A charging pile assembling device
The use of conveyor belts and precision guidance systems has solved the problems of LED light strip damage and structural incompleteness during the assembly of charging piles, enabling efficient and non-destructive installation and testing of LED light strips, thus improving product quality and production efficiency.
Patent Information
- Application Number
- CN202311043014.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-08-18
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2043-08-18
AI Technical Summary
During the installation of LED light strips in existing charging piles, the LED light strips are easily damaged by collisions with the housing, and some light strips have incomplete internal structures, causing them to malfunction and affecting the product qualification rate.
The system employs a conveyor belt, bracket, collection box, positioning block, dial ring, filling assembly, feeding assembly, and detection system to precisely guide and detect LED light strips, preventing collisions between the LED light strip and the lamp cover and ensuring the structural integrity of the light strip.
It effectively protects LED light strips from damage, improves product qualification rate, reduces labor costs associated with manually disassembling abnormal charging piles, and ensures efficient and high-quality charging pile assembly.
Smart Images

Figure CN117300554B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of charging pile assembly technology, and more particularly to a charging pile assembly device. Background Technology
[0002] LED light strips are made by soldering LEDs onto copper wires or flexible circuit boards using a special process, and then connecting them to a power source to emit light. They are named for their light strip shape when they are lit. Charging stations are usually equipped with LED indicator lights, which can tell consumers the current charging status and provide other relevant information. Therefore, the quality of LED light strips needs to be guaranteed during the production of charging stations. However, in the existing charging station installation process, the LED light strips are prone to collisions with the housing, resulting in damage to the LED light strips.
[0003] Meanwhile, some LED light strips produced in batches have incomplete internal structures, which causes them to malfunction after being installed in charging piles. This requires manual disassembly of the faulty charging piles, increasing unnecessary labor. Summary of the Invention
[0004] To overcome the shortcomings of LED light strips being easily damaged by collisions with the housing during installation, and the inability to promptly identify individual defective products, resulting in LED light strips with incomplete internal structures affecting the product qualification rate, this invention provides a charging pile assembly device.
[0005] The technical solution of the present invention is as follows: a charging pile assembly device, comprising a conveyor belt, a support, and a collection box; a support is installed on the upper side of the conveyor belt; a collection box is provided at the front of the conveyor belt; an LED light strip is placed on the collection box; a lamp cover is placed on the conveyor belt; it also includes a positioning block, a dial ring, a filling component, a feeding component, and a detection system; a positioning block for two-dimensional motion tracking of the lamp cover is installed on the support; a filling component for installing the LED light strip is provided at the lower side of the positioning block; a slot for placing the LED light strip is opened on the upper side of the lamp cover; a dial ring for guiding the LED light strip into the lamp cover is installed on the filling component; a detection system for detecting the LED light strip is provided on the guide; and a feeding component for transporting the LED light strip is installed at the front of the conveyor belt.
[0006] More preferably, the loading assembly includes a base, a guide, a limiting plate, support columns, a squeezer, a fixing ring, a first limiting ring, a second limiting ring, and a fixing frame; a base that moves up and down is provided on the lower side of the positioning block; a guide for guiding the LED light strip is rotatably connected to the base; several limiting plates for stabilizing the lampshade during installation are fixedly connected in a ring array on the lower side of the base; a groove is provided in the middle of the lampshade; a first guide groove for guiding the LED light strip connector is provided on the guide; with a downward view as a reference, four support columns are fixedly connected in a ring array on the upper side of the guide; the guide... A fixing ring is provided above the device to fix the support columns; all four support columns are fixedly connected to the fixing ring; a presser is provided above the guide to move up and down to press the support columns; all four support columns are slidably connected to the presser; a first limiting ring is rotatably connected to the upper side of the base; a second limiting ring is movably connected to the middle of the base; a sliding groove for the second limiting ring to move up and down is opened in the middle of the base; based on the top-down view, four fixing frames are fixedly connected in a ring array on the outer side of the second limiting ring; all four fixing frames pass through the middle of the guide and are fixedly connected to the upper side of the dial ring; the fixing frames are offset from the support columns.
