Light guide column automated assembly equipment

By designing automated assembly equipment and utilizing conveyor belts, sensors, and assembly devices, efficient assembly of light guides and electronic device housings is achieved, solving the low efficiency problem of existing technologies and enabling simultaneous assembly of multiple light guides and housings.

CN116787370BActive Publication Date: 2025-09-19SHENZHEN BSC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202311005118.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-10
Publication Date
2025-09-19
Estimated Expiration
2043-08-10

AI Technical Summary

Technical Problem

Existing light guide assembly equipment is inefficient and cannot efficiently assemble multiple light guides and electronic device housings simultaneously.

Method used

An automated assembly equipment was designed, which included a workbench, a conveyor rack, a conveyor belt, a sensor, a vibration plate, a feeding and fixing mechanism, and an assembly device. The electronic device casing was transported by a conveyor belt, the sensor was used to detect the quantity, the vibration plate was used to feed the materials, the feeding and fixing mechanism was used to position the materials, and the assembly device was used to achieve precise assembly of the light guide column and the electronic device casing.

Benefits of technology

The assembly efficiency of the light guide column and the electronic equipment housing is improved, and the simultaneous assembly of multiple light guide columns and housings is realized, thereby improving production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the field of light guide column assembly, and in particular to an automated assembly device for light guide columns, the automated assembly device for light guide columns comprising a workbench, a first conveyor rack, a second conveyor rack, a conveyor belt, a sensor, a vibration plate, a discharge rack, a feeding and fixing mechanism, a mounting rack and an assembly device, wherein the first conveyor rack is fixedly installed on the top of one end of the workbench, the automated assembly device for light guide columns provided by the present invention moves the electronic device casing to the interior of the second conveyor rack through the conveyance of the conveyor belt, positions and fixes several electronic device casings on the second conveyor rack through the operation of the feeding and fixing mechanism, and then moves several light guide columns to positions on several electronic device casings on the second conveyor rack where the light guide columns need to be installed through the operation of the assembly device, and this process can simultaneously assemble multiple light guide columns with multiple electronic device casings, thereby improving the efficiency of assembling the light guide columns.
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Description

Technical Field

[0001] The present invention relates to the field of light guide column assembly, and in particular to an automatic assembly device for light guide columns. Background Art

[0002] A light guide is a device that transmits light from a light source to another point at a certain distance from the light source with minimal loss. Light guides are used in electronic devices to transmit and display whether a circuit is connected, making it easier for people to check the connection status of the circuit.

[0003] When installing the light guide column, it is basically transported by a vibration plate, and then the individual light guide columns are installed one by one at the required installation position in the electronic device casing by a robot. This method can only install a single light guide column inside the electronic device, that is, the production of one product, which is low in efficiency.

[0004] Therefore, it is necessary to provide a new light guide column automated assembly equipment to solve the above technical problems. Summary of the Invention

[0005] In order to solve the above technical problems, the present invention provides an automated assembly device for light guide columns.

[0006] The automated assembly equipment for light guide columns provided by the present invention includes a workbench, a first conveyor frame, a second conveyor frame, a conveyor belt, a sensor, a vibration plate, a discharge rack, a feeding fixing mechanism, a mounting frame and an assembly device. The first conveyor frame is fixedly mounted on the top of one end of the workbench, and a second conveyor frame for placing materials is fixedly mounted at an end of the workbench corresponding to the first conveyor frame. A conveyor belt for conveying materials is mounted between one end of the first conveyor frame and the second conveyor frame. A sensor for detecting the amount of material conveyed is mounted on one side of the end of the first conveyor frame close to the second conveyor frame. The vibration plate is fixedly mounted on one end of the workbench close to the second conveyor frame, and a discharge rack is mounted on the discharge end of the vibration plate. The feeding fixing mechanism is fixedly mounted on one end of the workbench close to the second conveyor frame. The feeding fixing mechanism is used to move and position the material on the second conveyor frame. The mounting frame is fixedly mounted on the upper surface of one end of the workbench corresponding to the second conveyor frame, and an assembly device for equidistantly and dispersedly moving several light guide columns to be installed is fixedly mounted on the lower surface of the mounting frame. When the device is in use, the electronic device casing for installing the light guide column is placed on the conveyor belt, and the electronic device casing is moved to the inside of the second conveyor rack by the conveyor belt. The position of the electronic device casing on the second conveyor rack is positioned and fixed by the operation of the feeding and fixing mechanism. During this process, the number of electronic device casings passing through is detected by the sensor. When the specified number is conveyed, the operation of the conveyor belt is stopped. At the same time, the light guide column is conveyed to the end of the discharge rack by the operation of the vibration plate. At this time, the light guide column at the end corresponds to the position of the electronic device casing at the end of the second conveyor rack. Then, the assembly device is operated to move several light guide columns to the positions on several electronic device casings on the second conveyor rack where the light guide columns need to be installed, thereby realizing the assembly between the light guide columns and the electronic device casing.

