Automatic assembling machine for terminal spring lamp assembly of ship-shaped overload protection switch

By designing an automatic assembly machine for terminal spring lamp assemblies, and using automated equipment to achieve fully automated assembly of ship-type overload protection switches, the problems of low production efficiency and high cost in existing technologies have been solved, thereby improving product quality and production efficiency.

CN223588749UActive Publication Date: 2025-11-25WENZHOU XINSHEN ELECTRONIC TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202522136659.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-10
Publication Date
2025-11-25
Estimated Expiration
2035-10-10

AI Technical Summary

Technical Problem

The assembly of existing ship-type overload protection switches relies on manual operation, resulting in low production efficiency, high costs, and difficulty in ensuring product quality.

Method used

Design an automatic assembly machine for terminal spring lamp assemblies. Employ automated equipment such as vibratory feeders, cylinder assemblies, and robotic arms to achieve fully automated assembly from individual parts to finished products, including terminal assembly, conductive spring installation, button spring assembly, and refined processes for circuit boards and lamp covers.

Benefits of technology

It improved production efficiency, ensured the relative positional accuracy of parts and product quality, reduced production costs, and avoided problems such as omissions and misassemblies in manual operations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an automatic assembling machine for a terminal spring lamp assembly of a ship-shaped overload protection switch, which comprises a terminal assembling device and a spring lamp button assembling device, and the spring lamp button assembling device comprises a third turntable. The third manipulator, the conductive spring assembling mechanism, the button spring assembling mechanism, the circuit board feeding mechanism, the lampshade feeding mechanism, the fourth suction manipulator, the button assembling mechanism and the fifth manipulator are sequentially distributed along the periphery of the third turntable. The assembly of a plurality of parts such as the second terminal, the conductive spring, the button spring, the lamp assembly and the button is integrated on one device, so that the whole process automation from spare parts to finished products is realized, in addition, compared with the mode of manually welding LED pins in the prior art, the conductive spring is adopted to provide elasticity and electric connection, and the production efficiency is improved. And automatic production is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of switch, concretely relates to a terminal spring lamp assembly automatic assembly machine of boat type overload protection switch. BACKGROUND

[0002] In prior art, the assembly of boat type overload protection switch mostly depends on manual operation. The existing boat type overload protection switch generally comprises LED lamp, spring, terminal, button, the two pins of LED lamp need to be welded and fixed with corresponding terminals, so that the installation is relatively cumbersome, the production efficiency is low, in addition, the operating personnel usually need to manually pick up, align and press into the shell base spring, terminal, button and other numerous small precision parts one by one, this process is not only cumbersome, inefficient, and the proficiency and concentration of the operator are extremely high. Because the part is small, the structure is compact, manual assembly is prone to quality defects such as missing, misassembling or not in place, so that the product qualification rate is difficult to guarantee. CONTENT OF UTILITY MODEL

[0003] Therefore, the technical problem to be solved by the utility model is to overcome the defect of high production cost of switch in prior art, so as to provide a terminal spring lamp assembly automatic assembly machine of boat type overload protection switch with low production cost.

[0004] Therefore, the utility model provides a terminal spring lamp assembly automatic assembly machine of boat type overload protection switch, the terminal spring lamp assembly comprises second terminal, button spring, lamp assembly, button and two conductive springs, the lamp assembly comprises circuit board and lampshade, the circuit board is equipped with patch LED lamp and two contact parts, two second terminals are equipped with pin parts corresponding to two contact parts, two conductive springs are respectively installed between two contact parts and corresponding pin parts, for making contact part and corresponding pin part electrically connected, the terminal spring lamp assembly automatic assembly machine comprises terminal assembly device and spring lamp button assembly device, the terminal assembly device is assembled with two second terminals and base, the spring lamp button assembly device is assembled with two conductive springs, button spring, lamp assembly, button and base.