[0007] More preferably, the loading assembly further includes a first driving member, a second driving member, a first electric slide rail, and a slider; the first driving member is fixedly connected to the positioning block; the driving end of the first driving member is fixedly connected to the base; a plurality of second driving members are fixedly connected in a ring array on the lower side of the first limiting ring; the driving end of each second driving member is connected to the second limiting ring by bolts; a first electric slide rail is installed on the outer side of each support column; a slider is slidably connected to each first electric slide rail; each slider is connected to the extruder by bolts.
[0008] More preferably, the upper side of the guide has a first guide surface that slopes toward the center of the base.
[0009] More preferably, the lower side of the dial ring is provided with several first protrusions, and the lower side of the guide is provided with several second protrusions for cooperating with the first protrusions to guide the LED light strip.
[0010] More preferably, the lower side of each second protrusion is configured to be upturned toward the center of the base, and the lower side of each first protrusion is configured to be upturned toward the guide, so that the lower side of the second protrusion and the lower side of the first protrusion form an angled opening.
[0011] More preferably, a second guide groove is provided on the lower side of the extruder for limiting the LED light strip.
[0012] More preferably, the dial ring is provided with a slope that tilts downward toward the guide, so that the distance between the dial ring and the guide gradually decreases from top to bottom.
[0013] More preferably, the feeding assembly includes a robotic arm, a first fixed block, a guide roller, and a robotic hand; a robotic arm is mounted on the conveyor belt; the conveyor belt and the robotic arm are connected by a fixed plate; two first fixed blocks that open and close symmetrically from left to right for positioning the guide are movably connected to the rear side of the robotic arm by a torsion spring; two guide rollers that are symmetrically front and rear for guiding the first fixed blocks are rotatably connected to the rear side of each of the two first fixed blocks; and a robotic hand for clamping LED light strips is slidably connected to the lower side of each of the two first fixed blocks.
[0014] More preferably, the detection system includes a second fixing block, a U-shaped block, a limiting block, a third fixing block, and a charger; with a reference point facing the first guide groove, the guide is provided with two left-right symmetrical second fixing blocks; a U-shaped block is rotatably connected between the two second fixing blocks; two left-right symmetrical limiting blocks that move back and forth to limit the LED strip connector are slidably connected in the middle of the U-shaped block; with a reference point facing the first guide groove, the guide is provided with two left-right symmetrical third fixing blocks; a charger that moves up and down to detect the charging of the LED strip is installed between the two third fixing blocks; each of the two limiting blocks is provided with a second guide surface; a charging interface is provided on the lower side of the charger.
[0015] The beneficial effects are: the present invention enables the base to drive the limiting plate to move downward, so that the limiting plate is locked into the inner side of the groove, thereby restricting the lamp cover and preventing the lamp cover from accidentally deviating, which would damage the LED light strip during installation and affect the lifespan of the LED light strip;
[0016] By controlling the guide to rotate the LED light strip clockwise or counterclockwise, the angle of the LED light strip is adjusted so that the LED light strip matches the fixed position on the slot. This prevents the LED light strip from not matching the fixed position on the slot, which would cause the LED light strip to fail to enter the slot and reduce the product qualification rate.
[0017] The LED light strip is initially positioned by the first guide groove to prevent misalignment when the LED light strip enters the slot, which could cause the LED light strip to fall off easily during use and reduce product quality.
[0018] The first guiding surface gathers the wires on the LED strip to prevent the wires on the LED strip connector from becoming tangled and intertwined during the process of the LED strip entering the guide, which would affect subsequent installation work.
[0019] The first protrusion and the second protrusion work together to guide the LED light strip into the slot, preventing the lower side of the LED light strip from hitting the upper surface of the lamp cover, which would damage the LED lights on the LED light strip and affect product quality.
[0020] The LED light strip is initially buffered by the angled opening formed by the lower side of the second protrusion and the lower side of the first protrusion, which facilitates the cooperation between the second protrusion and the first protrusion to feed the LED light strip into the slot, preventing the LED light strip from separating from the guide in advance and affecting the normal operation of the equipment.
