Oral liquid feeding device for sea buckthorn zinc dogs

By positioning the water basin in multiple directions within the mounting cavity of the placement frame, and utilizing the cooperation of cams and bayonets, the problems of unstable water basin fixation and difficulty in movement are solved, achieving stability and convenience of the water basin during feeding and movement.

CN223874043UActive Publication Date: 2026-02-06GUANGDONG UNITED PETS BIO-TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202423079249.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2026-02-06
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing feeding devices for canine oral liquid containing sea buckthorn zinc have problems when fixing the water bowl: insufficient magnetic attraction makes the water bowl easy to pull out, or excessive magnetic attraction makes it difficult to move.

Method used

The basin is positioned vertically, horizontally, and longitudinally using the mounting cavity within the placement frame. The basin is stabilized through the cooperation of a cam and a bayonet. The cam is used to engage horizontally with the bayonet for longitudinal positioning. The cam can rotate out to allow the basin to move without additional resistance.

Benefits of technology

It achieves stability during feeding and ease of movement, preventing the water bowl from being pulled out or overturned by the dog, and there is no additional resistance when moving it.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223874043U_ABST
    Figure CN223874043U_ABST
Patent Text Reader

Abstract

The oral liquid feeding device for the sea-buckthorn zinc dogs comprises a placing frame, a storage bottle used for storing oral liquid for the sea-buckthorn zinc dogs is placed in the placing frame, an installation cavity is formed in the placing frame, a water basin used for feeding the dogs is installed in the installation cavity, and the cavity wall of the installation cavity makes contact with the water basin to conduct vertical positioning and transverse positioning on the water basin. A bayonet is formed in the rear portion of the water basin, a cam is rotationally installed on the placing frame, the cam is transversely clamped into the bayonet to clamp the water basin so as to longitudinally position the water basin, the cam is exposed to be operated and rotated by people, and the rotating shaft is a longitudinal shaft. The cavity wall of the mounting cavity is used for vertically and transversely positioning the basin, and the cam is transversely clamped into the bayonet to clamp the basin so as to longitudinally position the basin, so that the basin can be effectively fixed. During feeding, the water basin is not easily pulled out and knocked over by dogs. When a user needs to move the water basin, the cam is operated to rotate to be separated out of the bayonet, so that the cam does not clamp the water basin any more, and extra resistance cannot be brought to the movement of the water basin.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to a dog oral liquid feeding device, concretely relates to a sea -buckthorn zinc dog oral liquid feeding device. BACKGROUND

[0002] The sea -buckthorn zinc dog oral liquid is favorable to promote the dog to eat and absorb. Applicant has applied a utility model patent (the publication number is CN215875541U), which discloses a sea -buckthorn zinc dog oral liquid feeding device, the feeding device includes the placing frame supported on the ground, the storage bottle for storing sea -buckthorn zinc dog oral liquid is placed in the placing frame, the storage bottle stores sea -buckthorn zinc dog oral liquid, the installation cavity with the cavity mouth forward is opened in the bottom of the placing frame, and the water basin is installed in the installation cavity. When using, the user pulls out the front part of the water basin to expose it, then pours the sea -buckthorn zinc dog oral liquid in the storage bottle into the water basin for the dog to eat. The magnet is installed at the installation cavity, and the magnet fixes the water basin through magnetic attraction. Applicant finds that the feeding device has the following shortcomings after practice: if the magnetic attraction of the magnet is too small, the water basin cannot be effectively fixed, and the water basin is easily pulled out and turned over by the dog. On the contrary, if the magnetic attraction of the magnet is too large, it will bring a large resistance to the movement of the water basin, so that the user must exert a large force on the water basin to put the water basin into the installation cavity. CONTENT OF THE UTILITY MODEL

[0003] The utility model solves the technical problem to provide a sea -buckthorn zinc dog oral liquid feeding device, which can effectively fix the water basin as a feeding vessel when feeding, and will not bring additional resistance to the movement of the water basin when the water basin needs to be moved.

