Adjusting structure of recognition machine

The multi-directional electric adjustment structure solves the problem that the identification machine bracket structure cannot be adjusted in multiple directions, and realizes the multi-directional adjustment and adaptive installation of the identification machine.

CN223563900UActive Publication Date: 2025-11-18重庆汇帆科技有限公司
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Patent Information

Application Number
CN202423070903.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-11-18
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

The existing identification machine's support structure cannot be adjusted in multiple directions, which limits scanning, and the spacing of the fixing holes cannot meet the installation requirements of identification machines of various specifications.

Method used

The device employs a multi-directional electric adjustment structure, including a steering motor, a tilting motor, and an internal cylinder. Through the combination of bolts and screws, the device can be adjusted and fixed in multiple directions.

Benefits of technology

It enables multi-directional adjustment of the recognition machine to meet scanning requirements in different directions and distances, and is adaptable to the installation of recognition machines of various specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjusting structure of a recognition machine, and relates to the recognition machine field, the adjusting structure comprises a mounting bottom block, the two sides of the mounting bottom block are horizontally, symmetrically and fixedly connected with mounting side strips, the top surfaces of the mounting side strips are uniformly provided with fixing through holes, the top end of the mounting bottom block is horizontally in butt joint with a butt joint top block, and the top end of the butt joint top block is fixedly connected with the mounting bottom block. The device comprises a butt-joint ejector block, vertical ejector blocks are symmetrically welded to the top face of the butt-joint ejector block in a vertically upward mode, a telescopic ejector rod is horizontally arranged on the side edge between the vertical ejector blocks, overturning shaft rods are symmetrically and fixedly connected to the side edge of the telescopic ejector rod, a side fixing box is fixedly connected to one side edge of one vertical ejector block, and a recognition machine is in butt joint with one end of the telescopic ejector rod. A steering motor is fixedly connected to the inner side edge of the mounting bottom block in a clamped mode, a top clamping hole is formed in the top end of the mounting bottom block, remote intelligent control operation can be achieved through a multi-direction electric adjusting structure, and meanwhile the requirement for mounting and using of recognition machines of various specifications and sizes can be met through an adjustable mounting structure.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of identification machine, concretely is a kind of identification machine's adjusting structure. BACKGROUND

[0002] Face recognition is a kind of biometric identification technology in digital information development, through camera acquisition contains the image or video stream of human face, and automatically in image detection and tracking face, and then to the face of detected face face positioning, face recognition preprocessing, memory storage and comparison, to achieve the purpose of identifying different person identity.

[0003] For the identification machine of present, when installing and using, since it is just through the fixed support structure auxiliary installation operation, after installation, it does not have adjusting effect to let it influence the scanning restrictivity of identification machine, and the adjusting structure of single direction does not have multidirectional adjusting function, so that it influences the adjustment use of multiple directions, and the fixed hole spacing also cannot satisfy the installation of identification machine of multiple specifications. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a kind of identification machine's adjusting structure, to solve the problem that the above background technology proposes for the identification machine of present, when installing and using, since it is just through the fixed support structure auxiliary installation operation, after installation, it does not have adjusting effect to let it influence the scanning restrictivity of identification machine, and the adjusting structure of single direction does not have multidirectional adjusting function, so that it influences the adjustment use of multiple directions, and the fixed hole spacing also cannot satisfy the installation of identification machine of multiple specifications.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] The utility model provides an adjusting structure of an identification machine, comprising a mounting bottom block, two side edges of the mounting bottom block are horizontally symmetrically fixedly connected with mounting side strips, the top surface of the mounting side strip is uniformly provided with a fixed through hole, the top end of the mounting bottom block is horizontally butt-jointed with a butt-jointed top block, the top surface of the butt-jointed top block is symmetrically welded with vertical top blocks vertically upward, the side edges between the vertical top blocks are horizontally provided with telescopic top rods, the side edges of the telescopic top rod are symmetrically fixedly connected with turnover shaft rods, one side edge of one of the vertical top blocks is fixedly connected with a side fixed box, one end of the telescopic top rod is butt-jointed with an identification machine, the inside edge of the mounting bottom block is fixedly clamped with a steering motor, the top end of the mounting bottom block is provided with a top clamping hole, the bottom surface of the butt-jointed top block is fixedly welded with a bottom clamping block, the side edge of the vertical top block is provided with a sleeving hole, the inside edge of the side fixed box is horizontally fixedly connected with a turnover motor, the inside edge of the telescopic top rod is horizontally fixedly connected with an inner air cylinder, one end of the telescopic top rod is symmetrically provided with an adjusting groove, the inside edge of the adjusting groove is inserted with a mounting clamping rod, the side edge of the mounting clamping rod is inserted with a fixed screw rod, one end of the mounting clamping rod is fixedly welded with an auxiliary end rod, the side edges of the auxiliary end rod are uniformly provided with matching through holes.

