Foldable deformed detection light source

CN224756869UActive Publication Date: 2026-09-15东莞康视达自动化科技有限公司
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Patent Information

Application Number
CN202521347904.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2026-09-15
Estimated Expiration
2035-06-30

AI Technical Summary

Technical Problem

[0002]在机器视觉领域中,检测产品的外观时通常需要使用光源进行照射,其中,弧形光源在检测光源中应用极广,当所需要待检测物体具有曲面,例如圆柱电池等结构时,通常会根据待检测物体的曲面的弧度,选择使用特定角度的弧形光源,但由于传统的弧形光源结构固定,其发出光线的角度单一,当需要检测的其他具有不同弧度曲面的待检测物体时,传统的弧形光源往往无法保证检测照明效果,适配性较差

Benefits of technology

[0015]1. The light-emitting element is housed within the receiving cavity, and the light emitted by the light-emitting element can be emitted outward through the light outlet. Among two adjacent light source components, the rotating protrusion of the base of one light source component can extend into the groove of the base of the other light source component. The first connector passes through the first connecting hole on the side wall of the groove and the second connecting hole on the side end of the rotating protrusion to fix the position between the bases of the two adjacent light source components. Alternatively, the first connector can be detached, allowing the two bases to rotate relative to each other to adjust their relative position, thereby adjusting the light emission angle of the light source components and improving adaptability. After adjustment, the first connector can be re-inserted into the corresponding first and second connecting holes to fix the position between the bases of the two adjacent light source components, improving the stability of the lighting process and ensuring the lighting effect. Users can arbitrarily adjust the relative position between the bases of the two adjacent light source components according to their actual needs, so as to independently adjust the angle of the light emitted by each light source component, which has high adaptability and can guarantee the lighting effect.

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Abstract

The utility model discloses foldable deformation's detection light source relates to in detection light source technical field. Foldable deformation's detection light source includes light source subassembly, first connecting piece and light transmission plate, and light source subassembly includes seat and light emitting part, and seat is provided with containing cavity and light outlet, and the recess is provided with the concave groove to the front end of seat along the first horizontal direction, and the rotating lug is provided with the rear end of seat along the first horizontal direction, light source subassembly is provided with a plurality, and is arranged in proper order along the first horizontal direction, two light source subassembly of adjacent, the rotating lug of seat of former light source subassembly can rotatably be established in the concave groove of seat of latter light source subassembly, and first connecting piece detachably connects the seat of two light source subassembly of adjacent, adjusts the relative position between the seat of two light source subassembly of adjacent, realizes folding this foldable deformation's detection light source, and can realize independent adjustment the angle of each light source subassembly light emission light, and the adaptability is higher, can guarantee the lighting effect.
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Description

Technical Field

[0001] This utility model relates to the field of detection light source technology, and in particular to a foldable and deformable detection light source. Background Technology

[0002] In the field of machine vision, the inspection of product appearance usually requires the use of light sources for illumination. Among them, curved light sources are widely used in inspection. When the object to be inspected has a curved surface, such as a cylindrical battery, a curved light source with a specific angle is usually selected according to the curvature of the surface of the object to be inspected. However, since the traditional curved light source has a fixed structure and emits light at a single angle, when other objects with different curvatures need to be inspected, the traditional curved light source often cannot guarantee the inspection illumination effect and has poor adaptability. Utility Model Content

[0003] The purpose of this invention is to overcome the above-mentioned defects in the prior art and provide a foldable and deformable detection light source that can independently adjust the angle of the light emitted by each light source component, has high adaptability, and can ensure the lighting effect.

