Pet water bottle with handle provided with brake structure
By setting a rotating hole and using a damping sleeve and damping ring at the hinge of the water bottle body, the problems of large storage and transportation space and non-adjustable water outlet height are solved, and the hovering of the handle assembly and the effect of quantitative water dispensing are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- NINGBO YIKE IND DESIGN CO LTD
- Filing Date
- 2025-05-29
- Publication Date
- 2026-05-01
AI Technical Summary
The fixed support feet of existing pet water bottles result in a large space occupation during storage and transportation, and the water outlet height cannot be adjusted, making it impossible to achieve quantitative water dispensing.
A rotating hole is provided on the hinge part of the water bottle body, and the straight shaft part of the handle assembly passes through the rotating hole. The rotating sleeve cooperates with the damping sleeve and the damping ring to realize the suspension of the handle assembly and the adjustment of the water outlet height through the damping force.
It enables the handle assembly to hover at a predetermined angle position, reducing storage and transportation space, and the water outlet height is adjustable to achieve quantitative water dispensing.
Smart Images

Figure CN224178889U_ABST
Abstract
Description
A pet water bottle with a handle and braking mechanism Technical Field
[0001] This utility model relates to the field of pet water bottle technology, and in particular to a pet water bottle with a handle and a braking structure. Background Technology
[0002] A Chinese patent with publication number CN209359290U discloses a pet water bottle, including a bottle body and a cap. The bottle mouth of the bottle body is detachably connected to the rear end of the cap. The bottle body also includes a water trough with its inner end open. The inner end of the water trough is rotatably connected to the front end of the cap. A leak-proof sealing ring is provided between the cap and the water trough, and the leak-proof sealing ring and the cap seal the inner end of the water trough. The front end of the cap has a water outlet located inside the water trough. The cap has a water outlet switch mechanism for opening or closing the water outlet. The cap and / or the side of the bottle body have support feet.
[0003] However, the above-mentioned pet water bottle has the following drawbacks: the support feet of the pet water bottle are fixed on the side of the corresponding cap or bottle body, which increases the space occupied during storage and transportation. At the same time, when the pet water bottle is used on the ground supported by the support feet, the height between the water outlet and the ground cannot be adjusted because the support feet cannot rotate, so it cannot dispense a fixed amount of water. This needs to be improved. Summary of the Invention
[0004] The purpose of this utility model is to provide a pet water bottle with a handle and a braking structure, which has the effect of keeping the handle assembly suspended when rotated relative to the water bottle body to a predetermined angle position, reducing storage and transportation space, and adjusting the water outlet height of the water bottle body to achieve the effect of quantitative water dispensing.
[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: a pet water bottle with a handle and a braking structure, comprising a water bottle body and a handle assembly, wherein the water bottle body has a hinge portion, the handle assembly includes a straight shaft portion, the hinge portion has a rotating hole corresponding to the straight shaft portion, the straight shaft portion passes through the rotating hole, a rotating sleeve is coaxially sleeved on the outside of the straight shaft portion, the straight shaft portion is provided with a plurality of damping sleeves, the end face of the rotating sleeve is dampedly engaged with the end face of the corresponding damping sleeve, a damping ring is coaxially provided between the rotating sleeve and the inner wall of the rotating hole, and the rotating sleeve and the hinge portion are dampedly engaged by the damping ring.
[0006] By adopting the above technical solution, the handle assembly can be rotated relative to the water bottle body to a storage state, reducing the storage and transportation space of this utility model. Furthermore, the user can use the handle assembly to carry the water bottle body. When the handle assembly is rotated, the straight shaft of the handle assembly drives the damping sleeve to rotate synchronously. At this time, the end face of the rotating sleeve and the end face of the damping sleeve rub against each other and generate damping force. Simultaneously, the outer wall of the rotating sleeve rubs against the inner wall of the rotating hole of the hinge part through the damping ring and generates damping force. Thus, the user can adjust the rotation angle of the handle assembly relative to the water bottle body. When the handle assembly rotates relative to the water bottle body to a predetermined angle position, the static friction generated by the double damping effect of the damping sleeve and damping ring allows the handle assembly to remain at the predetermined rotation angle position relative to the water bottle body, thereby achieving adjustment of the water outlet height of the water bottle body. This achieves the effects of keeping the handle assembly suspended when rotated relative to the water bottle body to a predetermined angle position, reducing storage and transportation space, and allowing for adjustable water outlet height for quantitative water dispensing.