[0005] The terminal assembly device comprises: two fourth vibration discs, which move second terminals to corresponding fourth vibration tracks, the two fourth vibration tracks are arranged in parallel, two twenty first cylinder assemblies, each comprising a twenty first cylinder and a twenty first push rod, the twenty first push rod is formed with a terminal material moving groove matched with the second terminal, for moving the second terminal to the assembly position, a twenty second cylinder assembly, comprising a twenty second cylinder and two twenty second push rods driven by the twenty second cylinder, the two twenty second push rods move the two second terminals into the base, and a fourth material moving mechanism switches the base between various stations.

[0006] The spring lamp button assembly device comprises: a third turntable rotatably installed on the second rack and having a plurality of third clamps distributed along the circumference thereof; a third mechanical hand, a conductive spring assembly mechanism, a button spring assembly mechanism, a circuit board feeding mechanism, a lampshade feeding mechanism, a fourth material suction mechanical hand, a button assembly mechanism and a fifth mechanical hand, which are sequentially distributed on the periphery of the third turntable; the third mechanical hand moves the base assembled by the terminal assembly device to the third clamp; the conductive spring assembly mechanism installs two conductive springs on the base; the button spring assembly mechanism installs the button spring on the base; the circuit board feeding mechanism and the lampshade feeding mechanism respectively place the circuit board and the lampshade on the third clamp, and the circuit board and the lampshade form a lamp assembly; the fourth material suction mechanical hand installs the lamp assembly on the base; the button assembly mechanism assembles the button and the base; and the fifth mechanical hand moves the assembled base from the third turntable to the next station.

[0007] The conductive spring assembly mechanism comprises: a fifth vibrating disc which sends two conductive springs outward through two first connecting pipes; a second support provided with a twenty-third cylinder assembly and a third sliding rail, the twenty-third cylinder assembly comprising a twenty-third cylinder and a twenty-third push rod, the twenty-third push rod being slidably installed on the third sliding rail and being formed with two first accommodating holes for accommodating the conductive springs, the third sliding rail being formed with a first material guiding hole, and the twenty-third push rod having a material falling position and a material moving position, wherein, in the material falling position, the first accommodating holes are correspondingly arranged with the bottom outlet holes of the first connecting pipes, and in the material moving position, the first accommodating holes are correspondingly arranged with the first material guiding hole; a third support provided with a second material guiding block, a twenty-fourth cylinder assembly, a third material guiding block and a twenty-fifth cylinder assembly, the second material guiding block being connected with the first material guiding hole through a second connecting pipe and being formed with a second material guiding hole, the twenty-fourth cylinder assembly comprising a twenty-fourth cylinder and a twenty-fourth push rod, the twenty-fourth push rod being formed with a second accommodating hole, the third material guiding block being located above the third clamp and being formed with a third material guiding hole corresponding to the base, the twenty-fourth push rod having a material falling position and a material moving position, wherein, in the material falling position, the second accommodating hole is correspondingly arranged with the second material guiding hole, and in the material moving position, the second accommodating hole is correspondingly arranged with the third material guiding hole, and the twenty-fifth cylinder assembly comprising a twenty-fifth cylinder and a twenty-fifth push rod, the twenty-fifth push rod being arranged above the third material guiding block and being used for pressing the conductive spring in the third material guiding hole into the base.

[0008] The button spring assembly mechanism comprises a sixth vibrating disc, a fourth support, a twenty-sixth cylinder assembly, a fourth sliding rail and a twenty-seventh cylinder assembly, the twenty-sixth cylinder assembly comprises a twenty-sixth cylinder and a twenty-sixth push rod, the twenty-sixth push rod is slidingly installed on the fourth sliding rail, the fourth sliding rail is formed with a fourth guide hole, the twenty-sixth push rod has a blanking position and a material moving position, wherein, in the blanking position, the third accommodating hole is correspondingly arranged with the bottom hole of the third connecting pipe, in the material moving position, the third accommodating hole is correspondingly arranged with the fourth guide hole, the twenty-seventh cylinder assembly comprises a twenty-seventh cylinder and a twenty-seventh push rod, and the twenty-seventh push rod is arranged to press the button spring in the fourth guide hole into the base.