[0004] To solve the above technical problem, the sea -buckthorn zinc dog oral liquid feeding device of the utility model includes the placing frame supported on the ground, the storage bottle for storing sea -buckthorn zinc dog oral liquid is placed in the placing frame, the installation cavity with the cavity mouth forward is opened in the placing frame, and the water basin for feeding the dog is installed in the installation cavity, the front part of the water basin is longitudinally stretched out to the outside of the placing frame, and the rear part of the water basin is opened into the installation cavity, the cavity wall of the installation cavity contacts the water basin to position it vertically and horizontally, the rear part of the water basin is opened into the installation cavity, the placing frame is rotatably installed with the cam, the cam is horizontally clamped into the bayonet and clamps the water basin to position it longitudinally, the cam is exposed for manual operation, the rotation axis is a longitudinal axis, and the cam is operated to rotate around the longitudinal axis to be out of the bayonet, so that the front part of the water basin can be retracted into the installation cavity.

[0005] Further, the bayonet has at least two, which are opened in the rear part of the left basin wall and the rear part of the right basin wall respectively, and correspondingly, the cam has at least two, and the two cams are side by side, and are horizontally clamped into the bayonet of the rear part of the left basin wall and the rear part of the right basin wall respectively.

[0006] Further, a cam cavity is formed in the cavity wall of the installation cavity and communicates with the outside through the cavity mouth, and a cam is installed in the cam cavity and exposed through the cavity mouth for manual rotation.

[0007] Further, a cover plate is arranged at the cavity mouth of the cam cavity and can be rotated to expose the cam through the cavity mouth.

[0008] Further, the top of the cover plate is hingedly connected with a placing rack, which is naturally lowered to cover the cavity mouth of the cam cavity under the action of gravity and can be rotated upward to be opened.

[0009] Further, the bottom of the placing rack extends outward and has a supporting leg.

[0010] Further, the supporting leg is movably installed at the bottom of the placing rack and can be retracted inward.

[0011] Further, a locking mechanism is arranged to lock the supporting leg, and the locking mechanism has an exposed unlocking part for manual unlocking, and when the locking mechanism is unlocked, the supporting leg can be retracted inward.

[0012] Further, a buffer lining is arranged in the placing rack, and the buffer lining has a placing hole, and the storage bottle is placed in the placing hole.

[0013] Further, the upper cavity wall and the lower cavity wall of the installation cavity respectively contact the upper basin wall and the lower basin wall of the water basin to vertically position the water basin, and the left cavity wall and the right cavity wall of the installation cavity respectively contact the left basin wall and the right basin wall of the water basin to horizontally position the water basin.

[0014] Since the cavity walls of the installation cavity vertically and horizontally position the water basin, the cam is horizontally clamped into the clamping hole to longitudinally position the water basin, so that the water basin can be effectively fixed. When the user feeds, the oral liquid stored in the storage bottle is poured into the water basin, and the dog drinks the oral liquid from the front drinking port of the water basin. During this process, the water basin is not easily pulled out and overturned by the dog. When the user needs to move the water basin, for example, when the user needs to put the water basin into the installation cavity, the user first operates the cam to rotate it out of the clamping hole, and then pushes the water basin backward to make the front part of the water basin enter the installation cavity. During this process, since the cam no longer clamps the water basin, it does not bring additional resistance to the movement of the water basin. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is a schematic view of the feeding device, in which the front part of the water basin has been extended forward, and the cover plate on the left has been rotated upward and opened.

[0016] Figure 2 is a schematic view of the feeding device, in which the cover has been rotated and opened.

[0017] Figure 3 is a top view of the feeding device.

[0018] Figure 4 yes Figure 3 AA sectional view.

[0019] Figure 5 yes Figure 4 BB cross-sectional view.

[0020] Figure 6 yes Figure 4 The BB cross-sectional view shows the support legs extending outwards.

[0021] Figure 7 It is a schematic diagram of the water basin, rotating shaft and cam.

[0022] Figure 8 It is a schematic diagram of a water basin, a rotating shaft, and a cam. In the diagram, the cam is horizontally inserted into the slot of the water basin.

[0023] Figure 9 This is a cross-sectional schematic diagram of the slide and support legs.

[0024] Figure 10 This is a schematic diagram of the feeding device's support legs extending outwards. Detailed Implementation

[0025] The present invention will be further described in detail below with reference to specific embodiments.