[0007] Preferably, the upper surface of the conveyor belt is higher than the bottom of the inner wall of the second conveyor rack. When the electronic device housing is moved to the interior of the second conveyor rack by the conveyor belt, the electronic device housing on the conveyor belt can be moved into the interior of the second conveyor rack due to the height difference between the conveyor belt and the second conveyor rack.

[0008] Preferably, the feeding fixing mechanism includes a first linear guide, a first movable frame, a first cylinder, a second linear guide, a second movable frame, a second cylinder, a storage rack and a storage slot, the first linear guide is symmetrically fixedly installed on one end of the workbench close to the second conveying frame, the first movable frame is slidably installed between the two first linear guides, the first cylinder is fixedly installed on the upper surface of the workbench at a position corresponding to the position between the two first movable frames, the moving end of the first cylinder is fixedly connected to one side of the first movable frame, the second linear guide is fixedly installed on the upper surface of the first movable frame, the second movable frame is slidably installed on the outer side of the second linear guide, the second cylinder is fixedly installed on the top of one end of the first movable frame, the moving end of the second cylinder is fixedly connected to one end of the second movable frame, the storage rack is fixedly installed on the top of the second movable frame, and the storage slot is provided on the end of the storage rack away from the second movable frame. After the electronic device casing is moved to the interior of the second conveyor rack by the conveyor belt, the storage rack is driven to move by the operation of the first cylinder, so that the storage rack can squeeze and fix several electronic device casings, thereby ensuring that several electronic device casings can be moved to designated positions, and realizing the subsequent assembly of light guide columns on the electronic device casings.

[0009] Preferably, the storage rack has chamfers at both ends of the storage slot. When the electronic device housings are moved to the interior of the second conveyor rack by the conveyor belt, if the electronic device housings at both ends are not completely moved into the storage slot, the chamfers at both ends of the storage rack corresponding to the storage slot can be used to adjust the positions of the electronic device housings and the mutual compression between the electronic device housings, thereby ensuring that the electronic device housings are completely moved into the storage slot.

[0010] The lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of the lifting of After the electronic device casing is completely moved into the storage slot, the light guide column at the end of the discharge rack is clamped by several thumb cylinders, and then the third cylinder drives the third moving rack to slide along the track of the third linear guide rail. During this process, the guide groove will guide the moving track of several guide rods, so that several sliders connected to the thumb cylinders can move at unequal distances along the middle of the slide groove, and the light guide column clamped by the thumb cylinders is moved to the top of the electronic device casing corresponding to the installation position of the light guide column, thereby realizing the assembly between the light guide column and the electronic device casing.

[0011] Preferably, the chute and the slider slide in close contact, so that the thumb cylinder can move stably along the track of the chute.

[0012] Preferably, the guide rod is arranged in an L-shape. Since the fourth cylinder controls the positioning frame to descend, it will drive the guide rod connected to the slide block to descend, thereby ensuring that the guide rod is always in the guide groove.

[0013] Preferably, the guide groove and the guide rod slide in close contact. When the guide groove guides the movement tracks of the plurality of guide rods, the stability of the guide rods sliding inside the guide groove is achieved.

[0014] Preferably, the connecting line of the ends of the plurality of guide grooves is arranged obliquely, thereby achieving discontinuity of the plurality of guide grooves and preventing the guide rod from sliding in an incompatible guide groove.

