Adjustable multidirectional infrared image acquisition frame

By combining pins, springs, and magnets, the problem of traditional infrared image acquisition brackets being difficult to adjust quickly at multiple angles is solved, enabling rapid multi-directional adjustment and stable fixation of the infrared image acquisition device, thus improving ease of use and reliability.

CN224033453UActive Publication Date: 2026-03-24HAO JING COLLEGE OF SHAANXI UNIV OF SCI & TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Traditional infrared image acquisition brackets are difficult to adjust quickly at multiple angles, which reduces their ease of use.

Method used

The design employs a combination of pins, springs, and magnets. By pulling the handle, the pins are separated from the sockets, enabling multi-directional adjustment of the infrared image acquisition device. The spring's rebound force and magnetic attraction are used for quick fixation.

Benefits of technology

It enables rapid multi-directional adjustment and stable fixation of the infrared image acquisition device, improving ease of use and reliability.

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Abstract

The utility model discloses an adjustable multidirectional infrared image acquisition frame, which comprises a first supporting column, first insertion holes are uniformly formed in the outer side wall of the first supporting column, a second supporting column is placed at the top of the first supporting column, second insertion holes are uniformly formed in the left side and the right side of the second supporting column, and the second insertion holes are uniformly formed in the left side and the right side of the second supporting column. The left side and the right side of the second supporting column are each provided with a set of pulling plates, the opposite sides of the two sets of pulling plates are each provided with a set of first plug pins and a set of second plug pins, and first springs and second springs are placed on the outer rings of the first plug pins and the outer rings of the second plug pins correspondingly. According to the acquisition frame, after the handle is pulled outwards to drive the plug pin to be separated from the plug hole, the infrared image acquisition device can be adjusted in the horizontal direction and adjusted in the front-back angle inclination mode, and therefore the multi-direction rapid adjustment effect of the infrared image acquisition device is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to image acquisition technical field, concretely is adjustable multi -direction infrared image acquisition frame. BACKGROUND

[0002] Infrared image collector needs to be fixed and installed through the support when using, however, the traditional support on the market needs to adjust the angle according to the collection angle of infrared image collector when installing, the angle adjustment of traditional support is mostly realized angle adjustment fixed through nut and bolt, but the support is difficult to realize quick multi -angle adjustment fixed effect through nut and bolt, thereby reduce the use convenience of support, aiming at above -mentioned situation, carry out technical innovation on the basis of existing infrared image acquisition frame. CONTENT OF UTILITY MODEL

[0003] The utility model is provided with adjustable multi -direction infrared image acquisition frame to solve the problems in the above background.

[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of adjustable multi -direction infrared image acquisition frame, comprising:

[0005] First support column, the outer side wall of the first support column is evenly provided with first jack, the top of the first support column is placed with second support column, the left and right sides of the second support column are evenly provided with second jack, the left and right sides of the second support column are placed with a group of pull plate, the opposite side of two groups of pull plate is provided with a group of first plug pin and a group of second plug pin, the outer circle of the first plug pin and second plug pin is placed with first spring and second spring respectively, the side of the first plug pin and second plug pin away from pull plate is inserted in second jack and first jack respectively.

[0006] Preferably, the top of the first support column is provided with a limiting groove, the limiting groove is provided with a limiting column, the top of the limiting column is provided with a concave frame, the second support column is arranged in the concave frame, and a group of handles are arranged on the opposite sides of the two groups of pull plates.

[0007] Preferably, the inner side wall of the concave frame is provided with a group of limiting holes on the left and right sides, the left and right sides of the second support column are provided with a group of rotating shafts, the rotating shafts are arranged in the limiting holes, and the second jacks are evenly distributed in the outer circle of the rotating shafts in the form of annular array.

[0008] Preferably, the left and right sides of the concave frame are provided with a group of connecting plates, the outer side of the connecting plate and the concave frame is provided with a first through hole, the first through hole corresponds to the second jack, the outer side of the connecting plate is provided with a second through hole, and the second through hole corresponds to the first jack.

