Double drinking cup lid with rotating removable module assembly

The modular design of the rotating and detachable components solves the problems of complex structure and hygiene in traditional dual-sip cup lids, enabling convenient drinking operation and thorough cleaning, thus ensuring drinking water hygiene.

CN224539904UActive Publication Date: 2026-07-24ANHUI FUGUANG IMPORT & EXPORT TRADING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI FUGUANG IMPORT & EXPORT TRADING CO LTD
Filing Date
2025-09-16
Publication Date
2026-07-24

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Abstract

The utility model discloses a double drinking cup cover with rotatable detachable module assembly, including the cover, is equipped with straight drinking mouth on the cover, and the rotatable module is detachably connected on the cover, and the rotatable module includes the rotary block of rotation installation on the cover, is equipped with the suction nozzle drinking mouth on the rotary block, and the first sealing piece and sliding switch are detachably arranged in the rotary block bottom, and the first sealing piece is corresponding or staggered with straight drinking mouth through the rotary block rotation, realizes the closing or opening of straight drinking mouth, realizes the control of the opening or closing of suction nozzle drinking mouth through the horizontal sliding of sliding switch. The utility model has the following advantages compared with prior art: through the modularization and detachable setting, more reasonable space layout is realized, and it is convenient to clean thoroughly.
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Description

Technical Field

[0001] This utility model relates to drinking appliances, and more particularly to a double drinking cup lid with a rotating and detachable modular assembly. Background Technology

[0002] Traditional double-spoon cup lids have a relatively complex structure due to the need to set up two drinking spouts. Often, due to space constraints, the structural components are concentrated together, making them inconvenient to use. At the same time, they create more hard-to-clean areas. Since the lid cannot be removed, it is impossible to clean it thoroughly, which in turn leads to drinking water hygiene problems.

[0003] In the existing technology, there is a dual-drinking cup lid that includes a direct drinking spout and a sippy spout, with the two spouts respectively located on the lid body. The lid body also has a rotating component that can be rotated to open the different drinking spouts. However, the rotating component is a fully enclosed structure, which is complex and cannot be disassembled, making it impossible to clean thoroughly, and thus still raises concerns about drinking hygiene. Utility Model Content

[0004] The purpose of this invention is to overcome the shortcomings of the prior art and provide a double drinking cup lid with a rotating and detachable modular component. Through modular and detachable design, a more reasonable spatial layout is achieved while facilitating thorough cleaning.

[0005] This utility model is achieved through the following technical solution: A double-drinking cup lid with a rotatable detachable modular assembly includes a lid body with a direct drinking spout. A detachable rotating module is connected to the lid body. The rotating module includes a rotating block rotatably mounted on the lid body, a drinking spout on the rotating block, and a first sealing element detachably disposed at the bottom of the rotating block. By rotating the rotating block, the first sealing element is aligned with or offset from the direct drinking spout, thereby closing or opening the direct drinking spout.

[0006] As a preferred embodiment of the above-mentioned double-drink cup lid, the end of the drinking spout is rotatably mounted on a rotating block, and a sliding switch is detachably provided at the bottom of the rotating block. By sliding the sliding switch horizontally, the opening or closing of the drinking spout can be controlled.

[0007] As a preferred embodiment of the above-mentioned double-drink cup lid, the drinking spout is provided with a first locking part, the sliding switch is provided with a second locking part, and the rotating block is provided with a first elastic element that can drive the sliding switch to elastically reset in the horizontal direction. In the natural state, the second locking part is engaged with the first locking part; under the action of external force, the external force overcomes the elastic force of the first elastic element and drives the sliding switch to slide horizontally, so that the second locking part is disengaged from the first locking part.

[0008] As a preferred embodiment of the above-mentioned double drinking cup lid, one end of the sliding switch is provided with a limiting protrusion, and the first sealing member has a limiting groove that is inserted and matched with the limiting protrusion. The first sealing member and the first elastic member are respectively located at both ends of the sliding switch.