[0015] Preferably, the inner wall width of the discharge rack is close to the diameter of the light guide column, so that the plurality of light guide columns are relatively located on a horizontal line inside the discharge rack, and the corresponding thumb cylinders can clamp the corresponding light guide columns.

[0016] Preferably, the clamping end of the thumb cylinder corresponds to the size of the light guide column, and is used for specifying the clamping of a light guide column of a specific size.

[0017] Preferably, the length of the storage slot is a multiple of the length of the electronic device housing, so as to stably fix a specified number of electronic device housings in the storage slot 88 .

[0018] Compared with the prior art, the light guide column automated assembly equipment provided by the present invention has the following beneficial effects:

[0019] The present invention provides an automated assembly device for light guide columns. When in use, the electronic device housing is moved to the inside of a second conveyor rack by means of a conveyor belt, and several electronic device housing positions on the second conveyor rack are positioned and fixed by the operation of a feeding and fixing mechanism. Then, the assembly device is operated to move several light guide columns to positions on several electronic device housings on the second conveyor rack where the light guide columns need to be installed, thereby realizing the assembly between the light guide columns and the electronic device housing. This process can simultaneously assemble multiple light guide columns and multiple electronic device housings, thereby improving the efficiency of assembling the light guide columns. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is one of the overall structural diagrams of the light guide column automated assembly equipment provided by the present invention;

[0021] Figure 2 for Figure 1 The second schematic diagram of the overall structure shown;

[0022] Figure 3 for Figure 1 Schematic diagram of the local explosion structure shown;

[0023] Figure 4 for Figure 2 One of the structural schematic diagrams of the assembly device shown;

[0024] Figure 5 for Figure 2 The second structural diagram of the assembly device shown;

[0025] Figure 6 for Figure 5 Enlarged view of point A in the middle.

[0026] Numbers in the figure: 1. workbench; 2. first conveyor rack; 3. second conveyor rack; 4. conveyor belt; 5. sensor; 6. vibration plate; 7. discharge rack; 8. feed fixing mechanism; 9. mounting rack; 10. assembly device; 81. first linear guide rail; 82. first movable rack; 83. first cylinder; 84. second linear guide rail; 85. second movable rack; 86. second cylinder; 87. storage rack; 88. storage slot; 101. third linear guide rail; 102. third movable rack; 103. third cylinder; 104. fourth cylinder; 105. positioning rack; 106. slide slot; 107. slider; 108. thumb cylinder; 109. guide rod; 1010. guide plate; 1011. guide slot. DETAILED DESCRIPTION

[0027] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0028] The specific implementation of the present invention is described in detail below with reference to specific embodiments.

[0029] See also Figures 1 to 6 , an embodiment of the present invention provides an automated assembly equipment for light guide columns, which includes a workbench 1, a first conveyor rack 2, a second conveyor rack 3, a conveyor belt 4, a sensor 5, a vibration plate 6, a discharge rack 7, a feeding fixing mechanism 8, a mounting frame 9 and an assembly device 10. The first conveyor rack 2 is fixedly installed on the top of one end of the workbench 1, and a second conveyor rack 3 for placing materials is fixedly installed at one end of the workbench 1 corresponding to the first conveyor rack 2. A conveyor belt 4 for conveying materials is installed between one end of the first conveyor rack 2 and the second conveyor rack 3. The first conveyor rack 2 is close to the second conveyor rack. A sensor 5 for detecting the amount of material conveyed is installed on one side of the end of the feeding rack 3, a vibration plate 6 is fixedly installed on one end of the workbench 1 close to the second conveying rack 3, a discharge rack 7 is installed on the discharge end of the vibration plate 6, a feeding fixing mechanism 8 is fixedly installed on one end of the workbench 1 close to the second conveying rack 3, the feeding fixing mechanism 8 is used to move and position the material on the second conveying rack 3, a mounting frame 9 is fixedly installed on the upper surface of one end of the workbench 1 corresponding to the second conveying rack 3, and an assembly device 10 for equidistantly dispersing and moving several light guide columns to be installed is fixedly installed on the lower surface of the mounting frame 9.

