Assembly machine for main lamp holder of induction lamp
By designing the main lamp holder assembly machine of the induction lamp, the clamping and limiting parts of the three-axis induction lamp are automatically assembled, and the problems of complex and time-consuming installation process in the prior art are solved, and assembly efficiency and accuracy are improved.
Patent Information
- Application Number
- CN202421782175.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-25
AI Technical Summary
The installation process of existing three-axis induction lights relies on manual operation, resulting in the installation process of multiple shafts being complicated and time-consuming, and the assembly efficiency is low.
A sensing lamp main lamp base assembly machine is designed, including a rack, a placement seat, a first assembly mechanism and a second assembly mechanism. Through these mechanisms, the clamping part and limiting part on the main lamp holder can be automatically assembled to replace manual operation.
It improves the efficiency of the main lamp holder assembly, reduces the complexity and time-consuming of manual operation, and ensures the accuracy and quality of assembly.
Smart Images

Figure CN222919961U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of induction lamp production, and particularly relates to an assembly machine for the main lamp base of an induction lamp. Background Art
[0002] An induction lamp, also known as a motion sensor lamp or a human body sensor lamp, is a type of lamp that uses infrared, microwave, or other sensor technologies to detect motion or the presence of a human body in the surrounding environment; when motion or a human body is detected, the lamp will automatically turn on; when the motion stops or the human body leaves the sensing range, the lamp will automatically turn off after a set time. In order to increase the lighting range of the induction lamp, a three-axis induction lamp has been designed in the prior art. The three-axis induction lamp includes a main lamp base, two movable lamp bodies, and a fixed lamp body. First mounting holes are provided at both ends of the main lamp base. The movable lamp body includes a first lamp part, a rotating arm, a first clamping part, and a first limiting part. The first lamp part is installed at one end of the rotating arm, the first clamping part is installed at the other end of the rotating arm, one end of the first clamping part is rotatably connected to the first mounting hole, and the first limiting part is located inside the main lamp base, so that the first limiting part clamps the inserted end of the first clamping part to limit the first clamping part within the first mounting hole. The fixed lamp body includes a second lamp part, a fixed arm, a second clamping part, and a second limiting part. A second mounting hole is provided on one side of the main lamp base. The second lamp part is installed at one end of the fixed arm, the second clamping part is installed at the other end of the fixed arm, one end of the second clamping part is rotatably connected to the second mounting hole, and the second limiting part is located inside the main lamp base, so that the second limiting part clamps the inserted end of the second clamping part to limit the second clamping part within the second mounting hole. However, the installation process of the three-axis induction lamp mainly relies on manual operation. Although this process can complete the fixation and assembly of the three-axis induction lamp, the clamping installation process of multiple axes is more complex and time-consuming, resulting in low assembly efficiency. Summary of the Utility Model
[0003] The present application aims to solve at least one of the technical problems existing in the prior art. For this purpose, the present application provides an assembly machine for the main lamp base of an induction lamp, which can solve the problem of low assembly efficiency caused by the more complex and time-consuming clamping installation process of multiple axes.
[0004] The assembly machine for the main lamp base of an induction lamp according to an embodiment of the present application includes:
[0005] A frame, on the top of which a top frame is provided;
[0006] A placement seat, provided on the top of the frame. A placement cavity is provided inside the placement seat, and the placement cavity is used to place the main lamp base. First movable channels are provided at both ends of the placement seat, a second movable channel is provided on one side of the placement seat, and a third movable channel is provided on the other side of the placement seat. The first movable channel, the second movable channel, and the third movable channel communicate with the placement cavity;
[0007] The first assembly mechanism is disposed inside the top frame and is used to assemble the first clamping portion and the first limiting portion to the main lamp base. The first assembly mechanism includes two first assembly arms and two second assembly arms. One ends of the two first assembly arms are respectively slidably connected to two sides inside the top frame, and the other ends of the two first assembly arms extend into the placement cavity. The other ends of the first assembly arms are used to load the first limiting portion. The two second assembly arms are respectively slidably engaged with the two first moving channels, and one end of the second assembly arm is used to load the rotating arm.
[0008] The second assembly mechanism is disposed on the top of the frame and is used to assemble the second clamping portion and the second limiting portion to the main lamp base. The second assembly mechanism includes a third assembly arm and a fourth assembly arm. The third assembly arm is slidably engaged with the second moving channel, and one end of the third assembly arm is used to load the second limiting portion. The fourth assembly arm is slidably engaged with the third moving channel, and one end of the fourth assembly arm is used to load the fixed arm.