[0009] As a preferred embodiment of the above-mentioned double-drink cup lid, the bottom of the rotating block is provided with a mounting cavity, the first sealing element and the sliding switch are placed side by side in the mounting cavity, the sliding switch is provided with sliding protrusions on both sides, the two inner sidewalls of the mounting cavity of the rotating block are provided with sliding grooves, each sliding protrusion can slide horizontally in each corresponding sliding groove, and one end of the sliding groove on the inner sidewall of the mounting cavity of the rotating block has a first notch that communicates with the bottom end face of the rotating block, the first notch allows the sliding protrusion to pass vertically.

[0010] As a preferred embodiment of the above-mentioned double-drink cup lid, the top of the sliding switch is provided with an action block, and the rotating block is provided with an elastic button that abuts against the action block. The sliding switch is driven to slide horizontally by pressing down the elastic button.

[0011] As a preferred embodiment of the above-mentioned double-drink cup lid, the rotating block has a downwardly extending mounting sleeve at its center, and the outer wall of the mounting sleeve has at least one mounting protrusion. The lid body has a downwardly extending mounting outer cylinder at its center, and an annular mounting groove is formed on the inner wall of the mounting outer cylinder. The rotating block and the lid body are rotated and installed by the mounting protrusion cooperating with the annular mounting groove. The top of the mounting outer cylinder of the lid body has at least one second notch that communicates with the annular mounting groove. The second notch on the mounting outer cylinder corresponds one-to-one with the mounting protrusion on the mounting sleeve, and the second notch allows the corresponding mounting protrusion to pass vertically.

[0012] As a preferred embodiment of the above-mentioned double-drink cup lid, the top of the rotating block is provided with a storage groove for storing the drinking spout. The storage groove is connected to the internal channel of the mounting sleeve. A flexible tube section is installed inside the mounting sleeve. The upper end of the flexible tube section is connected to the end of the drinking spout, and the lower end of the flexible tube section is connected to a straw.

[0013] As a preferred embodiment of the above-mentioned double-drinking cup lid, the end of the drinking spout is rotatably mounted on a rotating block. The center of the rotating block is provided with a vertically penetrating water passage. When the drinking spout is in a horizontal state, the internal flow channel of the drinking spout is offset from the water passage of the rotating block, thereby blocking the water passage of the rotating block. When the drinking spout is lifted upward, the internal flow channel of the drinking spout is connected to the water passage of the rotating block.

[0014] As a preferred embodiment of the above-mentioned double-drink cup lid, the bottom of the rotating block is provided with a positioning bead that can elastically extend and retract along the longitudinal direction. Under the elastic force of the third elastic element, the positioning bead protrudes downward from the bottom surface of the rotating block. The top surface of the lid is provided with two positioning recesses. As the rotating block rotates, the positioning bead at the bottom of the rotating block cooperates with the two positioning recesses in sequence to achieve positioning of the rotating block at different circumferential positions.

[0015] This invention has the following advantages over the prior art: This utility model provides a double drinking cup lid with a rotating and detachable modular assembly. The modular rotating module, along with the detachable connection between the rotating module and the lid body, facilitates disassembly, cleaning, and replacement of the rotating module and its internal components. The two drinking spouts do not interfere with each other during use, making drinking more convenient. Furthermore, the horizontal movement of the sliding switch controls the automatic opening of the drinking spout, unlocks the first seal, and allows for the removal of the sliding switch and the first seal from the rotating block. With a single press of the button, the vertical movement of the button is converted into the horizontal movement of the sliding switch by the inclined surface, providing convenient operation while effectively saving layout space. Attached Figure Description

[0016] Figure 1 This is a perspective view of Example 1.

[0017] Figure 2 This is a three-dimensional exploded view of Example 1.

[0018] Figure 3 This is a perspective view of the rotating module of Embodiment 1.

[0019] Figure 4 This is a perspective view of the cover of Example 1.

[0020] Figure 5 This is a three-dimensional exploded view of the rotating module of Example 1.

[0021] Figure 6 This is a three-dimensional exploded view of the rotating module of Embodiment 1 from another perspective.

[0022] Figure 7 This is a schematic diagram of the structure of the sliding switch and the drinking spout locked in the embodiment 1.

[0023] Figure 8 This is a schematic diagram of the sliding switch and the unlocked state of the drinking spout in Embodiment 1.

[0024] Figure 9 This is a cross-sectional view of the double-drink cup lid of Example 1 with both drinking spouts closed.