[0030] It should be noted that: when the device is in use, the electronic device casing for installing the light guide column is placed on the conveyor belt 4, and the electronic device casing is moved to the inside of the second conveyor rack 3 by the conveyor belt 4, and the position of the electronic device casing on the second conveyor rack 3 is positioned and fixed by the operation of the feeding and fixing mechanism 8. In this process, the number of electronic device casings passing through is detected by the sensor 5. After the specified number is conveyed, the operation of the conveyor belt 4 is stopped. At the same time, the light guide column is conveyed to the end of the discharge rack 7 by the operation of the vibration plate 6. At this time, the light guide column at the end corresponds to the position of the electronic device casing at the end of the second conveyor rack 3. Then, the assembly device 10 is operated to move several light guide columns to the positions on several electronic device casings on the second conveyor rack 3 where the light guide columns need to be installed, thereby realizing the assembly between the light guide columns and the electronic device casings.

[0031] In the embodiments of the present invention, see Figures 1 to 6 , the height of the upper surface of the conveyor belt 4 is higher than the bottom of the inner wall of the second conveyor rack 3;

[0032] It should be noted that when the electronic device housing is moved to the inside of the second conveyor rack 3 by the conveyor belt 4, the electronic device housing on the conveyor belt 4 can be moved to the inside of the second conveyor rack 3 due to the height difference between the conveyor belt 4 and the second conveyor rack 3.

[0033] In the embodiments of the present invention, see Figures 1 to 6 The feeding fixing mechanism 8 includes a first linear guide 81, a first movable frame 82, a first cylinder 83, a second linear guide 84, a second movable frame 85, a second cylinder 86, a storage frame 87 and a storage slot 88. The first linear guide 81 is symmetrically fixedly mounted on one end of the workbench 1 close to the second conveying frame 3, and the first movable frame 82 is slidably mounted between the two first linear guides 81. The upper surface of the workbench 1 is fixedly mounted with a first cylinder 83 at a position corresponding to the position between the two first movable frames 82. The moving end of the first cylinder 83 is fixedly connected to one side of the first movable frame 82, the second linear guide 84 is fixedly mounted on the upper surface of the first movable frame 82, and the second movable frame 85 is slidably mounted on the outer side of the second linear guide 84. The second cylinder 86 is fixedly mounted on the top of one end of the first movable frame 82, and the moving end of the second cylinder 86 is fixedly connected to one end of the second movable frame 85. The top of the second movable frame 85 is fixedly mounted with a storage frame 87, and the storage frame 87 is provided with a storage slot 88 at one end away from the second movable frame 85.

[0034] It should be noted that: after the electronic device housing is moved to the inside of the second conveying rack 3 by the conveyor belt 4, the storage rack 87 is driven to move by the operation of the first cylinder 83, so that the storage rack 87 can squeeze and fix several electronic device housings, which can ensure that several electronic device housings can be moved to the specified position, and the subsequent assembly of the light guide column on the electronic device housing can be achieved. After the light guide column on the electronic device housing is assembled, the second movable rack 85 is driven by the operation of the second cylinder 86 to move along the trajectory of the second linear guide rail 84, and the several electronic device housings in the storage rack 87 can be pushed out of the workbench 1. The several electronic device housings in the storage rack 87 are slid out of the interior of the storage rack 87 by the action of gravity, and then the storage rack 87 is controlled to move to the initial position by the reverse operation of the first cylinder 83 and the second cylinder 86, so as to achieve subsequent continuous production.

[0035] In the embodiments of the present invention, see Figures 1 to 6 , the storage rack 87 has chamfers at both ends corresponding to the storage slot 88;

[0036] It should be noted that: when the electronic device housing is moved to the interior of the second conveying rack 3 through the conveyor belt 4, if the electronic device housings at both ends are not completely moved into the storage slot 88, the positions of several electronic device housings can be regularized by the chamfers opened at both ends of the storage slot 88 by the storage rack 87 and the mutual squeezing between the electronic device housings, thereby ensuring that the electronic device housings are completely moved into the storage slot 88.

