MULTI-DIRECTIONAL OPENING FLAP PET DOOR
20220356754 ยท 2022-11-10
Inventors
Cpc classification
International classification
Abstract
The present invention provides a multi-directional opening flap pet door, relating to the technical field of pet bearing devices, which comprises: a supporting door frame, a bearing door frame, a locking seat and a blocking door panel. When a locking column slides into a bidirectional locking hole, the blocking door panel is locked bidirectionally, and when the locking column slides into an entrance-exit sliding hole, the blocking door panel is open bidirectionally. It solves the problem that most of the pet doors currently rotate in one direction, and the pet door needs to be adjusted manually, which limits the applicability of pet boxes or pet cages for pet bearing.
Claims
1. A multi-directional opening flap pet door, comprising: a supporting door frame (1), a bearing door frame (2), a locking seat (3), and a blocking door panel (4); and wherein one side of the supporting door frame (1) is fixedly mounted with an inlet cushion block (101), and the other side of the supporting door frame (1) is fixedly mounted with an outlet cushion block (102); the bearing door frame (2) is fixedly mounted on an inner side of the supporting door frame (1); a bearing groove (201) is provided on the top of an inner side of the bearing door frame (2); a supporting column (202) is mounted on an inner side of the bearing groove (201); the locking seat (3) is fixedly mounted on the bottom of the inner side of the bearing door frame (2); an assembly groove (301) is provided on an inner side of the locking seat (3); a multi-directional locking structure is provided on an inner side of the assembly groove (301); the multi-directional locking structure comprises an assembly sliding column (304); a sliding cylinder (3041) is sheathed on an outer side of the assembly sliding column (304); a positioning and locking structure is provided on a side of the locking seat (3) and the assembly sliding column (304); the positioning and locking structure comprises a sliding strut (305); the sliding strut (305) is fixedly mounted on a side surface of the sliding cylinder (3041); the blocking door panel (4) is provided on the inner side of the bearing door frame (2); assembly blocks (401) are fixedly mounted at two ends of the top of the blocking door panel (4); a multi-directional supporting structure is arranged at the bottom of the blocking door panel (4); the multi-directional supporting structure comprises a displacement chute (405); and the displacement chute (405) is provided at the bottom of the blocking door panel (4).
2. The multi-directional opening flap pet door of claim 1, wherein: the supporting door frame (1) is further provided with a mounting supporting frame (103), locking blocks (104), and locking holes (105); and wherein the mounting supporting frame (103) is fixedly mounted on the outer side of one end of the supporting door frame (1); the locking blocks (104) are fixedly mounted at four corners of one end of the supporting door frame (1); a locking hole (105) penetrates through the sides of the locking block (104).
3. The multi-directional opening flap pet door of claim 1, wherein, the bearing door frame (2) is further provided with a bearing block (203) and an assembly spindle (204); and wherein the bearing block (203) is fixedly mounted on a side of the supporting column (202); the assembly spindle (204) is rotatably mounted inside the bearing block (203); the assembly spindle (204) fixedly interfaces with the assembly block (401).
4. The multi-directional opening flap pet door of claim 1, wherein the locking seat (3) further comprises a sliding slot (302) and locking frames (303); and wherein the sliding slot (302) runs through a side face of the assembly groove (301); the locking frames (303) are fixedly installed at both ends of a side face of the locking seat (3).
5. The multi-directional opening flap pet door of claim 1, wherein the multi-directional locking structure further comprises a supporting block (3042) and a locking column (3043); and wherein the supporting block (3042) is fixedly mounted on the top of the sliding cylinder (3041); the support block (3042) is arranged inside the assembly groove (301); the locking column (3043) is fixedly installed on the top of the support block (3042).
6. The multi-directional opening flap pet door of claim 1, wherein the positioning and locking structure further comprises a locking thread (3051), a locking screw cylinder (3052), and a rotary holding block (3053); and wherein the locking thread (3051) is provided outside one end of the sliding strut (305); the locking screw cylinder (3052) is sheathed outside the sliding strut (305); the rotary holding block (3053) is fixedly mounted to one end of the locking screw cylinder (3052).