[0025] Figure 10 This is a cross-sectional view of the double-drink cup lid in the pressed state of Embodiment 1.

[0026] Figure 11 This is a cross-sectional view of the drinking spout of the double-drinking cup lid in the open state of Example 1.

[0027] Figure 12This is a cross-sectional view of the drinking spout of the double-drinking cup lid in the closed state of Embodiment 2.

[0028] Figure 13 This is a cross-sectional view of the drinking spout of the double-drinking cup lid in the open state of Embodiment 2.

[0029] The following labels are used in the diagram: 1. Lid; 2. Flange; 3. Cup body; 4. Connecting part; 5. Main seal; 6. Direct drinking spout; 7. Rotating block; 8. Mounting sleeve; 9. Mounting protrusion; 10. Mounting outer cylinder; 11. Annular mounting groove; 12. Second notch; 13. Second seal; 14. Drinking spout; 15. Storage groove; 16. Protrusion; 17. Round hole; 18. Flexible tube section; 19. Straw; 20. First seal; 21. Sliding switch; 22. Mounting cavity; 23. Limiting protrusion; 24. Limiting groove; 25. First elastic element; 26. Sliding protrusion; 27. Sliding groove; 28. First notch; 29. ​​First snap-fit ​​part; 30. Second snap-fit ​​part; 31. Button; 32. Second elastic element; 33. Actuating block; 34. Positioning bead; 35. Third elastic element; 36. Positioning recess; 37. Fastener; 38. Water passage; 39. Third seal. Detailed Implementation

[0030] The embodiments of this utility model are described in detail below. These embodiments are implemented based on the technical solution of this utility model and provide detailed implementation methods and specific operation processes. However, the protection scope of this utility model is not limited to the following embodiments.

[0031] Example 1 See Figures 1 to 11This embodiment discloses a double drinking cup lid with a rotatable detachable modular assembly, including a lid body 1. The top outer edge of the lid body 1 is provided with an upwardly extending flange 2. The bottom of the lid body 1 is provided with a connecting part 4 that can be detachably connected to the mouth of the cup body 3. The connecting part 4 at the bottom of the lid body 1 can be installed with the mouth of the cup body 3 by means of a threaded connection, and a main sealing member 5 is provided on the connecting part 4 for sealing the gap between the lid body 1 and the mouth of the cup body 3. The cover 1 has a drinking spout 6 and a rotating module detachably connected to it. The rotating module includes a rotating block 7 rotatably mounted on the cover 1. The rotating block 7 has a downwardly extending mounting sleeve 8 at its center. The outer wall of the mounting sleeve 8 has at least one mounting protrusion 9. The cover 1 has a downwardly extending mounting outer cylinder 10 at its center. The inner wall of the mounting outer cylinder 10 has an annular mounting groove 11. The rotating block 7 and the cover 1 are rotated by the mounting protrusion 9 cooperating with the annular mounting groove 11. The top of the mounting outer cylinder 10 of the cover 1 has at least one second notch 12 that communicates with the annular mounting groove 11. The second notches 12 on the mounting outer cylinder 10 correspond one-to-one with the mounting protrusions 9 on the mounting sleeve 8. The second notches 12 allow the corresponding mounting protrusions 9 to pass vertically. In this embodiment, the outer wall of the mounting sleeve 8 has two mounting protrusions, and the top of the corresponding mounting outer cylinder 10 has two second notches 12. The mounting sleeve 8 of the rotating block 7 is provided with a second sealing element 13 at the position below the mounting protrusion 9, and the gap between the mounting sleeve 8 and the mounting outer cylinder 10 is sealed by the second sealing element 13.

[0032] The rotating block 7 is equipped with a drinking spout 14, the end of which is rotatably mounted on the rotating block 7. The top of the rotating block 7 has a receiving groove 15 for housing the drinking spout 14. The drinking spout 14 is rotatably connected via protrusions 16 on both sides of its end that engage with the round holes 17 on both sides of the receiving groove 15. The receiving groove 15 communicates with the internal channel of the mounting sleeve 8. A flexible tube segment 18 is snapped into the mounting sleeve 8. The upper end of the flexible tube segment 18 is snapped into the end of the drinking spout 14, and the lower end of the flexible tube segment 18 extends below the mounting sleeve 8 and is connected to a straw 19. A first sealing element 20 and a sliding switch 21 are detachably mounted on the bottom of the rotating block 7. By rotating the rotating block 7, the first sealing element 20 corresponds to or is offset from the drinking spout 6, thus closing or opening the drinking spout 6. The horizontal sliding of the sliding switch 21 controls the opening or closing of the drinking spout 14.