[0021] The upper side of the LED light strip is guided to the middle of the second guide groove to prevent the upper side of the LED light strip from getting stuck between the lower side of the extruder and the guide, which would cause the extruder to jam and affect the equipment installation.
[0022] By using guide rollers to reduce the friction between the first fixed block and the extruder, excessive friction can be prevented from causing deformation of the extruder and affecting the normal operation of the equipment.
[0023] By using a U-shaped block, a limiting block, and a charger, the LED light strip connector is inserted into the charging interface on the lower side of the charger, and then the LED light strip is powered on for testing. This prevents abnormal LED light strips from being installed into the lamp cover during installation, which would require manual disassembly of the abnormal charging pile and increase unnecessary labor. Attached Figure Description
[0024] Figure 1 This is a three-dimensional structural diagram of the charging pile assembly device of the present invention;
[0025] Figure 2 This is a schematic diagram of a second three-dimensional structure of the charging pile assembly device of the present invention;
[0026] Figure 3 This is a schematic diagram of the first partial three-dimensional structure of the present invention;
[0027] Figure 4 This is a schematic diagram of the second partial three-dimensional structure of the present invention;
[0028] Figure 5 This is a partial cross-sectional view of the loading assembly of the present invention;
[0029] Figure 6 For the present invention Figure 5 Enlarged view of area A in the middle;
[0030] Figure 7 This is a second partial cross-sectional view of the loading assembly of the present invention;
[0031] Figure 8 For the present invention Figure 7 Enlarged view of area B in the middle;
[0032] Figure 9 This is a third partial cross-sectional view of the loading assembly of the present invention;
[0033] Figure 10 This is a schematic diagram of the first three-dimensional structure of the feeding assembly of the present invention;
[0034] Figure 11 This is a schematic diagram of a second three-dimensional structure of the feeding assembly of the present invention;
[0035] Figure 12 This is a schematic diagram of a third three-dimensional structure of the feeding assembly of the present invention;
[0036] Figure 13 This is a three-dimensional structural diagram of the feeding component of the present invention;
[0037] Figure 14 This is a schematic diagram of the first three-dimensional structure of the detection system of the present invention;
[0038] Figure 15 This is a schematic diagram of a second three-dimensional structure of the detection system of the present invention;
[0039] Figure 16 This is a three-dimensional structural diagram of the detection system of the present invention.
[0040] In the attached drawings: 1-conveyor belt, 2-bracket, 3-positioning block, 4-toggle ring, 4001-first protrusion, 4002-sloping surface, 5-LED light strip, 6-collection box, 7-lampshade, 7001-slot, 7002-groove, 101-first driving component, 102-base, 10201-slide groove, 103-guide, 10301-first guide surface, 10302-second protrusion, 10303-first guide groove, 104-limiting plate, 105-support column, 106-pressor, 10601-second guide groove 107-Fixing ring, 108-First limiting ring, 109-Second driving component, 110-Second limiting ring, 111-Fixing frame, 112-First electric slide rail, 113-Slider, 201-Robotic arm, 202-First fixing block, 203-Guide roller, 204-Robotic hand, 301-Second fixing block, 302-U-shaped block, 303-Third driving component, 304-Limiting block, 30401-Second guiding surface, 305-Third fixing block, 306-Second electric slide rail, 307-Charger, 308-Servo motor. Detailed Implementation
[0041] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0042] Example 1
[0043] like Figures 3-9 As shown, a charging pile assembly device includes a conveyor belt 1, a bracket 2, and a collection box 6; the bracket 2 is installed on the upper side of the conveyor belt 1; the collection box 6 is provided on the front side of the conveyor belt 1; an LED light strip 5 is placed on the collection box 6; a lampshade 7 is placed on the conveyor belt 1, and the lampshade 7 is transported to the bottom of the bracket 2 by the conveyor belt 1.