[0009] The circuit board feeding mechanism comprises a seventh vibrating disc, a seventh vibrating track and a sixth material suction manipulator, the seventh vibrating disc moves the circuit board to the seventh vibrating track, and the sixth material suction manipulator sucks and places the circuit board on the third clamp.

[0010] The lampshade feeding mechanism comprises an eighth vibrating disc, an eighth vibrating track and a seventh material suction manipulator, the eighth vibrating disc moves the lampshade to the eighth vibrating track, and the seventh material suction manipulator sucks and places the lampshade on the circuit board of the third clamp.

[0011] The button assembly mechanism comprises a ninth vibrating disc, a ninth vibrating track, a twenty-eighth cylinder assembly and an eighth manipulator, the ninth vibrating disc moves the button to the ninth vibrating track, the twenty-eighth cylinder assembly comprises a twenty-eighth rotary cylinder and a third rotating plate, the third rotating plate moves the button on the ninth vibrating track to a clamping position, and the eighth manipulator assembles the button and the base.

[0012] The technical scheme of the utility model has the following advantages:

[0013] 1. The terminal spring lamp assembly automatic assembly machine provided by the utility model integrates the assembly of a plurality of components such as a second terminal, a conductive spring, a button spring, a lamp assembly and a button on one equipment, realizes full-process automation from a scattered part to a finished product, and is more conducive to automatic production by using a conductive spring to provide elasticity and electrical connection compared with the mode of manually welding an LED pin in the prior art.

[0014] 2. The terminal spring lamp assembly automatic assembly machine provided by the utility model has the advantages of high production efficiency and high relative position precision of the two terminals in the base.

[0015] 3. The terminal spring lamp assembly automatic assembly machine provided by the utility model adopts the third turntable and the plurality of third clamps distributed in the circumferential direction, forms an efficient annular assembly line, and decomposes the complicated assembly process into a plurality of fine processes, such as the conductive spring, the button spring, the circuit board, the lampshade, the lamp assembly installation, and the button installation, and the process is smooth.

[0016] 4. The terminal spring lamp assembly automatic assembly machine provided by the utility model, the conductive spring sequentially passes through the fifth vibration disc, the first connecting pipe, the first containing hole of the twenty-third push rod, the first material guide hole, the second connecting pipe, the second material guide block, the second containing hole of the twenty-fourth push rod, the third material guide hole of the third material guide block, and then is pressed into the base through the twenty-fifth cylinder assembly, and realizes accurate and reliable conveying of the tiny and difficult-to-handle conductive spring from the material vibrating disc to the final assembly position. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the specific embodiments of the utility model or the technical solutions in the prior art, the drawings needed to be used in the specific embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.

[0018] Figure 1 It is a perspective view of the terminal spring lamp assembly automatic assembly machine of the utility model;

[0019] Figure 2 It is a perspective view of the terminal assembly device;

[0020] Figure 3 It is a partial enlarged structure schematic view of Figure 2 ;

[0021] Figure 4 It is a partial enlarged top view of Figure 2 ;

[0022] Figure 5 It is a structure schematic view of the spring lamp button assembly device;

[0023] Figure 6 It is a perspective view of the conductive spring assembly mechanism;

[0024] Figure 7 Figure 1 is a schematic diagram of a first partial enlarged structure of the button assembly mechanism of the present application; Figure 6

[0025] Figure 8 Figure 2 is a schematic diagram of a second partial enlarged structure of the button assembly mechanism of the present application; Figure 6

[0026] Figure 9 Figure 3 is a perspective view of the twenty-fourth push rod and the third material guide block of the present application;

[0027] Figure 10 Figure 4 is a perspective view of the button spring assembly mechanism of the present application;

[0028] Figure 11 Figure 5 is a perspective view of the circuit board feeding mechanism of the present application;

[0029] Figure 12 Figure 6 is a perspective view of the lampshade feeding mechanism of the present application;

[0030] Figure 13 Figure 7 is a perspective view of the third clamp of the present application;

[0031] Figure 14 Figure 8 is a perspective view of the button assembly mechanism of the present application;

[0032] Figure 15 Figure 9 is a schematic diagram of the structure of the boat-shaped overload protection switch of the present application;

[0033] Figure 16 Figure 10 is an exploded schematic diagram of the structure of the boat-shaped overload protection switch of the present application.