[0033] The detachable connection structure between the slide switch 21 and the rotating block 7 is specifically as follows: The rotating block 7 has a mounting cavity 22 at its bottom. The first sealing member 20 and the sliding switch 21 are placed side by side in the mounting cavity 22. The sliding switch 21 has a limiting protrusion 23 at one end. The first sealing member 20 has a limiting groove 24 that is inserted and matched with the limiting protrusion 23. The first sealing member 20 and the first elastic member 25 are located at the two ends of the sliding switch 21, respectively. The sliding switch 21 has sliding protrusions 26 on both sides. The two inner walls of the mounting cavity 22 of the rotating block 7 have sliding grooves 27. Each sliding protrusion 26 can slide horizontally in the corresponding sliding groove 27. One end of the sliding groove 27 on the inner wall of the mounting cavity 22 of the rotating block 7 has a first notch 28 that communicates with the bottom surface of the rotating block 7. The first notch 28 allows the sliding protrusion 26 to pass vertically.

[0034] The drinking spout 14 is provided with a first locking part 29, and the sliding switch 21 is provided with a second locking part 30. The rotating block 7 is provided with a first elastic element 25 that can drive the sliding switch 21 to elastically reset in the horizontal direction. In the natural state, the second locking part 30 is engaged with the first locking part 29. At this time, the drinking spout 14 is in a horizontal state and is stored and locked in the storage groove 15 of the rotating block 7. The hose section 18 is compressed near the drinking spout 14, causing its internal water flow channel to be blocked, thus closing the drinking spout 14. Under the action of external force, the external force overcomes the elasticity of the first elastic element 25 and drives the sliding switch 21 to slide horizontally, causing the second locking part 30 to disengage from the first locking part 29. At this time, the drinking spout 14 is locked in contact. Under the action of the elasticity of the hose section 18, the drinking spout 14 rotates and springs up around the round holes 17 on both sides of the storage groove 15, thus automatically opening the drinking spout 14.

[0035] The driving structure for the horizontal movement of the sliding switch 21 is as follows: The slide switch 21 has an actuating block 33 on its top, and a resilient button on the rotating block 7 that abuts against the actuating block 33. Pressing down the resilient button drives the slide switch 21 to slide horizontally. The resilient button includes a button 31 that can be pressed vertically and a second elastic element 32 that can drive the button 31 to elastically return upward. The bottom of the button 31 abuts against the inclined surface of the top of the actuating block 33. Pressing down the button 31 drives the slide switch 21 to slide horizontally.

[0036] The bottom of the rotating block 7 is provided with a positioning bead 34 that can elastically extend and retract longitudinally. Under the elastic force of the third elastic element 35, the positioning bead 34 protrudes downward from the bottom surface of the rotating block 7. Specifically, a longitudinal mounting groove is opened at the bottom of the rotating block 7, and a fastener 37 is engaged in the longitudinal mounting groove. The internal channel of the fastener 37 contains the third elastic element 35 and the positioning bead 34 arranged vertically. Under the elastic force of the third elastic element 35, the bottom of the positioning bead 34 protrudes downward from the bottom end of the fastener 37. The top surface of the cover 1 is provided with two positioning recesses 36. As the rotating block 7 rotates, the positioning bead 34 at the bottom of the rotating block 7 engages with the two positioning recesses 36 in sequence to achieve positioning of the rotating block 7 at different circumferential positions. When the positioning bead 34 at the bottom of the rotating block 7 corresponds to one of the positioning recesses 36, the first sealing element 20 of the rotating block 7 corresponds to the drinking spout 6, and the drinking spout 6 is closed at this time; when the positioning bead 34 at the bottom of the rotating block 7 corresponds to the other positioning recess 36, the first sealing element 20 of the rotating block 7 is offset from the drinking spout 6, and the drinking spout 6 is opened at this time.