[0044] It also includes a positioning block 3, a dial ring 4, a filling assembly, a feeding assembly, and a detection system; a positioning block 3 is installed in the middle of the bracket 2; a filling assembly is installed on the lower side of the positioning block 3; a slot 7001 is opened on the upper side of the lampshade 7; a dial ring 4 is installed on the filling assembly; a detection system is installed on the guide 103; a feeding assembly is installed on the front side of the conveyor belt 1. Since each lampshade 7 cannot maintain the same line as the previous lampshade 7 during the process of the conveyor belt 1 transporting the lampshade 7, when the conveyor belt 1 transports the lampshade 7 to the bottom of the bracket 2, the positioning block 3 drives the filling assembly to track the lampshade 7, and at the same time... To prevent the LED strip 5 from being inaccurately installed into the slot 7001 during manual loading, the LED strip 5 in the collection box 6 is transferred to the loading component through the feeding component when the positioning block 3 drives the loading component to remain perpendicular to the lamp cover 7. Then, the loading component drives the LED strip 5 to move downwards. Subsequently, the dial ring 4 cooperates with the loading component to load the LED strip 5 into the slot 7001, preventing the LED strip 5 from scratching with the slot 7001 during manual loading and reducing the service life of the LED strip 5.
[0045] The loading assembly includes a base 102, a guide 103, a limiting plate 104, a support column 105, a squeezer 106, a fixing ring 107, a first limiting ring 108, a second limiting ring 110, and a fixing frame 111; the positioning block 3 has a base 102 on its lower side; the guide 103 is rotatably connected to the base 102; several limiting plates 104 are fixedly connected in a circular array on the lower side of the base 102; a groove 7002 is provided in the middle of the lampshade 7. In order to prevent the lampshade 7 from accidentally deviating during the installation of the LED light strip 5, the limiting plate 104 is moved downward by the base 102, so that the limiting plate 104 is engaged in the groove. Inside 7002, the lampshade 7 is restrained to prevent accidental deviation, which could damage the LED strip 5 during installation and affect its lifespan. Then, as the guide 103 lowers the LED strip 5 close to the upper side of the lampshade 7, to prevent misalignment between the LED strip 5 and the fixing position on the slot 7001, the guide 103 is rotated clockwise or counterclockwise to adjust the angle of the LED strip 5, ensuring it matches the fixing position on the slot 7001, thus preventing misalignment. Mismatched positioning prevents the LED strip 5 from entering the slot 7001, reducing the product qualification rate. A first guide groove 10303 is provided on the rear side of the guide 103. During the process of the LED strip 5 entering the guide 103, the connector on the LED strip 5 engages in the first guide groove 10303, providing initial positioning of the LED strip 5 and preventing misalignment when entering the slot 7001, which could lead to the LED strip 5 easily falling off during use and reducing product quality. From a downward viewing perspective, four support columns 10 are fixedly connected in a circular array on the upper side of the guide 103. 5; A fixing ring 107 is provided above the guide 103; four support columns 105 are all fixedly connected to the fixing ring 107; a squeezer 106 is provided above the guide 103; four support columns 105 are all slidably connected to the squeezer 106; a first limiting ring 108 is rotatably connected to the upper side of the base 102; a second limiting ring 110 is movably connected to the middle of the base 102; a sliding groove 10201 is opened in the middle of the base 102; based on the top-down view, four fixing brackets 111 are fixedly connected in a ring array on the outer side of the second limiting ring 110; the four fixing brackets 111 all pass through the middle of the guide 103 and are fixedly connected to the upper side of the dial ring 4;The fixing bracket 111 and the support column 105 are misaligned. After the limiting plate 104 stabilizes the lamp cover 7, to prevent the LED light strip 5 from not being at the same level within the guide 103, the extruder 106 moves downward, pressing the LED light strip 5 from below. After pressing the LED light strip 5 to a horizontal position, the extruder 106 continues to press the LED light strip 5 downward to prevent it from getting stuck in the middle of the guide 103, affecting the subsequent installation process. Then, when the extruder 106 continues to press the LED light strip 5 to the lower side of the dial ring 4, the second limit starts to drive several fixing brackets 111 to move towards the lower side of the slide groove 10201, causing the several fixing brackets 111 to drive the dial ring 4 downward. At this time, the dial ring 4 presses the horizontally positioned LED light strip 5 downward, keeping the LED light strip 5 horizontal as it enters the slot 7001, further preventing the LED light strip 5 from tilting into the slot 7001, which would cause the LED lights on the LED light strip 5 to be scratched and reduce the lifespan of the LED light strip 5.