[0004] To achieve the above objectives, this utility model provides a foldable and deformable detection light source, comprising a light source assembly, a first connector, and a light-transmitting plate; the light source assembly includes a base and a light-emitting element; the base is provided with a receiving cavity and a light-emitting port; the light-emitting port is located at the bottom of the base and communicates with the receiving cavity; the receiving cavity extends through the base along a first horizontal direction; the light-emitting element is located within the receiving cavity and faces the light-emitting port; the base has a groove at its front end along the first horizontal direction, and a first connecting hole is provided on the side wall of the groove, extending through the base along a second horizontal direction; the base has a rotating protrusion at its rear end along the first horizontal direction, and a second connecting hole is provided on the side end of the rotating protrusion, extending along the second horizontal direction; the first horizontal direction and the second horizontal direction are perpendicular to each other. The system is configured as follows: Multiple light source assemblies are arranged sequentially along the first horizontal direction; for two adjacent light source assemblies, the rotating protrusion of the seat of the preceding light source assembly is rotatably disposed within the groove of the seat of the following light source assembly, and the second connecting hole on the side end of the rotating protrusion is opposite to the first connecting hole on the side wall of the groove; the receiving cavities of the seats of two adjacent light source assemblies are interconnected; multiple first connectors are provided; the multiple first connectors are respectively inserted through the multiple oppositely disposed first connecting holes and second connecting holes, and the first connectors are detachably connected to the seats of two adjacent light source assemblies; the light-transmitting plate is elastic; the light-transmitting plate is connected to the lower end of the seats of the multiple light source assemblies and is disposed at the light outlet of the seats of the multiple light source assemblies.

[0005] Furthermore, the seat includes a main body and side plates; the groove is disposed at the front end of the main body along the first horizontal direction, the rotating protrusion is disposed at the rear end of the main body along the first horizontal direction, and the first connecting hole and the second connecting hole are both disposed on the main body; two side plates are disposed, both disposed at the bottom end of the main body; the two side plates are disposed opposite to each other and spaced apart along the second horizontal direction; the receiving cavity is defined between the main body and the two side plates.

[0006] Furthermore, each of the two side plates has a mounting groove at its lower opposite side ends, and the mounting groove is provided through the first direction; the two ends of the light-transmitting plate are respectively disposed in the mounting grooves of the multiple side plates.

[0007] Furthermore, the side plate is provided with a first clearance groove at its front end along the first horizontal direction, and a second clearance groove is provided at its rear end along the first horizontal direction; along the first horizontal direction, the first clearance groove and the second clearance groove of the side plates of two adjacent seats are staggered.

[0008] Furthermore, the light source assembly also includes a second connector; the main body is provided with two first mounting holes, and the side plate is provided with a second mounting hole, with the second mounting holes of the two side plates respectively arranged opposite to the two first mounting holes; two second connectors are provided, and are respectively inserted through the two first mounting holes and the second mounting holes to connect the main body and the side plate.

[0009] Furthermore, the base is also provided with a heat dissipation groove; the light-emitting element abuts against the top wall of the receiving cavity; the heat dissipation groove is disposed on the top wall of the receiving cavity and located above the light-emitting element; the heat dissipation groove is disposed through the first horizontal direction.

[0010] Furthermore, the first connecting member is a connecting bolt, and the second connecting hole is a threaded hole.

[0011] Furthermore, there are two first connecting holes, which are arranged opposite each other along the second horizontal direction; there are two second connecting holes, which are respectively arranged on opposite sides of the rotating protrusion along the second horizontal direction.

[0012] Furthermore, it also includes a first fixing plate and a second fixing plate; the first fixing plate and the second fixing plate are arranged opposite to each other and spaced apart along the first horizontal direction; the first fixing plate is connected to the base of the first light source assembly among the plurality of light source assemblies; the second fixing plate is connected to the base of the last light source assembly among the plurality of light source assemblies.

[0013] Furthermore, it also includes two third connectors; the bottom ends of the first fixing plate and the second fixing plate are each provided with a third connecting hole; the light-transmitting plate is provided with a through hole that runs vertically through it, and there are two through holes, which are respectively arranged opposite to the two third connecting holes; the two third connectors are respectively inserted through the two oppositely arranged through holes and the third connecting holes to connect the light-transmitting plate and the first fixing plate with the light-transmitting plate and the second fixing plate.

