CN220891567U - Industrial camera lens protection bracket - Google Patents

Industrial camera lens protection bracket Download PDF

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Publication number
CN220891567U
CN220891567U CN202322579596.2U CN202322579596U CN220891567U CN 220891567 U CN220891567 U CN 220891567U CN 202322579596 U CN202322579596 U CN 202322579596U CN 220891567 U CN220891567 U CN 220891567U
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China
Prior art keywords
sliding
assembly
industrial camera
supporting
fixedly connected
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CN202322579596.2U
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Chinese (zh)
Inventor
曾微维
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Medway Technology Jiangsu Co ltd
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Medway Technology Jiangsu Co ltd
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Priority to CN202322579596.2U priority Critical patent/CN220891567U/en
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Abstract

The utility model relates to the technical field of industrial cameras, in particular to an industrial camera lens protection bracket. The camera comprises an industrial camera body, wherein the end part of the industrial camera body is movably connected with a lens body, the outer wall of the lens body is provided with an annular groove, and the inside of the groove of the lens body is movably connected with a clamping assembly; the clamping assembly both sides all are equipped with the spout, and the inside equal swing joint of two spouts of clamping assembly has sliding assembly, sliding assembly outer wall fixedly connected with telescopic assembly, telescopic assembly tip fixedly connected with supporting component. According to the lens body, the clamping assembly is arranged in the annular groove of the lens body, the positions of the telescopic assembly and the supporting assembly are adjusted by adjusting the positions of the sliding assembly on the clamping assembly, the length of the supporting assembly is adjusted by adjusting the telescopic assembly, and the clamping assembly is supported by the supporting assembly, so that the clamping assembly supports and protects the lens body.

