Stirring machine with water supply structure
By setting a detachable water tank and water stop valve assembly on the mixer, the problems of uneven water injection and powder splash are solved, and convenient water injection operation and efficient mixing effect are achieved.
Patent Information
- Application Number
- CN202422100230.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-28
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2034-08-28
AI Technical Summary
When making dough by existing mixers, the water injection method can easily lead to uneven auxiliary materials or powder splashing, and the operation is time-consuming and labor-intensive.
A detachable water tank is set on the bowl cover of the mixer, and the opening and closing of the outlet channel is controlled through the water stop valve assembly to achieve a slow flow of water in the water tank, combined with agitating operations to improve mixing uniformity; at the same time, a transparent water tank is set up to observe the stirring situation, and auxiliary materials can be added in the middle.
It realizes the convenience of water injection operation and mixing uniformity, reduces powder splashing, and improves stirring efficiency and effect.
Smart Images

Figure CN223231944U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of mixers, in particular to a mixer with a water structure. Background Art
[0002] Currently, dough mixers on the market lack a water supply mechanism. For example, Chinese patent publication number CN212281095U discloses a mixer comprising a base; a mixing bowl mounted within the base; a bowl cover detachably connected to the top of the base, the bowl cover having a first transmission mechanism disposed therein; and a main unit detachably mounted on the bowl cover. The main unit includes a drive mechanism connected to a stirring mechanism capable of extending through the bowl cover into the mixing bowl. The stirring mechanism is in transmission connection with the mixing bowl via the first transmission mechanism, such that when the drive mechanism drives the stirring mechanism to rotate and stir, the stirring bowl is also driven to rotate.
[0003] The method for making dough with the above-mentioned mixer is: solid and liquid ingredients such as water, flour, sugar, salt, yeast, etc. are put into a mixing bowl together, and then stirred to mix. However, this method easily causes auxiliary ingredients such as sugar, salt, yeast, etc. to not be fully mixed evenly with flour, resulting in problems such as inconsistent sweetness, saltiness or fermentation at different positions in the same dough; or a step-by-step stirring method is adopted, such as first putting solid ingredients such as flour, sugar, salt, yeast, etc. into a mixing bowl and stirring them evenly, and then manually slowly and evenly injecting water into the mixing bowl. This water injection method is time-consuming and labor-intensive, and will cause powder to splash when adding water.
[0004] Therefore, the existing technology still needs to be improved and developed. Utility Model Content
[0005] The purpose of the utility model is to provide a mixer with a water structure in view of the defects and shortcomings of the existing technology.
[0006] In order to achieve the above purpose, the technical solution adopted by the utility model is as follows:
[0007] The utility model provides a mixer with a water structure, comprising a mixing bowl and a bowl cover arranged on the mixing bowl; a mixing mechanism is arranged in the mixing bowl, a driving mechanism is arranged on the bowl cover, a first end of the mixing mechanism passes through the bowl cover and is connected to the driving mechanism, a mounting hole is opened on the bowl cover, a water tank is detachably mounted in the mounting hole, and a water outlet channel is arranged on the water tank; the utility model also includes a water stop valve assembly, and the water stop valve assembly is used to control the opening and closing of the water outlet channel.
[0008] A water tank is set on the bowl cover, and the opening of the water outlet channel of the water tank is controlled by the water stop valve assembly, so that the water in the water tank can slowly flow into the mixing bowl through the water outlet channel. The water filling operation is convenient and fast, and the problem of powder splashing during water filling is effectively improved; the stirring operation can be carried out simultaneously with the water filling operation, which is beneficial to improving the uniformity of material mixing.
[0009] According to the above solution, the water tank is made of a transparent material. This structure allows the user to observe the mixing status in the mixing bowl through the water tank; and can promptly remove the water tank from the mounting hole and add nut-based seasonings to the mixing container through the mounting hole.
[0010] In some embodiments, a cover is fixed on the water tank, and the cover and the bottom and side walls of the water tank form a accommodating cavity; the water stop valve assembly includes a first pressure rod, a first valve stem, a first sealing member and a first elastic member; the first pressure rod is horizontally slid in the accommodating cavity, and the water outlet channel is formed between the first pressure rod and the accommodating cavity, the water inlet of the water outlet channel is opened on the first side of the accommodating cavity, and the water outlet of the water outlet channel is opened at the bottom of the water tank; the first end of the first valve stem is fixedly connected to the first pressure rod, and the second end of the first valve stem is fixedly connected to the first sealing member through the water inlet, and the first sealing member can block the water inlet; a first elastic member is provided between the first pressure rod and the first side of the accommodating cavity, and a socket for the trigger member to be inserted into and abut against the first pressure rod is provided on the second side of the accommodating cavity, and the trigger member is provided in the mounting hole.
