A portable solar folding lamp and an assembling device thereof

By designing lifting and supporting components, the solar folding lamp can be moved and supported stably. The assembly efficiency is improved by using guiding and adsorption components in the assembly device, which solves the problems of slow assembly speed and easy tipping of the main board in the existing technology.

CN119957872BActive Publication Date: 2026-02-03CHANGXING FANYA WISDOM LIGHTING CO LTD
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Patent Information

Application Number
CN202510084415.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-20
Publication Date
2026-02-03
Estimated Expiration
2045-01-20

AI Technical Summary

Technical Problem

Existing solar-powered folding lights suffer from slow assembly speed, are prone to tipping over when the mainboard is unfolded to collect solar energy, and have low practicality.

Method used

The design incorporates a lifting assembly and a support assembly. The sliding of the handle causes the main board to close and the support rod to unfold, achieving stable movement and support of the lamp body. The assembly device employs a guide assembly, an adsorption assembly, and a flipping assembly. The combination of a turntable and an adsorption plate enables automated assembly of the main board.

Benefits of technology

It improves the assembly efficiency and stability of solar folding lights, prevents the mainboard from tipping over, simplifies the assembly process, and increases assembly speed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to a portable solar energy folding lamp, which comprises a lamp body and a plurality of main plates rotating on the lamp body, a handle is slidably arranged in the middle of the upper end surface of the lamp body, an opening and closing assembly is arranged between the handle and the main plates, and a pulling assembly and a supporting assembly are driven by the opening and closing assembly; the pulling assembly comprises a handle; the supporting assembly comprises a supporting rod; when the handle is pulled, the main plates are folded to perform lighting, meanwhile, the handle is pushed out, so that the portable solar energy folding lamp is moved conveniently; when the handle is pushed, the main plates are unfolded to collect solar energy, meanwhile, the support is unfolded, so that the lamp body is more stable and is prevented from toppling; the application also provides an assembling device of the portable solar energy folding lamp; in the process of rotating the plurality of lamp bodies by a rotating disc, the adsorbing plate is driven to ascend and adsorb the main plates; then, the adsorbing plate is turned over and lowered, so that the main plates are installed in the lamp body; the main plates are centered by a centering assembly during assembling, so that the assembling efficiency is improved.
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Description

Technical Field

[0001] This invention relates to the field of new energy lighting technology, and more specifically to a portable solar-powered folding lamp and its assembly device. Background Technology

[0002] Solar lights, as a renewable resource technology, have great development potential in the field of urban lighting. Solar folding lights are usually composed of a lamp body and a main board. The main boards are manually installed one by one on the lamp body, which is slow and inefficient. Moreover, the main board is prone to tipping over when it is unfolded to collect solar energy, which can damage the solar folding light.

[0003] Chinese patent CN212430726U discloses a solar-powered folding lamp, which includes a solar-powered folding lamp body. A solar main board is provided at the lower end of the solar-powered folding lamp body. A folding connecting buckle is provided on one outer surface of the solar-powered folding lamp body. A fixing groove is provided on one outer surface of the folding connecting buckle. A fixing connecting frame is provided on one side of the fixing groove. A columnar connecting tube is provided on the upper outer surface of the fixing connecting frame. A connecting plate is provided on the upper outer surface of the columnar connecting tube. During the unfolding process, the solar panels need to be manually unfolded piece by piece. At the same time, the lamp lacks support when collecting solar energy, resulting in low practicality. Summary of the Invention

[0004] The purpose of this invention is to address the shortcomings of existing technologies by providing a portable solar-powered folding lamp. When the handle is pulled, the main board closes to provide illumination while the handle is extended for easy movement. Conversely, when the handle is pushed, the main board unfolds to collect solar energy while the bracket unfolds, making the lamp body more stable and preventing it from tipping over.

[0005] The technical solution of the present invention is as follows:

[0006] A portable solar-powered folding lamp includes a lamp body and several main boards that rotate on the lamp body. A handle is slidably disposed at the center of the upper surface of the lamp body. An opening and closing assembly, a lifting assembly, and a support assembly are disposed between the handle and the main boards. The lifting assembly includes a handle, and the support assembly includes a support rod. The opening and closing assembly is used to drive the main boards to close while the handle slides downward. The lifting assembly is used to drive the handle to slide out while the main boards close. The support assembly is used to drive the support rod to close while the handle slides out.