Description

Industrial camera lens protection bracket
Technical Field
The utility model relates to the technical field of industrial cameras, in particular to an industrial camera lens protection bracket.
Background
Industrial cameras are also commonly called video cameras, and compared with the traditional civil cameras (video cameras), the industrial cameras have the advantages of high image stability, high transmission capacity, high anti-interference capacity and the like. Industrial cameras are generally installed on machine pipelines to replace human eyes for measurement and judgment, digital image pickup targets are converted into image signals and transmitted to a special image processing system, and the image system performs various operations on the signals to extract characteristics of the targets, so that on-site equipment actions are controlled according to judgment results.
For industrial camera lenses, there are many prior art technologies, such as:
Chinese patent publication No. CN208999741U discloses an industrial camera lens connecting device, comprising: the base comprises a through cavity; the elastic sheet is arranged at the end part of the base and comprises a tooth sheet protruding along the radial direction of the containing cavity; the bayonet is arranged at the end part of the base and abuts against the elastic piece to enable the elastic piece to generate elastic deformation, the bayonet comprises a boss protruding in the radial direction of the containing cavity, the tooth piece and the boss are oppositely arranged to form a clamping groove, when the industrial camera lens is inserted into the containing cavity of the base and rotates along the screwing direction, the protrusion at the end part of the industrial camera lens is clamped in the clamping groove along the screwing direction to be connected with the industrial camera lens, the industrial camera lens can be taken out after rotating in the opposite direction, and the industrial camera lens can be disassembled and assembled conveniently and rapidly.
In the prior art, the lens on the industrial camera can be generally detached, and meanwhile, the lenses with different focal lengths can be installed on the industrial camera, but the existing industrial camera lens is not matched with a related protection device, and after the lens is detached, the lens is cylindrical, if the lens is not placed well, the lens is easy to collide with, so that the lens is damaged.
In view of this, the present utility model provides an industrial camera lens protective mount.
Disclosure of utility model
The utility model provides an industrial camera lens protection bracket which comprises an industrial camera body, wherein the end part of the industrial camera body is movably connected with a lens body, the outer wall of the lens body is provided with an annular groove, and the inside of the groove of the lens body is movably connected with a clamping assembly;
The clamping assembly is characterized in that sliding grooves are formed in two sides of the clamping assembly, sliding assemblies are movably connected inside the two sliding grooves of the clamping assembly, telescopic assemblies are fixedly connected to the outer walls of the sliding assemblies, and supporting assemblies are fixedly connected to the end parts of the telescopic assemblies.
As a further improvement of the technical scheme, the clamping assembly comprises a convex ring and a concave ring, the convex blocks at two ends of the convex ring are movably connected inside the grooves at two ends of the concave ring, the convex ring and the concave ring are movably connected inside the annular groove of the lens body, two supporting blocks are movably communicated between the convex ring convex blocks and the concave ring groove, elastic pieces are fixedly connected between the supporting blocks, sliding assemblies are movably connected inside sliding grooves of the convex ring and the concave ring, and the clamping assembly is used for driving the sliding assemblies to be connected to the outer wall of the lens body.
As a further improvement of the technical scheme, the sliding assembly comprises a sliding block, the outer walls at two ends of the sliding block are fixedly connected with sliding rods, the sliding block and the sliding rods are movably connected inside sliding grooves of the convex ring and the concave ring, the sliding rods penetrate out of the convex ring and are movably communicated with nuts on the outer walls of the concave ring, the outer walls of the sliding blocks are fixedly connected with telescopic assemblies, and the sliding assemblies are used for driving the telescopic assemblies to move.
As the further improvement of this technical scheme, the telescopic subassembly includes thick pole, thick pole fixed connection is at the slider outer wall, thick pole inside activity intercommunication has thin pole, thin pole outer wall fixedly connected with two protruding poles, the outer wall activity intercommunication that thick pole was worn out to protruding pole has the nut, thin pole tip fixedly connected with supporting component, the telescopic component is used for adjusting supporting component's length.
As a further improvement of the technical scheme, the supporting component comprises two support plates, a rotating rod is fixedly communicated between the support plates, two support rods are movably communicated with the outer wall of the rotating rod, and the supporting component is used for supporting the lens body.
Compared with the prior art, the utility model has the beneficial effects that:
The clamping assembly is arranged inside the annular groove of the lens body, the position of the sliding assembly on the clamping assembly is adjusted, the position of the telescopic assembly and the position of the supporting assembly are adjusted, the length of the supporting assembly is adjusted through the telescopic assembly, the clamping assembly is supported through the supporting assembly, and therefore the clamping assembly supports and protects the lens body.