[0011] Through the above-mentioned structural arrangement, when the water tank is installed in the installation hole, the trigger member is inserted into the accommodating cavity from the insertion hole and abuts the first pressure rod, thereby pushing the first pressure rod to move toward the water inlet and squeezing the first elastic member, and then pushing the first sealing member away from the water inlet, so that the first sealing member is released from contact with the water inlet, thereby opening the water outlet channel, and the water in the water tank flows from the water inlet into the water outlet channel and then into the mixing bowl through the water outlet; when the water tank is removed from the installation hole, the first sealing member blocks the water inlet under the elastic action of the first elastic member, thereby closing the water outlet channel and preventing the water in the water tank from flowing into the mixing bowl.
[0012] According to the above solution, the enclosure and the water tank are integrally formed. Through the above arrangement, the structure can be simplified.
[0013] In some embodiments, a water outlet is provided at the bottom of the water tank, a guide cylinder is fixed on the water outlet, a water inlet is provided on the side wall of the guide cylinder, the water outlet channel is formed in the guide cylinder, and the two ends of the water outlet channel are respectively connected to the water inlet and the water outlet; the water stop valve assembly is provided in the guide cylinder, and the water stop valve assembly controls the opening and closing of the water outlet.
[0014] The above structure allows the water stop valve assembly to control the opening and closing of the water outlet, thereby controlling the opening and closing of the water outlet channel. Furthermore, by arranging the water stop valve assembly in the guide cylinder, the water stop valve assembly is prevented from being soaked in water for a long time, thereby improving its service life.
[0015] According to the above scheme, a partition is provided in the guide cylinder, and the partition divides the internal space of the guide cylinder into a driving chamber and a water outlet chamber, and the water outlet channel is provided in the water outlet chamber; the water stop valve assembly includes a second valve stem, a second sealing member, a second elastic member and a press-locking mechanism; one end of the second valve stem passes through the sliding hole, the water outlet chamber, and the water outlet on the partition in sequence and is fixedly connected to the second sealing member, and the second sealing member can block the water outlet; the second elastic member is provided between the second valve stem and the partition; the press-locking mechanism is used to switch the second valve stem between a high position and a low position; when the second valve stem is in a high position, the second sealing member blocks the water outlet.
[0016] Through the above-mentioned structural arrangement, when the locking mechanism is pressed to drive the second pressure rod to a low position, the second sealing member is released from contact with the water outlet, thereby opening the water outlet channel, and the water in the water tank flows from the water inlet into the water outlet channel and then into the mixing bowl through the water outlet; when the locking mechanism is pressed to drive the second pressure rod to a high position, the second sealing member blocks the water outlet, thereby closing the water outlet channel and preventing the water in the water tank from flowing into the mixing bowl.
[0017] In some embodiments, the press-locking mechanism includes a second pressure rod, a guide, a rotating sleeve and a guide portion, the guide portion is fixed at the upper opening of the guide cylinder, the first end of the second pressure rod passes through the guide portion and extends to the outside, and the second end of the second pressure rod is fixedly connected to the second valve stem; the rotating sleeve is arranged on the second valve stem, and the rotating sleeve rotates relative to the second valve stem and moves up and down synchronously; long grooves and short grooves are alternately opened on the side wall of the guide portion in the axial direction, and a first toggle block is provided on the side wall of the rotating sleeve, and the first toggle block is stuck in the long groove or the short groove; when the first toggle block is stuck in the long groove, the second valve stem is located in a high position; when the first toggle block is stuck in the short groove, the second valve stem is located in a low position; the guide portion is provided on the inner wall of the driving chamber, and the first toggle block can slide along the guide portion and thus rotate relative to the second valve stem, thereby realizing the conversion of the second valve stem between a high position and a low position.
