CN216517345U - Freely-adjustable electric lock port functional assembly - Google Patents
Freely-adjustable electric lock port functional assembly Download PDFInfo
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- CN216517345U CN216517345U CN202123106220.7U CN202123106220U CN216517345U CN 216517345 U CN216517345 U CN 216517345U CN 202123106220 U CN202123106220 U CN 202123106220U CN 216517345 U CN216517345 U CN 216517345U
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Abstract
The utility model discloses an electric lock port functional component capable of being freely adjusted, which comprises an adjusting electric lock port component with a stabilizing function, and is characterized in that: the adjusting electric lock port assembly comprises an assembly frame (1), an adjusting lock rod (11), an embedded plate (12), an introduction groove (13), a stable end cover (14) and a side wing support plate (15), wherein the adjusting lock rod (11) is connected to the middle side of one end of the assembly frame (1), the embedded plate (12) is symmetrically fixed to two sides of the middle end of the assembly frame (1), the introduction groove (13) is arranged on the middle side of the inner end of the embedded plate (12), the stable end cover (14) is located at the upper end of the assembly frame (1), and the side wing support plate (15) is symmetrically fixed to two sides of the lower end of the stable end cover (14).
Description
Technical Field
The utility model relates to the technical field of electric locks, in particular to a freely-adjustable electric lock functional component.
Background
The electric lock opening is also used as a cathode lock, the electric lock opening can prevent the lock box from being maliciously pried by external force through double operations of manual operation and manual operation, and further the safety performance of the electric lock opening is high, so that the electric lock opening can be widely applied to various places. The current electric lock port assembly has a free adjusting function, so that the electric lock port is more suitable for ordinary life.
At the in-process that the electric lock mouth used, utilize the base to be connected with the shell, because the electric lock mouth is fixed on the door, when the door was opened or was closed hard, the impact that the door bore can vibrate the electric lock mouth, appears becoming flexible easily between the base shell this moment, the inside electrical components's of shell position can take place to remove this moment, and then leads to the unable normal use of electric lock mouth, base and shell production clearance then can lead to the dust to enter into the inside of shell simultaneously.
SUMMERY OF THE UTILITY MODEL
The present invention is directed to a freely adjustable electric strike function assembly to solve the problems set forth in the background above.
In order to achieve the purpose, the utility model provides the following technical scheme: the adjustable electric lock port functional component comprises a component frame, an adjusting lock rod, an embedded plate, a lead-in groove, a stable end cover and side wing support plates, wherein the adjusting lock rod is connected to the middle side of one end of the component frame, the embedded plate is symmetrically fixed to two sides of the middle end of the component frame, the lead-in groove is formed in the middle side of the inner end of the embedded plate, the stable end cover is located at the upper end of the component frame, and the side wing support plates are symmetrically fixed to two sides of the lower end of the stable end cover.
Preferably, an integrally formed structure is arranged between the embedded plate and the component frame, and an integrally formed structure is arranged between the stable end cover and the side wing support plate.
Preferably, the middle sides of the inner ends of the embedded plates are symmetrically provided with pull distance grooves, the two sides of the inner ends of the embedded plates are symmetrically penetrated and arranged with reinforcing rods, the two ends of the reinforcing rods are respectively penetrated and arranged with the pull distance grooves, and the two ends of the reinforcing rods are symmetrically provided with integrally formed locking blocks.
Preferably, the locking blocks are arranged in a hemispherical shape, two of the locking blocks are symmetrically positioned in the guide groove, and the distance-drawing groove penetrates through the guide groove.
Preferably, firm end cover lower extreme bilateral symmetry has placed the laminating pad, and wherein the laminating pad embedding is arranged in the inner of subassembly frame, the inner embedding of laminating pad has arranged the extrusion frame, wherein be integrated into one piece's structure between extrusion frame and the firm end cover.
Preferably, the middle end of the side wing support plate is provided with an integrally formed protruding plate, wherein the protruding plate is positioned at the upper end of the embedded plate, clamping grooves are symmetrically formed in two sides of the inner end of the protruding plate, a threaded locking screw rod penetrates through the upper end of the protruding plate, a spreading guide pillar is arranged at the lower end of the locking screw rod and is welded and connected with the lower end of the locking screw rod, and the spreading guide pillar is positioned in the guide groove.
