder cup without holes or a powder cup with only very small holes. Only when the coffee powder dissolves in water can the coffee liquid fall from the powder cup 32 onto the powder cup filter base 33.
[0046] Furthermore, the grinding component 2 includes a grinding bin 21, a grinding motor 22, a grinding cutter head 23, and a bean bin component 1. The grinding bin 21 is fixed to the machine body 5, the grinding motor 22 is fixed in the grinding bin 21, and the output end of the grinding motor 22 is connected to the grinding cutter head 23. The bean bin component 1 includes a bean bin cover 11 and a bean storage bin 12. The bean storage bin 12 is installed on the grinding bin 21, the discharge port of the bean storage bin 12 is communicated with the feed port of the grinding bin 21, and the bean bin cover 11 is detachably installed on the feed port of the bean storage bin 12. With such a setting, when grinding coffee, open the bean bin cover 11, put the coffee beans into the bean storage bin 12, cover the bean bin cover 11, the coffee beans fall into the grinding bin 21 through the discharge port of the bean storage bin 12 and the feed port of the grinding bin 21, and the grinding motor 22 drives the grinding cutter head 23 to act to grind the coffee beans into coffee powder.
[0047] Furthermore, the machine body 5 includes a base 51 and a main body 52. The main body 52 is fixed to the base 51. A coffee cup 6 is detachably installed on the base 51, and the coffee cup 6 is spaced directly below the drip component 4. In the second position, the rotary switching device 7 drives the powder cup component 3 to be located between the drip component 4 and the coffee cup 6. A control panel 53 and a water supply component 8 are provided on the main body 52. The water supply component 8 includes a water tank 81, a water pump, and a heating component. The water inlet of the water pump is connected to the water tank 81, the water outlet of the water pump is connected to the water inlet of the heating component, and the water outlet of the heating component is connected to the drip component 4. With such a setting, when making coffee, the rotary switching device 7 drives the powder cup component 3 to be located between the drip component 4 and the coffee cup 6. The water coming out from the drip component 4 under the water supply component 8 falls onto the powder cup component 3, and after making coffee, it flows into the coffee cup 6.
[0048] In practical applications, the heating component can be selectively turned on or off according to actual needs to achieve cold brew coffee or hot brew coffee. To reduce the vibration noise generated during the operation of the machine, a plurality of shock-absorbing feet are provided on the base 51.
[0049] The embodiments of the present invention have been described above in conjunction with the accompanying drawings. However, the present invention is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present invention, those of ordinary skill in the art can also make many forms without departing from the spirit and scope protected by the present invention and the claims, and all of them fall within the protection scope of the present invention.
Claims
1. A coffee bean grinding and brewing machine, characterized in that, Comprising: A body (5) with a bean grinding assembly (2) and a drip assembly (4) provided thereon; A rotary switching device (7) movably mounted on the body (5); A powder cup assembly (3) detachably mounted on the rotary switching device (7); The rotary switching device (7) can reciprocally switch between a first position and a second position. In the first position, the rotary switching device (7) drives the powder cup assembly (3) to be directly below the bean grinding assembly (2). In the second position, the rotary switching device (7) drives the powder cup assembly (3) to be directly below the drip assembly (4).
2. The bean grinding coffee machine according to claim 1, wherein: The bean grinding assembly (2) and the drip assembly (4) are arranged side by side on the body (5). The rotary switching device (7) includes a bracket (74) and a support (76). The support (76) is fixedly mounted on the body (5). The bracket (74) is hinged to the support (76) through a rotating shaft assembly. The powder cup assembly (3) is detachably mounted on the bracket (74). In the first position, the bracket (74) drives the powder cup assembly (3) to be arranged in cooperation with the bean grinding assembly (2). In the second position, the bracket (74) drives the powder cup assembly (3) to be arranged in cooperation with the drip assembly (4). A positioning device for positioning in the first position and the second position is provided between the bracket (74) and the support (76).
3. A coffee grinder and coffee maker according to claim 2, characterized in that: The positioning device includes an elastic component provided on the bracket (74), and a first card hole (78) and a second card hole (79) provided on the support (76). When the bracket (74) drives the powder cup assembly (3) to be in the first position, the elastic component cooperates with the first card hole (78) for card positioning. When the bracket (74) drives the powder cup assembly (3) to be in the second position, the elastic component cooperates with the second card hole (79) for card positioning.
4. A coffee bean grinder and coffee maker according to claim 3, characterized in that: The elastic component includes a spring gland (71), a spring (72), and a clamping post (73). The spring gland (71) is fixed on the bracket (74). A receiving groove is formed in the spring gland (71). The spring (72) is located in the receiving groove. The first end of the clamping post (73) extends into the receiving groove and abuts against the spring (72). The second end of the clamping post (73) passes through the bracket (74) and cooperates with the first card hole (78) or the second card hole (79) for card positioning.
5. A coffee bean grinder and coffee maker according to claim 4, characterized in that: A limiting ring (731) for cooperating with and abutting against the spring (72) is formed at the first end of the clamping post (73). A round head (732) for cooperating with the first card hole (78) or the second card hole (79) for card positioning is formed at the end of the second end of the clamping post (73).
6. The coffee grinder and coffee maker according to claim 2, wherein: The rotating shaft assembly includes a rotating shaft (75) and a clamp (77). The first end of the rotating shaft (75) is fixed on the support (76) through the clamp (77). The bracket (74) is sleeved on the second end of the rotating shaft (75), and the bracket (74) can swing horizontally relative to the support (76) around the rotating shaft (75).
7. A coffee grinder and coffee maker according to claim 6, wherein: A limiting portion (751) for cooperating with and limiting the bracket (74) is formed at the end of the second end of the rotating shaft (75).
8. The coffee grinder and coffee maker according to claim 2, wherein: The powder cup assembly (3) includes a powder cup gland (31), a powder cup (32), and a powder cup filter base (33). An inner cavity (331) is formed in the powder cup filter base (33). The powder cup (32) is fixed in the inner cavity (331) through the powder cup gland (31), and the bottom of the powder cup (32) is spaced from the bottom of the powder cup filter base (33). A plurality of through holes (34) are provided on the bottom of the powder cup filter base (33).
9. The coffee bean grinder and coffee maker according to claim 2, wherein: The grinding component (2) includes a grinding bin (21), a grinding motor (22), a grinding cutter disc (23), and a bean bin assembly (1). The grinding bin (21) is fixed on the machine body (5). The grinding motor (22) is fixed in the grinding bin (21), and the output end of the grinding motor (22) is connected to the grinding cutter disc (23). The bean bin assembly (1) includes a bean bin cover (11) and a bean storage bin (12). The bean storage bin (12) is installed on the grinding bin (21), the discharge port of the bean storage bin (12) is communicated with the feed port of the grinding bin (21), and the bean bin cover (11) is detachably installed on the feed port of the bean storage bin (12).
10. A coffee bean grinder and coffee maker according to claim 2, characterized in that: The machine body (5) includes a base (51) and a main body (52). The main body (52) is fixed on the base (51). A coffee cup (6) is detachably installed on the base (51). The coffee cup (6) is spaced directly below the drip component (4). In the second position, the rotary switching device (7) drives the powder cup assembly (3) to be located between the drip component (4) and the coffee cup (6). A control panel (53) and a water supply component (8) are provided on the main body (52). The water supply component (8) includes a water tank (81), a water pump, and a heating component. The water inlet of the water pump is connected to the water tank (81), the water outlet of the water pump is connected to the water inlet of the heating component, and the water outlet of the heating component is connected to the drip component (4).
Citation Information
Patent Citations
American coffee machine
CN215127358U