[0007] As a preferred embodiment of the utility model: the number of the mounting side strips is two, and the two mounting side strips are symmetrically fixedly connected and arranged at the bottom end positions of the two side edges of the mounting bottom block, the fixed through holes are arranged in the middle line positions of the top surfaces of the mounting side strips in a penetrating type horizontal arrangement, and the bottom surface center position of the butt-jointed top block is butt-jointed and arranged at the top opening end of the top clamping hole.

[0008] As a preferred embodiment of the utility model: the number of the vertical top blocks is two, and the two vertical top blocks are arranged in parallel and symmetrically, the bottom end of the vertical top block is fixedly connected and arranged at the middle line two end positions of the top surface of the butt-jointed top block, and the telescopic top rod is connected and arranged at the inside edge of the sleeving hole through the turnover shaft rod.

[0009] As a preferred embodiment of the utility model: the side edge of the identification machine is butt-jointed and arranged at the side edge position of the auxiliary end rod, the top clamping hole is arranged at the top center position of the mounting bottom block, and the output end of the steering motor is vertically extended to the inside edge of the top clamping hole, and the extended end is fixedly connected and arranged at the bottom center position of the bottom clamping block.

[0010] As a preferred embodiment of the utility model: the bottom end of the bottom clamping block is clamped and arranged at the inside edge of the top clamping hole, the output end of the turnover motor is horizontally extended and fixedly connected and arranged at one end position of the turnover shaft rod, the adjusting groove is symmetrically arranged at the middle line position of one end of the telescopic top rod, one end of the adjusting groove penetrates the side wall of the telescopic top rod and extends to the outside in an open manner, and the inside wall of the adjusting groove is uniformly provided with a screw hole structure.

[0011] As a preferred embodiment of the utility model: the fixed screw rod is through the installation clamping rod's side near one end's through -hole, and the extension end corresponds the threaded fixed connection setting in the inside screw hole of the adjusting groove, and one end of the installation clamping rod is fixedly connected and set in the side center position of the auxiliary end rod, and the cooperation through -hole is set in the side midline position of the auxiliary end rod and is arranged in a horizontal line.

[0012] Compared with the prior art, the utility model has the beneficial effects that:

[0013] The utility model discloses a kind of adjusting structures of identification machine, including installation bottom block, auxiliary end rod, adjusting groove, fixed screw rod, installation clamping rod, identification machine, cooperation through -hole, bolt, top joint block, bottom joint block, telescopic top rod, inner cylinder, steering motor, turning motor, telescopic movement, the bottom end of installation bottom block is docked and set in specified position, and the inside screw hole of adjusting groove is pulled in two installation clamping rods in adjusting groove, so that two auxiliary end rods are adjusted to specified interval, and installation clamping rod is fixedly connected and set in the inside adjusting groove by fixed screw rod, the rear of identification machine is docked and set in the side of auxiliary end rod, fixed installation operation is carried out after bolt is through cooperation through -hole, after installing identification machine, when it needs to be adjusted angle, steering motor is controlled and rotated, and bottom joint block is rotated in the inside top joint hole, so that top joint block drives identification machine to be horizontally rotated and adjusted, and telescopic top rod is turned to specified angle between vertical top block position under the rotation of turning motor, satisfy the vertical adjustment of identification machine, and identification machine can be adjusted in near and far after the telescopic movement of inner cylinder output, multi-directional electric adjustment structure is used, so that it can form remote intelligent control operation, and adjustable installation structure is used, so that it can satisfy the installation of identification machine of multiple specifications and sizes. BRIEF DESCRIPTION OF DRAWINGS

[0014] Other features, objects and advantages of the utility model will become more apparent through reading the following detailed description of non-limiting embodiments with reference to the accompanying drawings:

[0015] Figure 1 It is the three-dimensional structure schematic view of the adjusting structure of a kind of identification machine;

[0016] Figure 2 It is the structure schematic view of the installation bottom block three-dimensional section connection details of the adjusting structure of a kind of identification machine;

[0017] Figure 3 It is the structure schematic view of the top joint block three-dimensional section connection details of the adjusting structure of a kind of identification machine;

[0018] Figure 4 It is the structure schematic view of the telescopic top rod three-dimensional section connection details of the adjusting structure of a kind of identification machine.