[0009] Preferably, the two groups of connecting plates are located between the two groups of pull plates, the first spring and the second spring are fixedly arranged between the connecting plates and the pull plates, the first bolt is inserted into the second insertion hole through the first through hole on the side away from the pull plate, and the second bolt is inserted into the first insertion hole through the second through hole on the side away from the pull plate.

[0010] Preferably, the first bolt is embedded with a first magnetic block on the side away from the pull plate, the first magnetic block is magnetically attracted in the second insertion hole, the second bolt is embedded with a second magnetic block on the side away from the pull plate, and the second magnetic block is magnetically attracted in the first insertion hole.

[0011] Preferably, the bottom of the first supporting column is provided with a base, and mounting holes are uniformly arranged on the top of the base.

[0012] Preferably, the top of the second supporting column is provided with a supporting plate, and an infrared image collector is fixedly arranged on the top of the supporting plate through bolts.

[0013] Compared with the prior art, the utility model has the advantages that:

[0014] The utility model discloses, pull out the handle and drive the bolt to separate from the insertion hole, at this moment, the infrared image collector can be adjusted in the horizontal direction and the front and back angle inclination, so that the multi -directional quick adjustment effect of infrared image collector is realized.

[0015] When the horizontal direction and the front and back inclination angle of the infrared image collector are adjusted, the handle is loosened, the spring is used to drive the bolt to insert into the insertion hole, so that the quick fixing effect of direction adjustment is realized, and the magnetic attraction force of the magnetic block can improve the insertion stability of the bolt, so that the use reliability of the device is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0016] Fig. 1 It is a structure schematic view of the utility model discloses a adjustable multi -directional infrared image acquisition frame;

[0017] Fig. 2 It is the front face partial section view of the utility model discloses a adjustable multi -directional infrared image acquisition frame;

[0018] Fig. 3 It is the right side partial section view of the utility model discloses a adjustable multi -directional infrared image acquisition frame.

[0019] In the drawing: 1, base;11, first supporting column;12, concave frame;13, second supporting column;14, connecting plate;141, pull plate;15, handle;16, first spring;17, second spring;18, supporting plate;19, infrared image collector;2, limiting column;21, pivot;161, first bolt;162, first magnetic block;171, second bolt;172, second magnetic block. DETAILED DESCRIPTION

[0020] The technical solutions in the embodiments of the utility model will be apparently and completely described in connection with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all the other embodiments obtained by the ordinary skilled in the art without creative labor belong to the scope of protection of the utility model.

[0021] Please refer to Figs. 1-3 A adjustable multi-direction infrared image acquisition frame, including first support column 11, the bottom of first support column 11 is fixedly provided with base 1, the top of base 1 is uniformly penetrated and is provided with mounting hole, the mounting hole of base 1 is penetrated by expansion bolt, and is inserted into bolt hole on the outside plane, so as to complete the installation of the device, the outer side wall of first support column 11 is uniformly provided with first jack, the top of first support column 11 is placed with second support column 13, the top of second support column 13 is fixedly provided with supporting plate 18, the top of supporting plate 18 is fixedly provided with infrared image collector 19 by bolt, the left and right sides of second support column 13 are uniformly provided with second jack, the left and right sides of second support column 13 are placed with a group of pull plate 141, the opposite sides of two groups of pull plate 141 are fixedly provided with a group of first bolt 161 and a group of second bolt 171, the outer circle of first bolt 161 and second bolt 171 is placed with first spring 16 and second spring 17 respectively, the side, away from pull plate 141, of first bolt 161 and second bolt 171 is inserted into second jack and first jack respectively.