[0034] ​​Explanation of reference signs: 1, base; 11, lamp assembly; 12, second terminal; 13, button spring; 14, button; 15, conductive spring; 16, circuit board; 17, lampshade; 18, patch LED lamp; 19, pin part; 200, terminal assembly device; 201, spring lamp button assembly device; 202, fourth vibration disc; 203, fourth vibration track; 204, twenty-first cylinder assembly; 205, twenty-first cylinder; 206, twenty-first push rod; 207, terminal material moving groove; 208, twenty-second cylinder assembly; 209, twenty-second cylinder; 210, twenty-second push rod; 211, fourth material moving mechanism; 212, second rack; 213, third turntable; 214, third clamp; 215, third mechanical hand; 216, conductive spring assembly mechanism; 217, button spring assembly mechanism; 218, circuit board feeding mechanism; 219, lampshade feeding mechanism; 220, fourth material suction mechanical hand; 221, button assembly mechanism; 222, fifth mechanical hand; 223, fifth vibration disc; 224, first connecting pipe; 225, second support; 226, twenty-third cylinder assembly; 227, third slide rail; 228, twenty-third cylinder; 229, twenty-third push rod; 231, first containing hole; 232, first material guide hole; 233, third support; 234, second material guide block; 235, twenty-fourth cylinder assembly; 236, third material guide block; 237, twenty-fifth cylinder assembly; 238, second material guide hole; 239, twenty-fourth cylinder; 240, twenty-fourth push rod; 241, fourth support; 242, second containing hole; 243, third material guide hole; 244, twenty-fifth cylinder; 245, twenty-fifth push rod; 246, sixth vibration disc; 247, third connecting pipe; 248, twenty-sixth cylinder assembly; 249, fourth slide rail; 250, twenty-seventh cylinder assembly; 251, twenty-sixth cylinder; 252, twenty-sixth push rod; 253, third containing hole; 254, twenty-seventh cylinder; 255, twenty-seventh push rod; 256, seventh vibration disc; 257, seventh vibration track; 258, sixth material suction mechanical hand; 259, eighth vibration disc; 260, eighth vibration track; 261, seventh material suction mechanical hand; 262, ninth vibration disc; 263, ninth vibration track; 264, twenty-eighth cylinder assembly; 265, eighth mechanical hand; 266, twenty-eighth rotary cylinder; 267, third rotating plate; 268, second clamping plate; 269, thirty-sixth cylinder assembly; 270, thirty-seventh cylinder assembly; 271, second slide rail. DETAILED DESCRIPTION

[0035] The technical solutions of the present application will be described clearly and completely in connection with the drawings. Obviously, the described embodiments are some of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.

[0036] In the description of the present application, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0037] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0038] In addition, the technical features involved in the different embodiments of the present application described below can be combined with each other as long as there is no conflict.

[0039] Embodiment

[0040] The present embodiment provides a terminal spring lamp assembly automatic assembly machine for a ship type overload protection switch, as shown in Figure 15 and Figure 16 The terminal spring lamp assembly includes a second terminal 12, a button spring 13, a lamp assembly 11, a button 14 and two conductive springs 15, the lamp assembly 11 includes a circuit board 16 and a lampshade 17, the circuit board 16 is provided with a patch LED lamp 18 and two contact parts, two second terminals 12 are provided with pin parts 19 corresponding to the two contact parts, two conductive springs 15 are respectively installed between the two contact parts and the corresponding pin parts 19, for electrically connecting the contact parts and the corresponding pin parts 19, as shown in Figure 1 The terminal spring lamp assembly automatic assembly machine includes a terminal assembly device 200 and a spring lamp button assembly device 201.

