Magnetic telescopic straw spout and beverage pot

The magnetically retractable structure solves the problems of inconvenient cleaning, high friction and stuck in the existing straw design, and realizes the convenient cleaning and fashionable appearance of the straw.

CN116807214BActive Publication Date: 2025-09-02DONGGUAN XIDIAN ELECTRIC CO LTD
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Patent Information

Application Number
CN202310908277.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-22
Publication Date
2025-09-02
Estimated Expiration
2043-07-22

AI Technical Summary

Technical Problem

The existing straw design has problems such as inconvenient cleaning, high friction, easy to get stuck and not fashionable enough, especially when using tea and coffee drinks.

Method used

The magnetically absorbed telescopic structure is adopted to realize the touch-free longitudinal movement of the straw through the magnet assembly, and the rotation of the housing and the cover controls the telescopic expansion and contraction of the straw, and uses magnetic absorption and repulsion to achieve rapid and frictionless telescopic movement.

Benefits of technology

It realizes convenient cleaning and sanitary use of straws, reduces friction, avoids jamming, and has a fashionable appearance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a magnetic telescopic straw spout and beverage pot, which include a shell, a cover and a straw assembly, with a magnetic switch structure located between the three to push the straw assembly to move; the shell has a storage chamber and a water outlet portion inside; the cover is rotatably connected to the shell and is used to control the magnetic switch structure; the straw assembly is located in the storage chamber and can be tightly connected to the water outlet portion, and can move back and forth longitudinally between the storage chamber and the outside of the cover without touching through the magnetic switch structure, and can move back and forth longitudinally between the storage chamber and the outside of the shell without touching through the magnetic switch structure; in this process, there is no need to bend the straw assembly, so the straw assembly can be kept in a vertical state, which is easy to clean and there is no need to touch the straw assembly, which is clean and hygienic.
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Description

Technical Field

[0001] The invention belongs to the technical field of water storage kettles, in particular to a magnetic telescopic straw spout and a beverage kettle. Background Art

[0002] Most of the straws on the market are made of silicone. The main storage method is to bend the straw by closing the lid and squeezing it at the same time to achieve the storage effect. In the ever-changing beverage market, tea and coffee beverages are on the rise. These silicone straws will leave stains after drinking tea and coffee beverages. However, since silicone straws are relatively soft, it is difficult to use tools to reach into the silicone tube for cleaning. For this reason, a foldable and retractable straw has appeared on the market. This straw is made of a hard material and is rotatably connected to the stopper of the pot. When not in use, it is in a bent state and is not connected to the water outlet. When in use, the straw is rotated to be in a vertical state and connected to the water outlet. Although this type of straw is easy to clean, it needs to be straightened by hand during use, which means that the hand will touch the mouthpiece, which is unhygienic.

[0003] Another method is to use a rotating lid to drive the straw upward. Specifically, a thread is provided in the rotating lid, and a slider is provided on the straw. The slider is slidably connected to the thread. The straw is fixed in the radial direction and does not rotate. When the rotating lid rotates, the slider can be driven up or down in the direction of the thread, thereby achieving the lifting and lowering of the straw. When using this method, the straw is extended slowly and the friction is large during the movement. If the beverage is a sugary beverage, the slider will stick to it and cannot move in the thread, causing it to get stuck.

[0004] In addition, the above three methods are the mainstream retractable straws on the market and have been used for a long time. With the changes in young people's aesthetics, this type of retractable straw has become somewhat outdated and not fashionable enough. Summary of the Invention

[0005] The object of the present invention is to provide a magnetic telescopic straw spout and a beverage pot to solve the problems raised in the above background technology.

[0006] To achieve the above object, the present invention provides the following technical solutions:

[0007] A magnetic telescopic straw spout comprises a shell, a cover and a straw assembly, with a magnetic switch structure disposed between the shell and the cover to push the straw assembly.

[0008] The shell has a receiving cavity and a water outlet portion therein;

[0009] A cover body, which is rotatably connected to the housing and is used to control the magnetic switch structure;

[0010] The straw assembly is located in the storage chamber and is in sealed communication with the water outlet. A magnetic switch structure allows it to move longitudinally back and forth between the storage chamber and the outside of the cover without any contact.

[0011] The magnetic switch structure includes a magnet group 1 fixed on both sides of the straw assembly, and a magnet group 2 arranged between the shell and the cover. The magnet group 2 is attracted to the magnet group 1, and the magnet group 1 can be misaligned with the magnet group 2.