[0046] The loading assembly also includes a first drive member 101, a second drive member 109, a first electric slide rail 112, and a slider 113; the first drive member 101 is fixedly connected to the positioning block 3; the drive end of the first drive member 101 is connected to the base 102 by bolts; the first drive member 101 is a push rod; several second drive members 109 are fixedly connected in a ring array on the lower side of the first limiting ring 108; the drive end of each second drive member 109 is connected to the second limiting ring 110 by bolts; the second drive member 109 is a push rod, and when the guide 103 rotates, it simultaneously controls the first limiting ring 108 to drive several second drive members 109 to rotate with the guide 103, and then drives the second limiting ring 110 through the second drive members 109. The rotation of the second limiting ring 110 further causes the second limiting ring 110 to drive several fixed frames 111 to rotate, which in turn causes the fixed frames 111 to drive the dial ring 4 to rotate. When the dial ring 4 needs to move up and down, several second driving components 109 are controlled to simultaneously drive the second limiting ring 110 to move up and down in the slide groove 10201. Each support column 105 has a first electric slide rail 112 installed on its outer side. Each first electric slide rail 112 has a slider 113 slidably connected to it. Each slider 113 is connected to the extruder 106 by bolts. By controlling each first electric slide rail 112 to drive the adjacent slider 113 to move down simultaneously, each slider 113 simultaneously drives the extruder 106 to move up and down.
[0047] The upper side of the guide 103 is provided with a first guide surface 10301 that is inclined toward the middle of the base 102. When the positioning block 3 drives the filling component to remain perpendicular to the lamp cover 7, the LED light strip 5 is manually placed into the upper side of the guide 103. The first guide surface 10301 is used to gather the wires on the LED light strip 5 to prevent the wires on the connector of the LED light strip 5 from becoming complicated and intertwined during the process of the LED light strip 5 entering the guide 103, which would affect the subsequent installation work.
[0048] The lower side of the dial ring 4 is provided with several first protrusions 4001, and the lower side of the guide 103 is provided with several second protrusions 10302. After the limit plate 104 stabilizes the lamp cover 7, the second limit starts to drive several fixing brackets 111 to move towards the lower side of the slide groove 10201, so that the dial ring 4 drives several first protrusions 4001 to move downward, and further allows each first protrusion 4001 to enter the slot 7001. Through the cooperation of the first protrusion 4001 and the second protrusion 10302, the LED light strip 5 is guided into the slot 7001, preventing the lower side of the LED light strip 5 from hitting the upper surface of the lamp cover 7, which would damage the LED lights on the LED light strip 5 and affect the product quality.
[0049] The lower side of each second protrusion 10302 is designed to curve upwards toward the center of the base 102, and the lower side of each first protrusion 4001 is designed to curve upwards toward the guide 103, so that the lower side of the second protrusion 10302 and the lower side of the first protrusion 4001 form an angled opening. The first protrusion 4001 is made of a flexible material. To prevent the LED light strip 5 from prematurely separating from the guide 103 when the guide 103 drives the LED light strip 5 into the slot 7001, a mechanism is used to prevent the LED light strip 5 from separating from the guide 103 before it enters the slot. When surface 10301 enters the lower side of guide 103, LED light strip 5 enters between the lower side of second protrusion 10302 and first protrusion 4001. Through the angled opening formed by the lower side of second protrusion 10302 and lower side of first protrusion 4001, LED light strip 5 is initially buffered, which facilitates the cooperation between second protrusion 10302 and first protrusion 4001 to send LED light strip 5 into slot 7001, preventing LED light strip 5 from separating from guide 103 in advance and affecting normal operation of equipment.