[0041] The terminal assembling device 200 assembles two second terminals 12 with the base 1, as shown in the figure, which comprises two fourth vibrating plates 202, two twenty-first cylinder assemblies 204, a twenty-second cylinder assembly 208 and a fourth material moving mechanism 211. Figure 2 The two fourth vibrating plates 202 transfer the second terminals 12 to corresponding fourth vibrating tracks 203, and the two fourth vibrating tracks 203 are arranged in parallel. Figure 4 As shown in the figure, the two twenty-first cylinder assemblies 204 each comprise a twenty-first cylinder 205 and a twenty-first push rod 206, and the twenty-first push rod 206 is formed with a terminal material moving groove 207 matched with the second terminal 12, which is used to transfer the second terminal 12 to the position to be assembled. Figure 3 Figure 4 As shown in the figure, the twenty-second cylinder assembly 208 is arranged between the two fourth vibrating tracks 203, which comprises a twenty-second cylinder 209 and two twenty-second push rods 210 driven by the twenty-second cylinder 209, and the two twenty-second push rods 210 transfer the two second terminals 12 into the base 1; the fourth material moving mechanism 211 switches the base 1 between various stations, and the fourth material moving mechanism 211 comprises a second clamping plate 268, a thirty-sixth cylinder assembly 269 and a thirty-seventh cylinder assembly 270, a second sliding rail 271, the second clamping plate 268 is formed with a clamping groove matched with the base 1, the thirty-sixth cylinder assembly 269 is used to drive the second clamping plate 268 to move left and right, the thirty-seventh cylinder assembly 270 is used to drive the second clamping plate 268 to move forward and backward, and the second sliding rail 271 is used for the base 1 to slide thereon.

[0042] The spring lamp button assembling device 201 assembles two conductive springs 15, button springs 13, lamp assemblies 11, buttons 14 and the base 1. Figure 5 As shown in the figure, the spring lamp button assembling device 201 comprises a third turntable 213, a third manipulator 215, a conductive spring assembling mechanism 216, a button spring assembling mechanism 217, a circuit board feeding mechanism 218, a lampshade feeding mechanism 219, a fourth material suction manipulator 220, a button assembling mechanism 221 and a fifth manipulator 222 which are distributed in sequence on the periphery of the third turntable 213.

[0043] The third turntable 213 is rotatably installed on the second rack 212 and has a plurality of third clamps 214 which are distributed in intervals along the circumference thereof.

[0044] The third manipulator 215 transfers the base 1 assembled by the terminal assembling device 200 to the third clamps 214.

[0045] The conductive spring assembling mechanism 216 installs two conductive springs 15 on the base 1. Figure 6 ​As shown, it includes: a fifth vibratory plate 223, which delivers two conductive springs 15 outward through two first connecting pipes 224; as Figure 7 As shown, the second bracket 225 is equipped with a 23rd cylinder assembly 226 and a third slide rail 227. The 23rd cylinder assembly 226 includes a 23rd cylinder 228 and a 23rd push rod 229. The 23rd push rod 229 is slidably mounted on the third slide rail 227 and has two first receiving holes 231 formed to accommodate the conductive spring 15. The third slide rail 227 has a first guide hole 232 formed on it. The 23rd push rod 229 has a dropping position and a transferring position. In the dropping position, the first receiving hole 231 corresponds to the bottom outlet hole of the first connecting pipe 224. In the transferring position, the first receiving hole 231 corresponds to the first guide hole 232. Figure 8 As shown, the third support 233 is equipped with a second guide block 234, a twenty-fourth cylinder assembly 235, a third guide block 236, and a twenty-fifth cylinder assembly 237. The second guide block 234 is connected to the first guide hole 232 via a second connecting pipe and has a second guide hole 238 formed therein. The twenty-fourth cylinder assembly 235 includes a twenty-fourth cylinder 239 and a twenty-fourth push rod 240. The twenty-fourth push rod 240 has a second receiving hole 242 formed therein. Figure 9 As shown, the third guide block 236 is located above the third clamp 214 and has a third guide hole 243 corresponding to the base 1. The second fourteenth push rod 240 has a dropping position and a moving position. In the dropping position, the second receiving hole 242 is corresponding to the second guide hole 238. In the moving position, the second receiving hole 242 is corresponding to the third guide hole 243. The second fifteenth cylinder assembly 237 includes a second fifteenth cylinder 244 and a second fifteenth push rod 245. The second fifteenth push rod 245 is located above the third guide block 236 and is used to press the conductive spring 15 in the third guide hole 243 into the base 1.