[0014] Compared with the prior art, the present invention has the following advantages:

[0015] 1. The light-emitting element is housed within the receiving cavity, and the light emitted by the light-emitting element can be emitted outward through the light outlet. Among two adjacent light source components, the rotating protrusion of the base of one light source component can extend into the groove of the base of the other light source component. The first connector passes through the first connecting hole on the side wall of the groove and the second connecting hole on the side end of the rotating protrusion to fix the position between the bases of the two adjacent light source components. Alternatively, the first connector can be detached, allowing the two bases to rotate relative to each other to adjust their relative position, thereby adjusting the light emission angle of the light source components and improving adaptability. After adjustment, the first connector can be re-inserted into the corresponding first and second connecting holes to fix the position between the bases of the two adjacent light source components, improving the stability of the lighting process and ensuring the lighting effect. Users can arbitrarily adjust the relative position between the bases of the two adjacent light source components according to their actual needs, so as to independently adjust the angle of the light emitted by each light source component, which has high adaptability and can guarantee the lighting effect.

[0016] 2. Because the light-transmitting plate is elastic, it can deform in response to changes in the relative position between the bases of adjacent light source components, thus preventing side light leakage and affecting the lighting effect.

[0017] 3. The receiving cavity is arranged through the first horizontal direction, so that the receiving cavities of the seats of two adjacent light source components are connected to each other, so as to reduce the degree of obstruction of the light emitted by the light source in the seat and improve the lighting effect. Attached Figure Description

[0018] To more clearly illustrate the technology in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0019] Figure 1 This is a schematic diagram of the foldable and deformable detection light source of this utility model;

[0020] Figure 2 for Figure 1 Another structural schematic diagram of the foldable and deformable detection light source of this utility model;

[0021] Figure 3 This is a schematic diagram of the light source assembly of the foldable and deformable detection light source of this utility model;

[0022] Figure 4 for Figure 3Another structural schematic diagram of the light source assembly of the foldable and deformable detection light source of this utility model;

[0023] Figure 5 This is a cross-sectional view of the light source assembly of the foldable and deformable detection light source of this utility model.

[0024] Figure label:

[0025] Light source assembly 100; base 110; receiving cavity 111; light outlet 112; groove 113; first connecting hole 114; rotating protrusion 115; second connecting hole 116; heat dissipation groove 117; guide slope 118; main body 120; first mounting hole 121; side plate 130; first clearance groove 131; second clearance groove 132; mounting groove 133; light-emitting element 140; first connector 200; light-transmitting plate 300; through hole 310; first fixing plate 410; second fixing plate 420. Detailed Implementation

[0026] The technology of this embodiment of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiment is one embodiment of the present invention, and not all embodiments thereof. Based on this embodiment of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0027] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0028] Furthermore, if the embodiments of this utility model involve descriptions such as "first" or "second", such descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated.

[0029] Please see Figures 1 to 5This utility model provides a foldable and deformable detection light source, which includes a light source assembly 100, a first connector 200, and a light-transmitting plate 300. The light source assembly 100 includes a base 110 and a light-emitting element 140. The base 110 is provided with a receiving cavity 111 and a light-emitting port 112. The light-emitting port 112 is located at the bottom of the base 110 and communicates with the receiving cavity 111. The receiving cavity 111 is disposed through a first horizontal direction. The light-emitting element 140 is disposed in the receiving cavity 111. The cavity 111 is located inside the cavity and faces the light outlet 112; the front end of the base body 110 along the first horizontal direction is provided with a groove 113, and the side wall of the groove 113 is provided with a first connecting hole 114, which is provided through along the second horizontal direction; the rear end of the base body 110 along the first horizontal direction is provided with a rotating protrusion 115, and the side end of the rotating protrusion 115 is provided with a second connecting hole 116, which extends along the second horizontal direction; the first horizontal direction and the second horizontal direction are mutually... Vertically arranged; multiple light source assemblies 100 are arranged sequentially along a first horizontal direction; for two adjacent light source assemblies 100, the rotating protrusion 115 of the seat 110 of the preceding light source assembly 100 is rotatably disposed within the groove 113 of the seat 110 of the following light source assembly 100, and the second connecting hole 116 on the side end of the rotating protrusion 115 is opposite to the first connecting hole 114 on the side wall of the groove 113; the seat 110 of the two adjacent light source assemblies accommodates... The cavities 111 are interconnected; multiple first connectors 200 are provided; the multiple first connectors 200 are respectively passed through multiple oppositely arranged first connecting holes 114 and second connecting holes 116, and the first connectors 200 are detachably connected to the bases 110 of two adjacent light source assemblies 100; the light-transmitting plate 300 is elastic; the light-transmitting plate 300 is connected to the lower end of the bases 110 of the multiple light source assemblies 100, and is provided at the light outlet 112 of the bases 110 of the multiple light source assemblies 100.