[0037] When you need to drink water through the drinking spout 6, rotate the rotating part so that the first sealing part 20 of the rotating block 7 is displaced from the drinking spout 6. At this time, the drinking spout 6 is opened and you can drink water through the drinking spout 6.

[0038] When drinking water through the drinking spout 14, press button 31. The bottom of button 31 engages with the inclined surface at the top of the actuating block 33 of the sliding switch 21, causing the sliding switch 21 to slide horizontally. This disengages the second locking part 30 on the sliding switch 21 from the first locking part 29 on the drinking spout 14, releasing the drinking spout 14. Under the elastic force of the hose section 18, the drinking spout 14 flips and springs up, allowing water to be drunk through it. Furthermore, the drinking spout 14 can be opened by pressing button 31 whether the direct drinking port 6 is open or closed.

[0039] When it is necessary to remove the entire rotating module from the cover 1, rotate the rotating component until the two protrusions on the outer wall of the mounting sleeve 8 correspond to the two second notches 12 of the mounting outer cylinder 10. At this point, the entire rotating module can be pulled upwards to detach from the cover 1. After rotating the entire rotating module off the cover 1, the rotating module itself can also be disassembled. The operation process is as follows: Move the slide switch 21 away from the first seal 20 until the sliding protrusions 26 on both sides of the slide switch 21 slide out from the sliding grooves 27 on the two inner side walls of the mounting cavity 22 of the rotating block 7 and face the first notch 28. At the same time, the limiting protrusion 23 on one side of the slide switch 21 disengages from the limiting groove 24 of the first seal 20, releasing the restriction on the first seal 20. At this time, both the slide switch 21 and the first seal 20 can be removed from the rotating block 7, which facilitates a thorough cleaning of the interior of the rotating module and ensures the hygiene of the drinking water.

[0040] Example 2 See Figure 12 and 13 The difference between this embodiment and embodiment 1 is that the sliding switch 21, the hose segment 18, and the button 31 are omitted. The specific structure of the suction nozzle is set as follows: The end of the drinking spout 14 is rotatably mounted on the rotating block 7. The rotating block 7 has a vertically penetrating water passage 38 at its center. When the drinking spout 14 is in a horizontal state, the internal flow channel of the drinking spout 14 is offset from the water passage 38 of the rotating block 7, thereby blocking the water passage 38 of the rotating block 7. When the drinking spout 14 is raised, the internal flow channel of the drinking spout 14 is connected to the water passage 38 of the rotating block 7.

[0041] In this embodiment, when it is necessary to open the drinking spout 14, the drinking spout 14 is lifted upwards, and the internal flow channel of the drinking spout 14 is connected to the water passage 38 of the rotating block 7, so that water can be drunk through the drinking spout 14; when it is necessary to close the drinking spout 14, the drinking spout 14 is pressed downwards, so that the drinking spout 14 is in a horizontal state, at which time the internal flow channel of the drinking spout 14 is misaligned with the water passage 38 of the rotating block 7, thereby blocking the water passage 38 of the rotating block 7, and sealing the gap between the drinking spout 14 and the rotating block 7 by the third sealing member 39.

[0042] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A double-drinking cup lid with a rotatable modular assembly, comprising a lid body (1) having a direct drinking spout (6) on the lid body (1), characterized in that: A rotating module is detachably connected to the cover (1). The rotating module includes a rotating block (7) rotatably mounted on the cover (1). The rotating block (7) is provided with a drinking spout (14). A first sealing element (20) is detachably provided at the bottom of the rotating block (7). By rotating the rotating block (7), the first sealing element (20) is made to correspond to or offset from the drinking spout (6), thereby closing or opening the drinking spout (6). The end of the drinking spout (14) is rotatably mounted on the rotating block (7). The bottom of the rotating block (7) is detachably equipped with a sliding switch (21). By sliding the sliding switch (21) horizontally, the opening or closing of the drinking spout (14) can be controlled.

2. The double-drinking cup lid with a rotatable detachable modular assembly as described in claim 1, characterized in that: The drinking spout (14) is provided with a first locking part (29), the sliding switch (21) is provided with a second locking part (30), and the rotating block (7) is provided with a first elastic element (25) that can drive the sliding switch (21) to elastically reset in the horizontal direction. In the natural state, the second locking part (30) is engaged with the first locking part (29). Under the action of external force, the external force overcomes the elastic force of the first elastic element (25) and drives the sliding switch (21) to slide horizontally, so that the second locking part (30) is disengaged from the first locking part (29).