[0007] As a preferred embodiment, the opening and closing assembly includes a rotating block fixedly mounted on the main board, several rotating slots formed on the lamp body, a rotating rod rotatably mounted in the rotating slots, a first gear fixedly mounted on the rotating rod, a first cross fixedly mounted on the handle, and a first rack fixedly mounted on the first cross. The rotating block is fixedly connected to the rotating rod, and the first gear meshes with the first rack.

[0008] As a preferred embodiment, the lifting assembly further includes a fixed plate fixedly disposed within the lamp body, a sliding plate slidably disposed on the fixed plate, a hinge rod rotatably disposed between the handle and the sliding plate, and a through groove formed on the lamp body, wherein the handle is slidably disposed on the fixed plate and cooperates with the through groove.

[0009] As a preferred embodiment, the support assembly further includes several support grooves formed at the lower end of the lamp body, tracks formed on both sides of the support grooves, a rectangular rod slidably disposed within the tracks, a first hinge block fixedly disposed on the support rod, a second rack slidably disposed on the lamp body, a second hinge block fixedly disposed on the second rack, a second cross fixedly disposed on the handle, a third rack fixedly disposed on the second cross, and a second gear rotatably disposed on the second cross. The support rod is fixedly connected to the rectangular rod, the first hinge block is configured as a telescopic structure and cooperates with the second hinge block, and the second rack and the third rack both mesh with the second gear.

[0010] Another design objective of this invention is to provide an assembly device for a portable solar folding lamp. During the rotation of multiple lamp bodies by a turntable, an adsorption plate is raised to adsorb the main board. Then, the main board is flipped and lowered to install it inside the lamp body. The centering component ensures that the main board is aligned during assembly, thereby improving assembly efficiency.

[0011] The technical solution of the present invention is as follows:

[0012] An assembly device for a portable solar folding lamp includes a base and a turntable rotatably mounted on the base. The turntable has several base plates for supporting the lamp body. A feeding assembly is located above the turntable. A guide assembly and an adsorption assembly driven by the guide assembly are located in the center of the turntable. The adsorption assembly includes an adsorption plate, a flipping assembly along the rotation path of the adsorption plate, and a centering assembly at one end of the adsorption plate. The feeding assembly feeds the main body sequentially. The guide assembly moves the adsorption plate up and down. The adsorption assembly allows the adsorption plate to adsorb the main body and then install a rotating block into a rotating groove. The flipping assembly flips the adsorption plate, and the centering assembly centers the rotating block when it is installed in the rotating groove.

[0013] As a preferred embodiment, the abutting assembly includes an abutting seat, a fourth motor fixedly mounted on the abutting seat, a fifth lead screw rotatably mounted on the abutting seat, a guide rod fixedly mounted on the abutting seat, an abutting plate slidably mounted on the fifth lead screw, and an abutting joint fixedly mounted on the abutting plate.

[0014] As a preferred embodiment, the feeding assembly includes a feeding frame, belts rotatably disposed on both sides of the feeding frame, and a support plate fixedly disposed on the belts, wherein the support plate cooperates with the main board.

[0015] As a preferred embodiment, the guide assembly includes a fixed plate fixedly mounted on the base, a guide post fixedly mounted on the fixed plate, and a guide groove formed on the guide post. The guide groove consists of an ascending section, a first flipping section, a descending section, and a second flipping section.

[0016] As a preferred embodiment, the adsorption assembly further includes a fixed seat fixedly mounted on the turntable, a limiting groove formed on the fixed seat, a slider slidably mounted in the limiting groove, a flip tube rotatably mounted in the slider, and a guide rod fixedly mounted on the flip tube. The flip tube is fixedly connected to the adsorption plate, and the bottom of the guide rod is spherical and cooperates with the guide groove.