[0050] The extruder 106 has a second guide groove 10601 on its lower side. In order to prevent the upper side of the LED light strip 5 from getting stuck between the lower side of the extruder 106 and the guide 103 when the extruder 106 extrudes the LED light strip 5, the upper side of the LED light strip 5 is guided to the middle of the second guide groove 10601 through the second guide groove 10601. This prevents the upper side of the LED light strip 5 from getting stuck between the lower side of the extruder 106 and the guide 103, which would cause the extruder 106 to jam and affect the equipment installation.
[0051] The dial ring 4 is provided with a slope 4002 that tilts downward toward the guide 103, so that the distance between the dial ring 4 and the guide 103 gradually decreases from top to bottom. When the LED light strip 5 enters the lower side of the guide 103, the slope 4002 guides the LED light strip 5 to the space between the first protrusion 4001 and the second protrusion 10302, thereby limiting the LED light strip 5 and preventing the distance between the dial ring 4 and the guide 103 from being too large, which would cause the LED light strip 5 to twist irregularly during its descent inside the guide 103 and affect subsequent installation.
[0052] Example 2
[0053] Based on Example 1, such as Figures 10-13 As shown, the feeding assembly includes a robotic arm 201, a first fixed block 202, a guide roller 203, and a robotic arm 204; a robotic arm 201 is mounted on the front side of the conveyor belt 1; the conveyor belt 1 and the robotic arm 201 are connected by a fixed plate; two symmetrical first fixed blocks 202 are hinged to the rear side of the robotic arm 201 by torsion springs, and the robotic arm 201 drives the first fixed blocks 202 to move; two symmetrical guide rollers 203 are rotatably connected to the rear side of each of the two first fixed blocks 202; a robotic arm 204 is slidably connected to the lower side of each of the two first fixed blocks 202, and while the limiting plate 104 stabilizes the lamp cover 7, it controls the robotic arm 201 to move the first fixed blocks 202 above the collection box 6, and then... By controlling the robotic arm 201, the first fixed block 202 drives the robotic arm 204 to move horizontally downward to above the LED light strip 5 in the collection box 6. The robotic arm 204 is controlled to clamp the head and tail of the LED light strip 5. Then, the robotic arm 201 is controlled to move the first fixed block 202 to the front of the extruder 106, so that the first fixed block 202 and the extruder 106 are kept horizontal. Then, in order to prevent the friction of the first fixed block 202 from being too large during the horizontal movement of the first fixed block 202 from the front of the extruder 106 to the middle of the extruder 106, the friction between the first fixed block 202 and the extruder 106 is reduced by the guide roller 203 to prevent the extruder 106 from deforming due to excessive friction, which would affect the normal operation of the equipment.
[0054] Example 3
[0055] Based on Example 1, such as Figure 1 , Figure 2 and Figures 14-16As shown, the detection system includes a second fixing block 301, a U-shaped block 302, a limiting block 304, a third fixing block 305, and a charger 307. With a reference point facing the first guide groove 103, the guide 103 has two symmetrically arranged second fixing blocks 301. A U-shaped block 302 is rotatably connected between the two second fixing blocks 301. Two symmetrically arranged limiting blocks 304 are slidably connected to the middle of the U-shaped block 302. With a reference point facing the first guide groove 103, the guide 103 has two symmetrically arranged third fixing blocks 305. A charger 307 is installed between the two third fixing blocks 305. Each of the two limiting blocks 304 has a second guide surface 30401. A charging interface is provided on the lower side of the charger 307. Since it is impossible to determine whether the LED strip 5 is functioning properly during installation, while the LED strip 5 connector is limited downwards by the first guide groove 10303, if... Figure 15 As shown, by controlling the two limiting blocks 304 to move forward simultaneously, the second guide surface 30401 enters the lower side of the LED strip 5 connector, limiting the lower side of the LED strip 5 connector and further keeping the LED strip 5 connector in a vertical state. Then, the charger 307 is controlled to move downward, so that the LED strip 5 connector is inserted into the charging interface on the lower side of the charger 307, and the LED strip 5 is tested by powering on. If the LED strip 5 is tested normally, the charger 307 is controlled to move upward. At the same time, with left to right as the reference, the U-shaped block 302 is controlled to rotate clockwise, so that the U-shaped block 302 drives the two limiting blocks 304 to rotate clockwise, further separating the LED strip 5 connector from the two limiting blocks 304. Then the installation work continues normally. If the LED strip 5 is tested abnormally, the installation of the LED strip 5 is stopped, and the charger 307 sounds an alarm to remind the worker to manually remove the abnormal LED strip 5, to prevent the abnormal LED strip 5 from being installed into the lamp cover 7 during the installation process, which would require disassembling the charging pile again and increase unnecessary labor.