[0012] According to a further technical solution, the second magnet group is fixedly connected to the shell, the cover body is slidably engaged with the straw assembly, and the straw assembly is rotated by the cover body, so that the first magnet group and the second magnet group correspond or are misaligned.

[0013] According to a further technical solution, a third magnet group is provided at the bottom of the shell, the third magnet group corresponds to the position of the second magnet group, and the third magnet group repels the first magnet group.

[0014] According to a further technical solution, the second magnet group is fixed on the cover.

[0015] According to a further technical solution, a fourth magnet group is provided on the cover body, which is offset from the second magnet group, and the fourth magnet group and the first magnet group have magnetic poles that repel each other.

[0016] According to a further technical solution, the straw assembly includes a straw body, and a fixing portion for mounting a magnet group 1 is provided on the side of the straw body.

[0017] According to a further technical solution, the water inlet and the water outlet of the straw body are connected to a bellows telescopic tube.

[0018] According to a further technical solution, any one of the magnet group 1 or the magnet group 2 is replaced by a magnetic conductive material.

[0019] According to a further technical solution, an interference portion is formed between the straw body and the fixing portion, and the interference portion can abut against the end of the extension hole to form a sealed state of the storage cavity.

[0020] According to a further technical solution, the water outlet portion includes a vertical water outlet channel, and both end openings of the water outlet channel are respectively provided with steps extending inwards;

[0021] The inner diameter of the water outlet channel is larger than the outer diameter of the straw body. The lower end of the straw body has no opening, and a sealing gasket is provided at its lower end. The sealing gasket can be abutted against the lower end step. The side wall of the lower end of the straw body is provided with a plurality of water inlet holes. A sealing ring is provided on the side wall of the straw body near the water inlet holes, and the sealing ring can be abutted against the upper end step.

[0022] A beverage pot comprises the above-mentioned magnetic telescopic straw spout.

[0023] Beneficial effects of the present invention:

[0024] The present invention uses a magnetic switch structure to enable the straw assembly to move back and forth longitudinally between the storage cavity and the outside of the housing without any contact. During this process, the straw assembly does not need to be bent, so the straw assembly can be kept in a vertical state, which is convenient for cleaning without touching the straw assembly, ensuring cleanliness and hygiene.

[0025] The use of magnetic suction can greatly reduce friction when achieving bouncing opening, making it more fashionable and avoiding the problem of getting stuck.

[0026] Other features and advantages of the present invention will be described in detail in the following detailed description. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] Figure 1 : A stereogram of the present invention.

[0028] Figure 2 : The magnet group 2 of the present invention is installed in the shell structure diagram.

[0029] Figure 3 : The magnet group 2 of the present invention is installed on the cover structure diagram.

[0030] Figure 4 : The magnet group 2 and the magnet group 4 of the present invention are installed on the cover structure diagram.

[0031] Figure 5 : Exploded view of the present invention.

[0032] Figure 6 : Structural diagram of the limiting groove and fixed position of the present invention.

[0033] Figure 7 : The three-dimensional cross section of the present invention Figure 1 .

[0034] Figure 8 : The three-dimensional cross section of the present invention Figure 2 .

[0035] Figure markings: 1-shell, 11-storage cavity, 12-water outlet, 121-water outlet channel, 122-step, 2-cover, 21-extension hole, 22-limiting groove, 23-fixing position, 3-straw assembly, 31-straw body, 32-fixing part, 33-interference part, 34-sealing gasket, 35-water inlet hole, 36-sealing ring, 37-limiting bar, 38-waist, 4-magnetic switch structure, 41-magnet group one, 42-magnet group two, 43-magnet group three, 44-magnet group four, 5-corrugated telescopic tube, 61-extension tube, 62-hole position. DETAILED DESCRIPTION

[0036] The technical solutions in the embodiments of the present invention will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present invention.

[0037] Please refer to Figure 1-8 ;

[0038] The present invention provides a retractable elastic straw at the stopper of a kettle. The straw is made of a hard material, which is easy to clean. When not in use, it can be retracted without affecting the overall appearance. When in use, it is more fashionable and does not need to be touched during the storage and extension process, which is clean and hygienic. The present invention specifically comprises a shell 1, a cover 2, and a straw assembly 3. A magnetic switch structure 4 is provided between the three to push the straw assembly 3. The shell 1 has a storage chamber 11 and a water outlet 12. The cover 2 is rotatably connected to the shell 1 and is used to control the magnetic switch structure 4. The straw assembly 3 is located in the storage chamber 11 and can be in sealed communication with the water outlet 12.

