Point light source detector
By designing a point light source detector with a mobile platform and a pillar structure, flexible parts are used to support the glass, and the angle adjustment is achieved, which solves the problem of fixed light projection angle when detecting the glass, and improves the detection efficiency and quality.
Patent Information
- Application Number
- CN202421441320.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-21
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-06-21
AI Technical Summary
In glass detection, due to the fixed glass placing frame, the light projection angle of the point light source is fixed, which affects the detection quality, and is prone to missed inspection, affecting the glass quality.
A point light source detector is designed, including a mobile platform, a pillar structure and a placement frame. The placement frame supports glass through the first and second placement groups, uses flexible parts to avoid side damage to the glass, and achieves multi-directional adjustment of the glass angle through the coordination of the mobile platform and the support structure.
It improves the inspection efficiency and quality of inspectors, expands the observation range, and ensures the integrity of glass and the accuracy of inspection.
Smart Images

Figure CN223078212U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of glass detection, and particularly relates to a point light source detector. Background Art
[0002] In the field of glass production, the quality inspection requirements for raw glass sheets are getting higher and higher. Among them, for inspections such as shower marks, mainly inspectors use a point light source to directly irradiate the glass, and the inspectors stand at a certain position to detect problems such as shower marks on the glass.
[0003] However, since the glass placement rack is fixed, the angle of the light from the point light source projected onto the glass is fixed, which affects the inspection quality and is prone to missed inspections, thus affecting the glass quality. Summary of the Utility Model
[0004] The main purpose of the utility model is to provide a point light source detector, aiming to improve the glass inspection quality.
[0005] To achieve the above purpose, the point light source detector proposed by the utility model includes:
[0006] A mobile platform;
[0007] A support structure, which is arranged on the surface of the mobile platform;
[0008] A placement rack, which is rotatably connected to the support structure;
[0009] Wherein, the placement rack includes a first placement group and a second placement group. The first placement group and the second placement group enclose a placement space. Both the first placement group and the second placement group are provided with flexible members and support the glass.
[0010] Optionally, the first placement group and the second placement group are arranged at an angle, and flexible members are arranged on the opposite surfaces of the first placement group and the second placement group.
[0011] Optionally, the first placement group includes a first support rod and a plurality of second support rods. The first support rod is rotatably arranged on the support structure, and the plurality of second support rods are spaced and connected to the first support rod, and the first support rod and the second support rod are arranged at an angle.
[0012] Optionally, the second placement group includes a first bracket and a second bracket. Both the first bracket and the second bracket are arranged on the second support rod, and the first bracket and the second bracket are arranged at an angle, and the plane where the first bracket is located and the plane where the second support rod is located are arranged at an angle.
[0013] Optionally, the flexible member is provided on the side of the second strut away from the moving platform, and the flexible member is provided on the side of the first bracket away from the second bracket.
[0014] Optionally, both the first bracket and the second bracket are of a frame structure, and the second bracket abuts against the first bracket.
[0015] Optionally, the strut structure includes a column body and a rotating body. The column body is provided on the surface of the moving platform, the rotating body is rotatably connected to the end of the column body, and the second strut is fixed to the surface of the rotating body.
[0016] Optionally, a sample rack is provided on the side surface of the column body, and the sample rack is provided on one side where the opening of the placement space faces.
[0017] Optionally, the moving platform includes a support platform and at least one armrest member. The column body is provided on the surface of the support platform, the armrest member is provided on the side of the support platform, and a rolling structure for assisting the movement of the support platform is provided on the side surface of the support platform away from the column body.
[0018] Optionally, it further includes a background board and a point light source device, and the moving platform is arranged between the point light source device and the background board.
[0019] In the technical solution of the present utility model, by placing the glass in the placement space and being supported by the first placement group and the second placement group, the flexible members on the first placement group and the second placement group prevent damage to the side edges of the glass. The arrangement of the moving platform facilitates the large-distance movement control of the glass. The placement rack body is rotatably connected to the strut structure, which facilitates the fine adjustment of the glass angle. Furthermore, with the cooperation of the moving platform and the strut structure, multi-directional adjustment of the glass angle can be achieved, so as to expand the observation range of the inspector and improve the inspection efficiency and quality of the inspector. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.
[0021] Figure 1 It is a schematic structural diagram of an embodiment of the point light source detector of the present utility model;
[0022] Figure 2 It is a schematic structural diagram of another embodiment of the point light source detector of the present utility model;
[0023] Figure 3 This is a schematic structural diagram of another embodiment of the point light source detector of the present utility model.