[0007] A further feature of this invention is that the straight shaft portion has a first annular groove located on both sides of the rotating sleeve, the damping sleeve is embedded in the first annular groove, and the contact surfaces of the damping sleeve and the rotating sleeve are both planar.
[0008] By adopting the above technical solution, the damping force between the damping sleeve and the end face of the rotating sleeve can be increased, thereby improving the hovering stability of the handle assembly when it rotates to a predetermined angle position.
[0009] A further feature of this invention is that the outer wall of the rotating sleeve is provided with a plurality of second annular grooves along the circumference, and the damping ring is installed in the corresponding second annular groove.
[0010] By adopting the above technical solution, the second annular groove is used to install the damping ring, which can prevent the damping ring from slipping along the axial direction of the rotating sleeve.
[0011] A further feature of this invention is that: the first end of the rotating sleeve is provided with an anti-detachment part, the second end of the rotating sleeve is fixedly provided with an annular anti-detachment component, and both ends of the rotating sleeve are anti-detached from the hinge part through the anti-detachment part and the annular anti-detachment component.
[0012] By adopting the above technical solution, it is possible to prevent the rotating sleeve from slipping axially relative to the hinge and falling off.
[0013] A further feature of this invention is that: the second end of the rotating sleeve is provided with an annular locking protrusion, and the inner wall of the annular anti-detachment component is provided with an annular locking groove corresponding to the annular locking protrusion; the annular locking protrusion and the annular locking groove engage to restrict the axial sliding of the annular anti-detachment component relative to the rotating sleeve.
[0014] By adopting the above technical solution, the annular anti-detachment component can be detachably installed at the second end of the rotating sleeve, which improves the convenience of assembly of this utility model.
[0015] A further feature of this invention is that the annular anti-detachment component is provided with a retaining ring along the circumferential direction, and the annular anti-detachment component is engaged with the hinge portion through the retaining ring.
[0016] A further feature of this invention is that it includes a flip cover, the flip cover having a rotating connecting part, the rotating connecting part having a through hole, the rotating sleeve passing through the through hole, and a positioning structure being provided between the rotating connecting part and the rotating sleeve, the positioning structure including a positioning protrusion and a positioning groove, the positioning protrusion being provided on the rotating sleeve, the positioning groove being opened in the inner wall of the through hole of the rotating connecting part, and the positioning groove being positioned and engaged with the positioning protrusion.
[0017] By adopting the above technical solution, the flip cover can be rotatably connected to the straight shaft through the rotating sleeve. The damping effect of the damping sleeve and damping ring on the rotating sleeve increases the adjustment feel when the flip cover is rotated, and at the same time, it can effectively prevent slippage between the flip cover and the rotating sleeve when the flip cover is rotated.
[0018] A further feature of this invention is that the flip cover can be flipped and switched between an open state and a closed state relative to the water bottle body, and an angle limiting structure is provided between the rotating connecting part and the hinge part. When the flip cover is rotated to the open state, the flip cover rotating connecting part is stopped by the angle limiting structure and the hinge part.
[0019] By adopting the above technical solution and utilizing the angle limiting structure, the flip cover can be kept in the open position.
[0020] A further feature of this invention is that the angle limiting structure includes a stop block and a stop rib, the stop block is disposed on the hinge portion, the stop rib is disposed on the rotating connection portion, and the stop block and the stop rib cooperate to stop each other.
[0021] A further feature of this invention is that the handle assembly includes a handle component and a locking component hinged to the handle component at one end. The locking component can rotate between an open state and a closed state relative to the handle component. A first magnet is provided at the end of the locking component away from the hinge point, and a second magnet is provided on the handle component corresponding to the first magnet. The first magnet and the second magnet are attracted to each other.