[0017] As a preferred embodiment, the flipping assembly includes a first bevel gear fixedly mounted on the flipping tube, a connecting plate fixedly mounted on the slider, a second bevel gear rotatably mounted on the connecting plate, a third gear fixedly mounted on the second bevel gear, and a first gear ring fixedly mounted on both sides of the guide post. The first gear ring is respectively located below the first flipping section and the second flipping section. A fourth gear is fixedly mounted on the chassis, and a second gear ring is fixedly mounted on the base. The fourth gear meshes with the second gear ring.

[0018] As a preferred embodiment, the centering assembly includes a sliding groove formed on the adsorption plate, an extension rod slidably disposed in the sliding groove, a clamping plate fixedly disposed on the extension rod, and clamping blocks fixedly disposed on both sides of the clamping plate. A spring is provided between the extension rod and the sliding groove, and the clamping blocks are configured as trapezoidal structures.

[0019] The beneficial effects of this invention are as follows:

[0020] 1. This invention is equipped with a lifting component and a support component. When the main board is closed to provide illumination, the handle automatically extends to facilitate the movement of the folding lamp. When the main board is unfolded to receive solar energy, the handle automatically retracts while the support rod automatically unfolds to support the lamp body and prevent it from tipping over.

[0021] 2. The present invention is provided with a guiding component, an adsorption component and a flipping component. The adsorption plate is raised, lowered and flipped during the rotation process through the guiding groove, so that the adsorption plate adsorbs the main board and assembles the main board with the lamp body, thereby improving the assembly efficiency of the solar folding lamp and replacing the manual assembly method.

[0022] 3. The present invention also includes a centering component, which uses a clamping block to tighten the rotating block inward, so that the rotating block is more accurately locked in the rotating groove, thereby improving the centering effect during assembly.

[0023] In summary, this invention has the advantages of good assembly effect and fast speed, and is suitable for the field of new energy lighting technology. Attached Figure Description

[0024] The invention will be further described below with reference to the accompanying drawings:

[0025] Figure 1 This is a schematic diagram of the structure of a solar-powered folding lamp;

[0026] Figure 2 This is a structural diagram of the opening / closing assembly and the lifting assembly;

[0027] Figure 3 This is a schematic diagram of the rotating block.

[0028] Figure 4 This is a schematic diagram of the rotating groove.

[0029] Figure 5 A schematic diagram of the supporting components;

[0030] Figure 6 This is a diagram showing the state of the motherboard when the handle is pushed out after the motherboard is closed.

[0031] Figure 7 This is a schematic diagram showing the state of the motherboard when it is unfolded and supported by the support rod.

[0032] Figure 8 This is a schematic diagram of the motherboard assembly assembly.

[0033] Figure 9 This is a structural diagram of the feeding assembly;

[0034] Figure 10 This is a schematic diagram of the clamping block structure;

[0035] Figure 11 This is a schematic diagram of the adsorption plate structure;

[0036] Figure 12 This is a schematic diagram of the flip component.

[0037] Figure 13 This is a schematic diagram of the second gear ring;

[0038] Figure 14 A schematic diagram showing the assembly process of the motherboard being attached to the adsorption plate;

[0039] Figure 15 This is a schematic diagram showing the state of the lamp body when it rotates during motherboard assembly.

[0040] Figure 16 for Figure 15 Enlarged view of point A in the middle;

[0041] Reference numerals: 1. Lamp body; 2. Main board; 3. Handle; 4. Opening / closing assembly; 41. Rotating block; 42. Rotating groove; 43. Rotating rod; 44. First gear; 45. First cross; 46. First rack; 5. Lifting assembly; 51. Handle; 52. Fixing plate; 53. Sliding plate; 54. Hinge rod; 55. Through groove; 6. Support assembly; 61. Support rod; 62. Support groove; 63. Track; 64. Rectangular rod; 65. First hinge block; 66. Second rack; 67. Second hinge block; 68. Second cross; 69. Third rack; 610. Second gear; 7. Base; 8. Turntable; 10. Chassis; 11. Unloading assembly; 111. Unloading frame; 112. Belt; 1 13 Bearing plate, 12 Guide assembly, 121 Fixed plate, 122 Guide post, 123 Guide groove, 124 Rising section, 125 First flipping section, 126 Falling section, 127 Second flipping section, 13 Adsorption assembly, 131 Adsorption plate, 132 Fixed seat, 133 Limiting groove, 134 Slider, 135 Flipping tube, 136 Guide rod, 14 Flipping assembly, 141 First bevel tooth, 142 Connecting plate, 143 Second bevel tooth, 144 Third gear, 145 First gear ring, 15 Centering assembly, 151 Sliding groove, 152 Extension rod, 153 Clamping plate, 154 Clamping block, 16 Fourth gear, 17 Second gear ring. Detailed Implementation

[0042] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings.