[0056] The detection system also includes a third drive component 303, a second electric slide rail 306, and a servo motor 308; two symmetrical third drive components 303 are fixedly mounted on the U-shaped block 302; the drive end of each third drive component 303 is fixedly connected to an adjacent limit block 304, and the limit block 304 is moved back and forth by controlling the third drive component 303, which is a push rod; each of the two third fixed blocks 305 is bolted to a second electric slide rail 306 on its facing side, and each second electric slide rail... Each of the two slide rails 306 has a slider 113, and both sliders 113 are bolted to the charger 307. By controlling the two second electric slide rails 306, the two sliders 113 are driven to move up and down, so that the two sliders 113 drive the charger 307 to move up and down. A servo motor 308 is installed on the second fixed block 301 on the right side. The output end of the servo motor 308 is connected to the U-shaped block 302. With left-to-right view as the reference, the servo motor 308 drives the U-shaped block 302 to rotate clockwise or counterclockwise.
[0057] The above description is merely an embodiment of the present invention and is not intended to limit the present invention. All equivalent substitutions made within the principles of the present invention should be included within the scope of protection of the present invention. Contents not described in detail in this invention belong to existing technology known to those skilled in the art.
Claims
1. A charging pile assembling device, comprising a conveyor belt (1), a support (2) and a collection box (6); the support (2) is installed on the upper side of the conveyor belt (1); the collection box (6) is arranged on the front side of the conveyor belt (1); the LED lamp strip (5) is placed on the collection box (6); the lamp shade (7) is placed on the conveyor belt (1); characterized in that: The positioning block (3), the dial ring (4), the filling assembly, the feeding assembly and the detection system are further included; the positioning block (3) for tracking the lampshade (7) is installed on the bracket (2) with two-dimensional movement; the filling assembly for installing the LED lamp strip (5) is arranged on the lower side of the positioning block (3); the clamping groove (7001) for placing the LED lamp strip (5) is arranged on the upper side of the lampshade (7); the dial ring (4) for guiding the LED lamp strip (5) into the lampshade (7) is installed on the filling assembly; the detection system for detecting the LED lamp strip (5) is arranged on the guide (103); the feeding assembly for conveying the LED lamp strip (5) is installed on the front side of the conveying belt (1); The filling assembly includes the base (102), the guide (103), the limiting plate (104), the support column (105), the extruder (106), the fixed ring (107), the first limiting ring (108), the second limiting ring (110) and the fixed frame (111); the base (102) moving up and down is arranged on the lower side of the positioning block (3); the guide (103) for guiding the LED lamp strip (5) is rotatably connected to the base (102); the limiting plate (104) for stabilizing the lampshade (7) during installation is fixedly connected in an annular array on the lower side of the base (102); the recess (7002) is arranged in the middle of the lampshade (7); the first guide groove (10303) for guiding the joint of the LED lamp strip (5) is arranged on the guide (103); four support columns (105) are fixedly connected in an annular array on the upper side of the guide (103) with the lower side as the reference; the fixed ring (107) for fixing the support column (105) is arranged above the guide (103); the four support columns (105) are fixedly connected with the fixed ring (107); the extruder (106) moving up and down for extruding the support column (105) is arranged above the guide (103); the four support columns (105) are slidingly connected with the extruder (106); the first limiting ring (108) is rotatably connected to the upper side of the base (102); the second limiting ring (110) is movably connected to the middle of the base (102); the sliding groove (10201) for the up-and-down movement of the second limiting ring (110) is arranged in the middle of the base (102); four fixed frames (111) are fixedly connected in an annular array on the outer side of the second limiting ring (110) with the upper side as the reference; the four fixed frames (111) penetrate through the middle of the guide (103) and are fixedly connected with the upper side of the dial ring (4); the fixed frame (111) is arranged in a staggered manner with the support column (105).