Drawings
The utility model is described in more detail below, by way of example, with reference to the accompanying drawings, in which:
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of a lens structure according to the present utility model;
FIG. 3 is a schematic view of a bracket structure according to the present utility model;
FIG. 4 is a schematic view of a support structure according to the present utility model;
FIG. 5 is a schematic view of the structure of FIG. 3A according to the present utility model;
fig. 6 is a schematic view of a buckle structure according to the present utility model.
The meaning of each reference sign in the figure is: 1. an industrial camera body; 11. a lens body; 12. a clamping assembly; 120. a convex ring; 121. a concave ring; 122. a support block; 123. an elastic member; 13. a sliding assembly; 130. a slide block; 131. a slide bar; 14. a telescoping assembly; 140. thick rods; 141. a thin rod; 142. a protruding rod; 15. a support assembly; 150. a support plate; 151. a support rod; 152. and (5) rotating the rod.
Detailed Description
As shown in fig. 1-6, the device comprises an industrial camera body 1, wherein the end part of the industrial camera body 1 is movably connected with a lens body 11, the outer wall of the lens body 11 is provided with an annular groove, and the inside of the groove of the lens body 11 is movably connected with a clamping component 12;
Sliding grooves are formed in two sides of the clamping assembly 12, sliding assemblies 13 are movably connected inside the two sliding grooves of the clamping assembly 12, telescopic assemblies 14 are fixedly connected to the outer walls of the sliding assemblies 13, and supporting assemblies 15 are fixedly connected to the end parts of the telescopic assemblies 14;
Firstly, a specific structure of a clamping assembly 12 is disclosed, the clamping assembly 12 comprises a convex ring 120 and a concave ring 121, protruding blocks at two ends of the convex ring 120 are movably connected in grooves at two ends of the concave ring 121, the convex ring 120 and the concave ring 121 are movably connected in the grooves of the lens body 11, two supporting blocks 122 are movably communicated between the protruding blocks of the convex ring 120 and the grooves of the concave ring 121, elastic pieces 123 are fixedly connected between the two supporting blocks 122, sliding assemblies 13 are movably connected in sliding grooves of the convex ring 120 and the concave ring 121, the clamping assembly 12 is used for driving the sliding assemblies 13 to be connected to the outer wall of the lens body 11, the protruding blocks 120 and the concave ring 121 are placed in the grooves of the lens body 11, the elastic pieces 123 between the two supporting blocks 122 are driven to shrink by pressing the two supporting blocks 122, so that the two protruding blocks 122 shrink into the protruding blocks at two ends of the convex ring 120 are conveniently clamped in the grooves of the concave ring 121, the two supporting blocks 122 are driven to move from the inside the protruding blocks of the convex ring 120 to the grooves of the concave ring 121 through elastic force of the elastic pieces 123, and the concave ring 121 are connected with the concave ring 121;
According to the above disclosure for the specific structure of the sliding assembly 13, the sliding assembly 13 includes a sliding block 130, outer walls at two ends of the sliding block 130 are fixedly connected with sliding bars 131, the sliding block 130 and the sliding bars 131 are movably connected inside the sliding grooves of the convex ring 120 and the concave ring 121, the sliding bars 131 penetrate through nuts movably connected with the outer walls of the convex ring 120 and the concave ring 121, the outer walls of the sliding block 130 are fixedly connected with a telescopic assembly 14, the sliding assembly 13 is used for driving the telescopic assembly 14 to move, the positions of the sliding blocks 130 on the convex ring 120 and the concave ring 121 are adjusted by moving the two sliding bars 131 inside the sliding grooves of the convex ring 120 and the concave ring 121, the positions of the sliding bars 131 and the concave ring 121 are fixed by screwing the nuts on the outer walls of the sliding bars 131, and the positions of the sliding blocks 130 are fixed, so that the positions of the telescopic assembly 14 and the supporting assembly 15 are fixed;
According to the above disclosure for the specific structure of the telescopic assembly 14, the telescopic assembly 14 includes a thick rod 140, the thick rod 140 is fixedly connected to the outer wall of the slider 130, a thin rod 141 is movably connected to the inside of the thick rod 140, two convex rods 142 are fixedly connected to the outer wall of the thin rod 141, nuts are movably connected to the outer wall of the thin rod 142 penetrating through the thick rod 140, a supporting assembly 15 is fixedly connected to the end of the thin rod 141, the telescopic assembly 14 is used for adjusting the length of the supporting assembly 15, and the thin rod 141 is driven to move inside the thick rod 140 by moving the convex rods 142 inside the sliding grooves of the thick rod 140, and the positions between the convex rods 142 and the thick rod 140 are fixed by tightening the nuts on the outer wall of the convex rods 142, so that the position of the thin rod 141 inside the thick rod 140 is fixed, and the length of the supporting assembly 15 is convenient to fix;