Compared with the prior art, the utility model has the beneficial effects that:
1. through the arrangement of the utility model, the assembly frame and the stable end cover can be connected more stably, the phenomenon that two wings of the stable end cover shake on the assembly frame is avoided, and further the electric appliance element fixed on the assembly can be protected, and meanwhile, the normal operation of the electric locking notch can be ensured;
2. through right the utility model discloses a setting can strengthen the leakproofness of being connected between firm end cover and the subassembly frame, and then avoids external material to cause the influence to the electrical components of electric fore shaft.
Drawings
FIG. 1 is a schematic perspective view of the present invention;
FIG. 2 is a schematic front view in half section of the assembly frame of the present invention;
FIG. 3 is a front view of a side wing plate in half section according to the present invention.
In the figure: 1. an assembly frame; 11. an adjusting lock rod; 12. a built-in plate; 1201. a distance pulling groove; 1202. a reinforcing bar; 1203. a locking block; 13. a lead-in groove; 14. stabilizing the end cover; 1401. attaching a pad; 1402. extruding the frame; 15. a side wing support plate; 1501. a projecting plate; 1502. a clamping groove; 1503. locking the screw rod; 1504. the guide post is spread.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1 to 3, the present invention provides a technical solution: the electric lock assembly comprises an adjusting electric lock assembly with a stabilizing function, wherein the adjusting electric lock assembly comprises an assembly frame 1, an adjusting lock rod 11, an embedded plate 12, a lead-in groove 13, a stabilizing end cover 14 and a side wing support plate 15, a sponge pad or a rubber pad can be arranged at the joint position between the assembly frame 1 and the stabilizing end cover 14, and both the sponge pad and the rubber pad can play a role in shock absorption, wherein the adjusting lock rod 11 is connected to the middle side of one end of the assembly frame 1, the embedded plate 12 is symmetrically fixed on the two sides of the middle end of the assembly frame 1, an integrally formed structure is formed between the embedded plate 12 and the assembly frame 1, the integrally formed structure is formed between the stabilizing end cover 14 and the side wing support plate 15, pull distance grooves 1201 are symmetrically formed in the middle side of the inner end of the embedded plate 12, reinforcing rods 1202 are symmetrically arranged on the two sides of the inner end of the embedded plate 12 in a penetrating manner, the two ends of the reinforcing rods 1202 are respectively arranged in a penetrating through the pull distance grooves, and integrally formed locking blocks 1203 are symmetrically arranged at the two ends of the reinforcing rods 1202, the locking blocks 1203 are arranged in a hemispherical shape, two locking blocks 1203 are symmetrically positioned in the guide groove 13, the pull distance groove 1201 penetrates through the guide groove 13 to be opened, the guide groove 13 is opened in the middle of the inner end of the embedded plate 12, the stable end cover 14 is positioned at the upper end of the assembly frame 1, the two sides of the lower end of the stable end cover 14 are symmetrically provided with the attaching pads 1401, the attaching pads 1401 are embedded in the inner end of the assembly frame 1 and are arranged, the inner end of the attaching pads 1401 is embedded and provided with the extrusion frame 1402, the extrusion frame 1402 and the stable end cover 14 are in an integrally formed structure, the side wing support plates 15 are symmetrically fixed on the two sides of the lower end of the stable end cover 14, the middle ends of the side wing support plates 15 are provided with the integrally formed protruding plates 1501, the protruding plates 1501 are positioned at the upper end of the embedded plate 12, the two sides of the inner ends of the protruding plates 1501 are symmetrically provided with the clamping grooves 1502, the locking blocks 1203 are arranged in the clamping grooves 1502, and the maximum depth of the clamping grooves 1502 is smaller than the radius of the locking blocks 1203, therefore, when the distraction guide column 1504 does not limit the reinforcing rod 1202, the stable end cover 14 is pulled, so that the separation of the stable end cover 14 and the assembly frame 1 can be realized, wherein the upper end of the protruding plate 1501 penetrates through the screwed locking screw 1503, the lower end of the locking screw 1503 is provided with the distraction guide column 1504 which is welded and connected, and the distraction guide column 1504 is located inside the introduction groove 13.