[0043] Example 1

[0044] Embodiments of the present invention are described in detail below, examples of which are illustrated in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, and should not be construed as limiting the present invention.

[0045] like Figures 1 to 7As shown, a portable solar-powered folding lamp includes a lamp body 1 and several main boards 2 rotating on the lamp body 1. A handle 3 is slidably disposed in the middle of the upper surface of the lamp body 1. An opening and closing assembly 4, a lifting assembly 5, and a support assembly 6 driven by the opening and closing assembly 4 are disposed between the handle 3 and the main boards 2. The lifting assembly 5 includes a handle 51, and the support assembly 6 includes a support rod 61. The opening and closing assembly 4 is used to drive the main boards 2 to close while the handle 3 slides downward. The lifting assembly 5 is used to drive the handle 51 to slide out while the main boards 2 are closed. The support assembly 6 is used to drive the support rod 61 to close while the handle 51 slides out. A lamp sheet is disposed on the back of the main board 2. When the main board 2 is closed, the lamp sheet on the main board 2 is powered on and can provide illumination. When the main board 2 is unfolded, the lamp sheet is de-powered and collects solar energy.

[0046] It is worth mentioning that, such as Figure 6 As shown, the opening and closing assembly 4 includes a rotating block 41 fixedly mounted on the main board 2, several rotating slots 42 formed on the lamp body 1, a rotating rod 43 rotatably mounted in the rotating slots 42, a first gear 44 fixedly mounted on the rotating rod 43, a first cross 45 fixedly mounted on the handle 3, and a first rack 46 fixedly mounted on the first cross 45. The rotating block 41 is fixedly connected to the rotating rod 43, and the first gear 44 meshes with the first rack 46. In use, when lighting is needed, the handle 3 is pushed down, and the handle 3 drives the first rack 46 to slide, which drives the first gear 44 to rotate, causing the main board 2 to close. After closing, the lamp is powered on for lighting. Conversely, when the handle 3 is pulled up to slide, the main board 2 unfolds.

[0047] In addition, such as Figure 7 As shown, the lifting assembly 5 also includes a fixed plate 52 fixedly disposed in the lamp body 1, a sliding plate 53 slidably disposed on the fixed plate 52, a hinge rod 54 rotatably disposed between the handle 3 and the sliding plate 53, and a through groove 55 opened on the lamp body 1. The handle 51 is slidably disposed on the fixed plate 52 and cooperates with the through groove 55. In use, when the main board 2 is closed, the handle 3 drives the sliding plate 53 to slide through the hinge rod 54, causing the handle 51 to slide out from the lamp body 1, so that the lamp body 1 can be moved easily through the handle 51. Conversely, when the main board 2 is unfolded, the handle 51 slides back into the lamp body 1.

[0048] It should be further explained that, such as Figure 7As shown, the support assembly 6 also includes several support grooves 62 formed at the lower end of the lamp body 1, tracks 63 formed on both sides of the support grooves 62, a rectangular rod 64 slidably disposed in the tracks 63, a first hinge block 65 fixedly disposed on the support rod 61, a second rack 66 slidably disposed on the lamp body 1, a second hinge block 67 fixedly disposed on the second rack 66, a second cross 68 fixedly disposed on the handle 3, a third rack 69 fixedly disposed on the second cross 68, and a second gear 610 rotatably disposed on the second cross 68. The support rod 61 is fixedly connected to the rectangular rod 64. The first hinge block 65 is configured as a telescopic structure and cooperates with the second hinge block 67. The second rack 66, the third... All racks 69 mesh with the second gear 610. In use, when the main board 2 is unfolded, the handle 3 drives the second cross 68 and the third rack 69 to slide, causing the second gear 610 to rotate. The second rack 66 drives the support rod 61 and the rectangular rod 64 to slide within the track 63 through the first hinge block 65 and the second hinge block 67. As the support rod 61 slides downward, it can rotate through the rectangular rod 64 sliding within the track 63. When rotating, the first hinge block 65 extends and retracts, causing the support rod 61 to extend out of the support groove 62 and unfold, thereby providing support and preventing the main board 2 from tipping over when storing solar energy. Conversely, when the main board 2 is closed, the support rod 61 retracts back into the support groove 62.