[0037] In the embodiments of the present invention, see Figures 1 to 6, the assembly device 10 includes a third linear guide 101, a third movable frame 102, a third cylinder 103, a fourth cylinder 104, a positioning frame 105, a slide 106, a slider 107, a thumb cylinder 108, a guide rod 109, a guide plate 1010 and a guide groove 1011. The third linear guide 101 is symmetrically fixedly installed on the top lower surface of the mounting frame 9. The third movable frame 102 is slidably installed between the two third linear guides 101. The third cylinder 103 is fixedly installed on the top lower surface of the mounting frame 9 at a position corresponding to the position between the two third movable frames 102. The moving end of the third cylinder 103 is fixedly connected to one side of the third movable frame 102. The fourth cylinder 104 is fixedly installed in the middle of the upper surface of the third movable frame 102. The moving end passes through the third moving frame 102 and is fixedly installed with a positioning frame 105. A slide groove 106 is provided in the middle of the positioning frame 105. Several sliders 107 are slid in the middle of the slide groove 106. A thumb cylinder 108 is fixedly installed at the bottom of the slider 107. A guide rod 109 is fixedly installed on one side of the slider 107. The lengths of the several guide rods 109 are different. A guide plate 1010 is fixedly installed on one side of the mounting frame 9. The middle part of the guide plate 1010 corresponds to the positions of the several guide rods 109. Guide grooves 1011 for guiding the moving trajectory of the guide rods 109 are provided. The guide grooves 1011 are slidably connected to the guide rods 109. The end of the guide groove 1011 close to the middle position of the guide plate 1010 corresponds to the position where the light guide column for materials is placed on the second conveyor frame 3;

[0038] It should be noted that: after the electronic device housing is completely moved into the storage slot 88, the fourth cylinder 104 controls the positioning frame 105 to descend, and then a number of thumb cylinders 108 are used to clamp the light guide column at the end of the discharge rack 7. The fourth cylinder 104 then drives the positioning frame 105 to rise, driving the light guide column clamped by the thumb cylinder 108 to separate from the discharge rack 7. The light guide column is then replenished through the operation of the vibrating plate 6, and then the third cylinder 103 drives the third moving frame 102 to slide along the trajectory of the third linear guide rail 101. During this process, the guide groove 1011 will The moving trajectories of several guide rods 109 are guided to realize that several sliders 107 connected to the thumb cylinder 108 are moved at unequal intervals along the middle of the slide groove 106, and the light guide column clamped by the thumb cylinder 108 is moved just to the top of the electronic equipment housing where the light guide column is installed, and then the positioning frame 105 is controlled to descend by the fourth cylinder 104 to realize the light guide column on the thumb cylinder 108 to move to the position of the corresponding electronic equipment housing where the light guide column is darkened, and then the thumb cylinder 108 releases the clamping of the light guide column to realize the assembly between the light guide column and the electronic equipment housing.

[0039] In the embodiments of the present invention, see Figures 1 to 6 , the slide groove 106 and the slider 107 slide closely together;

[0040] It should be noted that the thumb cylinder 108 is stably moved along the track of the slide groove 106 .

[0041] In the embodiments of the present invention, see Figures 1 to 6 , the guide rod 109 is arranged in an L shape;

[0042] It should be noted that: since the fourth cylinder 104 controls the positioning frame 105 to descend, it will drive the guide rod 109 connected to the slider 107 to descend, ensuring that the guide rod 109 is always in the guide groove 1011.

[0043] In the embodiments of the present invention, see Figures 1 to 6 , the guide groove 1011 and the guide rod 109 slide closely together;

[0044] It should be noted that when the guide groove 1011 guides the movement trajectory of the plurality of guide rods 109 , the stability of the guide rods 109 sliding inside the guide groove 1011 is achieved.

[0045] In the embodiments of the present invention, see Figures 1 to 6 , the end connecting line of several guide grooves 1011 is inclined;

[0046] It should be noted that the discontinuity of several guide grooves 1011 is achieved, which prevents the guide rod 109 from sliding in the non-corresponding guide groove 1011.

[0047] In the embodiments of the present invention, see Figures 1 to 6 , the inner wall width of the discharge rack 7 is close to the diameter of the light guide column;

[0048] It should be noted that: a plurality of light guide columns are relatively located on a horizontal line inside the discharge rack 7, so that the corresponding thumb cylinders 108 can clamp the corresponding light guide columns.

[0049] In the embodiments of the present invention, see Figures 1 to 6 , the clamping end of the thumb cylinder 108 corresponds to the size of the light guide column;

[0050] It should be noted that it is used for the specified clamping of light guide rods of specific sizes.