[0026] See the feeding device for sea buckthorn zinc canine oral liquid. Figure 2 , Figure 3 and Figure 4 The device includes a placement rack 1, supported on the ground, with an upward-facing placement cavity 11 at the top. A silicone cushioning pad 21 is placed at the bottom of the placement cavity 11, and cushioning foam 22 is placed above it. Six placement holes 220 are formed in the cushioning foam 22, each containing a storage bottle 3. The storage bottle 3 stores seabuckthorn zinc oral solution for dogs. (See...) Figure 1 and Figure 2 A cover 41 is placed over the opening 110 of the placement cavity 11. The left end of the cover 41 is hinged to the placement rack 1, and the right end is attached to the right wall 12 of the placement rack 1 and has a locking hole 411. The right wall 12 of the placement rack 1 has a locking threaded hole 121 aligned with the locking hole 411. The device includes a locking bolt 42. The tail of the locking bolt 42 passes through the locking hole 411 and is screwed into the locking threaded hole 121. The head of the locking bolt is larger than the locking hole 411 and cannot pass through it. The locking bolt 42 locks the cover 41 in this way. A silicone cushioning block 43 is provided on the bottom surface of the cover 41, which presses against the storage bottle 3. Silicone cushioning pad 21 (see...) Figure 4 The cushioning liner consists of cushioning foam 22 and silicone cushioning block 43. When the storage bottle 3 is vibrated during transportation, the cushioning liner can play a cushioning role.

[0027] SeeFigure 1 and Figure 4 The middle part of the rack 1 is provided with a forward-facing installation cavity 13 with an opening 130, and a water basin 51 is installed in the installation cavity 13. The vertical direction is the longitudinal direction, and the left-right direction is the transverse direction. The upper cavity wall 131 and the lower cavity wall 132 of the installation cavity 13 respectively contact the upper basin wall 511 and the lower basin wall 512 of the water basin 51 to vertically position the water basin 51, and the left cavity wall 133 and the right cavity wall 134 of the installation cavity 13 respectively contact the left basin wall 513 and the right basin wall 514 of the water basin 51 to transversely position the water basin 51. In this way, the water basin 51 is installed in the installation cavity 13 and can only move longitudinally forward and backward. Figure 4 and Figure 7 The left front part of the upper cavity wall 131 of the installation cavity 13 is provided with a left cam cavity 135 with a left-facing opening 1350, and a rotating shaft 52 in the forward-backward direction is rotatably installed in the left cam cavity 135. Three rightward-protruding cams 53 are fixedly installed on the rotating shaft 52 in parallel in the forward-backward direction. A cover plate 54 is provided at the opening 1350 of the left cam cavity 135, and the top of the cover plate 54 is hingedly connected to the rack 1. The cover plate 54 naturally falls to cover the opening 1350 of the left cam cavity 135 under the action of gravity, and can be turned upward to be opened. When the cover plate 54 is turned upward to be opened, as shown in Figure 1 , the opening 1350 of the left cam cavity 135 is connected to the outside in the left direction, and the rotating shaft 52 and the three cams 53 are exposed through the opening 1350. Figure 4 and Figure 7 The right front part of the upper cavity wall 131 of the installation cavity 13 is provided with a right cam cavity 136 with a right-facing opening 1360, and the rotating shaft 52 and the three cams 53 are also installed in the right cam cavity 136. A cover plate 54 that can be turned upward to be opened is also provided at the opening 1360 of the right cam cavity 136. The difference is that the three cams 53 in the right cam cavity 136 protrude to the left, and when the cover plate 54 is turned upward to be opened, the opening 1360 of the right cam cavity 136 is connected to the outside in the right direction, and the rotating shaft 52 and the three cams 53 are exposed through the opening 1360. Here, the details are not repeated. The rear part of the left basin wall 513 of the water basin 51 is provided with three left clamping holes 515 in parallel in the forward-backward direction, and the rear part of the right basin wall 514 of the water basin 51 is provided with three right clamping holes 516 in parallel in the forward-backward direction. The three left clamping holes 515 and the three right clamping holes 516 are transversely aligned, and the three cams 53 in the left cam cavity 135 are transversely aligned with the three cams 53 in the right cam cavity 136. Therefore, when the water basin 51 moves forward so that the three left clamping holes 515 are vertically aligned with the three cams 53 in the left cam cavity 135, as shown in Figure 8 , the three right clamping holes 516 are vertically aligned with the three cams 53 in the right cam cavity 136.