[0039] In the initial state, the straw assembly 3 is located in the storage chamber 11. At this time, the straw assembly 3 and the water outlet 12 exist in two states. One state is that the straw assembly 3 and the water outlet 12 are not airtight and cannot absorb water. The other state is that the straw assembly 3 always maintains a seal with the water outlet 12 and can absorb water, but at this time the straw assembly 3 is located in the storage chamber 11 and cannot be used by the user. The specific methods of these two states will be described below. However, no matter which state it is in, when the straw assembly 3 needs to be used, the magnetic switch structure 4 is driven by rotating the cover body 2, and the magnetic principle is used to drive the straw assembly 3 to move upward. At this time, The straw assembly 3 is sealed with the water outlet 12 to absorb water; the magnetic attraction method can quickly drive the straw assembly 3 to move upward, and the friction of the rotating cover 2 is extremely small, which is convenient for people to use. When the straw assembly 3 reaches the position, it will produce a slight collision with the upper end of the cover 2 and make a crisp "click" sound. Of course, if you don't want to make a sound, you can also set a thinner silicone pad on the upper end of the shell 1 to eliminate the sound, which can meet the needs of different users. Regardless of whether there is a sound, when the straw assembly 3 reaches the position, it will produce a slight collision with the upper end of the cover 2, which will generate a slight vibration feedback;

[0040] When the straw assembly 3 is not in use, the cover body 2 is rotated again, and the principle of like poles repel is used to push the straw assembly 3 downward into the storage cavity 11, or the interaction force generated by the magnetic field is eliminated, and the straw assembly 3 falls downward into the storage wall due to its own gravity. Based on these two methods, the cover body 2 can be continued to be rotated to lock the straw assembly 3.

[0041] Based on the above embodiment, the magnetic switch structure 4 allows the straw assembly 3 to move back and forth longitudinally between the storage cavity 11 and the outside of the shell 1 without contact; there is no need to bend the straw assembly 3 during this process, so the straw assembly 3 can be maintained in a vertical state, which is convenient for cleaning. At the same time, there is no need to touch the straw assembly 3, which is clean and hygienic. In addition, the use of magnetic suction can greatly reduce friction and avoid the problem of jamming.

[0042] The magnetic switch structure 4 used in the present invention includes a magnet group 1 41 fixed on both sides of the straw assembly 3, and a magnet group 2 42 arranged between the shell 1 and the cover 2. Figure 2 and Figure 3 The magnetic poles of the second magnet group 42 are opposite to those of the first magnet group 41. The first magnet group 41 can be misaligned with the second magnet group 42. In this embodiment, there are two magnet groups 41 and two magnet groups 42, and they are symmetrically distributed at 180 degrees. For example, if the upper end surface of the first magnet group 41 is an N pole and the lower end surface is an S pole, then the lower end surface of the second magnet group 42 is an S pole, and the lower end surface of the second magnet group 42 corresponds to the upper end surface of the magnet group. The relative position of the first magnet group 41 and the second magnet group 42 is changed by rotating the cover body 2 to achieve telescoping.

[0043] In the initial state, the straw assembly 3 is located in the accommodating cavity. At this time, the magnet group 1 41 and the magnet group 2 42 are misaligned with each other. At the same time, the cover body 2 supports the straw assembly 3 so that it cannot be extended. When the straw assembly 3 needs to be used, the cover body 2 is rotated to make the magnet group 1 correspond to the magnet group 2 42. At this time, the magnet group 1 41 and the magnet group 2 42 generate suction, causing the straw assembly 3 to move upward and extend. When the straw assembly 3 needs to be stored, the cover body 2 is rotated again to make the magnet group 1 41 and the magnet group 2 42 misaligned with each other. The suction force between the two disappears, and the straw assembly 3 falls down into the storage cavity 11 by its own gravity.

[0044] In this embodiment, either the first magnet group 41 or the second magnet group 42 is replaced by a magnetic conductive material, which can also generate suction to drive the straw assembly to move.