[0018] In some embodiments, the push-lock mechanism includes a push switch, a second toggle block and a guide; the push switch can be moved up and down and is arranged in the guide, the first end of the push switch extends to the outside through the guide, and the second end of the push switch is sleeved on the second valve stem; long grooves and short grooves are alternately opened axially on the side wall of the guide, and the second toggle block is arranged on the outer wall of the second valve stem, and the second toggle block is inserted into the long groove or the short groove; when the second toggle block is inserted into the long groove, the second valve stem is located in a high position; when the second toggle block is inserted into the short groove, the second valve stem is located in a low position; a toggle tooth is provided at the bottom of the push switch, and the toggle tooth abuts against the second toggle block; the second toggle block can slide along the toggle tooth and thus rotate relative to the push switch, thereby realizing the conversion of the second valve stem between a high position and a low position.
[0019] By providing a push-lock mechanism, the water outlet channel can be opened or closed by pressing the second pressure rod once, without having to press the second pressure rod for a long time, thereby improving ease of use.
[0020] According to the above solution, a sliding groove is axially provided on the outer side wall of the push switch, and a sliding block that cooperates with the sliding groove is provided on the guide member.
[0021] The cooperation between the slider and the slide groove enables the push switch to move up and down in the guide member, but the push switch cannot rotate in the guide member.
[0022] According to the above scheme, it also includes a base, the mixing bowl is rotatably arranged in the base, and a first transmission mechanism is provided in the bowl cover; the stirring mechanism is connected to the stirring bowl through the first transmission mechanism, so that when the driving mechanism drives the stirring mechanism to rotate and stir, the stirring bowl is driven to rotate together.
[0023] With the above-mentioned structural arrangement, when the driving mechanism drives the stirring mechanism to rotate and stir, the stirring bowl is also driven to rotate together, thereby effectively improving the stirring efficiency and stirring effect.
[0024] According to the above solution, the stirring mechanism includes a first stirring rod and a second stirring rod, the driving mechanism is connected to the first stirring rod, and the first stirring rod and the second stirring rod are connected via a second transmission mechanism.
[0025] The stirring efficiency is improved by arranging two stirring rods; a second transmission mechanism is arranged between the first stirring rod and the stirring rod, so that the two stirring rods are driven to rotate simultaneously by one driving mechanism.
[0026] According to the above scheme, the first transmission mechanism includes a first gear, a transmission gear set and a second gear that are meshed in sequence, and the outer periphery of the mixing bowl is provided with a gear ring that is meshed with the second gear; the first gear is installed on the stirring shaft of the first stirring rod or the second stirring rod.
[0027] Through the above structural arrangement, the power output by the driving mechanism is transmitted to the mixing bowl through the first transmission mechanism.
[0028] The beneficial effects of the present invention are:
[0029] 1. The utility model has a water tank detachably mounted on the bowl cover, a water outlet channel is provided on the water tank, and a water stop valve assembly for controlling the opening and closing of the water outlet channel is provided. By controlling the opening of the water outlet channel of the water tank through the water stop valve assembly, the water in the water tank can slowly flow into the mixing bowl through the water outlet channel. The water filling operation is convenient and quick, and the problem of powder splashing during water filling is effectively improved.
[0030] 2. The utility model is provided with a stirring mechanism in the mixing bowl, and a driving mechanism is provided on the bowl cover. The first end of the stirring mechanism passes through the bowl cover and is connected to the driving mechanism, so that the stirring operation can be carried out simultaneously with the water injection operation, which is beneficial to improving the uniformity of material mixing. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 This is a schematic diagram of the structure of embodiment 1 of the present utility model Figure 1 ;
[0032] Figure 2 This is a schematic diagram of the structure of embodiment 1 of the present utility model Figure 2 ;
[0033] Figure 3 This is a schematic diagram of the structure of embodiment 1 of the present utility model Figure 3 ;
[0034] Figure 4 This is a schematic cross-sectional view of Example 1 of the present utility model;
[0035] Figure 5 yes Figure 4 Enlarged view of part A;
[0036] Figure 6 This is a schematic structural diagram of the water tank and water stop valve assembly in Example 1 of the present utility model;
[0037] Figure 7 This is a schematic structural diagram of the water tank and water stop valve assembly in Example 2 of the present utility model;
[0038] Figure 8 This is a schematic diagram of the state when the second valve stem is in a high position in Example 2 of the present utility model;
[0039] Figure 9 This is a schematic structural diagram of the guide tube in Example 2 of the present utility model;
[0040] Figure 10 This is a schematic structural diagram of the water tank and water stop valve assembly in Example 3 of the present utility model;
[0041] Figure 11 This is a schematic diagram of the state when the second valve stem is in a high position in Example 3 of the present utility model;
[0042] Figure 12 It is a structural schematic diagram of the guide member in Example 3 of the present utility model.