[0024] Explanation of the reference numerals in the drawings:
[0025] Reference numeral Name Reference numeral Name 100 Point light source detector 10 Moving platform 11 Handrail member 12 Support platform 20 Strut structure 21 Sample holder 22 Cylinder 23 Rotating body 40 Placement rack 41 First placement group 411 Second strut 412 First strut 42 Second placement group 421 First bracket 422 Second bracket 43 Flexible member 30 Background board
[0026] The realization of the purpose, functional features and advantages of the present utility model will be further described with reference to the embodiments and the accompanying drawings. Specific embodiments
[0027] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0028] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present utility model are only used to explain the relative position relationship and movement conditions between components in a specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indications will also change accordingly.
[0029] In the present utility model, unless otherwise clearly defined and limited, terms such as "connection" and "fixation" should be understood in a broad sense. For example, "fixation" can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components or the interaction relationship between two components, unless otherwise clearly limited. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.
[0030] In addition, the descriptions such as "first" and "second" in the present utility model are only for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, the meaning of "and / or" appearing throughout the text is that it includes three parallel solutions. Taking "A and / or B" as an example, it includes solution A, solution B, or the solution that both A and B are satisfied. In addition, the technical solutions between the various embodiments can be combined with each other, but it must be based on the fact that those of ordinary skill in the art can implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such a combination of technical solutions does not exist and is not within the protection scope required by the present utility model.
[0031] The present utility model provides a point light source detector.
[0032] Referring to Figures 1 to 3 , Figure 1 which is a schematic structural diagram of an embodiment of the point light source detector of the present utility model; Figure 2 which is a schematic structural diagram of another embodiment of the point light source detector of the present utility model; Figure 3 which is a schematic structural diagram of still another embodiment of the point light source detector of the present utility model.
[0033] In an embodiment of the present utility model, the point light source detector 100; as Figures 1 to 3 shown, includes:
[0034] A moving platform 10;
[0035] A support structure 20, the support structure 20 is disposed on the surface of the moving platform 10;
[0036] A placement rack 40, the placement rack 40 is rotatably connected to the support structure 20;
[0037] Among them, the placement rack 40 includes a first placement group 41 and a second placement group 42, the first placement group 41 and the second placement group 42 enclose a placement space, and flexible members 43 are provided on both the first placement group 41 and the second placement group 42, and a support glass.
[0038] As Figure 1 shown, the moving platform 10 is used to support the support structure 20 and the placement rack 40, the placement rack 40 is used to support the glass, and when the glass to be supported needs to be moved, the moving platform 10 can be driven to meet the requirement of moving the glass.
[0039] It can be understood that the support structure 20 is used to support the placement rack 40 so that the placement rack 40 is disposed away from the moving platform 10, and further, the glass placed on the placement rack 40 can be driven to move according to requirements, so as to adjust the glass angle.
[0040] It can be understood that the placement rack 40 is rotatably connected to the support structure 20, so as to finely adjust the angle of the glass placed on the placement rack 40, so that the detector can better observe and detect.
[0041] It should be noted that the first placement group 41 and the second placement group 42 form the placement space to facilitate placing the glass in the placement space, and due to the arrangement of the flexible members 43, the glass is prevented from directly contacting the first placement group 41 and the second placement group 42, ensuring the integrity and quality of the glass.
[0042] The technical solution of the utility model is to place the glass in the placement space and be supported by the first placement group 41 and the second placement group 42, and to avoid damage to the side of the glass through the flexible member 43 on the first placement group 41 and the second placement group 42. The setting of the mobile platform 10 is convenient for controlling the large-distance movement of the glass, and the placement frame 40 is rotatably connected to the support structure 20, so as to facilitate fine-tuning of the angle of the glass. Furthermore, with the cooperation of the mobile platform 10 and the support structure 20, the multi-directional adjustment of the angle of the glass is realized, so as to expand the observation range of the inspector and improve the inspection efficiency and quality of the inspector.
[0043] In order to facilitate the vertical placement of the glass, the first placement group 41 and the second placement group 42 are arranged at an angle, and the flexible member 43 is arranged on the opposite surfaces of the first placement group 41 and the second placement group 42 .