[0030] The light-emitting element 140 is disposed within the receiving cavity 111, and the light emitted by the light-emitting element 140 can be emitted outward through the light outlet 112. Among two adjacent light source assemblies 100, the rotating protrusion 115 of the base 110 of one light source assembly 100 can extend into the groove 113 of the base 110 of the other light source assembly 100. The first connecting member 200 passes through the first connecting hole 114 on the side wall of the groove 113 and the second connecting hole 116 on the side end of the rotating protrusion 115, so as to fix the position between the bases 110 of the two adjacent light source assemblies 100. Alternatively, the first connecting member 200 can be detached so that the two bases 110 can rotate relative to each other to adjust the position of the two light source assemblies 100. The relative positions of the bases 110 can be adjusted to change the light emission angle of the light source assembly 100, improving adaptability. After adjustment, the first connector 200 can be re-inserted into the corresponding first connecting hole 114 and second connecting hole 116 to fix the position between the bases 110 of the two adjacent light source assemblies 100, improving the stability of the lighting process and ensuring the lighting effect. Users can adjust the relative positions of the bases 110 of the two adjacent light source assemblies 100 according to the actual situation, realizing the foldable and deformable detection light source, and can independently adjust the angle of the light emitted by each light source assembly 100, which has high adaptability and can ensure the lighting effect.

[0031] Because the light-transmitting plate 300 is elastic, it can deform in response to changes in the relative position between the bases 110 of adjacent light source components 100, thus preventing side light leakage and affecting the lighting effect.

[0032] The receiving cavity 111 is arranged through the first horizontal direction, so that the receiving cavities 111 of the bases 110 of two adjacent light source assemblies 100 are connected to each other, so as to reduce the degree of obstruction of the light emitted by the light-emitting element 140 in the base 110 and improve the lighting effect.

[0033] Specifically, multiple light source components can select the brightness and color of the light emitted by their light-emitting elements according to the actual situation, in order to adapt to the required conditions.

[0034] Reference Figure 1 , Figure 3 and Figure 4 In some embodiments of this utility model, the seat 110 includes a main body 120 and a side plate 130; a groove 113 is disposed at the front end of the main body 120 along a first horizontal direction, a rotating protrusion 115 is disposed at the rear end of the main body 120 along a first horizontal direction, and a first connecting hole 114 and a second connecting hole 116 are both disposed on the main body 120; two side plates 130 are disposed, and both are disposed at the bottom end of the main body 120; the two side plates 130 are disposed opposite to each other and spaced apart along a second horizontal direction; a receiving cavity 111 is defined between the main body 120 and the two side plates 130.

[0035] When the base 110 is damaged, the main body 120 and side plate 130 can be replaced according to the actual situation to reduce the replacement cost and time required, and can be replaced with stronger ones.

[0036] Specifically, two side plates 130 are respectively arranged at the bottom two ends of the main body 120 along the second horizontal direction to increase the size of the receiving cavity 111, thereby adapting to the larger light-emitting element 140. By setting the side plates 130, the light-emitting element 140 inside the receiving cavity 111 can be protected.

[0037] Reference Figures 3 to 5 In some embodiments of this utility model, mounting grooves 133 are provided at the lower parts of the opposite sides of the two side plates 130, and the mounting grooves 133 are provided through the first direction; the two ends of the light-transmitting plate 300 are respectively provided in the mounting grooves 133 of the multiple side plates 130.

[0038] The mounting groove 133 is provided through the first direction, so that the mounting grooves 133 of the multiple seats 110 are connected to each other in sequence. By setting the mounting groove 133, the position of the light-transmitting plate 300 can be limited, thereby improving the stability of the connection between the light-transmitting plate 300 and the seat 110.