[0049] Example 2

[0050] like Figures 8 to 16 As shown, an assembly device for a portable solar folding lamp includes a base 7 and a turntable 8 rotatably mounted on the base 7. The turntable 8 is provided with several base plates 10 for supporting the lamp body 1. A feeding component 11 is provided above the turntable 8. A guide component 12 and an adsorption component 13 driven by the guide component 12 are provided in the middle of the turntable 8. The adsorption component 13 includes an adsorption plate 131. A flipping component 14 is provided on the rotation path of the adsorption plate 131. A centering component 15 is provided at one end of the adsorption plate 131. The feeding component 11 is used to feed the main plate 2 in sequence. The guide component 12 is used to drive the adsorption plate 131 to rise and fall. The adsorption component 13 is used to install the rotating block 41 into the rotating groove 42 after the adsorption plate 131 adsorbs the main plate 2. The flipping component 14 is used to drive the adsorption plate 131 to flip. The centering component 15 is used to center the rotating block 41 when it is installed in the rotating groove 42. The lamp body 1 is placed on the base plate 10 by a person or a robot.

[0051] It is worth mentioning that, such as Figure 9As shown, the feeding assembly 11 includes a feeding frame 111, belts 112 rotatably mounted on both sides of the feeding frame 111, and a support plate 113 fixedly mounted on the belts 112. The support plate 113 cooperates with the main board 2. Both belts 112 are connected to a drive device, which can drive the belts 112 to rotate in opposite directions. In use, when the adsorption plate 131 contacts the main board 2, the lowermost support plate 113 disengages from the main board 2, causing the main board 2 to fall onto the adsorption plate 131. The main board 2 falls onto the next adsorption plate 131 in sequence. The main board 2 is placed on the uppermost support plate 113 by manual or robotic arm to ensure that there are always enough main boards 2 in the feeding frame 111.

[0052] It needs to be emphasized that, such as Figures 9 to 12 As shown, the guide assembly 12 includes a fixed plate 121 fixedly mounted on the base 7, a guide post 122 fixedly mounted on the fixed plate 121, and a guide groove 123 opened on the guide post 122. The guide groove 123 is composed of an ascending section 124, a first flipping section 125, a descending section 126, and a second flipping section 127. The ascending section 124 is located on one side of the unloading frame 111, and the first flipping section 125, the descending section 126, and the second flipping section 127 are arranged counterclockwise. The guide groove 123 drives the adsorption plate 131 to rise, flip, and fall.

[0053] Furthermore, such as Figure 12 As shown, the adsorption assembly 13 also includes a fixed base 132 fixedly mounted on the turntable 8, a limiting groove 133 opened on the fixed base 132, a slider 134 slidably mounted in the limiting groove 133, a flip tube 135 rotatably mounted in the slider 134, and a guide rod 136 fixedly mounted on the flip tube 135. The flip tube 135 is fixedly connected to the adsorption plate 131. The bottom of the guide rod 136 is spherical and cooperates with the guide groove 123. A fixed sleeve is fitted on the flip tube 135 and the fixed sleeve has a hollow structure. The fixed sleeve is fixedly connected to the connecting plate 142. A through hole is opened on the flip tube 135 and the through hole is connected to the fixed sleeve. A negative pressure device is connected to the fixed sleeve to generate negative pressure on the adsorption plate 131, which can adsorb the main board 2. When the main board 2 is assembled, the negative pressure device is closed and the adsorption plate 131 has no suction.