[0045] In this embodiment, there are two ways to achieve relative rotation between magnet group 1 41 and magnet group 2 42:

[0046] Example 1, refer to Figure 2 , the second magnet group 42 is fixedly connected to the housing 1, that is, the position of the second magnet group 42 is fixed, and the cover 2 and the straw assembly 3 are slidably connected. For example, refer to Figure 5 and Figure 6, two limiting strips 37 are provided on the side wall of the straw assembly 3, and an extension hole 21 corresponding to the straw assembly 3 is provided on the cover body 2, and a limiting groove 22 corresponding to the limiting strip 37 is provided at the extension hole 21, and a fixing position 23 is provided on one side of the limiting groove 22; in the initial state, the straw assembly 3 is located in the storage cavity 11, at this time, the fixing position 23 abuts against the upper end of the limiting strip 37, and the lower end of the straw assembly 3 abuts against the bottom of the storage cavity 11, so in this state the straw assembly 3 will not extend out and is fixed in the storage cavity 11; when it is needed to use, the cover body 2 is rotated, first the cover body 2 will rotate relative to the straw assembly 3, so that the limiting strip 37 37 comes out from the fixed position 23 and enters the limiting groove 22, and then the cover body 2 continues to rotate to drive the straw assembly 3 to rotate so that the magnet group 1 41 corresponds to the magnet group 2 42, so that the magnet group 1 41 and the magnet group 2 42 generate suction to move the straw assembly 3 upward along the limiting groove 22; when it needs to be stored, the limit groove 22 and the limiting bar 37 are used to drive the cover body 2 to rotate, so that the magnet group 1 41 and the magnet group 2 42 are misaligned, the suction disappears, and the straw assembly 3 falls down along the limiting groove 22 into the storage cavity 11, and then the cover body 2 continues to rotate so that the fixed position 23 presses against the upper end of the limiting bar 37 to complete the storage.

[0047] Based on embodiment one, a magnet group five (not shown) can also be provided at the straw assembly 3. The magnetic pole of the upper end surface of the magnet group five is the S pole, which is the same as the magnetic pole of the magnet assembly two, and is staggered with the magnet group one 41. That is, when the straw assembly 3 is in the storage state, a repulsive force is generated between the magnet group five and the magnet group two 42, that is, continuous pressure is applied to the bottom of the storage cavity 11 of the straw assembly 3, which can better fix the straw assembly 3. When the straw assembly 3 needs to be used, the cover body 2 drives the straw assembly 3 to rotate so that the magnet group five is staggered with the magnet group two 42, and the magnet group one 41 corresponds to the magnet group two 42. In addition, by providing the magnet group five, when the straw assembly 3 is stuck, for example, when it is stuck, a downward force can be applied to push it downward.

[0048] Based on the first embodiment, when the straw assembly 3 is longer, the length of the storage cavity 11 will also become longer, that is, the formation of the straw assembly 3 being stored and extended will become longer. A single set of magnets cannot achieve long-distance attraction to drive the straw assembly 3 to rise. For this reason, a magnet group 43 is provided at the bottom of the shell 1. Figure 7 and Figure 8, the position of magnet group three 43 corresponds to that of magnet group two 42, and the magnetic poles of magnet group three 43 and magnet group one 41 repel each other, that is, the lower end surface of magnet group one 41 is the S pole, and the upper end surface of magnet group three is also the S pole; the straw assembly 3 is initially in the storage state, at which time magnet group one 41 is misaligned with magnet group two 42 and magnet group three 43 respectively. When it needs to be used, the cover body 2 drives the straw assembly 3 to rotate, so that the upper and lower end surfaces of magnet group one 41 correspond to magnet group two 42 and magnet group three 43 respectively. First, magnet group one 41 will be subjected to the repulsive force of magnet group three 43 and move upward for an end distance. This distance can reach the range where magnet group two 42 can generate sufficient suction force on magnet group one 41, and then magnet group two 42 will generate suction force on magnet group one 41 and further move upward, so that the straw assembly 3 can be extended for people to use. The two-stage ascending process is adopted to effectively solve the problem of excessive movement stroke.

[0049] Example 2, reference Figure 3 , the second magnet group 42 is fixed on the cover body 2. In this embodiment, the cover body 2 and the straw assembly 3 can rotate relative to each other. In the initial state, the straw assembly 3 is located in the storage cavity 11. At this time, the second magnet group 42 and the magnet one are staggered. When the straw assembly 3 needs to be used, the cover body 2 is rotated to drive the second magnet group 42 to rotate, so that the second magnet group 42 corresponds to the first magnet group 41. Suction is generated between the first magnet group 41 and the second magnet group 42, thereby causing the straw assembly 3 to move upward; in order to prevent the straw assembly 3 from extending out for no reason when in the storage state, the extension hole 21 on the cover body 2 can be set to an elliptical shape, and the corresponding straw assembly 3 The cross-section of component 3 can also be elliptical. When magnet group 1 41 corresponds to magnet group 2 42, the extension hole 21 and the straw assembly 3 can be aligned and extended. When magnet group 1 41 and magnet group 2 42 do not correspond, the extension hole 21 and the straw assembly 3 are misaligned and cannot be extended. At the same time, one end of the straw assembly 3 abuts against the lower end surface of the cover body 2, and the other end abuts against the lower end surface of the storage cavity 11. Of course, this is only one of the fixing methods and should not be used as a limitation on the protection scope; when storage is required, the cover body 2 is rotated to make the magnet group 2 42 and the magnet group 1 41 misaligned. At this time, the suction disappears and the straw assembly 3 falls into the storage cavity 11.