2. The charging pile assembling device according to claim 1, characterized in that: The filling assembly further comprises a first driving member (101), a second driving member (109), a first electric sliding rail (112) and a sliding block (113); the first driving member (101) is fixedly connected to the positioning block (3); the driving end of the first driving member (101) is fixedly connected to the base (102); a plurality of second driving members (109) are fixedly connected to the lower side of the first limiting ring (108) in an annular array; the driving end of each second driving member (109) is connected to the second limiting ring (110) through a bolt; one first electric sliding rail (112) is mounted to the outer side of each supporting column (105); one sliding block (113) is slidably connected to each first electric sliding rail (112); each sliding block (113) is connected to the extruder (106) through a bolt.
3. The charging pile assembling device according to claim 2, characterized in that: The upper side of the guide (103) is provided with a first guide surface (10301) inclined to the middle part of the base (102).
4. The charging pile assembling device according to claim 3, characterized in that: The lower side of the dial ring (4) is provided with a plurality of first protrusions (4001), and the lower side of the guide (103) is provided with a plurality of second protrusions (10302) for guiding the LED lamp strip (5) in cooperation with the first protrusions (4001).
5. The charging pile assembling device according to claim 4, characterized in that: The lower side of each second protrusion (10302) is provided in a shape of being raised to the middle part of the base (102), and the lower side of each first protrusion (4001) is provided in a shape of being raised to the guide (103), so that the lower side of the second protrusion (10302) and the lower side of the first protrusion (4001) form an angular opening.
6. The charging pile assembling device according to claim 2, characterized in that: The lower side of the extruder (106) is provided with a second guide groove (10601) for limiting the LED lamp strip (5).
7. The charging pile assembling device according to claim 4, characterized in that: The dial ring (4) is provided with an inclined surface (4002) inclined to the lower side of the guide (103), so that the distance between the dial ring (4) and the guide (103) gradually decreases from top to bottom.
8. The charging pile assembling device according to claim 7, characterized in that: The feeding assembly comprises a mechanical arm (201), a first fixed block (202), a guide roller (203) and a mechanical hand (204); the conveying belt (1) is provided with a mechanical arm (201); the conveying belt (1) and the mechanical arm (201) are connected through a fixed plate; the rear side of the mechanical arm (201) is movably connected with two first fixed blocks (202) which are symmetrical left and right and are opened and closed for positioning the guide (103) through a torsion spring; the rear side of each first fixed block (202) is rotatably connected with two guide rollers (203) which are symmetrical front and rear and are used for guiding the first fixed block (202); the lower side of each first fixed block (202) is slidably connected with a mechanical hand (204) for clamping the LED lamp strip (5).
9. The charging pile assembling device according to claim 8, characterized in that: The detection system comprises a second fixing block (301), a U-shaped block (302), a limiting block (304), a third fixing block (305) and a charger (307); two second fixing blocks (301) are symmetrically arranged on the guide (103) in the direction opposite to the first guide groove (10303); the U-shaped block (302) is rotatably connected between the two second fixing blocks (301); the limiting blocks (304) are symmetrically arranged on the U-shaped block (302) and are used for limiting the joints of the LED lamp strip (5); two third fixing blocks (305) are symmetrically arranged on the guide (103) in the direction opposite to the first guide groove (10303); the charger (307) is installed between the two third fixing blocks (305) and is used for charging and detecting the LED lamp strip (5); each of the two limiting blocks (304) is provided with a second guide surface (30401); and the charger (307) is provided with a charging interface on the lower side.
Citation Information
Patent Citations
New energy automobile charging pile automatic assembling equipment and charging pile assembling process
CN115446577A
Ceiling lamp strip pressing mechanism
CN217193743U