[0028] The user operates as follows when feeding the dog:

[0029] See Figure 1 and Figure 8, first pull the water basin 51 out a distance to make the front part 517 of the water basin 51 longitudinally stretch out to the outside of the placing rack 1, then turn the left cover plate 54 open, and observe from the left cam cavity 135 cavity opening 1350 whether the three left notches 515 on the left basin wall 513 are vertically aligned with the three cams 53 in the left cam cavity 135. If not, adjust the longitudinal position of the water basin 51 by hand until the three left notches 515 on the left basin wall 513 are vertically aligned with the three cams 53 in the left cam cavity 135, in this state, the three right notches 516 on the right basin wall 514 are vertically aligned with the three cams 53 in the right cam cavity 136. Put the hand into the left cam cavity 135 to hold the rotating shaft 52 in the cavity and turn the rotating shaft 52 to indirectly turn the three cams 53 in the left cam cavity 135, make the three cams 53 rotate around the rotating shaft 52 to the left and down until the three cams 53 are horizontally clamped into the three left notches 515 on the left basin wall 513 respectively. See Figure 4 and Figure 8 , turn the right cover plate 54 open, put the hand into the right cam cavity 136 to hold the rotating shaft 52 in the cavity and turn the rotating shaft 52 to indirectly turn the three cams 53 in the right cam cavity 136, make the three cams 53 rotate around the rotating shaft 52 to the right and down until the three cams 53 are horizontally clamped into the three right notches 516 on the right basin wall 514 respectively. Since the cavity walls 131, 132, 133, 134 of the installation cavity 13 vertically and horizontally position the water basin 51, the six cams 53 are horizontally clamped into the six notches 515, 516 to clamp the water basin 51 and longitudinally position the water basin 51, so the water basin 51 can be effectively fixed. See Figure 1 and Figure 2 , the user unscrews the lock cover bolt 42 and then turns the cover 41 open, takes out one of the storage bottles 3 and pours the oral liquid stored in the storage bottle 3 into the water basin 51 to feed the dogs, the dogs eat the oral liquid from the front part 517 of the water basin 51, and the water basin 51 is not easy to be pulled out and turned over by the dogs in this process.

[0030] When the user needs to move the water basin 51, for example, when the user needs to put the front part 517 of the water basin 51 back into the installation cavity 13:

[0031] See Figure 4 and Figure 7, reverse rotation of the rotating shaft 52 in the left cam cavity 135 to indirectly rotate the three cams 53 on the rotating shaft 52, make the three cams 53 rotate back to the original position around the rotating shaft 52 to get out of the left notch 515 of the left basin wall 513, then reverse rotation of the rotating shaft 52 in the right cam cavity 136 to indirectly rotate the three cams 53 on the rotating shaft 52, make the three cams 53 rotate back to the original position around the rotating shaft 52 to get out of the right notch 516 of the right basin wall 514. Push the water basin 51 back to make the front part 517 of the water basin 51 enter the installation cavity 13, during this process, because the six cams 53 no longer hold the water basin 51, it will not bring additional resistance to the movement of the water basin 51.

[0032] See Figure 5 and Figure 9 , the left front part of the bottom of the rack 1 is provided with a slide groove 14 with the left end 141 closer to the front and the right end 142 closer to the back, the opening 140 of the slide groove 14 is located at the left end 141, and a supporting leg 71 is installed in the slide groove 14. The bottom wall of the left end 141 of the slide groove 14 is provided with a notch 1411, and the left front end 711 of the supporting leg 71 extends downward from the notch 1411 until it is flush with the bottom wall 100 of the rack 1. The supporting leg 71 is provided with two locking screw holes 715, 716 distributed along its own axis. One of the two locking screw holes 715, 716 is closer to the outside and the other is closer to the inside. The left front wall of the bottom of the rack 1 is recessed inward to form a recessed part 151, which is provided with a mounting hole 152 opening to the inside of the slide groove 14, and the mounting hole 152 is aligned with the outer locking screw hole 715. A locking bolt 72 is installed in the mounting hole 152, which serves as a locking mechanism with the head exposed and the tail screwed into the outer locking screw hole 715 to lock the supporting leg 71. In this state, the supporting leg 71 cannot slide outward along the slide groove 14. The right front part of the bottom of the rack 1 is symmetrical to the left front part, and the front part of the bottom of the rack 1 is symmetrical to the back part, that is, the bottom of the rack 1 is provided with four slide grooves 14, four supporting legs 71 and four locking bolts 72 to lock the four supporting legs 71, which will not be described here.