[0046] The button spring assembly mechanism 217 mounts the button spring 13 onto the base 1. Figure 10As shown, the button spring assembling mechanism 217 comprises a sixth vibrating disc 246, a fourth support 241 provided with a twenty-sixth cylinder assembly 248, a fourth slide rail 249 and a twenty-seventh cylinder assembly 250, the twenty-sixth cylinder assembly 248 comprises a twenty-sixth cylinder 251 and a twenty-sixth push rod 252, the twenty-sixth push rod 252 is slidingly installed on the fourth slide rail 249, and is formed with a third accommodating hole 253 for accommodating the button spring 13, the fourth slide rail 249 is formed with a fourth material guiding hole (not shown in the figure), the twenty-sixth push rod 252 has a material dropping position and a material moving position, wherein, in the material dropping position, the third accommodating hole 253 is correspondingly arranged with the bottom hole of the third connecting pipe 247, in the material moving position, the third accommodating hole 253 is correspondingly arranged with the fourth material guiding hole, the twenty-seventh cylinder assembly 250 comprises a twenty-seventh cylinder 254 and a twenty-seventh push rod 255, the twenty-seventh push rod 255 presses the button spring 13 in the fourth material guiding hole into the base 1.

[0047] The circuit board feeding mechanism 218 and the lampshade feeding mechanism 219 respectively place the circuit board 16 and the lampshade 17 on the third clamp 214, and the circuit board 16 and the lampshade 17 form a lamp assembly 11. As shown, Figure 11 As shown, the circuit board feeding mechanism 218 comprises a seventh vibrating disc 256, a seventh vibrating track 257 and a sixth material suction manipulator 258, the seventh vibrating disc 256 moves the circuit board 16 to the seventh vibrating track 257, and the sixth material suction manipulator 258 sucks and places the circuit board 16 on the third clamp 214; as shown, Figure 12 As shown, the lampshade feeding mechanism 219 comprises an eighth vibrating disc 259, an eighth vibrating track 260 and a seventh material suction manipulator 261, the eighth vibrating disc 259 moves the lampshade 17 to the eighth vibrating track 260, and the seventh material suction manipulator 261 sucks and places the lampshade 17 on the circuit board 16 of the third clamp 214. A fourth material suction manipulator 220 sucks and installs the lamp assembly 11 on the base 1, and the lampshade 17 is assembled with the base 1 by a hook. It should be noted that each manipulator is a mature technology, and therefore the specific structure and working principle thereof will not be described in detail. Figure 13

[0048] The button assembling mechanism 221 assembles the button 14 with the base 1. As shown, Figure 14 ​As shown, the button assembling mechanism 221 comprises a ninth vibrating disc 262, a ninth vibrating track 263, a twenty-eighth cylinder assembly 264 and an eighth mechanical arm 265, the ninth vibrating disc 262 transfers the button 14 to the ninth vibrating track 263, the twenty-eighth cylinder assembly 264 comprises a twenty-eighth rotating cylinder 266 and a third rotating plate 267, the third rotating plate 267 transfers the button 14 on the ninth vibrating track 263 to a clamping position, and the eighth mechanical arm 265 assembles the button 14 with the base 1.

[0049] The utility model provides a kind of terminal spring lamp assembly automatic assembly machine of boat type overload protection switch, including terminal assembling device 200 and spring lamp button assembling device 201, spring lamp button assembling device 201 includes third rotating disc 213, and third mechanical arm 215, conductive spring assembling mechanism 216, button spring assembling mechanism 217, circuit board feeding mechanism 218, lampshade feeding mechanism 219, fourth suction material mechanical arm 220, button assembling mechanism 221 and fifth mechanical arm 222 are sequentially distributed along the periphery of third rotating disc 213.