[0043] In the figure: 1. mixing bowl; 11. gear ring; 2. bowl cover; 21. mounting hole; 22. trigger member; 3. water tank; 31. enclosure; 32. jack; 4. water outlet; 41. water inlet; 42. water outlet; 5. water stop valve assembly; 51. first pressure rod; 52. first valve stem; 53. first sealing member; 54. first elastic member; 55. second valve stem; 56. second sealing member; 57. second elastic member; 58. push-lock mechanism; 581. second pressure rod; 582. guide member; 5821. long slot ; 5822, short groove; 5823, slider; 583, rotating sleeve; 5831, first dial block; 584, guide part; 585, press switch; 5851, dial tooth; 5852, slide groove; 586, second dial block; 6, guide cylinder; 61, partition; 7, driving mechanism; 8, base; 9, stirring mechanism; 91, first stirring rod; 911, stirring shaft; 92, second stirring rod; 10, first transmission mechanism; 101, first gear; 102, transmission gear set; 103, second gear. DETAILED DESCRIPTION
[0044] The technical solution of the present utility model is described below with reference to the accompanying drawings and embodiments.
[0045] Example 1
[0046] like Figure 1-6 As shown, the utility model provides a mixer with a water structure, including a mixing bowl 1 and a bowl cover 2 covered on the mixing bowl 1; a stirring mechanism 9 is provided in the mixing bowl 1, and a driving mechanism 7 is provided on the bowl cover 2. The first end of the stirring mechanism 9 passes through the bowl cover 2 and is connected to the driving mechanism 7. A mounting hole 21 is provided on the bowl cover 2, and a water tank 3 is detachably installed in the mounting hole 21. The water tank 3 is provided with a water outlet channel 4; and a water stop valve assembly 5 is also included. The water stop valve assembly 5 is used to control the opening and closing of the water outlet channel 4.
[0047] A water tank 3 is provided on the bowl cover 2, and the opening of the water outlet channel 4 of the water tank 3 is controlled by the water stop valve assembly 5, so that the water in the water tank 3 can slowly flow into the mixing bowl 1 through the water outlet channel 4. The water filling operation is convenient and fast, and the problem of powder splashing during water filling is effectively improved; the stirring operation can be carried out simultaneously with the water filling operation, which is beneficial to improving the uniformity of material mixing.
[0048] Furthermore, the water tank 3 is made of a transparent material; a cover 31 is fixed to the water tank 3, and the cover 31 and the bottom and side walls of the water tank 3 form a receiving cavity; the water stop valve assembly 5 includes a first pressure rod 51, a first valve stem 52, a first sealing member 53 and a first elastic member 54; the first pressure rod 51 is horizontally slidably arranged in the receiving cavity, the water outlet channel 4 is formed between the first pressure rod 51 and the receiving cavity, the water inlet 41 of the water outlet channel 4 is opened on the first side of the receiving cavity, and the water outlet channel 4 is provided at the bottom of the water tank 3; the first end of the first valve stem 52 is fixedly connected to the first pressure rod 51, and the second end of the first valve stem 52 passes through the water inlet 41 and is fixedly connected to the first sealing member 53, and the first sealing member 53 can block the water inlet 41; a first elastic member 54 is provided between the first pressure rod 51 and the first side of the accommodating cavity, and a socket 32 for the trigger member 22 to be inserted into and abut against the first pressure rod 51 is provided on the second side of the accommodating cavity, and the trigger member 22 is arranged in the mounting hole 21.
[0049] Through the above-mentioned structural arrangement, when the water tank 3 is installed in the installation hole 21, the trigger member 22 is inserted into the accommodating cavity from the insertion hole 32 and abuts the first pressure rod 51, thereby pushing the first pressure rod 51 to move toward the water inlet 41 and squeezing the first elastic member 54, thereby pushing the first sealing member 53 away from the water inlet 41, so that the first sealing member 53 is released from contact with the water inlet 41, thereby opening the water outlet channel 4, and the water in the water tank 3 flows from the water inlet 41 into the water outlet channel 4 and then into the mixing bowl 1 through the water outlet 42; when the water tank 3 is removed from the installation hole 21, the first sealing member 53 blocks the water inlet 41 under the elastic action of the first elastic member 54, thereby closing the water outlet channel 4 and preventing the water in the water tank 3 from flowing into the mixing bowl 1.
[0050] Furthermore, the enclosure 31 is formed integrally with the water tank 3. Through the above arrangement, the structure can be simplified.