[0039] Specifically, the mounting grooves 133 of the two oppositely arranged side plates 130 are arranged opposite each other along the second horizontal direction; the top end of the light-transmitting plate 300 abuts against the top wall of the mounting groove 133, and the bottom end of the light-transmitting plate 300 abuts against the bottom wall of the mounting groove 133, so as to limit the position of the light-transmitting plate 300 and prevent the light-transmitting plate 300 from shaking in the mounting groove 133.

[0040] Reference Figure 1 , Figure 3 and Figure 4 In some embodiments of this utility model, the side plate 130 is provided with a first clearance groove 131 at the front end along the first horizontal direction, and a second clearance groove 132 at the rear end along the first horizontal direction; along the first horizontal direction, the first clearance groove 131 and the second clearance groove 132 of the side plates 130 of two adjacent seats 110 are staggered.

[0041] By setting the first clearance groove 131 and the second clearance groove 132, the side plates 130 of the two adjacent seats 110 can be prevented from colliding and being damaged during the relative rotation of the two seats 110.

[0042] Specifically, a chamfered structure is provided at the rear end of the side plate 130 along the second horizontal direction to prevent the main body 120 of the front seat 110 from colliding with the side plate 130 of the rear seat 110; the guide slope 118 at the rear end of the main body 120 along the second horizontal direction allows the main bodies 120 of the two seats 110 to abut against each other when the two adjacent light source assemblies 100 are at the same height. During rotation, the guide slope 118 between the main bodies 120 of the two seats 110 plays a rotational guiding role, thereby improving the stability of rotation adjustment.

[0043] Reference Figure 1 and Figure 3 In some embodiments of this utility model, the light source assembly 100 further includes a second connector; the main body 120 is provided with two first mounting holes 121, and the side plate 130 is provided with a second mounting hole, the second mounting holes of the two side plates 130 are respectively disposed opposite to the two first mounting holes 121; two second connectors are provided, and are respectively disposed through the two first mounting holes 121 and the second mounting hole to connect the main body 120 and the side plate 130.

[0044] The first mounting hole 121 is provided at the top of the main body 120, and the second mounting hole is provided through the main body 120 and is provided opposite to the first mounting hole 121, so that the second connector passes through the first mounting hole 121 and the second mounting hole to connect the side plate 130 and the main body 120.

[0045] Specifically, both the first mounting hole 121 and the second mounting hole are threaded holes, and the second connector is a connecting bolt.

[0046] Reference Figures 3 to 5 In some embodiments of this utility model, the base 110 is also provided with a heat dissipation groove 117; the light-emitting element 140 abuts against the top wall of the receiving cavity 111; the heat dissipation groove 117 is disposed on the top wall of the receiving cavity 111 and is located above the light-emitting element 140; the heat dissipation groove 117 is disposed through the first horizontal direction.

[0047] By setting up heat dissipation slots 117, the contact area between air and light-emitting components 140 can be increased, thereby improving heat dissipation efficiency, facilitating wiring, and reducing installation difficulty.

[0048] Specifically, the heat dissipation groove 117 is arranged through the first horizontal direction, so that the heat dissipation grooves 117 of the multiple seats 110 are connected to each other in sequence.

[0049] In some embodiments of this utility model, the first connecting member 200 is a connecting bolt, and the second connecting hole 116 is a threaded hole.

[0050] The first connector 200 passes through the first connecting hole 114 of the rear body 110 and is threadedly connected to the second connecting hole 116 of the front body 110 to fix it to the front body 110. The nut of the first connector 200 abuts against the rear body 110 so that it can be fixedly connected to the rear body 110 by friction, thereby fixing the position between the seats 110 of the two adjacent light source assemblies 100.

[0051] Specifically, the inner wall of the first connecting hole 114 is smoothly provided. When it is necessary to adjust the position between two adjacent seats 110, the first connecting member 200 can be loosened so that the threaded end of the first connecting member 200 is still located in the second connecting hole 116, while the two adjacent seats 110 can rotate relative to the first connecting member 200, reducing the difficulty of rotation adjustment.