[0019] In the figure: 1, the installation bottom block; 2, the installation side strip; 3, the fixed through hole; 4, the butt joint top block; 5, the vertical top block; 6, the telescopic top rod; 7, the turnover shaft rod; 8, the side fixed box; 9, the identification machine; 10, the steering motor; 11, the top clamping hole; 12, the bottom clamping block; 13, the sleeve joint hole; 14, the turnover motor; 15, the inner air cylinder; 16, the adjusting groove; 17, the installation clamping rod; 18, the fixed screw rod; 19, the auxiliary end rod; 20, the matching through hole. DETAILED DESCRIPTION

[0020] Please refer to Figure 1 In the embodiment of the utility model, a kind of identification machine's adjusting structure, including installation bottom block 1, the two side edges of installation bottom block 1 are horizontally symmetrical and fixedly connected with installation side strip 2, and the top surface of installation side strip 2 is evenly provided with fixed through hole 3, and the top end of installation bottom block 1 is horizontally butt joint with butt joint top block 4, the number of installation side strip 2 is two, and two installation side strip 2 are symmetrically and fixedly connected and arranged at the bottom end position of the two sides of installation bottom block 1, and fixed through hole 3 is all arranged in the top surface midline position of installation side strip 2 and is in the form of penetrating and horizontal arrangement, and the bottom surface center position of butt joint top block 4 is butt joint and arranged in the top opening end of top clamping hole 11, and the top surface of butt joint top block 4 is vertically and upwards symmetrically welded with vertical top block 5, and telescopic top rod 6 is horizontally arranged between vertical top block 5 side edge, and turnover shaft rod 7 is symmetrically and fixedly connected in the side edge of telescopic top rod 6, and the number of vertical top block 5 is two, and two vertical top block 5 are symmetrically arranged, and the bottom end of vertical top block 5 is fixedly connected and arranged in the top surface midline two end positions of butt joint top block 4, and telescopic top rod 6 is connected and arranged in the inner side edge of sleeve joint hole 13 by turnover shaft rod 7, and one side edge of one vertical top block 5 is fixedly connected with side fixed box 8, and one end of telescopic top rod 6 is butt joint with identification machine 9;

[0021] Please refer to Figures 2-4The utility model discloses an adjusting structure of identification machine, wherein the inner side edge of the installation bottom block 1 is fixedly connected with the steering motor 10, the top end of the installation bottom block 1 is provided with the top joint hole 11, the side edge of the identification machine 9 is butt jointed and arranged at the side edge position of the auxiliary end rod 19, the top joint hole 11 is arranged at the top end center position of the installation bottom block 1, and the output end of the steering motor 10 extends vertically upwards to the inner side edge of the top joint hole 11, and the extension end is fixedly connected and arranged at the bottom end center position of the bottom joint block 12, the bottom surface of the butt joint top block 4 is fixedly welded with the bottom joint block 12, the side edge of the vertical top block 5 is provided with the sleeve joint hole 13, the inner side edge of the side fixed box 8 is horizontally fixedly connected with the turnover motor 14, the inner side edge of the telescopic top rod 6 is horizontally fixedly connected with the inner air cylinder 15, one end of the telescopic top rod 6 is symmetrically provided with the adjusting groove 16, the bottom end of the bottom joint block 12 is butt jointed and arranged at the inner side edge of the top joint hole 11, the output end of the turnover motor 14 horizontally extends and is fixedly connected and arranged at one end position of the turnover shaft rod 7, the adjusting groove 16 is symmetrically arranged at the midline position of one end of the telescopic top rod 6, one end of the adjusting groove 16 penetrates the side wall of the telescopic top rod 6 and extends to the outside and is in the form of an opening, the inner side wall of the adjusting groove 16 is uniformly provided with the screw hole structure, the installation clamping rod 17 is inserted into the inner side edge of the adjusting groove 16, the side edge of the installation clamping rod 17 is inserted with the fixed screw rod 18, one end of the installation clamping rod 17 is fixedly welded with the auxiliary end rod 19, the side edge of the auxiliary end rod 19 is uniformly provided with the matched through hole 20, the fixed screw rod 18 penetrates the through hole close to one end of the side edge of the installation clamping rod 17, and the extension end is correspondingly screw-fixedly connected and arranged in the inner side screw hole of the adjusting groove 16, one end of the installation clamping rod 17 is fixedly connected and arranged at the side edge center position of the auxiliary end rod 19, and the matched through hole 20 is horizontally arranged in the form of a Chinese character "yi" at the side edge midline position of the auxiliary end rod 19.

[0022] The working principle of the utility model is:

[0023] The bottom end of the installation bottom block 1 is butted and arranged at a designated position, the installation side strip 2 is fixed and installed by penetrating the fixing through hole 3 with a bolt, then the two installation clamping rods 17 are pulled inside the adjusting groove 16, the two auxiliary end rods 19 are adjusted to a designated interval, the installation clamping rod 17 is fixed and connected inside the adjusting groove 16 by the fixing screw rod 18, the back of the identification machine 9 is butted and arranged at the side of the auxiliary end rod 19, the fixing installation operation is performed by penetrating the matching through hole 20 with a bolt, after the identification machine is installed, if the angle adjustment is needed, the steering motor 10 is controlled to rotate, the bottom clamping block 12 is driven by the output end to rotate inside the top clamping hole 11, the butted top block 4 drives the identification machine to be horizontally steered and adjusted, the telescopic top rod 6 is turned to a designated angle under the rotation of the turnover motor 14, the vertical adjustment of the identification machine 9 is satisfied, and the identification machine can be adjusted in distance under the telescopic movement of the output end of the inner air cylinder 15.