[0022] By adopting the above technical solution, the magnetic attraction between the first magnet and the second magnet can keep the locking component in a closed state relative to the handle component.
[0023] In summary, this utility model has the following beneficial effects:
[0024] A rotating hole is made in the hinge part of the water bottle body, and the straight shaft part of the handle assembly is rotatably inserted into the rotating hole. A rotating sleeve is coaxially fitted around the straight shaft part, and the rotating sleeve is rotatably positioned in the rotating hole. Damping sleeves are provided on both sides of the rotating sleeve on the straight shaft part, and the end faces of the rotating sleeves and corresponding damping sleeves are in a damping engagement. Additionally, a damping ring is coaxially provided between the rotating sleeve and the inner wall of the rotating hole, and the rotating sleeve and hinge part are in a damping engagement through the damping ring. By rotating the handle assembly relative to the water bottle body to a storage state, the storage and transportation space of this invention is reduced, and the user can also use the handle assembly to carry the water bottle body. Furthermore, when the handle assembly is rotated, the straight shaft part of the handle assembly drives the damping sleeves synchronously. When the bottle rotates, the end face of the rotating sleeve rubs against the end face of the damping sleeve, generating a damping force. At the same time, the outer wall of the rotating sleeve rubs against the inner wall of the rotating hole of the hinge through the damping ring, generating a damping force. Thus, the user can adjust the rotation angle of the handle assembly relative to the water bottle body. When the handle assembly rotates to the predetermined angle position relative to the water bottle body, the static friction generated by the double damping effect of the damping sleeve and the damping ring allows the handle assembly to remain at the predetermined rotation angle position relative to the water bottle body, thereby achieving the adjustment of the water outlet height of the water bottle body. This has the effects of keeping the handle assembly suspended when it rotates to the predetermined angle position relative to the water bottle body, reducing storage and transportation space, and achieving quantitative water dispensing by adjusting the water outlet height of the water bottle body. Attached Figure Description
[0025] Figure 1 is an overall structural diagram of this utility model.
[0026] Figure 2 is a longitudinal sectional view of Figure 1 of this utility model.
[0027] Figure 3 is a partial enlarged view of region A in Figure 2 of this utility model.
[0028] Figure 4 is another longitudinal sectional view of Figure 1 of this utility model.
[0029] Figure 5 is a partial enlarged view of region B in Figure 4 of this utility model.
[0030] Figure 6 is an exploded view of the present invention.
[0031] Figure 7 is a view of the rotating sleeve, damping ring, and annular anti-detachment component of this utility model separated from each other.
[0032] Figure 8 is a view of the present invention with the flip-top open relative to the water bottle body and placed on the ground.
[0033] Figure 9 is a partial enlarged view of region C in Figure 8 of this utility model.
[0034] In the diagram: 1. Water bottle body; 11. Hinge; 110. Rotating hole; 111. Stop block; 2. Handle assembly; 21. Straight shaft; 210. First annular groove; 22. Handle piece; 221. Second magnet; 23. Locking piece; 231. First magnet; 3. Rotating sleeve; 30. Second annular groove; 31. Anti-slip part; 32. Annular locking protrusion; 33. Positioning protrusion; 4. Annular anti-slip piece; 40. Annular locking groove; 41. Retaining ring; 5. Damping sleeve; 6. Damping ring; 7. Flip cap; 71. Rotating connection part; 710. Through hole; 711. Positioning groove; 712. Stop rib; 8. Ground. Detailed Implementation
[0035] The present invention will be further described below with reference to the accompanying drawings.