[0052] Reference Figure 3 and Figure 4 In some embodiments of this utility model, two first connecting holes 114 are provided and are arranged opposite to each other along the second horizontal direction; two second connecting holes 116 are provided and are respectively arranged on opposite sides of the rotating protrusion 115 along the second horizontal direction.

[0053] Two first connecting holes 114 are respectively provided through the two ends of the base 110 along the second horizontal direction. Correspondingly, two second connecting holes 116 are respectively provided at the two ends of the base 110 along the second horizontal direction, so that the rotating protrusion 115 of the front base 110 can be inserted into the groove 113 of the rear base 110. The two first connecting holes 114 are respectively arranged opposite to the two second connecting holes 116. Two first connecting members 200 are provided, and the two first connecting members 200 are respectively passed through the two oppositely arranged first connecting holes 114 and second connecting holes 116.

[0054] Reference Figure 1 and Figure 2 In some embodiments of this utility model, a first fixing plate 410 and a second fixing plate 420 are also included; the first fixing plate 410 and the second fixing plate 420 are arranged opposite to each other and spaced apart along a first horizontal direction; the first fixing plate 410 is connected to the base 110 of the first light source assembly 100 among the plurality of light source assemblies 100; the second fixing plate 420 is connected to the base 110 of the last light source assembly 100 among the plurality of light source assemblies 100.

[0055] By setting the first fixed end and the second fixed plate 420, the receiving cavity 111 of the base 110 of the light source assembly 100 located at the first and last ends can be closed along the first horizontal direction, reducing the degree of light leakage, ensuring the lighting effect, and facilitating wiring to realize the electrical connection between the light-emitting element 140 and the outside.

[0056] Specifically, a limiting groove is provided at one end of the first fixing plate 410 facing the light source assembly 100, and the rotating protrusion 115 of the seat 110 of the light source assembly 100 at the first end extends into the limiting groove.

[0057] A limiting block is provided at one end of the light source assembly 100 on the second fixing plate 420, and the limiting block extends into the groove 113 of the seat 110 of the light source assembly 100 located at the end.

[0058] Reference Figure 2 In some embodiments of this utility model, two third connecting members are also included; the bottom ends of the first fixing plate 410 and the second fixing plate are both provided with third connecting holes; the light-transmitting plate 300 is provided with a through hole 310 that runs vertically through it, and there are two through holes 310, which are respectively arranged opposite to the two third connecting holes; the two third connecting members are respectively inserted through the two oppositely arranged through holes 310 and the third connecting holes to connect the light-transmitting plate 300 and the first fixing plate 410 with the light-transmitting plate 300 and the second fixing plate 420, so as to improve the stability of the light-transmitting plate 300 installed at the lower end of the base 110 of the multiple light source components 100.

[0059] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A foldable and deformable detection light source, characterized in that, include: A light source assembly (100) includes a base (110) and a light-emitting element (140); the base (110) is provided with a receiving cavity (111) and a light-emitting port (112); the light-emitting port (112) is located at the bottom of the base (110) and communicates with the receiving cavity (111); the receiving cavity (111) is disposed through a first horizontal direction; the light-emitting element (140) is disposed inside the receiving cavity (111) and faces the light-emitting port (112); the base (110) is disposed through a first horizontal direction. A groove (113) is provided at the front end in the horizontal direction, and a first connecting hole (114) is provided on the side wall of the groove (113), which is provided through the second horizontal direction; a rotating protrusion (115) is provided at the rear end of the seat (110) in the first horizontal direction, and a second connecting hole (116) is provided at the side end of the rotating protrusion (115), which is provided through the second horizontal direction; the first horizontal direction and the second horizontal direction are perpendicular to each other; Multiple light source assemblies (100) are provided and arranged sequentially along the first horizontal direction; for two adjacent light source assemblies (100), the rotating protrusion (115) of the seat body (110) of the preceding light source assembly (100) is rotatably disposed in the groove (113) of the seat body (110) of the following light source assembly (100), and the second connecting hole (116) on the side end of the rotating protrusion (115) is opposite to the first connecting hole (114) on the side wall of the groove (113); the receiving cavities (111) of the seat bodies (110) of the two adjacent light source assemblies (100) are interconnected. The first connector (200) is provided in multiple ways; the multiple first connectors (200) are respectively passed through the multiple oppositely arranged first connection holes (114) and second connection holes (116), and the first connectors (200) are detachably connected to the bases (110) of two adjacent light source assemblies (100). The light-transmitting plate (300) is elastic; the light-transmitting plate (300) is connected to the lower end of the base (110) of the plurality of light source assemblies (100) and is disposed at the light outlet (112) of the base (110) of the plurality of light source assemblies (100).