When the assembly frame 1 and the stable end cover 14 are required to be connected, the stable end cover 14 is covered on the assembly frame 1, the extrusion frame 1402 is clamped inside the attaching pad 1401, the protruding plate 1501 is sleeved on the embedded plate 12, then the clamping groove 1502 is aligned to one locking block 1203, the locking screw 1503 is fixed on the protruding plate 1501, one end of the further propping guide pillar 1504 is inserted into the guiding groove 13, then the propping guide pillar 1504 utilizes two locking blocks 1203 and the reinforcing rod 1202, the other two locking blocks 1203 are pushed into the clamping groove 1502, and at the moment, the stable connection of the assembly frame 1 and the stable end cover 14 can be realized.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.
Claims (6)
1. A freely adjustable electric strike assembly including an adjustable electric strike assembly having a stabilizing function, characterized in that: the adjusting electric lock port assembly comprises an assembly frame (1), an adjusting lock rod (11), an embedded plate (12), an introduction groove (13), a stable end cover (14) and a side wing support plate (15), wherein the adjusting lock rod (11) is connected to the middle side of one end of the assembly frame (1), the embedded plate (12) is symmetrically fixed to two sides of the middle end of the assembly frame (1), the introduction groove (13) is arranged on the middle side of the inner end of the embedded plate (12), the stable end cover (14) is located at the upper end of the assembly frame (1), and the side wing support plate (15) is symmetrically fixed to two sides of the lower end of the stable end cover (14).
2. A freely adjustable electric strike function assembly according to claim 1, wherein: the embedded plate (12) and the component frame (1) are of an integrally formed structure, and the stable end cover (14) and the side wing support plate (15) are of an integrally formed structure.
3. A freely adjustable electric strike function assembly according to claim 1, wherein: the middle side of the inner end of the embedded plate (12) is symmetrically provided with a pull distance groove (1201), wherein the two sides of the inner end of the embedded plate (12) are symmetrically provided with reinforcing rods (1202) in a penetrating manner, the two ends of each reinforcing rod (1202) are respectively arranged in a penetrating manner through the pull distance groove (1201), and the two ends of each reinforcing rod (1202) are symmetrically provided with integrally formed locking blocks (1203).
4. A freely adjustable electric strike function assembly according to claim 3, wherein: the locking blocks (1203) are arranged in a hemispherical shape, two of the locking blocks (1203) are symmetrically positioned in the introduction groove (13), and the distance drawing groove (1201) penetrates through the introduction groove (13) to be opened.
5. A freely adjustable electric strike function assembly according to claim 1, wherein: laminating pads (1401) have been placed to firm end cover (14) lower extreme bilateral symmetry, and wherein laminating pad (1401) embedding is arranged at the inner of subassembly frame (1), the inner embedding of laminating pad (1401) has arranged extrusion frame (1402), wherein be integrated into one piece's structure between extrusion frame (1402) and firm end cover (14).
6. A freely adjustable electric strike function assembly according to claim 1, wherein: the middle end of the side wing support plate (15) is provided with an integrally formed protruding plate (1501), wherein the protruding plate (1501) is located at the upper end of the embedded plate (12), clamping grooves (1502) are symmetrically formed in two sides of the inner end of the protruding plate (1501), a screwed locking screw (1503) penetrates through the upper end of the protruding plate (1501), the lower end of the locking screw (1503) is provided with a spreading guide pillar (1504) in welded connection, and the spreading guide pillar (1504) is located inside the guide groove (13).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123106220.7U CN216517345U (en) | 2021-12-13 | 2021-12-13 | Freely-adjustable electric lock port functional assembly |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202123106220.7U CN216517345U (en) | 2021-12-13 | 2021-12-13 | Freely-adjustable electric lock port functional assembly |
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Publication Number | Publication Date |
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CN216517345U true CN216517345U (en) | 2022-05-13 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202123106220.7U Active CN216517345U (en) | 2021-12-13 | 2021-12-13 | Freely-adjustable electric lock port functional assembly |
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CN (1) | CN216517345U (en) |
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2021
- 2021-12-13 CN CN202123106220.7U patent/CN216517345U/en active Active
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