[0051] Furthermore, the mixing bowl 1 is rotatably mounted within the base 8, and the bowl cover 2 is provided with a first transmission mechanism 10. The stirring mechanism 9 is connected to the mixing bowl 1 via the first transmission mechanism 10, so that when the driving mechanism 7 drives the stirring mechanism 9 to rotate and stir, the stirring bowl 1 is also driven to rotate. This structural arrangement allows the stirring mechanism 9 to be driven by the driving mechanism 7 to rotate and stir, and also drives the stirring bowl 1 to rotate, effectively improving the stirring efficiency and effect.
[0052] Furthermore, the stirring mechanism 9 includes a first stirring rod 91 and a second stirring rod 92, the driving mechanism 7 is connected to the first stirring rod 91, and the first stirring rod 91 and the second stirring rod 92 are connected via a second transmission mechanism; the first transmission mechanism 10 includes a first gear 101, a transmission gear set 102, and a second gear 103 that mesh with each other in sequence, and the outer periphery of the mixing bowl 1 is provided with a gear ring that meshes with the second gear 103; the first gear 101 is mounted on the stirring shaft 911 of the first stirring rod 91 or the second stirring rod 92. By providing two stirring rods, the stirring efficiency is improved; a second transmission mechanism is provided between the first stirring rod 91 and the stirring rod, so that the two stirring rods are driven to rotate simultaneously by one driving mechanism 7. Through the above-mentioned structural arrangement, the power output by the driving mechanism 7 is transmitted to the mixing bowl 1 through the first transmission mechanism 10.
[0053] When using the blender with a water structure according to the present invention, solid food is first placed in the mixing bowl 1, and then a certain amount of water is added to the water tank 3. The water tank 3 is then installed in the mounting hole 21. The trigger member 22 is inserted into the accommodating cavity through the insertion hole 32 and abuts the first pressure rod 51, thereby pushing the first pressure rod 51 toward the water inlet 41 and squeezing the first elastic member 54. This in turn pushes the first sealing member 53 away from the water inlet 41, causing the first sealing member 53 to break contact with the water inlet 41, thereby opening the water outlet channel 4. Water in the water tank 3 flows from the water inlet 41 into the water outlet channel 4 and then into the mixing bowl 1 through the water outlet 42. The driving mechanism 7 is then activated, driving the stirring mechanism 9 and the mixing bowl 1 to rotate together. After the water is filled, the water tank 3 can be removed from the mounting hole 21. The elastic action of the first elastic member 54 causes the first sealing member 53 to block the water inlet 41, thereby closing the water outlet channel 4 and preventing the water in the water tank 3 from flowing into the mixing bowl 1.
[0054] Example 2
[0055] like Figure 7-9 As shown, the present invention provides a mixer with a water structure, which has a structure that is basically the same as that of Example 1, except that the structural settings of the water tank 3 and the water stop valve assembly 5 are different.
[0056] Specifically, a water outlet 42 is formed at the bottom of the water tank 3. A guide tube 6 is fixed to the water outlet 42. The water outlet channel 4 is formed within the guide tube 6. The two ends of the water outlet channel 4 are respectively connected to the water inlet 41 and the water outlet 42. The water stop valve assembly 5 is disposed within the guide tube 6 and controls the opening and closing of the water outlet 42. By disposing the water stop valve assembly 5 within the guide tube 6, the water stop valve assembly 5 is prevented from being immersed in water for a long time, which is conducive to improving the service life.
[0057] Furthermore, a partition 61 is provided in the guide tube 6, and the partition 61 divides the internal space of the guide tube 6 into a driving chamber and a water outlet chamber, and the water outlet channel 4 is provided in the water outlet chamber;
[0058] The water stop valve assembly 5 includes a second valve stem 55, a second sealing member 56, a second elastic member 57 and a push-locking mechanism 58; one end of the second valve stem 55 passes through the sliding hole, the water outlet cavity, and the water outlet 42 on the partition 61 in sequence and is fixedly connected to the second sealing member 56, and the second sealing member 56 can block the water outlet 42; a second elastic member 57 is provided between the second valve stem 55 and the partition 61; the push-locking mechanism 58 is used to switch the second valve stem 55 between a high position and a low position; when the second valve stem 55 is in a high position, the second sealing member 56 blocks the water outlet 42.