2. The foldable and deformable detection light source according to claim 1, characterized in that, The seat (110) includes a main body (120) and side plates (130); the groove (113) is disposed at the front end of the main body (120) along the first horizontal direction, the rotating protrusion (115) is disposed at the rear end of the main body (120) along the first horizontal direction, and the first connecting hole (114) and the second connecting hole (116) are both disposed on the main body (120); there are two side plates (130), both of which are disposed at the bottom end of the main body (120); the two side plates (130) are disposed opposite to each other and spaced apart along the second horizontal direction; the receiving cavity (111) is defined between the main body (120) and the two side plates (130).

3. The foldable and deformable detection light source according to claim 2, characterized in that, Each of the two side plates (130) has a mounting groove (133) at the lower part of its opposite side ends, and the mounting groove (133) is provided through the first horizontal direction; the two ends of the light-transmitting plate (300) are respectively provided in the mounting groove (133) of the multiple side plates (130).

4. The foldable and deformable detection light source according to claim 2, characterized in that, The side plate (130) is provided with a first clearance groove (131) at the front end along the first horizontal direction, and the side plate (130) is provided with a second clearance groove (132) at the rear end along the first horizontal direction; along the first horizontal direction, the first clearance groove (131) and the second clearance groove (132) of the side plate (130) of two adjacent seats (110) are staggered.

5. The foldable and deformable detection light source according to claim 2, characterized in that, The light source assembly (100) also includes a second connector; the main body (120) is provided with two first mounting holes (121), and the side plate (130) is provided with a second mounting hole, the second mounting holes of the two side plates (130) are respectively arranged opposite to the two first mounting holes (121); two second connectors are provided, and are respectively inserted through the two first mounting holes (121) and the second mounting holes to connect the main body (120) and the side plate (130).

6. The foldable and deformable detection light source according to claim 1, characterized in that, The base (110) is also provided with a heat dissipation groove (117); the light-emitting element (140) abuts against the top wall of the receiving cavity (111); the heat dissipation groove (117) is provided on the top wall of the receiving cavity (111) and is located above the light-emitting element (140); the heat dissipation groove (117) is provided through the first horizontal direction.

7. The foldable and deformable detection light source according to claim 1, characterized in that, The first connector (200) is a connecting bolt, and the second connecting hole (116) is a threaded hole.

8. The foldable and deformable detection light source according to claim 1, characterized in that, Two first connecting holes (114) are provided and are arranged opposite each other along the second horizontal direction; two second connecting holes (116) are provided and are respectively arranged on opposite sides of the rotating protrusion (115) along the second horizontal direction.

9. The foldable and deformable detection light source according to claim 1, characterized in that, It also includes a first fixing plate (410) and a second fixing plate (420); the first fixing plate (410) and the second fixing plate (420) are arranged opposite to each other and spaced apart along the first horizontal direction; the first fixing plate (410) is connected to the base (110) of the first light source assembly (100) among the plurality of light source assemblies (100); the second fixing plate (420) is connected to the base (110) of the last light source assembly (100) among the plurality of light source assemblies (100).

10. The foldable and deformable detection light source according to claim 9, characterized in that, It also includes two third connectors; the bottom ends of the first fixing plate (410) and the second fixing plate (420) are provided with third connecting holes; the light-transmitting plate (300) is provided with a through hole (310) that runs through in the vertical direction, and there are two through holes (310), which are respectively arranged opposite to the two third connecting holes; the two third connectors are respectively inserted through the two oppositely arranged through holes (310) and the third connecting holes to connect the light-transmitting plate (300) and the first fixing plate (410) with the light-transmitting plate (300) and the second fixing plate (420).