FEEDING APPARATUS AND DISCHARGING ADJUSTMENT STRUCTURE THEREOF
20210289745 ยท 2021-09-23
Inventors
Cpc classification
A01K5/0225
HUMAN NECESSITIES
International classification
Abstract
A feeding apparatus includes a storage chamber, an ejection channel and a discharging adjustment structure. The storage chamber has a discharging hole. The ejection channel communicates with the storage chamber through the discharging hole. The discharging adjustment structure is disposed in the storage chamber and includes a fixing member and a baffle. The fixing member is disposed on a side wall of the storage chamber and is adjacent to the discharging hole. The baffle is movably disposed on the fixing member, and one end of the baffle is adjacent to the discharging hole.
Claims
1. A feeding apparatus, comprising: a storage chamber having a discharging hole; an ejection channel communicating with the storage chamber through the discharging hole; and a discharging adjustment structure disposed in the storage chamber, the discharging adjustment structure comprising: a fixing member disposed on a side wall of the storage chamber and adjacent to the discharging hole; and a baffle movably disposed on the fixing member, one end of the baffle being adjacent to the discharging hole.
2. The feeding apparatus of claim 1, wherein, when the baffle moves relative to the fixing member, the baffle adjusts the size of the discharging hole.
3. The feeding apparatus of claim 1, wherein the fixing member has a convex portion, the baffle has a groove, and the baffle is sleeved on the convex portion of the fixing member with the groove.
4. The feeding apparatus of claim 1, wherein the discharging adjustment structure further comprises an anti-slip member, which is disposed between the fixing member and the baffle.
5. The feeding apparatus of claim 4, wherein the anti-slip member is disposed on an outer surface of the fixing member, and the anti-slip member contacts an inner surface of the baffle.
6. The feeding apparatus of claim 1, wherein the fixing member has at least one first positioning portion, and the baffle has at least one second positioning portion, and the first positioning portion and the second positioning portion are concave-convex structures and engage with each other.
7. The feeding apparatus of claim 1, wherein the fixing member has at least one rib, the baffle has at least a convex portion, and the rib and the convex portion press against each other.
8. The feeding apparatus of claim 1, wherein the baffle is divided into a first area and a second area, the first area being away from the discharging hole and the second area being adjacent to the discharging hole.
9. The feeding apparatus of claim 8, wherein the hardness of the first area is greater than the hardness of the second area.
10. The feeding apparatus of claim 1, wherein the baffle comprises at least one stress weakening structure.
11. The feeding apparatus of claim 1, wherein the baffle comprises a curved opening, the curved opening being located at the end of the baffle adjacent to the discharging hole.
12. A discharging adjustment structure, applied to a feeding apparatus comprising a storage chamber and an ejection channel, the storage chamber having a discharging hole that communicates with the ejection channel and the discharging adjustment structure comprising: a fixing member disposed on a side wall of the storage chamber and adjacent to the discharging hole; and a baffle movably disposed on the fixing member, one end of the baffle being adjacent to the discharging hole.
13. The discharging adjustment structure of claim 12, wherein, when the baffle moves relative to the fixing member, the baffle adjusts the size of the discharging hole.
14. The discharging adjustment structure of claim 12, wherein the fixing member has a convex portion, the baffle has a groove, and the baffle is sleeved on the convex portion of the fixing member with the groove.
15. The discharging adjustment structure of claim 12, further comprising: an anti-slip member, which is disposed between the fixing member and the baffle.
16. The discharging adjustment structure of claim 15, wherein the anti-slip member is disposed on an outer surface of the fixing member, and the anti-slip member contacts an inner surface of the baffle.
17. The discharging adjustment structure of claim 12, wherein the fixing member has at least one first positioning portion, the baffle has at least one second positioning portion, and the first positioning portion and the second positioning portion are concave-convex structures and engage with each other.
18. The discharging adjustment structure of claim 12, wherein the fixing member has at least one rib, the baffle has at least a convex portion, and the rib and the convex portion press against each other.
19. The discharging adjustment structure of claim 12, wherein the baffle is divided into a first area and a second area, the first area being away from the discharging hole and the second area being adjacent to the discharging hole.
20. The discharging adjustment structure of claim 19, wherein the hardness of the first area is greater than the hardness of the second area.
21. The discharging adjustment structure of claim 12, wherein the baffle comprises at least one stress weakening structure.
22. The discharging adjustment structure of claim 12, wherein the baffle comprises a curved opening, the curved opening being located at the end of the baffle adjacent to the discharging hole.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In the drawings, wherein similar reference numerals denote similar elements throughout the several views:
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0025] In order to make the structure and characteristics as well as the effectiveness of the present disclosure to be further understood and recognized, detailed description of the present disclosure is provided as follows along with embodiments and accompanying figures.
[0026]
[0027] The feeding apparatus 1 comprises a storage chamber 10, an ejection channel 20, a discharging adjustment structure 30 and a push rod 40. The storage chamber 10 is used for accommodating the material (such as pet food), and the push rod 40 is disposed on the bottom side of the storage chamber 10. The storage chamber 10 has a discharging hole 11, which is located between the storage chamber 10 and the ejection channel 20. In other words, the ejection channel 20 communicates with the storage chamber 10 through the discharging hole 11. When the user (pet keeper) activates an ejection function, a motor (not shown in FIG.) moves the push rod 40 toward the storage chamber 10. Further, when the push rod 40 moves toward the discharging hole 11, a portion of material in the storage chamber 10 may be pushed to the discharging hole 11, and the portion of material may drop into the ejection channel 20 through the discharging hole 11. It should be noted that an ejection mechanism (not shown in FIG.) is disposed on the bottom side of the ejection channel 20, and the ejection mechanism is used to eject the material in the ejection channel 20 to the outside of the feeding apparatus 1 to achieve the effect of feeding pets by flinging food.