[0022] The top of first support column 11 is provided with limiting recess, limiting recess is rotationally provided with limiting column 2, the top of limiting column 2 is fixedly provided with concave frame 12, concave frame 12 is rotated by limiting column 2, second support column 13 is rotationally arranged in concave frame 12, the opposite sides of two groups of pull plate 141 are fixedly provided with a group of handle 15, handle 15 is pulled outwards to drive pull plate 141 to move outwards, first bolt 161 and second bolt 171 are synchronously moved outwards by pull plate 141, when second bolt 171 moves outwards and separates from first jack of first support column 11, concave frame 12 can be rotated horizontally at this time, so as to drive infrared image collector 19 above concave frame 12 to adjust horizontally, when handle 15 is continuously pulled outwards to make first bolt 161 separate from second jack of second support column 13, second support column 13 can be inclined forward and backward around pivot 21 at this time, so as to drive infrared image collector 19 to adjust forward and backward angle inclination by second support column 13.

[0023] The left and right sides of the inner side wall of the concave frame 12 are provided with a group of limiting holes, and the left and right sides of the second supporting column 13 are fixedly provided with a group of rotating shafts 21. The rotating shafts 21 are rotatably arranged in the limiting holes, and the second supporting column 13 is supported to rotate through the rotating shafts 21. The second insertion holes are uniformly distributed in the outer circle of the rotating shafts 21 in a ring array. The left and right sides of the concave frame 12 are fixedly provided with a group of connecting plates 14. First through holes are provided through the outer sides of the connecting plates 14 and the concave frame 12. The first through holes correspond to the second insertion holes. Second through holes are provided through the outer sides of the connecting plates 14. The second through holes correspond to the first insertion holes. The two groups of connecting plates 14 are located between the two groups of pull plates 141. The first spring 16 and the second spring 17 are fixedly arranged between the connecting plates 14 and the pull plates 141. The first bolt 161 away from the pull plate 141 side penetrates the first through hole and is inserted into the second insertion hole. The second bolt 171 away from the pull plate 141 side penetrates the second through hole and is inserted into the first insertion hole. The rebound force of the first spring 16 drives the first bolt 161 to be inserted into the second insertion hole of the second supporting column 13 through the pull plate 141, so as to fix the front and rear inclination angles of the second supporting column 13. Similarly, the rebound force of the second spring 17 drives the second bolt 171 to be inserted into the first insertion hole of the first supporting column 11 through the pull plate 141, so as to fix the connecting plate 14 on the outer side of the base 1, and then fix the horizontal angle of the concave frame 12 and the infrared image collector 19 above the concave frame 12. The first magnetic block 162 is embedded on the side of the first bolt 161 away from the pull plate 141, and the first magnetic block 162 is magnetically attracted in the second insertion hole. The second magnetic block 172 is embedded on the side of the second bolt 171 away from the pull plate 141, and the second magnetic block 172 is magnetically attracted in the first insertion hole.

[0024] Working principle: the expansion bolts are used to penetrate the mounting holes of the base 1 and are inserted into the bolt holes on the external plane, so as to complete the installation of the device. The handle 15 is pulled outward to drive the pull plate 141 to move outward, and the first bolt 161 and the second bolt 171 are synchronously moved outward through the pull plate 141. When the second bolt 171 moves outward and separates from the first insertion hole of the first supporting column 11, the concave frame 12 can be horizontally rotated at this time, so as to drive the infrared image collector 19 above the concave frame 12 to adjust the horizontal direction. When the handle 15 is continuously pulled outward to make the first bolt 161 separate from the second insertion hole of the second supporting column 13, the second supporting column 13 can be inclined forward and backward at this time with the rotating shaft 21 as the center, so as to drive the infrared image collector 19 to adjust the forward and backward inclination angles through the second supporting column 13.