[0036] A pet water bottle with a handle and braking structure, as shown in Figures 1-6, includes a water bottle body 1 and a handle assembly 2. The water bottle body 1 has a hinge portion 11, and the handle assembly 2 includes a straight shaft portion 21. The hinge portion 11 has a rotating hole 110 corresponding to the straight shaft portion 21, and the straight shaft portion 21 passes through the rotating hole 110. A rotating sleeve 3 is coaxially sleeved outside the straight shaft portion 21. The straight shaft portion 21 is provided with several damping sleeves 5. The end face of the rotating sleeve 3 and the end face of the corresponding damping sleeve 5 are damped together. A damping ring 6 is coaxially provided between the rotating sleeve 3 and the inner wall of the rotating hole 110. The rotating sleeve 3 and the hinge portion 11 are damped together by the damping ring 6. In this embodiment, the damping sleeves 5 and the damping ring 6 are both made of silicone. The water bottle body 1... The hinge part 11 and the handle assembly 2 are both made of engineering plastics, the rotating connection part 71 is made of polyethylene, and the water bottle body 1 is made of silicone. The handle assembly 2 in this embodiment includes a handle part 22 and a locking part 23 hinged to the handle part 22 at one end. The locking part 23 can rotate between the open and closed states relative to the handle part 22. A first magnet 231 is provided at the end of the locking part 23 away from the hinge point. A second magnet 221 is provided on the handle part 22 corresponding to the first magnet 231. The first magnet 231 and the second magnet 221 are attracted and cooperated. By utilizing the magnetic attraction between the first magnet 231 and the second magnet 221, the locking part 23 can be kept in the closed state relative to the handle part 22.
[0037] As shown in Figures 2-7, the straight shaft portion 21 has first annular grooves 210 on both sides of the rotating sleeve 3. The damping sleeve 5 is embedded in the first annular groove 210. The contact surfaces of the damping sleeve 5 and the rotating sleeve 3 are both flat, which can increase the damping force between the end faces of the damping sleeve 5 and the rotating sleeve 3, and improve the hovering stability when the handle assembly 2 is rotated to a predetermined angle position. The outer wall of the rotating sleeve 3 has several second annular grooves 30 along the circumferential direction. The damping ring 6 is installed in the corresponding second annular groove 30. The second annular groove 30 is used to install the damping ring 6, which can prevent the damping ring 6 from sliding along the axial direction of the rotating sleeve 3. The first end of the rotating sleeve 3 is provided with an anti-dislodgement part 31, and the second end of the rotating sleeve 3 is fixedly sleeved with an annular anti-dislodgement part 31. The rotating sleeve 3 has two anti-detachment parts 4 and 31 at both ends, which are anti-detachment parts 4 and hinge parts 11 to prevent the rotating sleeve 3 from axially sliding relative to the hinge parts 11 and falling off. The second end of the rotating sleeve 3 is provided with an annular locking protrusion 32, and the inner wall of the annular anti-detachment part 4 is provided with an annular locking groove 40 corresponding to the annular locking protrusion 32. The annular locking protrusion 32 and the annular locking groove 40 are engaged to limit the axial sliding of the annular anti-detachment part 4 relative to the rotating sleeve 3, so that the annular anti-detachment part 4 can be detachably installed at the second end of the rotating sleeve 3, which improves the convenience of assembly of this utility model. The annular anti-detachment part 4 is provided with a retaining ring 41 along the circumference, and the annular anti-detachment part 4 is engaged with the hinge parts 11 through the retaining ring 41.