[0054] In addition, such as Figures 12 to 14As shown, the flipping assembly 14 includes a first bevel gear 141 fixedly mounted on the flipping tube 135, a connecting plate 142 fixedly mounted on the slider 134, a second bevel gear 143 rotatably mounted on the connecting plate 142, a third gear 144 fixedly mounted on the second bevel gear 143, and a first gear ring 145 fixedly mounted on both sides of the guide post 122. The first gear ring 145 is respectively located below the first flipping section 125 and the second flipping section 127. A fourth gear 16 is fixedly mounted on the chassis 10, and a second gear ring 17 is fixedly mounted on the base 7. The fourth gear 16 meshes with the second gear ring 17. During use, when the lamp body 1 rotates and passes through the rising section 124, it drives the adsorption plate 131 to slide within the fixed seat 132. The adsorption plate 131 rises to adsorb the main plate 2, and after adsorption, it descends, then passes through the first flipping section 125. 5. As the third gear 144 enters the first flipping section 125, it passes through the first gear ring 145, driving the first bevel gear 141, the second bevel gear 143, the flipping tube 135, the adsorption plate 131, and the main board 2 to flip 180°, so that the main board 2 faces downward. Then, the adsorption plate 131 enters the descending section 126, and the adsorption plate 131 drives the main board 2 to descend, installing the main board 2 on the lamp body 1. Then, as the adsorption plate 131 rises and enters the second flipping section 127, the fourth gear 16 passes through the second gear ring 17, driving the chassis 10 and the lamp body 1 to rotate 90°, so that the next rotating slot 42 faces the adsorption plate 131. When the adsorption plate 131 enters the second flipping section 127, it flips 180° to face upward again, preparing to adsorb the next main board 2, thereby improving the assembly efficiency of the main board 2 and replacing the manual installation method.

[0055] like Figure 15 and Figure 16As shown, the centering component 15 includes a sliding groove 151 formed on the adsorption plate 131, an extension rod 152 slidably disposed in the sliding groove 151, a clamping plate 153 fixedly disposed on the extension rod 152, and clamping blocks 154 fixedly disposed on both sides of the clamping plate 153. A spring is provided between the extension rod 152 and the sliding groove 151. The clamping blocks 154 are configured with a trapezoidal structure. In use, when the adsorption plate 131 rises to adsorb the main plate 2, it drives the extension rod 152 and the clamping blocks 154 to rise. When the clamping blocks 154 just contacts the rotating block 41, the inner wall of the clamping blocks 154 is in contact with the outer wall of the rotating block 41. During the continued rising process, the clamping blocks 154... 154 clamps the two rotating blocks 41 through a trapezoidal structure, causing the two rotating blocks 41 to deform inward. When the adsorption plate 131 flips for assembly, the adsorption plate 131 drives the rotating blocks 41 to fall onto the lamp body 1 and onto the rotating groove 42. As the adsorption plate 131 continues to descend, it drives the rotating blocks 41 to slide between the clamping blocks 154 into the rotating groove 42. The spring is compressed until the rotating blocks 41 are released from the clamping blocks 154 and unfold outward to restore their original shape, and then lock into the rotating groove 42, completing the assembly of the single main board 2. This makes the rotating blocks 41 more accurately locked into the rotating groove 42, improving the centering effect.

[0056] Work process

[0057] When lighting is needed, push the handle 3 downwards. The handle 3 drives the first rack 46 to slide, which in turn drives the first gear 44 to rotate, causing the main board 2 to close. After closing, the lamp sheet is powered on for lighting. At the same time, the handle 3 drives the sliding plate 53 to slide through the hinge rod 54, causing the handle 51 to slide out from the lamp body 1. The handle 51 facilitates the movement of the lamp body 1. When the main board 2 is unfolded, the handle 3 drives the second cross 68 and the third rack 69 to slide, which drives the second gear 610 to rotate. The second rack 66 drives the support rod 61 and the rectangular rod 64 to slide in the track 63 through the first hinge block 65 and the second hinge block 67. As the support rod 61 slides downwards, it can rotate through the rectangular rod 64 sliding in the track 63. When rotating, the first hinge block 65 extends and retracts, causing the support rod 61 to extend out of the support groove 62 and unfold, thus providing support and preventing the main board 2 from tipping over when storing solar energy. Conversely, when the main board 2 is closed, the support rod 61 retracts back into the support groove 62.