[0025] When the horizontal direction and the front and back inclination angle of the infrared image collector 19 are adjusted, the second plug 171 and the first plug 161 are respectively aligned with the first insertion hole on the outer side of the first support column 11 and the second insertion hole on the outer side of the second support column 13, the handle 15 is loosened, at this time, the first plug 161 is inserted into the second insertion hole of the second support column 13 by the elastic force of the first spring 16 through the pull plate 141, so as to fix the front and back inclination angle of the second support column 13, and the second plug 171 is inserted into the first insertion hole of the first support column 11 by the elastic force of the second spring 17 through the pull plate 141, so as to fix the connecting plate 14 on the outer side of the base 1, and then fix the horizontal angle of the concave frame 12 and the infrared image collector 19 above the concave frame 12, the first plug 161 is magnetically attracted in the second insertion hole of the second support column 13 through the first magnetic block 162, so as to improve the insertion stability of the first plug 161, and the second plug 171 is magnetically attracted in the first insertion hole of the first support column 11 through the second magnetic block 172, so as to improve the insertion stability of the second plug 171.

[0026] The above embodiments are only for illustrating the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and implement it, and cannot limit the protection scope of the present application, and any equivalent changes or modifications according to the spirit and essence of the present application should be covered within the protection scope of the present application.

Claims

1. An adjustable multi-directional infrared image acquisition frame, characterized in that, include: The first support column (11) has a first insertion hole evenly provided on its outer side wall. The top of the first support column (11) is provided with a second support column (13). The left and right sides of the second support column (13) are evenly provided with second insertion holes. A set of pull plates (141) is provided on both the left and right sides of the second support column (13). A set of first pins (161) and a set of second pins (171) are provided on the opposite sides of the two sets of pull plates (141). A first spring (16) and a second spring (17) are respectively provided on the outer ring of the first pin (161) and the second pin (171). The side of the first pin (161) and the second pin (171) away from the pull plate (141) is inserted into the second insertion hole and the first insertion hole, respectively.

2. The adjustable multi-directional infrared image acquisition frame according to claim 1, characterized in that: The first support column (11) has a limiting groove at its top, and a limiting column (2) is provided in the limiting groove. A concave frame (12) is provided at the top of the limiting column (2). The second support column (13) is provided in the concave frame (12). A set of handles (15) is provided on the opposite sides of the two sets of pull plates (141).

3. The adjustable multi-directional infrared image acquisition frame according to claim 2, characterized in that: The inner sidewall of the concave frame (12) is provided with a set of limiting holes on both the left and right sides. The second support column (13) is provided with a set of rotating shafts (21) on both the left and right sides. The rotating shafts (21) are set in the limiting holes. The second insertion holes are evenly distributed in a ring array on the outer ring of the rotating shafts (21).

4. The adjustable multi-directional infrared image acquisition frame according to claim 3, characterized in that: A set of connecting plates (14) is provided on both the left and right sides of the concave frame (12). A first through hole is provided through the outer side of the connecting plate (14) and the concave frame (12), and the first through hole corresponds to the second insertion hole. A second through hole is provided through the outer side of the connecting plate (14), and the second through hole corresponds to the first insertion hole.

5. An adjustable multi-directional infrared image acquisition frame according to claim 4, characterized in that: The two sets of connecting plates (14) are located between the two sets of pull plates (141). The first spring (16) and the second spring (17) are fixedly arranged between the connecting plate (14) and the pull plate (141). The side of the first pin (161) away from the pull plate (141) passes through the first through hole and is inserted into the second socket. The side of the second pin (171) away from the pull plate (141) passes through the second through hole and is inserted into the first socket.

6. The adjustable multi-directional infrared image acquisition frame according to claim 1, characterized in that: The first pin (161) is fitted with a first magnet (162) on the side away from the pull plate (141), and the first magnet (162) is magnetically attracted in the second socket. The second pin (171) is fitted with a second magnet (172) on the side away from the pull plate (141), and the second magnet (172) is magnetically attracted in the first socket.

7. An adjustable multi-directional infrared image acquisition frame according to claim 1, characterized in that: The bottom of the first support column (11) is provided with a base (1), and the top of the base (1) is uniformly provided with mounting holes.

8. An adjustable multi-directional infrared image acquisition frame according to claim 1, characterized in that: The top of the second support column (13) is provided with a support plate (18), and an infrared image collector (19) is fixedly installed on the top of the support plate (18) by bolts.