[0038] As shown in Figures 1-9, a flip cover 7 is rotatably connected to the main body 1 of the water bottle. The flip cover 7 has a rotatable connecting part 71 with a through hole 710. A rotating sleeve 3 passes through the through hole 710, and a positioning structure is provided between the rotatable connecting part 71 and the rotating sleeve 3. The rotatable connecting part 71 is positioned and anti-rotated with the rotating sleeve 3 through the positioning structure, so that the flip cover 7 can be rotatably connected to the straight shaft part 21 through the rotating sleeve 3. The damping effect of the damping sleeve 5 and the damping ring 6 on the rotating sleeve 3 increases the adjustment feel when the flip cover 7 is rotated. Specifically, when the flip cover 7 is rotated... When the water bottle body 1 is flipped in the opening direction, the rotating connection part 71 of the flip cover 7 drives the rotating sleeve 3 to rotate synchronously. At this time, the rotating sleeve 3 and the hinge part 11 generate a damping force through the damping ring 6. When the flip cover 7 rotates to a predetermined angle, the damping force generated by the damping ring 6 between the rotating sleeve 3 and the hinge part 11 is also used to make the flip cover 7 hover at the corresponding flip angle position. The positioning structure includes a positioning protrusion 33 and a positioning groove 711. The positioning protrusion 33 is provided on the rotating sleeve 3, and the positioning groove 711 is opened in the inner wall of the through hole 710 of the rotating connection part 71. The positioning protrusion 33 and the 711 are positioned together to effectively prevent slippage between the flip cover 7 and the rotating sleeve 3 when the flip cover 7 rotates. The flip cover 7 can be flipped between the open and closed states relative to the water bottle body 1. An angle limiting structure is provided between the rotating connecting part 71 and the hinge part 11. When the flip cover 7 is rotated to the open state, the rotating connecting part 71 of the flip cover 7 engages with the hinge part 11 through the angle limiting structure. This angle limiting structure can keep the flip cover 7 in the open position. The angle limiting structure includes a stop block 111 and a stop rib 712. Block 111 is provided on the hinge part 11, and stop rib 712 is provided on the rotating connection part 71. Block 111 and stop rib 712 stop and cooperate. When taking water, first rotate the handle assembly 2 to the position where it supports the ground 8, and then rotate the flip cover 7 from the closed state to the open state. The angle limiting structure is used to position the flip cover 7. At the same time, when the flip cover 7 is rotated to the open state, the outer wall of the flip cover 7 contacts and positions itself with the inner wall of the handle assembly 2. At this time, the handle assembly 2 can be stably maintained in the support position under the double damping action of the damping sleeve 5 and the damping ring 6.
[0039] The basic working principle of this utility model is as follows: A rotating hole 110 is opened on the hinge part 11 of the water bottle body 1. The straight shaft part 21 of the handle assembly 2 is rotatably inserted into the rotating hole 110. At the same time, a rotating sleeve 3 is coaxially sleeved on the straight shaft part 21, and the rotating sleeve 3 is rotatably disposed in the rotating hole 110. The straight shaft part 21 has damping sleeves 5 on both sides of the rotating sleeve 3. The two end faces of the rotating sleeve 3 are dampedly engaged with the end faces of the corresponding damping sleeves 5. In addition, a damping ring 6 is coaxially provided between the rotating sleeve 3 and the inner wall of the rotating hole 110. The rotating sleeve 3 and the hinge part 11 are dampedly engaged by the damping ring 6. By rotating the handle assembly 2 relative to the water bottle body 1 to the storage state, the storage and transportation space of this utility model is reduced. In addition, the user can also use the handle assembly 2 to carry the water bottle body 1. Furthermore, the flip cap 7 can be rotated. The flip cover 7 pushes the handle assembly 2 to rotate synchronously relative to the water bottle body 1 until the flip cover 7 moves to the open state relative to the water bottle body 1. At the same time, the handle assembly 2 moves to the support position relative to the water bottle body 1. At this time, the end face of the rotating sleeve 3 and the end face of the damping sleeve 5 rub against each other and generate damping force. The outer wall of the rotating sleeve 3 rubs against the inner wall of the rotating hole 110 of the hinge part 11 through the damping ring 6 and generates damping force. The static friction generated by the double damping effect of the damping sleeve 5 and the damping ring 6 enables the handle assembly 2 to be kept at the predetermined water outlet angle position relative to the water bottle body 1, thereby realizing the adjustment of the water outlet height of the water bottle body 1. It has the effects of keeping the handle assembly suspended when it rotates to the predetermined angle position relative to the water bottle body, reducing the storage and transportation space, and adjusting the water outlet height of the water bottle body to achieve quantitative water dispensing.
[0040] The above description is only a preferred embodiment of the present utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of the present utility model patent application are included in the scope of the present utility model patent application.