[0058] During assembly, the lamp body 1 is placed on the chassis 10 manually or by a robotic arm. As the lamp body 1 rotates, it passes through the rising section 124, causing the adsorption plate 131 to slide within the fixed base 132. The adsorption plate 131 rises to adsorb the main plate 2, simultaneously causing the extension rod 152 and the clamping block 154 to rise. When the clamping block 154 first contacts the rotating block 41, its inner wall adheres to the outer wall of the rotating block 41. During the continued rising process, the clamping block 154 clamps the two rotating blocks 41 inwards through its trapezoidal structure. After adsorption, it descends, then passes through the first flipping section 125. Simultaneously, the third gear 144 passes through the first gear ring 145, causing the first bevel gear 141, the second bevel gear 143, the flipping tube 135, the adsorption plate 131, and the main plate 2 to flip 180°, making the main plate 2 face downwards. Then, the adsorption plate 131 enters the descending section 126, causing the main plate 2 to descend. The rotating block 41 falls onto the lamp body 1 and is located on the rotating groove 42. As the adsorption plate 131 continues to descend, it drives the rotating block 41 to slide between the clamping blocks 154 into the rotating groove 42. The spring is compressed until the rotating block 41 disengages from the clamping blocks 154 and unfolds outward to return to its original position, locking into the rotating groove 42. This completes the assembly of the single main board 2, making the rotating block 41 more precise when locked in the rotating groove 42 and improving the centering effect. After the main board 2 is installed on the lamp body 1, the adsorption plate 131 rises into the second flip section 127. At the same time, the fourth gear 16 passes through the second gear ring 17, driving the chassis 10 and the lamp body 1 to rotate 90°, so that the next rotating groove 42 faces the adsorption plate 131. When the adsorption plate 131 enters the second flip section 127, it flips 180° to face upward again, preparing to adsorb the next main board 2, thereby improving the assembly efficiency of the main board 2 and replacing the manual installation method.

[0059] In the description of this invention, it should be understood that the terms "front and back", "left and right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention.

[0060] Of course, those skilled in the art should understand that the term "a" should be understood as "at least one" or "one or more". That is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple. The term "a" should not be understood as a limitation on the quantity.

[0061] The above description, in conjunction with the accompanying drawings, represents only preferred embodiments of the present invention. However, the present invention is not limited to the above embodiments. It should be noted that those skilled in the art can make various modifications and improvements without departing from the structure of the present invention. These modifications and improvements should also be considered within the scope of protection of the present invention and will not affect the effectiveness and practicality of the present invention.