[0044] like Figure 1 As shown, the placement space formed by the first placement group 41 and the second placement group 42 is used to place glass, so that the side edges of the glass are in contact with the surface of the first placement group 41, and the side surfaces of the glass are against the side surfaces of the second placement group 42, and the glass is in contact with the flexible member 43, that is, the support for the glass is achieved and the safety of the glass is guaranteed.
[0045] It should be noted that, in order to ensure the stability of glass placement, the plane where the first placement group 41 is located and the plane where the second placement group 42 is located are arranged at an angle, and the angle toward the placement space is an obtuse angle.
[0046] It can be understood that when the side of the glass leans against the side of the second placement group 42, since the second placement group 42 is tilted, the glass can be stably placed against the second placement group 42, thereby ensuring the stability of the glass placement and the accuracy of the detection when detecting and observing through a point light source.
[0047] It is understandable that the flexible member 43 is soft glue or rubber.
[0048] Optionally, the first placement group 41 includes a first support rod 412 and multiple second support rods 411, the first support rod 412 is rotatably arranged on the support structure 20, and multiple second support rods 411 are connected to the first support rod 412 at intervals, and the first support rod 412 and the second support rod 411 are arranged at an angle.
[0049] It can be understood that the first support rod 412 is provided on the support column structure 20, a plurality of the second support rods 411 are installed on the first support rod 412, and the first support rod 412 and the second support rods 411 are arranged at an angle, so that when the glass is placed on the first placement group 41, the side edges of the glass can contact a plurality of the second support rods 411, increasing the contact area with the first placement group 41 and improving the stability of the glass placement.
[0050] As Figures 1 to 3 shown, the number of the second support rods 411 is two, and the two second support rods 411 are respectively connected to both ends of the first support rod 412, and the surfaces of the first support rod 412 and the second support rods 411 are flush, ensuring the stability when supporting the glass.
[0051] To improve the structural stability of the first placement group 41, the number of the first support rods 412 is two, the two first support rods 412 are arranged at intervals, and both are connected to the support column structure 20, and the two second support rods 411 are both connected to both ends of the first support rod 412.
[0052] To ensure the stability of the structure of the second placement group 42, the second placement group 42 includes a first bracket 421 and a second bracket 422. The first bracket 421 and the second bracket 422 are both provided on the second support rod 411, and the first bracket 421 and the second bracket 422 are arranged at an angle, and the plane where the first bracket 421 is located and the plane where the second support rod 411 is located are arranged at an angle.
[0053] It can be understood that the first bracket 421 and the second bracket 422 are arranged at an angle and are both provided on the surface of the first placement group 41. A triangular structure is formed among the first placement group 41, the first bracket 421 and the second bracket 422 to ensure the stability of the structure of the second placement group 42 and the stability of supporting the glass.
[0054] Optionally, the flexible member 43 is provided on the side of the second support rod 411 facing away from the moving platform 10, and the flexible member 43 is provided on the side of the first bracket 421 facing away from the second bracket 422.
[0055] It can be understood that the flexible members 43 are all provided in the placement space and are all located on the surfaces of the first placement group 41 and the second placement group 42 to realize the support of the glass and avoid hard contact between the glass and the placement frame 40, which may affect the safety and quality of the glass.
[0056] Optionally, both the first bracket 421 and the second bracket 422 are frame structures, and the second bracket 422 abuts against the first bracket 421.
[0057] like Figures 1 to 3 As shown, the first bracket 421 and the second bracket 422 are both frame structures, so that the supporting plane of the second placement group 42 for the glass is square, so that large pieces of glass can be supported by the frame of the first bracket 421, ensuring the stability of the glass support.
[0058] In order to support the glass to the detection height, the support structure 20 includes a column 22 and a rotating body 23. The column 22 is arranged on the surface of the movable platform 10. The rotating body 23 is rotatably connected to the end of the column 22. The second support rod 312 is fixed to the surface of the rotating body 23.
[0059] It is understandable that the setting of the column 22 sets the placement frame 40 to the detection height to facilitate smooth detection.
[0060] It should be noted that, in order to ensure the height adjustment of the placement frame 40, the column 22 can be a telescopic structure.
[0061] It is understandable that the column 22 is an electrically-operated telescopic structure to achieve automatic adjustment of the height of the placement frame 40 to facilitate detection.
[0062] In order to ensure the fine-tuning of the rotation of the placement rack 40, the rotating body 23 is rotatably connected to one end of the column 22. When the glass is placed on the placement rack 40, the inspector manually moves the placement rack 40 to make the placement rack 40 and the rotating body 23 rotate around the column 22, thereby facilitating the adjustment of the direction of the glass.