Claims
1. A pet water bottle with a handle and a braking structure, characterized in that: The device includes a water bottle body (1) and a handle assembly (2). The water bottle body (1) has a hinge portion (11). The handle assembly (2) includes a straight shaft portion (21). The hinge portion (11) has a rotating hole (110) corresponding to the straight shaft portion (21). The straight shaft portion (21) passes through the rotating hole (110). A rotating sleeve (3) is coaxially sleeved on the outside of the straight shaft portion (21). The straight shaft portion (21) is provided with several damping sleeves (5). The end face of the rotating sleeve (3) is damped to the end face of the corresponding damping sleeve (5). A damping ring (6) is coaxially provided between the rotating sleeve (3) and the inner wall of the rotating hole (110). The rotating sleeve (3) and the hinge portion (11) are damped to each other through the damping ring (6).
2. A pet water bottle with a handle and braking structure according to claim 1, characterized in that: The straight shaft portion (21) has a first annular groove (210) located on both sides of the rotating sleeve (3). The damping sleeve (5) is embedded in the first annular groove (210). The contact end surfaces of the damping sleeve (5) and the rotating sleeve (3) are both set as planes.
3. A pet water bottle with a handle and braking structure according to claim 1, characterized in that: The outer wall of the rotating sleeve (3) is provided with a plurality of second annular grooves (30) along the circumferential direction, and the damping ring (6) is installed in the corresponding second annular groove (30).
4. A pet water bottle with a handle and braking structure according to claim 1, characterized in that: The first end of the rotating sleeve (3) is provided with an anti-detachment part (31), and the second end of the rotating sleeve (3) is fixedly provided with an annular anti-detachment component (4). The two ends of the rotating sleeve (3) are anti-detached from the hinge part (11) through the anti-detachment part (31) and the annular anti-detachment component (4).
5. A pet water bottle with a handle and braking structure according to claim 4, characterized in that: The second end of the rotating sleeve (3) is provided with an annular locking protrusion (32), and the inner wall of the annular anti-detachment component (4) is provided with an annular locking groove (40) corresponding to the annular locking protrusion (32). The annular locking protrusion (32) and the annular locking groove (40) are engaged to restrict the axial sliding of the annular anti-detachment component (4) relative to the rotating sleeve (3).
6. A pet water bottle with a handle and braking structure according to claim 5, characterized in that: The annular anti-detachment component (4) is provided with a retaining ring (41) along the circumference, and the annular anti-detachment component (4) is stopped and engaged with the hinge part (11) through the retaining ring (41).
7. A pet water bottle with a handle and braking structure according to claim 1, characterized in that: It also includes a flip cover (7), which has a rotating connection part (71). The rotating connection part (71) has a through hole (710). The rotating sleeve (3) passes through the through hole (710). A positioning structure is provided between the rotating connection part (71) and the rotating sleeve (3). The positioning structure includes a positioning protrusion (33) and a positioning groove (711). The positioning protrusion (33) is provided on the rotating sleeve (3). The positioning groove (711) is opened on the inner wall of the through hole (710) of the rotating connection part (71). The positioning groove (711) and the positioning protrusion (33) are positioned and anti-rotation engaged.
8. A pet water bottle with a handle and braking structure according to claim 7, characterized in that: The flip cover (7) can be flipped and switched between the open and closed states relative to the water bottle body (1). An angle limiting structure is provided between the rotating connecting part (71) and the hinge part (11). When the flip cover (7) is rotated to the open state, the rotating connecting part (71) of the flip cover (7) is stopped by the hinge part (11) through the angle limiting structure.
9. A pet water bottle with a handle and braking structure according to claim 8, characterized in that: The angle limiting structure includes a stop block (111) and a stop rib (712). The stop block (111) is disposed on the hinge part (11), and the stop rib (712) is disposed on the rotating connection part (71). The stop block (111) and the stop rib (712) cooperate to stop each other.
10. A pet water bottle with a handle and braking structure according to claim 1, characterized in that: The handle assembly (2) includes a handle (22) and a latch (23) hinged to the handle (22) at one end. The latch (23) can rotate between an open state and a closed state relative to the handle (22). A first magnet (231) is provided at the end of the latch (23) away from the hinge point. A second magnet (221) is provided on the handle (22) corresponding to the first magnet (231). The first magnet (231) and the second magnet (221) are attracted to each other.
Citation Information
Patent Citations
Pet drinking bottle
CN209359290U