According to the above disclosure of the specific structure of the support assembly 15, the support assembly 15 includes two support plates 150, a rotating rod 152 is fixedly connected between the two support plates 150, two support rods 151 are movably connected to the outer wall of the rotating rod 152, the support assembly 15 is used for supporting the lens body 11, the two support rods 151 rotate at the outer wall of the rotating rod 152, so that the two support rods 151 are unfolded and supported on the ground, and the telescopic assembly 14 is supported by the two support rods 151, so that the sliding assembly 13 and the clamping assembly 12 are supported simultaneously, and the clamping assembly 12 is supported and protected conveniently.
The improvement of the embodiment is that: the convex ring 120 and the concave ring 121 are placed on the temporal part of the groove of the lens body 11, the elastic piece 123 between the two supporting blocks 122 is driven to contract by pressing the two supporting blocks 122, so that the two supporting blocks 122 are contracted into the convex blocks at two ends of the convex ring 120, the two convex blocks of the convex ring 120 are conveniently clamped in the groove of the concave ring 121, the elastic piece 123 elastically rebounds to drive the two supporting blocks 122 to move from the inside of the convex blocks of the convex ring 120 to the inside of the groove of the concave ring 121, the convex ring 120 and the concave ring 121 are connected, the position of the sliding block 130 on the convex ring 120 and the concave ring 121 is regulated by moving the two sliding rods 131 in the sliding grooves of the convex ring 120 and the concave ring 121, the positions between the sliding rods 131 and the convex ring 120 and the concave ring 121 are fixed by screwing nuts on the outer walls of the sliding rods 131, the position of the sliding block 130 is fixed, so that the positions of the telescopic component 14 and the supporting component 15 are fixed, the telescopic component 14 moves in a chute of the thick rod 140 through the convex rod 142 to drive the thin rod 141 to move in the thick rod 140, the position between the convex rod 142 and the thick rod 140 is fixed by screwing a nut on the outer wall of the convex rod 142, so that the position of the thin rod 141 in the thick rod 140 is fixed, the length of the supporting component 15 is conveniently fixed, the supporting component 15 rotates at the outer wall of the rotating rod 152 through the two supporting rods 151, the two supporting rods 151 are unfolded and supported on the ground, the telescopic component 14 is supported through the two supporting rods 151, so that the sliding component 13 and the clamping component 12 are conveniently supported simultaneously, and the clamping component 12 is conveniently supported and protected on the lens body 11;
to sum up, the working principle of the scheme is as follows:
The clamping assembly 12 is arranged in the annular groove of the lens body 11, the clamping assembly 12 is used for placing the convex ring 120 and the concave ring 121 in the temporal part of the groove of the lens body 11, the elastic piece 123 between the two supporting pieces 122 is driven to contract by pressing the two supporting pieces 122, so that the two supporting pieces 122 are contracted into the convex blocks at the two ends of the convex ring 120, the two convex blocks of the convex ring 120 are conveniently clamped in the groove of the concave ring 121, the elastic piece 123 is used for springing back, the two supporting pieces 122 are driven to move from the convex blocks of the convex ring 120 into the groove of the concave ring 121, the convex ring 120 and the concave ring 121 are connected, the positions of the telescopic assembly 14 and the supporting assembly 15 are adjusted by adjusting the positions of the sliding assembly 13 on the clamping assembly 12, the sliding assembly 13 moves in the sliding grooves of the convex ring 120 and the concave ring 121 through the two sliding rods 131, the position of the sliding block 130 on the convex ring 120 and the concave ring 121 is adjusted, the nut is screwed on the outer wall of the sliding rod 131, the position between the sliding rod 131 and the convex ring 120 and the concave ring 121 is fixed, the position of the sliding block 130 is fixed, the position of the telescopic component 14 and the position of the supporting component 15 are fixed, the length of the supporting component 15 is adjusted by adjusting the telescopic component 14, the telescopic component 14 moves inside the sliding groove of the thick rod 140 through the convex rod 142 to drive the thin rod 141 to move inside the thick rod 140, the position between the convex rod 142 and the thick rod 140 is fixed by screwing the nut on the outer wall of the convex rod 142, the position of the thin rod 141 inside the thick rod 140 is fixed, the length of the supporting component 15 is conveniently fixed, the clamping component 12 is supported through the supporting component 15, the clamping component 12 supports and protects the lens body 11, the supporting component 15 rotates at the outer wall of the rotating rod 152 through the two supporting rods 151, so that the two supporting rods 151 are unfolded and supported on the ground, the telescopic component 14 is supported through the two supporting rods 151, the sliding component 13 and the clamping component 12 are supported simultaneously, and the clamping component 12 is supported and protected on the lens body 11 conveniently.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the above-described embodiments, and that the above-described embodiments and descriptions are only preferred embodiments of the present utility model, and are not intended to limit the utility model, and that various changes and modifications may be made therein without departing from the spirit and scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (5)