[0050] Obviously, the above embodiments are only examples for clearly illustrating, and not limit the embodiments. For ordinary skilled in the art, other different forms of changes or variations can be made on the basis of the above description. Here, all embodiments need not and cannot be exhausted. The obvious changes or variations derived therefrom are still within the protection scope of the utility model.

Claims

1. A terminal spring lamp assembly automatic assembly machine for boat type overload protection switches, the terminal spring lamp assembly comprising a second terminal (12), a button spring (13), a lamp assembly (11), a button (14) and two conductive springs (15), the lamp assembly (11) comprising a circuit board (16) and a lampshade (17), the circuit board (16) being provided with a patch LED lamp (18) and two contact portions, the two second terminals (12) being provided with pin portions (19) corresponding to the two contact portions, and the two conductive springs (15) being respectively installed between the two contact portions and the corresponding pin portions (19) to electrically connect the contact portions and the corresponding pin portions (19), characterized in that, The terminal spring lamp assembly automatic assembly machine comprises: A terminal assembly device (200) assembles two second terminals (12) with a base (1); A spring lamp button assembly device (201) comprises: A third turntable (213) is rotatably installed on a second rack (212) and has a plurality of third clamps (214) distributed along the circumference thereof; A third mechanical arm (215), a conductive spring assembly mechanism (216), a button spring assembly mechanism (217), a circuit board feeding mechanism (218), a lampshade feeding mechanism (219), a fourth suction mechanical arm (220), a button assembly mechanism (221) and a fifth mechanical arm (222) are sequentially distributed on the periphery of the third turntable (213); The third mechanical arm (215) moves the base (1) assembled by the terminal assembly device (200) to the third clamp (214); The conductive spring assembly mechanism (216) installs two conductive springs (15) on the base (1); The button spring assembly mechanism (217) installs the button spring (13) on the base (1); The circuit board feeding mechanism (218) and the lampshade feeding mechanism (219) respectively place the circuit board (16) and the lampshade (17) on the third clamp (214), and the circuit board (16) and the lampshade (17) form a lamp assembly (11); The fourth suction mechanical arm (220) installs the lamp assembly (11) on the base (1); The button assembly mechanism (221) assembles the button (14) with the base (1); The fifth mechanical arm (222) moves the assembled base (1) from the third turntable (213) to the next station.

2. The terminal spring light assembly automatic assembly machine for boat type overload protection switches according to claim 1, characterized in that, The terminal assembly device (200) comprises: Two fourth vibration discs (202) move the second terminal (12) towards corresponding fourth vibration tracks (203), and the two fourth vibration tracks (203) are arranged in parallel; Two twenty-first cylinder assemblies (204) each comprise a twenty-first cylinder (205) and a twenty-first push rod (206), the twenty-first push rod (206) is formed with a terminal material moving groove (207) matched with the second terminal (12), and is used for moving the second terminal (12) to a position to be assembled; A twenty-second cylinder assembly (208) comprises a twenty-second cylinder (209) and two twenty-second push rods (210) driven by the twenty-second cylinder (209), and the two twenty-second push rods (210) move two second terminals (12) into the base (1); A fourth material moving mechanism (211) switches the base (1) between stations.