3. A double-drinking cup lid with a rotatable detachable modular assembly as described in claim 2, characterized in that: The sliding switch (21) has a limiting protrusion (23) at one end, and a limiting groove (24) is opened on the first sealing member (20) to be inserted and matched with the limiting protrusion (23). The first sealing member (20) and the first elastic member (25) are located at the two ends of the sliding switch (21).

4. A double-drinking cup lid with a rotatable detachable modular assembly as described in claim 2, characterized in that: The bottom of the rotating block (7) is provided with an installation cavity (22). The first sealing element (20) and the sliding switch (21) are placed side by side in the installation cavity (22). The sliding switch (21) is provided with sliding protrusions (26) on both sides. The two inner walls of the installation cavity (22) of the rotating block (7) are provided with sliding grooves (27). Each sliding protrusion (26) can slide horizontally in each sliding groove (27). One end of the sliding groove (27) on the inner wall of the installation cavity (22) of the rotating block (7) has a first notch (28) that is connected to the bottom end face of the rotating block (7). The first notch (28) allows the sliding protrusions (26) to pass vertically.

5. A double-drinking cup lid with a rotatable detachable modular assembly as described in any one of claims 2 to 4, characterized in that: The top of the sliding switch (21) is provided with an action block (33), and the rotating block (7) is provided with an elastic button that abuts against the action block (33). By pressing down the elastic button, the sliding switch (21) is driven to slide horizontally.

6. A double-drinking cup lid with a rotatable modular assembly as described in claim 2, characterized in that: The rotating block (7) has a downwardly extending mounting sleeve (8) at its center. The outer wall of the mounting sleeve (8) has at least one mounting protrusion (9). The cover (1) has a downwardly extending mounting outer cylinder (10) at its center. The inner wall of the mounting outer cylinder (10) has an annular mounting groove (11). The mounting protrusion (9) cooperates with the annular mounting groove (11) to realize the rotational installation of the rotating block (7) and the cover (1). The top of the mounting outer cylinder (10) of the cover (1) has at least one second notch (12) that communicates with the annular mounting groove (11). The second notch (12) on the mounting outer cylinder (10) corresponds one-to-one with the mounting protrusion (9) on the mounting sleeve (8). The second notch (12) allows the corresponding mounting protrusion (9) to pass vertically.

7. A double-drinking cup lid with a rotatable detachable modular assembly as described in claim 6, characterized in that: The top of the rotating block (7) is provided with a storage groove (15) for storing the drinking mouth (14). The storage groove (15) is connected to the internal channel of the mounting sleeve (8). A flexible tube section (18) is installed inside the mounting sleeve (8). The upper end of the flexible tube section (18) is connected to the end of the drinking mouth (14), and the lower end of the flexible tube section (18) is connected to a straw (19).

8. A double-drinking cup lid with a rotatable detachable modular assembly as described in claim 1, characterized in that: The end of the drinking spout (14) is rotatably mounted on the rotating block (7). The rotating block (7) has a vertically penetrating water passage (38) in the center. When the drinking spout (14) is in a horizontal state, the internal flow channel of the drinking spout (14) is offset from the water passage (38) of the rotating block (7), thereby blocking the water passage (38) of the rotating block (7). When the drinking spout (14) is raised, the internal flow channel of the drinking spout (14) is connected to the water passage (38) of the rotating block (7).

9. A double-drinking cup lid with a rotatable detachable modular assembly as described in claim 1, characterized in that: The bottom of the rotating block (7) is provided with a positioning bead (34) that can elastically extend and retract along the longitudinal direction. Under the elastic force of the third elastic element (35), the positioning bead (34) protrudes downward from the bottom surface of the rotating block (7). The top surface of the cover (1) is provided with two positioning recesses (36). As the rotating block (7) rotates, the positioning bead (34) at the bottom of the rotating block (7) cooperates with the two positioning recesses (36) in sequence to realize the positioning of the rotating block (7) at different circumferential positions.