[0051] In the embodiments of the present invention, see Figures 1 to 6 , the length of the storage slot 88 is a multiple of the length of the electronic device housing;

[0052] It should be noted that it is used to stably fix a specified number of electronic device casings inside the storage slot 88.

[0053] When the device is in use, the electronic device housing for installing the light guide column is placed on the conveyor belt 4. During this process, the number of electronic device housings passing through is detected by the sensor 5. When the specified number is conveyed, the operation of the conveyor belt 4 is stopped, and the storage rack 87 is driven to move by the operation of the first cylinder 83, so that the storage rack 87 can squeeze and fix several electronic device housings, ensuring that several electronic device housings can be moved to the specified position. At the same time, the light guide column is conveyed to the end of the discharge rack 7 through the operation of the vibration plate 6. At this time, the light guide column at the end corresponds to the second conveyor. The electronic equipment housing is located at the end of the rack 3, and then the positioning rack 105 is controlled to descend by the fourth cylinder 104, and then the light guide column at the end of the discharge rack 7 is clamped by several thumb cylinders 108, and then the positioning rack 105 is driven to rise by the fourth cylinder 104, driving the light guide column clamped by the thumb cylinder 108 to separate from the discharge rack 7, and then the light guide column needs to be supplemented by the operation of the vibration plate 6, and then the third cylinder 103 drives the third moving rack 102 to slide along the track of the third linear guide rail 101. In this process, the guide groove 1011 will press the several guide rods 10 9 is guided by the moving trajectory to realize that several sliders 107 connected to the thumb cylinder 108 are moved at unequal intervals along the middle of the slide groove 106, and the light guide column clamped by the thumb cylinder 108 is moved to the top of the electronic device housing corresponding to the position where the light guide column is installed, and then the positioning frame 105 is controlled to descend by the fourth cylinder 104 to realize the light guide column on the thumb cylinder 108 to move to the position of the corresponding electronic device housing where the light guide column is dark-turned, and then the thumb cylinder 108 releases the clamping of the light guide column to realize the assembly between the light guide column and the electronic device housing, and then the fourth cylinder 104 is used to control the positioning frame 105 to descend, so that the light guide column on the thumb cylinder 108 is moved to the position ... fourth cylinder 104 is used to control the positioning frame 105 to descend, so that the light guide column on the thumb cylinder 108 is moved to the position where the light guide column is dark-turned, and then the fourth cylinder 104 is used to control the positioning frame 105 to descend, so that the light guide column The operation of the fourth cylinder 104 and the third cylinder 103 moves the thumb cylinder 108 to the initial position. After the light guide column on the electronic device housing is assembled, the second movable rack 85 is driven by the operation of the second cylinder 86 to move along the track of the second linear guide rail 84, so that several electronic device housings in the storage rack 87 can be pushed out of the workbench 1. The several electronic device housings in the storage rack 87 are slid out of the interior of the storage rack 87 by the action of gravity, and then the storage rack 87 is controlled to move to the initial position through the reverse operation of the first cylinder 83 and the second cylinder 86 to realize subsequent continuous production.

[0054] The circuits and controls involved in the present invention are all prior art and will not be described in detail here.

[0055] The above descriptions are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention description and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.