[0028] Referring to
[0029]
[0030]
[0031] Referring to
[0032] Specifically, the anti-slip member 33 is disposed on an outer surface 312 of the fixing member 31, and the anti-slip member 33 contacts an inner surface 322 of the baffle 32. It should be noted that, in this embodiment, the side surface of the fixing member 31 that is not connected to the storage chamber 10 is called the outer surface 312, and the side surface of the baffle 32 that is adjacent to the fixing member 31 is called the inner surface 322. Referring to
[0033] In another embodiment, the anti-slip member 33 may also be disposed on the inner surface 322 of the baffle 32 and contacts the outer surface 312 of the fixing member 31, and it can also achieve the positioning effect aforementioned. In another embodiment, the fixing member 31 can also comprise at least one first positioning portion, and the baffle 32 comprises at least one second positioning portion, correspondingly. The first positioning portion and the second positioning portion are able to engage with each other. For example, the first positioning portion and the second positioning portion are concave-convex structures. Specifically, the outer surface 312 of fixing member 31 may have a plurality of grooves (as the first positioning portions), and the inner surface 322 of the baffle 32 has a contact spring (as the second positioning portion). The contact spring (second positioning portion) moves in a compressed state. When the contact spring (second positioning portion) moves to the groove (first positioning portion), the contact spring (second positioning portion) pops up and into the groove (first positioning portion) to achieve the effect of multi-stage positioning. It should be noted that the anti-slip member 33, the first positioning portion and the second positioning portion can be configured according to variable design requirements, and that both can achieve the positioning effect.
[0034] Preferably, the fixing member 31 has at least one rib 313, the baffle 32 correspondingly has at least one convex portion 324, and the rib 313 and the convex portion 324 press against each other. In this embodiment, the rib 313 is located on the outer surface 312 of the fixing member 31, and the convex portion 324 is located on the inner surface 322 of the baffle 32. One end of the convex portion 324 presses against the rib 313 to reduce the gap between the fixing member 31 and the baffle 32 such that the baffle 32 and the fixing member 31 are prevented from shaking when the baffle 32 is moving.
[0035] The baffle 32 may be divided to a first area 325 and a second area 326. The first area 325 is away from the discharging hole 11, and the second area 326 is adjacent to the discharging hole 11. Taking
[0036] Preferably, the hardness of the first area 325 is greater than the hardness of the second area 326. Specifically, the baffle 32 may be formed by double injection molding (also known as two-component injection molding). The first area 325 is a hard plastic member, such as polycarbonate (PC), and the second area 326 is a soft member, such as thermoplastic polyurethane (TPU). With the first area 325 being a hard material, the baffle 32 and the fixing member 31 may be firmly connected, and the baffle 32 may stably move relative to the fixing member 31. The second area 326 is the soft member to prevent the material (pet food) from being damaged by the baffle 32.
[0037] Preferably, the baffle 32 further comprises at least one stress weakening structure 327, which may be preferably disposed on the second area 326. The stress weakening structure 327 may be, but is not limited to, a recess or a through groove. The stress weakening structure 327 is able to weaken the structure in the second area 326 to achieve a better effect of preventing the material from being damaged.
[0038] Preferably, the baffle 32 further comprises a curved opening 328, which is located at the end of the baffle 32 adjacent to the discharging hole 11. In other words, a bottom edge of the baffle 32 is the curved opening 328. Generally, the discharging hole 11 is a circular opening, and the shape of the curved opening 328 corresponds to the shape of the discharging hole 11 such that the push rod 40 can more easily push the material into the ejection channel 20.
[0039] The present disclosure further comprises a discharging adjustment structure, which is applied in the feeding apparatus. The feeding apparatus comprises a storage chamber and an ejection channel. The storage chamber has a discharging hole that communicates with the ejection channel. The discharging adjustment structure comprises a fixing member and a baffle. The fixing member is disposed on a side wall of the storage chamber and is adjacent to the discharging hole. The baffle is moveably disposed on the fixing member, and one end of the baffle is adjacent to the discharging hole. The other details of the discharging adjustment structure are the same as those described in the aforementioned embodiment and thus will not be described in detail herein.
[0040] As above, according to the feeding apparatus and the discharging adjustment structure of the present disclosure, the discharging adjustment structure includes a fixing member and a baffle. The fixing member is adjacent to the discharging hole, and the baffle is movably disposed on the fixing member. Thereby, the baffle is able to move relative to the fixing member and control the area of the discharging hole that the material passes through. Therefore, the feeding apparatus and its discharging adjustment structure of the present disclosure can be applied to a material (i.e., pet food) having grains of different sizes and meet the requirement of reducing the amount of pet food in an ejection.
[0041] It should be noted that the described embodiments are only for illustrative and exemplary purposes and that various changes and modifications may be made to the described embodiments without departing from the scope of the application as disposed by the appended claims.