[0059] Through the above-mentioned structural arrangement, when the locking mechanism 58 is pressed to drive the second pressure rod 581 to a low position, the second sealing member 56 is released from contact with the water outlet 42, thereby opening the water outlet channel 4, and the water in the water tank 3 flows from the water inlet 41 into the water outlet channel 4 and then into the mixing bowl 1 through the water outlet 42; when the locking mechanism 58 is pressed to drive the second pressure rod 581 to a high position, the second sealing member 56 blocks the water outlet 42, thereby closing the water outlet channel 4 so that the water in the water tank 3 cannot flow into the mixing bowl 1.
[0060] Furthermore, the press-lock mechanism 58 includes a second pressure rod 581, a guide member 582, a rotating sleeve 583 and a guide portion 584. The guide member 582 is fixed at the upper opening of the guide cylinder 6. The first end of the second pressure rod 581 extends to the outside through the guide member 582, and the second end of the second pressure rod 581 is fixedly connected to the second valve stem 55; the rotating sleeve 583 is sleeved on the second valve stem 55, and the rotating sleeve 583 and the second valve stem 55 rotate relative to each other and move up and down synchronously; the side wall of the guide member 582 is alternately provided with long slots 5821 and short slots 582 along the axial direction. 2. A first toggle block 5831 is provided on the side wall of the rotating sleeve 583, and the first toggle block 5831 is inserted into the long slot 5821 or the short slot 5822; when the first toggle block 5831 is inserted into the long slot 5821, the second valve stem 55 is located in a high position; when the first toggle block 5831 is inserted into the short slot 5822, the second valve stem 55 is located in a low position; the guide portion 584 is provided on the inner wall of the driving cavity, and the first toggle block 5831 can slide along the guide portion 584 and thus rotate relative to the second valve stem 55, thereby realizing the conversion of the second valve stem 55 between a high position and a low position.
[0061] When the mixer with a water structure of the present invention is in use, solid food is first placed in the mixing bowl 1, and then a certain amount of water is added to the water tank 3. The driving mechanism 7 is turned on to drive the mixing mechanism 9 and the mixing bowl 1 to rotate together; then the second pressure rod 581 is pressed downward, and the second pressure rod 581 drives the second valve stem 55 and the rotating sleeve 583 to move downward synchronously. When the first dial block 5831 moves downward to contact the guide part 584, the first dial block 5831 disengages from the long groove 5821 and contacts the guide part 584. When it continues to move downward, the first dial block 5831 slides along the guide part 584 to the bottom of the short groove 5822; the second pressure rod 581 is released, and the first dial block 5831 enters the short groove 5822 under the elastic action of the second elastic member 57. At this time, the second sealing member 56 is released from contact with the water outlet 42, and the water in the water tank 3 flows from the water inlet 41 into the water outlet channel 4 and then flows into the mixing bowl 1 through the water outlet 42. After the water filling is completed, the second pressure rod 581 is pressed downward again, and the second pressure rod 581 drives the second valve stem 55 and the rotating sleeve 583 to move downward synchronously. When it moves downward until the first dial block 5831 contacts the guide part 584, the first dial block 5831 disengages from the short groove 5822 and contacts the guide part 584. When it continues to move downward, the first dial block 5831 slides along the guide part 584 to the bottom of the long groove 5821; release the second pressure rod 581, and the first dial block 5831 enters the long groove 5821 under the elastic action of the second elastic member 57. At this time, the second sealing member 56 blocks the water outlet 42, thereby closing the water outlet channel 4 so that the water in the water tank 3 cannot flow into the mixing bowl 1.
[0062] Example 3
[0063] like Figure 10-12 As shown, the utility model provides a mixer with a water structure, and its structure is basically the same as that of Example 2, except that: the push-lock mechanism 58 includes a push switch 585, a second toggle block 586 and a guide 582; the push switch 585 can be moved up and down and is arranged in the guide 582, and the first end of the push switch 585 extends to the outside through the guide 582, and the second end of the push switch 585 is sleeved on the second valve stem 55; long grooves 5821 and short grooves 5822 are alternately opened on the side wall of the guide 582 along the axial direction, and the second toggle block 586 is arranged on the outer side wall of the second valve stem 55, and the second toggle block 586 is stuck in the long groove 5821 or the short groove slot 5822; when the second toggle block 586 is inserted into the long slot 5821, the second valve stem 55 is located in a high position; when the second toggle block 586 is inserted into the short slot 5822, the second valve stem 55 is located in a low position; a toggle tooth 5851 is provided at the bottom of the push switch 585, and the toggle tooth 5851 abuts against the second toggle block 586; the second toggle block 586 can slide along the toggle tooth 5851 and thus rotate relative to the push switch 585, thereby realizing the conversion of the second valve stem 55 between a high position and a low position; a sliding groove 5852 is axially provided on the outer wall of the push switch 585, and a slider 5823 cooperating with the sliding groove 5852 is provided on the guide member 582.