Claims

1. An automated light guide assembly device, characterized in that: include: A workbench (1), wherein a first conveying rack (2) is fixedly mounted on the top of one end of the workbench (1), a second conveying rack (3) for placing materials is fixedly mounted on the workbench (1) at an end position corresponding to the first conveying rack (2), a conveyor belt (4) for conveying materials is mounted between one end of the first conveying rack (2) and the second conveying rack (3), and a sensor (5) for detecting the amount of material conveyed is mounted on one side of the end of the first conveying rack (2) close to the second conveying rack (3); A vibration plate (6), the vibration plate (6) is fixedly mounted on one end of the workbench (1) close to the second conveyor frame (3), and a discharge frame (7) is mounted on the discharge end of the vibration plate (6); A feeding fixing mechanism (8), the feeding fixing mechanism (8) is fixedly mounted on one end of the workbench (1) close to the second conveying rack (3), and the feeding fixing mechanism (8) is used to move and position the material on the second conveying rack (3); A mounting frame (9), the mounting frame (9) being fixedly mounted on an upper surface of one end of the workbench (1) corresponding to the second conveying frame (3), and an assembly device (10) for equidistantly dispersively moving a plurality of light guide columns to be installed being fixedly mounted on a lower surface of the mounting frame (9); The feeding fixing mechanism (8) comprises: A first linear guide rail (81), the first linear guide rail (81) is symmetrically fixedly mounted on one end of the workbench (1) close to the second conveying rack (3), a first movable rack (82) is slidably mounted between the two first linear guide rails (81), a first cylinder (83) is fixedly mounted on the upper surface of the workbench (1) at a position corresponding to the position between the two first movable racks (82), and a movable end of the first cylinder (83) is fixedly connected to one side of the first movable rack (82); A second linear guide rail (84), the second linear guide rail (84) is fixedly mounted on the upper surface of the first movable frame (82), a second movable frame (85) is slidably mounted on the outer side of the second linear guide rail (84), a second cylinder (86) is fixedly mounted on the top of one end of the first movable frame (82), a movable end of the second cylinder (86) is fixedly connected to one end of the second movable frame (85), a storage rack (87) is fixedly mounted on the top of the second movable frame (85), and a storage groove (88) is provided at one end of the storage rack (87) away from the second movable frame (85); The assembly device (10) comprises: A third linear guide rail (101), the third linear guide rail (101) is symmetrically fixedly mounted on the top lower surface of the mounting frame (9), a third movable frame (102) is slidably mounted between the two third linear guide rails (101), a third cylinder (103) is fixedly mounted on the top lower surface of the mounting frame (9) at a position corresponding to the position between the two third movable frames (102), and a movable end of the third cylinder (103) is fixedly connected to one side of the third movable frame (102); A fourth cylinder (104), the fourth cylinder (104) is fixedly mounted on the middle portion of the upper surface of the third movable frame (102), the movable end of the fourth cylinder (104) passes through the third movable frame (102) and is fixedly mounted with a positioning frame (105), a sliding groove (106) is provided in the middle portion of the positioning frame (105), a plurality of sliders (107) slide in the middle portion of the sliding groove (106), and a thumb cylinder (108) is fixedly mounted on the bottom portion of the slider (107); A guide rod (109), wherein the guide rod (109) is fixedly mounted on one side of the slider (107), and the lengths of the plurality of guide rods (109) are different. A guide plate (1010) is fixedly mounted on one side of the mounting frame (9), and guide grooves (1011) for guiding the movement trajectory of the guide rods (109) are provided in the middle of the guide plate (1010) corresponding to the positions of the plurality of guide rods (109). The guide grooves (1011) are slidably connected to the guide rods (109), and one end of the guide groove (1011) close to the middle of the guide plate (1010) corresponds to the position of the light guide column for placing the material on the second conveying frame (3).

2. The light guide column automated assembly equipment according to claim 1, characterized in that: The height of the upper surface of the conveyor belt (4) is higher than the bottom of the inner wall of the second conveyor frame (3).

3. The light guide column automated assembly equipment according to claim 1, characterized in that: The storage rack (87) is provided with chamfers at both ends corresponding to the storage slot (88).

4. The light guide column automated assembly equipment according to claim 1, characterized in that: The sliding groove (106) and the sliding block (107) slide in close contact.

5. The light guide column automated assembly equipment according to claim 1, characterized in that: The guide rod (109) is arranged in an L-shape.

6. The light guide column automated assembly equipment according to claim 1, characterized in that: The guide groove (1011) and the guide rod (109) fit tightly and slide.

7. The light guide column automated assembly equipment according to claim 1, characterized in that: The connecting line of the ends of the plurality of guide grooves (1011) is arranged at an inclination.

8. The light guide column automated assembly equipment according to claim 1, characterized in that: The inner wall width of the discharge rack (7) is similar to the diameter of the light guide column.

9. The light guide column automated assembly equipment according to claim 1, characterized in that: The clamping end of the thumb cylinder (108) corresponds to the size of the light guide column.

10. The light guide column automated assembly equipment according to claim 1, characterized in that: The length of the storage slot (88) on the storage rack (87) is a multiple of the length of the electronic device housing.

Citation Information

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