7. The multi-directional opening flap pet door of claim 1, wherein the blocking door panel (4) is further provided with an assembly chute (402), a transparent panel (403), and preset holes (404); and wherein the assembly chute (402) runs through a side face of the blocking door panel (4); the transparent panel (403) is mounted on an inner side of the assembly chute (402); the preset hole (404) penetrates through the sides of the transparent panel (403).
8. The multi-directional opening flap pet door of claim 1, wherein the multi-directional supporting structure further comprises a bidirectional locking hole (4051), an entrance-exit sliding hole (4052), an exit locking hole (4053), and an entrance locking hole (4054); and wherein the bidirectional locking hole (4051) is provided at the bottom of the blocking door panel (4); the entrance-exit sliding hole (4052) is provided at the bottom of the blocking door panel (4); the exit locking hole (4053) is provided at the bottom of the blocking door panel (4); the entrance locking hole (4054) is provided at the bottom of the blocking door panel (4), and the entrance locking hole (4054) is in communication with the exit locking hole (4053), the entrance-exit sliding hole (4052), and the bidirectional locking hole (4051) via a displacement chute (405).
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0032] Embodiments: reference is made to
[0033] The present invention provides a multi-directional opening flap pet door comprising a supporting door frame 1, a bearing door frame 2, a locking seat 3, and a blocking door panel 4.
[0034] One side of the supporting door frame 1 is fixedly mounted with an inlet cushion block 101, and the other side of the supporting door frame 1 is fixedly mounted with an outlet cushion block 102. The bearing door frame 2 is fixedly mounted on an inner side of the supporting door frame 1. A bearing groove 201 is provided on the top of an inner side of the bearing door frame 2. A supporting column 202 is mounted on an inner side of the bearing groove 201. The locking seat 3 is fixedly mounted on the bottom of the inner side of the bearing door frame 2. An assembly groove 301 is provided on an inner side of the locking seat 3. A multi-directional locking structure is provided on an inner side of the assembly groove 301. The multi-directional locking structure comprises an assembly sliding column 304. A sliding cylinder 3041 is sheathed on an outer side of the assembly sliding column 304. A positioning and locking structure is provided on a side of the locking seat 3 and the assembly sliding column 304. The positioning and locking structure comprises a sliding strut 305. The sliding strut 305 is fixedly mounted on a side surface of the sliding cylinder 3041. The blocking door panel 4 is provided on the inner side of the bearing door frame 2. Assembly blocks 401 are fixedly mounted at two ends of the top of the blocking door panel 4. A multi-directional supporting structure is arranged at the bottom of the blocking door panel 4. The multi-directional supporting structure comprises a displacement chute 405. The displacement chute 405 is provided at the bottom of the blocking door panel 4.
[0035] As shown in
[0036] As shown in
[0037] Specific modes of use and function of this embodiment: in the present invention, the supporting door frame 1 can be fixedly mounted by the mounting supporting frame 103 in cooperation with the locking blocks 104 and the locking holes 105, the bearing block 203 in cooperation with the assembly spindle 204, the blocking door panel 4 can be rotatably mounted bidirectionally. The ventilation and blocking can be performed by the blocking door panel 4 in cooperation with the transparent panel 403 and the preset holes 404. At the same time, holding the rotary holding block 3053 can push and adjust the sliding strut 305 for the displacement of the sliding cylinder 3041 and can drive the locking column 3043 to slide laterally in the displacement chute 405. The rotary holding block 3053 can rotate and lock the locking screw cylinder 3052, so that the locking screw cylinder 3052 can be in cooperation with the locking frames 303 to position and lock the sliding cylinder 3041 and the locking column 3043. When the locking column 3043 slides into the bidirectional locking hole 4051, the blocking door panel 4 is bidirectionally locked so that the blocking door panel 4 cannot be opened from both the inside and the outside. When the locking column 3043 slides into the entrance-exit sliding hole 4052, the blocking door panel 4 is bidirectionally opened so that the blocking door panel 4 can be opened from both the inside and the outside. When the locking column 3043 slides into the exit locking hole 4053, the blocking door panel 4 is unidirectionally opened so that the blocking door panel 4 can be opened from the outside but not from the inside. When the locking column 3043 slides into the entrance locking hole 4054, the blocking door panel 4 is unidirectionally opened, so that the blocking door panel 4 can be opened from the inside but not from the outside.