[0064] When the mixer with a water structure of the present invention is in use, solid food is first placed in the mixing bowl 1, and then a certain amount of water is added to the water tank 3, and the driving mechanism 7 is turned on to drive the mixing mechanism 9 and the mixing bowl 1 to rotate together; then the pressing switch 585 is pressed downward, and the pressing switch 585 drives the second toggle block to move downward until it disengages from the long slot 5821, and the pressing switch 585 continues to move downward. Under the action of the second elastic member 57, the second toggle block abuts against the toggle tooth 5851 of the pressing switch 585 and slides along the toggle tooth, thereby rotating relative to the pressing switch 585 to the bottom of the short slot 5822; the second pressure rod 581 is released, and the second toggle block 586 enters the short slot 5822 under the elastic action of the second elastic member 57. At this time, the second sealing member 56 is released from contact with the water outlet 42, and the water in the water tank 3 flows from the water inlet 41 into the water outlet channel 4 and then into the mixing bowl 1 through the water outlet 42. After the water filling is completed, the push switch 585 is pressed downward again, driving the second toggle block to move downward until it is disengaged from the short slot 5822. The push switch 585 continues to move downward. Under the action of the second elastic member 57, the second toggle block abuts against the toggle tooth 5851 of the push switch 585 and slides along the toggle tooth, thereby rotating relative to the push switch 585 to the bottom of the long slot 5821. The second pressure rod 581 is released, and the second toggle block 586 enters the long slot 5821 under the elastic action of the second elastic member 57. At this time, the second sealing member 56 blocks the water outlet 42, thereby closing the water outlet channel 4 so that the water in the water tank 3 cannot flow into the mixing bowl 1. The above description is only a preferred embodiment of the present invention. Therefore, all equivalent changes or modifications made based on the structure, features and principles described in the scope of the present invention are included in the scope of the present invention.
Claims
1. A mixer with a water structure, comprising a mixing bowl (1) and a bowl cover (2) covering the mixing bowl (1); a stirring mechanism (9) is provided in the mixing bowl (1), a driving mechanism (7) is provided on the bowl cover (2), a first end of the stirring mechanism (9) passes through the bowl cover (2) and is connected to the driving mechanism (7), characterized in that: The bowl cover (2) is provided with a mounting hole (21), a water tank (3) is detachably mounted in the mounting hole (21), and a water outlet channel (4) is provided on the water tank (3); It also includes a water stop valve assembly (5), which is used to control the opening and closing of the water outlet channel (4).
2. The mixer with water structure according to claim 1, characterized in that: The water tank (3) is made of a transparent material.
3. The mixer with water structure according to claim 1, characterized in that: A cover (31) is fixed on the water tank (3), and the cover (31), the bottom of the water tank (3), and the side walls of the water tank (3) form a receiving cavity; The water stop valve assembly (5) comprises a first pressure rod (51), a first valve stem (52), a first sealing member (53) and a first elastic member (54); the first pressure rod (51) is horizontally slidably arranged in the accommodating cavity, the water outlet channel (4) is formed between the first pressure rod (51) and the accommodating cavity, the water inlet (41) of the water outlet channel (4) is opened on the first side of the accommodating cavity, and the water outlet (42) of the water outlet channel (4) is opened at the bottom of the water tank (3); The first end of the first valve stem (52) is fixedly connected to the first pressure rod (51), and the second end of the first valve stem (52) passes through the water inlet (41) and is fixedly connected to the first sealing member (53), and the first sealing member (53) can block the water inlet (41); A first elastic member (54) is provided between the first pressure rod (51) and the first side of the accommodating cavity, and a plug hole (32) for a trigger member (22) to be inserted into and abut against the first pressure rod (51) is provided on the second side of the accommodating cavity, and the trigger member (22) is provided in the mounting hole (21).
4. The mixer with water structure according to claim 3, characterized in that: The enclosure (31) and the water tank (3) are integrally formed.