[0050] Based on Example 2, refer to Figure 4 When the extension hole 21 and the straw assembly 3 are both circular in design, without other restrictions, the straw assembly 3 may slide out of the extension hole 21 due to vibration, causing pollution. In order to avoid the above situation, the cover body 2 is provided with a magnet group 44 that is misaligned with the magnet group 2 42. The magnetic poles of the magnet group 44 and the magnet group 1 41 are opposite, that is, the upper end surface of the magnet group 1 41 is the N pole, and the lower end surface of the magnet group 44 is also the N pole. When in the storage state, the magnet group 44 corresponds to the magnet group 1 41, and a repulsive force is generated between the two to fix it in the storage cavity 11.

[0051] In addition, by providing the magnet group 44, a downward force can be applied to push the straw assembly 3 downward when it becomes stuck, for example, when it is stuck.

[0052] In the embodiment of the present invention, the straw assembly 3 includes a straw body 31, and a fixing portion 32 for mounting a magnet group 41 is provided on the side of the straw body 31;

[0053] For the vertically extended and stored straw body 31, its movement naturally causes changes in position. Therefore, how to achieve a seal between the straw body 31 and the water outlet 12 is the key to the water absorption effect. To this end, three methods for sealing the straw body 31 and the water outlet 12 are proposed:

[0054] Example 1, reference Figure 2 The water inlet end of the straw body 31 and the water outlet 12 are connected with the bellows telescopic tube 5. When the straw body 31 moves upward, the bellows telescopic tube 5 can be expanded. When the straw body 31 is stored, the bellows telescopic tube 5 can be folded and contracted. The bellows telescopic tube 5 can keep the straw body 31 and the water outlet 12 connected at all times. Of course, in order to avoid water leakage, a plug can be provided on the cover body 2. When the straw body 31 is in the storage cavity 11, its upper end opening is sealed by the plug. Of course, this is only one of the sealing methods and should not be used as a limitation of the protection scope.

[0055] Example 2, reference Figure 5 and Figure 7 , an interference portion 33 is formed between the straw body 31 and the fixing portion 32, and the interference portion 33 can abut against the end of the extension hole 21. In the initial state, the straw body 31 and the water outlet portion 12 are not sealed, and water cannot be absorbed at this time. When the straw body 31 is extended, the interference portion 33 blocks the extension hole 21, so that the storage chamber 11 is in a sealed state. Usually, the inner diameter of the extension hole 21 is slightly larger than the outer diameter of the straw body 31. For example, the end of the extension hole 21 is circular, and the interference portion 33 is conical. When the straw body 31 is extended, the interference portion 33 extends into the inner wall of the extension hole 21 to achieve blocking. At this time, the storage chamber 11 is in a sealed state. When air is inhaled at the end of the straw body 31, the liquid first enters the storage chamber 11. When the water level reaches the inlet at the lower end of the straw body 31, it can enter the interior of the straw body 31;

[0056] Based on the second embodiment, a method of placing the water leaking when not in use is proposed. Figure 7An extension tube 61 is provided at the water outlet 12. The upper end of the extension tube 61 is sealed, and a plurality of holes 62 are provided on its side wall. The corresponding straw body 31 is provided with a waist 38. When in the storage state, the extension tube 61 is inserted into the straw body 31, and its upper end is against the waist 38 of the straw body 31, thereby blocking the channel of the straw body 31. Even if there is leakage, it will only enter the storage cavity 11. The gap between the extension hole 21 and the straw body 31 is very small, and the tension of the liquid itself prevents it from passing through the gap.

[0057] Example 3, reference Figure 8 The water outlet portion 12 includes a vertical water outlet channel 121, and both end openings of the water outlet channel 121 are respectively provided with inwardly extending steps 122;

[0058] The inner diameter of the water outlet channel 121 is larger than the outer diameter of the straw body 31. The lower end of the straw body 31 has no opening. A sealing gasket 34 is provided at the lower end, which can abut against the lower end step 122. The side wall of the lower end of the straw body 31 is provided with a plurality of water inlet holes 35. A sealing ring 36 is provided on the side wall of the straw body 31 near the water inlet holes 35, which can abut against the upper end step 122.