3. The terminal spring light assembly automatic assembly machine for boat type overload protection switches according to claim 1, characterized in that, The conductive spring assembly mechanism (216) comprises: A fifth vibration disc (223) outputs two conductive springs (15) outward through two first connecting pipes (224); The second support (225) is provided with a twenty-third cylinder assembly (226) and a third slide rail (227), the twenty-third cylinder assembly (226) comprises a twenty-third cylinder (228) and a twenty-third push rod (229), the twenty-third push rod (229) is slidingly installed on the third slide rail (227) and is formed with two first accommodating holes (231) for accommodating the conductive spring (15), the third slide rail (227) is formed with a first material guiding hole (232), and the twenty-third push rod (229) has a material dropping position and a material moving position, wherein, in the material dropping position, the first accommodating hole (231) is correspondingly arranged at the bottom outlet hole of the first connecting pipe (224), and in the material moving position, the first accommodating hole (231) is correspondingly arranged at the first material guiding hole (232); The third support (233) is provided with a second material guiding block (234), a twenty-fourth cylinder assembly (235), a third material guiding block (236) and a twenty-fifth cylinder assembly (237), the second material guiding block (234) is connected with the first material guiding hole (232) through a second connecting pipe and is formed with a second material guiding hole (238), the twenty-fourth cylinder assembly (235) comprises a twenty-fourth cylinder (239) and a twenty-fourth push rod (240), the twenty-fourth push rod (240) is formed with a second accommodating hole (242), the third material guiding block (236) is located above the third clamp (214) and is formed with a third material guiding hole (243) which is correspondingly arranged at the base (1), the twenty-fourth push rod (240) has a material dropping position and a material moving position, wherein, in the material dropping position, the second accommodating hole (242) is correspondingly arranged at the second material guiding hole (238), and in the material moving position, the second accommodating hole (242) is correspondingly arranged at the third material guiding hole (243), the twenty-fifth cylinder assembly (237) comprises a twenty-fifth cylinder (244) and a twenty-fifth push rod (245), the twenty-fifth push rod (245) is arranged above the third material guiding block (236) and is used for pressing the conductive spring (15) in the third material guiding hole (243) into the base (1).

4. The terminal spring light assembly automatic assembly machine for boat type overload protection switches according to claim 1, characterized in that, The button spring assembling mechanism (217) comprises: A sixth vibrating disc (246) is used for outwardly conveying button springs (13) through a third connecting pipe (247). The fourth support (241) is provided with a twenty-sixth cylinder assembly (248), a fourth slide rail (249) and a twenty-seventh cylinder assembly (250). The twenty-sixth cylinder assembly (248) comprises a twenty-sixth cylinder (251) and a twenty-sixth push rod (252). The twenty-sixth push rod (252) is slidingly installed on the fourth slide rail (249) and is formed with a third accommodating hole (253) for accommodating the button spring (13). The fourth slide rail (249) is formed with a fourth material guiding hole. The twenty-sixth push rod (252) has a material dropping position and a material moving position. In the material dropping position, the third accommodating hole (253) is correspondingly arranged with the bottom hole of the third connecting pipe (247). In the material moving position, the third accommodating hole (253) is correspondingly arranged with the fourth material guiding hole. The twenty-seventh cylinder assembly (250) comprises a twenty-seventh cylinder (254) and a twenty-seventh push rod (255). The twenty-seventh push rod (255) presses the button spring (13) in the fourth material guiding hole into the base (1).

5. The terminal spring light assembly automatic assembly machine for boat type overload protection switches according to claim 1, characterized in that, The circuit board feeding mechanism (218) comprises a seventh vibration disc (256), a seventh vibration track (257) and a sixth material suction manipulator (258). The seventh vibration disc (256) moves the circuit board (16) towards the seventh vibration track (257). The sixth material suction manipulator (258) sucks the circuit board (16) and places it on the third clamp (214).

6. The terminal spring light assembly automatic assembly machine for boat-type overload protection switches according to claim 1, characterized in that, The lampshade feeding mechanism (219) comprises an eighth vibration disc (259), an eighth vibration track (260) and a seventh material suction manipulator (261). The eighth vibration disc (259) moves the lampshade (17) towards the eighth vibration track (260). The seventh material suction manipulator (261) sucks the lampshade (17) and places it on the circuit board (16) of the third clamp (214).

7. The terminal spring light assembly automatic assembly machine for boat-type overload protection switches according to claim 1, characterized in that, The button assembling mechanism (221) comprises a ninth vibration disc (262), a ninth vibration track (263), a twenty-eighth cylinder assembly (264) and an eighth manipulator (265). The ninth vibration disc (262) moves the button (14) towards the ninth vibration track (263). The twenty-eighth cylinder assembly (264) comprises a twenty-eighth rotary cylinder (266) and a third rotating plate (267). The third rotating plate (267) moves the button (14) on the ninth vibration track (263) to a clamping position. The eighth manipulator (265) assembles the button (14) and the base (1).