[0024] The above is only a preferred embodiment of the present application, but the protection scope of the present application is not limited to this. Any skilled person in the art can make equivalent replacement or change according to the technical scheme and the inventive concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. An adjusting structure of an identification machine, comprising a mounting base block (1), characterized in that, The both sides of the installation bottom block (1) are horizontally and symmetrically fixedly connected with installation side strips (2), the top surface of the installation side strip (2) is uniformly provided with a fixed through hole (3), the top end of the installation bottom block (1) is horizontally butt-jointed with a butt-jointed top block (4), the top surface of the butt-jointed top block (4) is symmetrically welded with vertical top blocks (5) vertically upward, the side edges of the vertical top blocks (5) are horizontally provided with telescopic top rods (6), the side edges of the telescopic top rod (6) are symmetrically fixedly connected with turnover shaft rods (7), one side of one of the vertical top blocks (5) is fixedly connected with a side fixed box (8), one end of the telescopic top rod (6) is butt-jointed with an identification machine (9), the inner side edge of the installation bottom block (1) is fixedly clamped with a steering motor (10), the top end of the installation bottom block (1) is provided with a top clamping hole (11), the bottom surface of the butt-jointed top block (4) is fixedly welded with a bottom clamping block (12), the side edge of the vertical top block (5) is provided with a sleeving hole (13), the inner side edge of the side fixed box (8) is horizontally fixedly connected with a turnover motor (14), the inner side edge of the telescopic top rod (6) is horizontally fixedly connected with an inner air cylinder (15), one end of the telescopic top rod (6) is symmetrically provided with an adjusting groove (16), the inner side edge of the adjusting groove (16) is inserted with an installation clamping rod (17), the side edge of the installation clamping rod (17) is inserted with a fixed screw rod (18), one end of the installation clamping rod (17) is fixedly welded with an auxiliary end rod (19), the side edge of the auxiliary end rod (19) is uniformly provided with a matching through hole (20).

2. The adjusting structure of a recognition machine according to claim 1, characterized in that, The number of the installation side strips (2) is two, and the two installation side strips (2) are symmetrically fixedly connected and arranged at the bottom end positions of the two sides of the installation bottom block (1), the fixed through holes (3) are all arranged in the through type and horizontally arranged in the top surface center positions of the installation side strips (2), and the bottom surface center positions of the butt-jointed top blocks (4) are butt-jointed and arranged at the top opening ends of the top clamping holes (11).

3. The adjusting structure of a recognition machine according to claim 1, characterized in that, The number of the vertical top blocks (5) is two, and the two vertical top blocks (5) are symmetrically arranged in parallel with each other, the bottom ends of the vertical top blocks (5) are fixedly connected and arranged at the top surface center two end positions of the butt-jointed top block (4), and the telescopic top rods (6) are connected and arranged in the inner side edges of the sleeving holes (13) through the turnover shaft rods (7).

4. The adjusting structure of a recognition machine according to claim 1, wherein, The side edge of the identification machine (9) is butt-jointed and arranged at the side edge position of the auxiliary end rod (19), the top clamping hole (11) is arranged at the top end center position of the installation bottom block (1), and the output end of the steering motor (10) is vertically extended to the inner side edge of the top clamping hole (11), and the extended end is fixedly connected and arranged at the bottom end center position of the bottom clamping block (12).

5. The adjusting structure of a recognition machine according to claim 1, wherein, The bottom end of the bottom clamping block (12) is clamped and arranged at the inner side edge of the top clamping hole (11), the output end of the turnover motor (14) is horizontally extended and fixedly connected and arranged at one end position of the turnover shaft rod (7), the adjusting groove (16) is symmetrically arranged at the end center position of the telescopic top rod (6), one end of the adjusting groove (16) is extended to the outside in the form of an opening through the side wall of the telescopic top rod (6), and the inner side walls of the adjusting grooves (16) are uniformly provided with screw hole structures.

6. The adjusting structure of a recognition machine according to claim 1, wherein, The fixed screw rod (18) penetrates the through hole near one end of the side of the mounting clamping rod (17), and the extended end is fixedly connected to the inside of the screw hole on the inner side of the adjusting groove (16). One end of the mounting clamping rod (17) is fixedly connected to the side center position of the auxiliary end rod (19), and the cooperation through hole (20) is arranged in a horizontal line shape at the side center position of the auxiliary end rod (19).