1. An industrial camera lens protection bracket, includes industrial camera body (1), its characterized in that: the end part of the industrial camera body (1) is movably connected with a lens body (11), an annular groove is formed in the outer wall of the lens body (11), and a clamping assembly (12) is movably connected in the groove of the lens body (11);
the two sides of the clamping assembly (12) are respectively provided with a sliding groove, sliding assemblies (13) are movably connected inside the two sliding grooves of the clamping assembly (12), telescopic assemblies (14) are fixedly connected to the outer walls of the sliding assemblies (13), and supporting assemblies (15) are fixedly connected to the end parts of the telescopic assemblies (14).
2. The industrial camera lens protective mount of claim 1, wherein: the clamping assembly (12) comprises a convex ring (120) and a concave ring (121), protruding blocks at two ends of the convex ring (120) are movably connected inside grooves at two ends of the concave ring (121), the convex ring (120) and the concave ring (121) are movably connected inside annular grooves of the lens body (11), two supporting blocks (122) are movably communicated between the protruding blocks (120) and the concave ring (121) grooves, elastic pieces (123) are fixedly connected between the supporting blocks (122), sliding assemblies (13) are movably connected inside sliding grooves of the convex ring (120) and the concave ring (121), and the clamping assembly (12) is used for driving the sliding assemblies (13) to be connected to the outer wall of the lens body (11).
3. The industrial camera lens protective mount of claim 2, wherein: the sliding assembly (13) comprises a sliding block (130), sliding rods (131) are fixedly connected to the outer walls of two ends of the sliding block (130), the sliding block (130) and the sliding rods (131) are movably connected inside sliding grooves of the convex ring (120) and the concave ring (121), the sliding rods (131) penetrate out of the convex ring (120) and are movably communicated with the outer walls of the concave ring (121) to form nuts, the outer walls of the sliding block (130) are fixedly connected with telescopic assemblies (14), and the sliding assembly (13) is used for driving the telescopic assemblies (14) to move.
4. An industrial camera lens protective mount as defined in claim 3, wherein: the telescopic component (14) comprises a thick rod (140), the thick rod (140) is fixedly connected to the outer wall of the sliding block (130), a thin rod (141) is movably connected to the inner portion of the thick rod (140), two protruding rods (142) are fixedly connected to the outer wall of the thin rod (141), nuts are movably connected to the outer wall of the protruding rods (142) penetrating out of the thick rod (140), a supporting component (15) is fixedly connected to the end portion of the thin rod (141), and the telescopic component (14) is used for adjusting the length of the supporting component (15).
5. The industrial camera lens protective mount of claim 4, wherein: the support assembly (15) comprises two support plates (150), a rotating rod (152) is fixedly communicated between the two support plates (150), two support rods (151) are movably communicated with the outer wall of the rotating rod (152), and the support assembly (15) is used for supporting the lens body (11).
CN202322579596.2U 2023-09-22 2023-09-22 Industrial camera lens protection bracket Active CN220891567U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322579596.2U CN220891567U (en) 2023-09-22 2023-09-22 Industrial camera lens protection bracket

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322579596.2U CN220891567U (en) 2023-09-22 2023-09-22 Industrial camera lens protection bracket

Publications (1)

Publication Number Publication Date
CN220891567U true CN220891567U (en) 2024-05-03

Family

ID=90870660

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322579596.2U Active CN220891567U (en) 2023-09-22 2023-09-22 Industrial camera lens protection bracket

Country Status (1)

Country Link
CN (1) CN220891567U (en)

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