[0059] In the initial state, the straw body 31 is in the storage cavity 11, and the sealing gasket 34 at the lower end of the straw body 31 abuts against the lower end step 122 of the water outlet channel 121, preventing water from entering, thereby preventing water leakage when not in use. When the straw body 31 needs to be used, the straw body 31 rises so that the sealing ring 36 on the side wall abuts against the upper end step 122 of the water outlet channel 121 to form a seal. When absorbing water, the water in the kettle body will enter from the lower end opening of the water outlet channel 121, flow through the gap between the water outlet channel 121 and the straw body 31, and enter the straw body 31 through the water inlet hole 35.

[0060] The present invention also discloses a beverage pot comprising the above-mentioned magnetic telescopic straw spout. The beverage pot and the magnetic telescopic straw spout are based on the same concept and bring the same technical effects. Therefore, the specific implementation of the magnetic telescopic straw spout can be referred to and will not be repeated here.

[0061] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

[0062] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A magnetic telescopic straw spout, comprising a housing (1), a cover (2) and a straw assembly (3), characterized in that: A magnetic switch structure (4) is provided between the three to push the straw assembly (3) to operate; The housing (1) has a receiving cavity (11) and a water outlet (12) therein; A cover (2) is rotatably connected to the housing (1) and is used to control the magnetic switch structure (4); The straw assembly (3) is located in the receiving chamber (11) and can be in sealed communication with the water outlet (12). The straw assembly (3) can move back and forth longitudinally between the receiving chamber (11) and the outside of the cover (2) without any contact via the magnetic switch structure (4); The magnetic switch structure (4) comprises a first magnet group (41) fixedly mounted on both sides of the straw assembly (3), and a second magnet group (42) mounted between the housing (1) and the cover (2), wherein the second magnet group (42) attracts the first magnet group (41), and the first magnet group (41) can be displaced from the second magnet group (42); The second magnet group (42) is fixedly connected to the shell (1), and the cover (2) is slidably engaged with the straw assembly (3). The straw assembly (3) is driven to rotate by the cover (2), so that the first magnet group (41) and the second magnet group (42) are aligned or misaligned.

2. The magnetic telescopic straw spout according to claim 1, characterized in that: A magnet group three (43) is provided at the bottom of the shell (1), and the magnet group three (43) corresponds to the position of the magnet group two (42), and the magnet group three (43) repels the magnet group one (41).

3. The magnetic telescopic straw spout according to claim 1, characterized in that: The second magnet group (42) is fixed on the cover body (2).

4. The magnetic telescopic straw spout according to claim 3, characterized in that: The cover body (2) is provided with a magnet group four (44) that is offset from the magnet group two (42), and the magnet group four (44) and the magnet group one (41) have magnetic poles that repel each other.

5. The magnetic telescopic straw spout according to claim 1, characterized in that: The straw assembly (3) comprises a straw body (31), and a fixing portion (32) for mounting a magnet group (41) is provided on a side of the straw body (31).

6. The magnetic telescopic straw spout according to claim 1, characterized in that: Any one of the magnet group 1 (41) or the magnet group 2 (42) is replaced by a magnetic conductive material.

7. The magnetic telescopic straw spout according to claim 5, characterized in that: A resisting portion (33) is formed between the straw body (31) and the fixing portion (32), and the resisting portion (33) can resist the end of the extension hole (21), so that the storage cavity (11) forms a sealed state.

8. The magnetic telescopic straw spout according to claim 5, characterized in that: The water outlet portion (12) includes a vertical water outlet channel (121), and both end openings of the water outlet channel (121) are respectively provided with inwardly extending steps (122); The inner diameter of the water outlet channel (121) is larger than the outer diameter of the straw body (31). The lower end of the straw body (31) has no opening, and a sealing gasket (34) is provided at the lower end thereof. The sealing gasket (34) can abut against the lower end step (122). The side wall of the lower end of the straw body (31) is provided with a plurality of water inlet holes (35). A sealing ring (36) is provided on the side wall of the straw body (31) near the water inlet holes (35). The sealing ring (36) can abut against the upper end step (122).

9. A beverage pot, characterized in that: The invention comprises the magnetic telescopic straw spout according to any one of claims 1 to 8.

Citation Information

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