[0063] In order to prevent the placement rack 40 from rotating automatically, a movable pin is provided on the rotating body 23, and the pin passes through the rotating body 23 and the column 22. When the rotating body 23 needs to be rotated, the pin is pulled out or inserted so that the rotating body 23 and the column 22 are relatively fixed.
[0064] In order to achieve comparison, a sample rack 21 is provided on the side of the column 22 , and the sample rack 21 is arranged on one side of the opening of the placement space.
[0065] It can be understood that the sample rack 21 is used to place glass samples, so that during the point light source detection process, the inspector can compare the glass samples to improve the detection.
[0066] It should be noted that, in order to achieve stable placement of the glass sample, a placement groove is provided on the sample rack 21 .
[0067] It is understandable that the placement groove is inclined close to the side surface of the cylinder 22 and has the same inclination angle as that of the first frame 421, so as to facilitate the inspector to observe the glass sample and the sample to be detected simultaneously and ensure the accuracy of the comparison.
[0068] Optionally, the moving platform 10 includes a support platform 12 and at least one handrail 11. The cylinder 22 is provided on the surface of the support platform 12. The handrail 11 is arranged on the side of the support platform 12. A rolling structure for assisting the movement of the support platform 12 is provided on the side surface of the support platform 12 facing away from the cylinder 22.
[0069] In order to move the moving platform 10, the inspector outputs power by pushing the handrail 11 to control the moving direction and the moving speed of the moving platform 10.
[0070] As Figures 1 to 3 shown, there are two handrails 11, and the two handrails 11 are arranged on both sides of the pillar structure 20, so as to facilitate the inspector to control the movement of the moving platform 10 from both sides respectively.
[0071] Optionally, it further includes a background board 30 and a point light source device. The moving platform 10 is arranged between the point light source device and the background board 30.
[0072] It is understandable that the point light source device is used to provide a point light source.
[0073] It is understandable that the background board 30 is used to provide a reference, and the background board 30 is a white board.
[0074] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention. Any equivalent structural transformation made under the inventive concept of the present invention by using the content of the specification and drawings of the present invention, or directly / indirectly applied in other related technical fields, is included in the patent protection scope of the present invention.
Claims
1. A point light source detector, characterized in that, include: Mobile platforms; A support structure, the support structure is arranged on the surface of the mobile platform; A placement frame, the placement frame is rotatably connected to the support structure; Wherein, the placement frame includes a first placement group and a second placement group, the first placement group and the second placement group enclose a placement space, and the first placement group and the second placement group are both provided with flexible parts and support the glass.
2. The point light source detector according to claim 1, wherein The first placement group and the second placement group are arranged at an angle, and the flexible member is arranged on opposite surfaces of the first placement group and the second placement group.
3. The point light source detector according to claim 2, characterized in that The first placement group includes a first support rod and a plurality of second support rods, the first support rod is rotatably arranged on the support structure, the plurality of second support rods are connected to the first support rod at intervals, and the first support rod and the second support rod are arranged at an angle.
4. The point light source detector according to claim 3, wherein The second placement group includes a first bracket and a second bracket, the first bracket and the second bracket are both arranged on the second support rod, and the first bracket and the second bracket are arranged at an angle, and the plane where the first bracket is located is arranged at an angle with the plane where the second support rod is located.
5. The point light source detector according to claim 4, characterized in that, The flexible member is arranged on the side of the second support rod facing away from the moving platform, and the flexible member is arranged on the side of the first bracket facing away from the second bracket.
6. The point light source detector according to claim 4, wherein, The first bracket and the second bracket are both frame structures, and the second bracket abuts against the first bracket.
7. The point light source detector according to claim 4, wherein, The support structure comprises a column and a rotating body, wherein the column is arranged on the surface of the moving platform, the rotating body is rotatably connected to the end of the column, and the second support rod is fixed to the surface of the rotating body.
8. The point light source detector according to claim 7, wherein, A sample rack is provided on the side of the column, and the sample rack is arranged on one side of the opening of the placement space.
9. The point light source detector according to claim 8, wherein The mobile platform includes a support platform and at least one handrail. The support platform surface is provided with the column. The handrail is arranged on the side of the support platform. The side of the support platform away from the column is provided with a rolling structure to assist the movement of the support platform.
10. The point light source detector according to claim 1, characterized in that, It also includes a background plate and a point light source device, and the moving platform is arranged between the point light source device and the background plate.