5. The mixer with water structure according to claim 1, characterized in that: A water outlet (42) is provided at the bottom of the water tank (3), and a guide cylinder (6) is fixed on the water outlet (42); A water inlet (41) is provided on the side wall of the guide tube (6), and the water outlet channel (4) is formed in the guide tube (6), with both ends of the water outlet channel (4) being in communication with the water inlet (41) and the water outlet (42) respectively. The water stop valve assembly (5) is arranged in the guide cylinder (6), and the water stop valve assembly (5) controls the opening and closing of the water outlet (42).
6. The mixer with water structure according to claim 5, characterized in that: A partition (61) is provided in the guide cylinder (6), and the partition (61) divides the internal space of the guide cylinder (6) into a driving chamber and a water outlet chamber, and the water outlet channel (4) is provided in the water outlet chamber; The water stop valve assembly (5) comprises a second valve stem (55), a second sealing member (56), a second elastic member (57) and a press-locking mechanism (58); One end of the second valve stem (55) passes through the sliding hole, the water outlet cavity, and the water outlet (42) on the partition (61) in sequence and is fixedly connected to the second sealing member (56), and the second sealing member (56) can block the water outlet (42); The second elastic member (57) is provided between the second valve stem (55) and the partition (61); The pressing and locking mechanism (58) is used to switch the second valve stem (55) between a high position and a low position; when the second valve stem (55) is in the high position, the second sealing member (56) blocks the water outlet (42).
7. The mixer with water structure according to claim 6, characterized in that: The push-lock mechanism (58) includes a second pressure rod (581), a guide member (582), a rotating sleeve (583) and a guide portion (584); the guide member (582) is fixed at the upper opening of the guide cylinder (6); the first end of the second pressure rod (581) passes through the guide member (582) and extends to the outside; the second end of the second pressure rod (581) is fixedly connected to the second valve stem (55); The rotating sleeve (583) is sleeved on the second valve stem (55), and the rotating sleeve (583) and the second valve stem (55) rotate relative to each other and move up and down synchronously; Long slots (5821) and short slots (5822) are alternately provided on the side wall of the guide member (582) along the axial direction, and a first toggle block (5831) is provided on the side wall of the rotating sleeve (583), and the first toggle block (5831) is inserted into the long slot (5821) or the short slot (5822); when the first toggle block (5831) is inserted into the long slot (5821), the second valve stem (55) is located in a high position; when the first toggle block (5831) is inserted into the short slot (5822), the second valve stem (55) is located in a low position; The guide portion (584) is provided on the inner wall of the driving cavity, and the first rotating block (5831) can slide along the guide portion (584) and thus rotate relative to the second valve stem (55), thereby realizing the conversion of the second valve stem (55) between the high position and the low position.
8. The mixer with water structure according to claim 6, characterized in that: The press-lock mechanism (58) includes a press switch (585), a second dial block (586) and a guide (582); The push switch (585) is movable up and down and is disposed in the guide member (582). The first end of the push switch (585) passes through the guide member (582) and extends to the outside. The second end of the push switch (585) is sleeved on the second valve stem (55). Long grooves (5821) and short grooves (5822) are alternately provided on the side wall of the guide member (582) along the axial direction. The second toggle block (586) is provided on the outer side wall of the second valve stem (55). The second toggle block (586) is inserted into the long groove (5821) or the short groove (5822). When the second toggle block (586) is inserted into the long groove (5821), the second valve stem (55) is located at a high position. When the second toggle block (586) is inserted into the short groove (5822), the second valve stem (55) is located at a low position. A toggle tooth (5851) is provided at the bottom of the push switch (585), and the toggle tooth (5851) abuts against the second toggle block (586); the second toggle block (586) can slide along the toggle tooth (5851) and thus rotate relative to the push switch (585), thereby realizing the conversion of the second valve stem (55) between the high position and the low position.
9. The mixer with water structure according to claim 8, characterized in that: A sliding groove (5852) is provided on the outer side wall of the push switch (585) along the axial direction, and a sliding block (5823) is provided on the guide member (582) to cooperate with the sliding groove (5852).
10. The mixer with water structure according to claim 1, characterized in that: The invention also includes a base (8), wherein the mixing bowl (1) is rotatably arranged in the base (8), and a first transmission mechanism (10) is arranged in the bowl cover (2); the stirring mechanism (9) is connected to the mixing bowl (1) through the first transmission mechanism (10), so that when the driving mechanism (7) drives the stirring mechanism (9) to rotate and stir, the stirring bowl (1) is driven to rotate together.
Citation Information
Patent Citations
Mixer
CN212281095U