[0033] See Figure 6 and Figure 10 , the head of the locking bolt is used as the exposed unlocking part. In the case of sufficient space, the user can turn the locking bolt 72 to make its tail exit outside the outer locking screw hole 715 to unlock the supporting leg 71, then pull the supporting leg 71 outward along the slide groove 14 until the inner locking screw hole 716 of the supporting leg 71 is aligned with the mounting hole 152, then tighten the locking bolt 72 again to make its tail screw into the inner locking screw hole 716 to lock the supporting leg 71. In this state, the supporting range of the bottom of the rack 1 is larger, and the rack 1 is not easy to fall over when subjected to lateral force. See Figure 1 and Figure 5When the transportable shelf 1 is needed, the user twists the locking bolt 72 again to release the support leg 71, and then pushes the support leg 71 inwardly to retract it along the sliding groove 14 until the outer locking threaded hole 715 is aligned with the mounting hole 152, and then locks the support leg 71 with the locking bolt 72 again. In this state, the shelf 1 occupies a smaller space, facilitating transportation.

[0034] The above is only an embodiment of the present application, and does not limit the patent protection scope. Those skilled in the art can make non-substantial changes or substitutions on the basis of the present application, and still fall within the patent protection scope.

Claims

1. A feeding device for seabuckthorn zinc canine oral liquid, comprising a support frame on the ground, a storage bottle for storing seabuckthorn zinc canine oral liquid placed inside the support frame, the support frame having a forward-facing mounting cavity, a water bowl for feeding dogs installed in the mounting cavity, the front part of the water bowl extending longitudinally out of the support frame and retracting backward into the mounting cavity, characterized in that: The water basin is vertically and horizontally positioned by the contact of the cavity wall of the installation cavity with the water basin. The rear part of the water basin is provided with a bayonet, and the cam is rotatably installed on the placing rack. The cam is horizontally clamped into the bayonet to clamp the water basin and longitudinally position the water basin. The cam is exposed for manual operation and rotation. The rotation shaft is a longitudinal shaft. The cam is operated to rotate around the longitudinal shaft and then is released from the bayonet. The front part of the water basin can be retracted into the installation cavity.

2. The feeding device of claim 1, wherein: The bayonet has at least two, which are respectively provided in the rear part of the left basin wall and the rear part of the right basin wall. Correspondingly, the cam has at least two, which are horizontally arranged side by side and respectively clamped into the bayonet of the rear part of the left basin wall and the rear part of the right basin wall.

3. The feeding apparatus of claim 1, wherein: The upper cavity wall of the installation cavity is provided with a cam cavity which is laterally connected with the outside through a cavity opening. The cam is installed in the cam cavity and is exposed through the cavity opening for manual operation and rotation.

4. The feeding device of claim 3, wherein: A cover plate which can be turned open is arranged at the cavity opening of the cam cavity. When the cover plate is turned open, the cam is exposed through the cavity opening.

5. The feeding device of claim 4, wherein: The top part of the cover plate is hingedly connected with the placing rack and is naturally lowered to cover the cavity opening of the cam cavity under the action of gravity. The cover plate can be turned upward to open.

6. The feeding apparatus of claim 1, wherein: Supporting legs are outwardly extended from the bottom part of the placing rack.

7. The feeding apparatus of claim 6, wherein: The supporting legs are movably installed at the bottom part of the placing rack and can be inwardly retracted.

8. The feeding apparatus of claim 7, wherein: A locking mechanism is arranged to lock the supporting legs. The locking mechanism is provided with an exposed unlocking part for manual operation and unlocking. When the locking mechanism is unlocked, the supporting legs can be inwardly retracted.

9. The feeding apparatus of claim 1, wherein: A buffer lining is placed in the placing rack. The buffer lining is provided with a placing hole, and the storage bottle is placed in the placing hole.

10. The feeding apparatus of claim 1, wherein: The upper cavity wall and the lower cavity wall of the installation cavity respectively contact the upper basin wall and the lower basin wall of the water basin to vertically position the water basin. The left cavity wall and the right cavity wall of the installation cavity respectively contact the left basin wall and the right basin wall of the water basin to horizontally position the water basin.

Citation Information

Patent Citations

  • Beverage bottle special for sea-buckthorn zinc dogs

    CN215875541U