Claims

1. An assembly device for a portable solar folding lamp, the folding lamp comprising a lamp body (1) and a plurality of main plates (2) rotating on the lamp body (1), a handle (3) slidably disposed at the center of the upper end face of the lamp body (1), an opening and closing assembly (4) and a lifting assembly (5) and a support assembly (6) driven by the opening and closing assembly (4) are disposed between the handle (3) and the main plates (2), the opening and closing assembly (4) comprising a rotating block (41) fixedly disposed on the main plates (2), a plurality of rotating grooves (42) formed on the lamp body (1), a rotating rod (43) rotatably disposed in the rotating grooves (42), and a first gear (44) fixedly disposed on the rotating rod (43). The lifting assembly (5) includes a handle (51), a first cross (45) fixedly mounted on the handle (3), a first rack (46) fixedly mounted on the first cross (45), a rotating block (41) fixedly connected to a rotating rod (43), a first gear (44) meshing with the first rack (46), and a lifting assembly (5) including a handle (51), a fixed plate (52) fixedly mounted inside the lamp body (1), a sliding plate (53) slidably mounted on the fixed plate (52), a hinge rod (54) rotatably mounted between the handle (3) and the sliding plate (53), and a through slot (55) opened on the lamp body (1). The handle (51) is slidably mounted on the fixed plate (52) and is connected to the through slot (55). In conjunction with this, the support assembly (6) includes a support rod (61), several support grooves (62) opened at the lower end of the lamp body (1), a track (63) opened on both sides of the support grooves (62), a rectangular rod (64) slidably arranged in the track (63), a first hinge block (65) fixedly arranged on the support rod (61), a second rack (66) slidably arranged on the lamp body (1), a second hinge block (67) fixedly arranged on the second rack (66), a second cross (68) fixedly arranged on the handle (3), a third rack (69) fixedly arranged on the second cross (68), and a second gear (610) rotatably arranged on the second cross (68). The support rod (61) is fixedly connected to the rectangular rod (64), the first hinge block (65) is configured as a telescopic structure and cooperates with the second hinge block (67), the second rack (66) and the third rack (69) are both meshed with the second gear (610), the opening and closing assembly (4) is used to drive the main board (2) to close while the handle (3) slides down, the lifting assembly (5) is used to drive the handle (51) to slide out while the main board (2) closes, the support assembly (6) is used to drive the support rod (61) to close while the handle (51) slides out, the assembly device includes a base (7) and a turntable (8) rotatably set on the base (7), characterized in that: The turntable (8) is provided with several base plates (10) for supporting the lamp body (1). A feeding assembly (11) is provided above the turntable (8). A guide assembly (12) and an adsorption assembly (13) driven by the guide assembly (12) are provided in the middle of the turntable (8). The adsorption assembly (13) includes an adsorption plate (131). A flipping assembly (14) is provided on the rotation path of the adsorption plate (131). A centering assembly (15) is provided at one end of the adsorption plate (131). The centering assembly (15) includes a sliding groove (151) opened on the adsorption plate (131), an extension rod (152) slidably arranged in the sliding groove (151), and a fixed assembly on the extension rod (152). The clamping plate (153) and clamping blocks (154) are fixedly arranged on both sides of the clamping plate (153). A spring is provided between the extension rod (152) and the sliding groove (151). The clamping block (154) is set as a trapezoidal structure. The feeding component (11) is used to feed the main board (2) in sequence. The guide component (12) is used to drive the adsorption plate (131) to rise and fall. The adsorption component (13) is used to install the rotating block (41) in the rotating groove (42) after the adsorption plate (131) adsorbs the main board (2). The flipping component (14) is used to drive the adsorption plate (131) to flip. The centering component (15) is used to center the rotating block (41) when it is installed in the rotating groove (42).

2. The assembly device for a portable solar-powered folding lamp according to claim 1, characterized in that: The feeding assembly (11) includes a feeding frame (111), belts (112) rotatably disposed on both sides of the feeding frame (111), and a support plate (113) fixedly disposed on the belts (112). The support plate (113) cooperates with the main board (2).

3. The assembly device for a portable solar-powered folding lamp according to claim 1, characterized in that: The guide assembly (12) includes a fixed plate (121) fixedly mounted on the base (7), a guide post (122) fixedly mounted on the fixed plate (121), and a guide groove (123) opened on the guide post (122). The guide groove (123) is composed of an ascending section (124), a first flipping section (125), a descending section (126), and a second flipping section (127).

4. The assembly device for a portable solar-powered folding lamp according to claim 3, characterized in that: The adsorption assembly (13) further includes a fixed seat (132) fixedly mounted on the turntable (8), a limiting groove (133) opened on the fixed seat (132), a slider (134) slidably mounted in the limiting groove (133), a flip tube (135) rotatably mounted in the slider (134), and a guide rod (136) fixedly mounted on the flip tube (135). The flip tube (135) is fixedly connected to the adsorption plate (131), and the bottom of the guide rod (136) is spherical and cooperates with the guide groove (123).

5. The assembly device for a portable solar-powered folding lamp according to claim 4, characterized in that: The flipping assembly (14) includes a first bevel tooth (141) fixedly mounted on the flipping tube (135), a connecting plate (142) fixedly mounted on the slider (134), a second bevel tooth (143) rotatably mounted on the connecting plate (142), a third gear (144) fixedly mounted on the second bevel tooth (143), and a first gear ring (145) fixedly mounted on both sides of the guide post (122). The first gear ring (145) is respectively located below the first flipping section (125) and the second flipping section (127). A fourth gear (16) is fixedly mounted on the chassis (10), and a second gear ring (17) is fixedly mounted on the base (7). The fourth gear (16) meshes with the second gear ring (17).

Citation Information

Patent Citations

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    CN212430726U

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