[0009] The induction lamp main lamp base assembly machine according to the embodiment of the present application has at least the following beneficial effects: When assembling a three-axis induction lamp, place the main lamp base in the placement cavity of the placement seat, and the two second assembly arms respectively load the rotating arms. When the two second assembly arms slide in the two first moving channels, the two second assembly arms assemble the first clamping portions of the two rotating arms into the first mounting hole positions on both sides of the main lamp base. At the same time, the two first assembly arms in the first assembly mechanism respectively load the first limiting portions, and the two first assembly arms move into the placement cavity under the sliding connection on both sides inside the top frame, and assemble the two first limiting portions into the penetrating ends of the two first clamping portions, so that the first clamping portion is limited in the first mounting hole position, thereby completing the installation of the two rotating arms; At this time, the fourth assembly arm loads the fixed arm, and the fourth assembly arm is slidably engaged in the third moving channel, so that the fourth assembly arm assembles the second clamping portion of the fixed arm into the second mounting hole position of the main lamp base. At the same time, the third assembly arm in the second assembly mechanism loads the second limiting portion, and the third assembly arm is slidably engaged in the second moving channel, and the third assembly arm assembles the second limiting portion into the penetrating end of the second clamping portion, so that the second clamping portion is limited in the second mounting hole position, thereby completing the installation of the fixed arm, replacing manual operation and improving the efficiency of the main lamp base assembly.
[0010] According to some embodiments of the present application, the first assembly mechanism includes two first loading parts and two second loading parts. The two first loading parts are respectively installed at the other ends of the two first assembly arms. The two first loading parts are located in the placement cavity. The first loading part is used for loading the first clamping part so that the first clamping part faces the two first moving channels. The two second loading parts are respectively installed at one ends of the two second assembly arms. The second loading part is used for loading the rotating arm so that the clamping part of the rotating arm faces the placement cavity.
[0011] According to some embodiments of the present application, the first assembly mechanism includes two lifting driving devices, two first assembly driving devices, two second assembly driving devices and two movable seats. The two movable seats are respectively slidably matched with the two inner sides of the top frame. The two lifting driving devices are arranged at the top of the top frame. The two movable seats are respectively connected to the two lifting driving devices. The two lifting driving devices respectively drive the two movable seats to lift. The two first assembly driving devices are respectively arranged at one sides of the two movable seats. The two first assembly arms are respectively installed at one sides of the two first assembly driving devices. The two first assembly driving devices respectively drive the two first assembly arms to move. The two second assembly driving devices are arranged at the two inner sides of the top frame. The two second assembly arms are respectively installed at one sides of the two second assembly driving devices. The two second assembly driving devices respectively drive the two second assembly arms to move.
[0012] According to some embodiments of the present application, the first assembly mechanism includes two guiding sliders and two guiding slide rails. The two guiding slide rails are installed at the two inner sides of the top frame. The two guiding sliders are respectively arranged at the other sides of the two movable seats so that the two guiding sliders are respectively slidably matched with the two guiding slide rails.
[0013] According to some embodiments of the present application, the first loading part includes a first assembly end, a connecting plug projection and a plurality of first limiting blocks. The first assembly end is arranged at the other end of the first assembly arm. The connecting plug projection is installed at one side of the first assembly end. The connecting plug projection is used for being inserted into the inside of the first limiting part. The plurality of first limiting blocks are arranged at one side of the first assembly end. The plurality of first limiting blocks are distributed annularly around the connecting plug projection so that the first limiting blocks and the connecting plug projection are separated into a first limiting interval. The first limiting interval is used for the insertion of the connecting plug projection.
[0014] According to some embodiments of the present application, the first loading portion includes two second limiting blocks. The two second limiting blocks are arranged on one side of the first assembling end. The two second limiting blocks are spaced apart to form a second limiting interval. A plurality of extending convexes are provided on the outer edge of the first limiting portion. The second limiting interval is used for plugging with any one of the extending convexes.
[0015] According to some embodiments of the present application, the second loading portion includes a second assembling end. The second assembling end is arranged at one end of the second assembling arm. A first accommodating groove is formed on one side of the second assembling end. The shape of the first accommodating groove matches that of the rotating arm. The first accommodating groove is used for accommodating the rotating arm.
[0016] According to some embodiments of the present application, the second assembling mechanism includes a third assembling driving device, a fourth assembling driving device, a third loading portion and a fourth loading portion. The third assembling driving device is installed inside the top frame. The third assembling arm is connected to the third assembling driving device. The third assembling driving device drives the third assembling arm to move. The third loading portion is installed at one end of the third assembling arm. The third loading portion is used for loading the second limiting portion to make the second limiting portion face the placing cavity. The fourth assembling driving device is installed on the top of the frame. The fourth assembling arm is connected to the fourth assembling driving device. The fourth assembling driving device drives the fourth assembling arm to move. The fourth loading portion is installed at one end of the fourth assembling arm. The fourth loading portion is used for loading the fixing arm to make the second clamping portion of the fixing arm face the placing cavity.
[0017] According to some embodiments of the present application, the third loading portion includes a third assembling end, a plurality of positioning blocks and a positioning plug. A first positioning groove and a plurality of second positioning grooves are formed inside the second limiting portion. The second positioning grooves are annularly distributed around the first positioning groove. The third assembling end is arranged at one end of the third assembling arm. The positioning plug is arranged on one side of the third assembling end. The positioning plug is used for plugging with the first positioning groove. The plurality of positioning blocks are arranged on one side of the third assembling end so that the plurality of positioning blocks are annularly distributed around the positioning plug. The plurality of positioning blocks are used for plugging with the plurality of second positioning grooves.
[0018] According to some embodiments of the present application, the fourth loading portion includes a fourth assembling end. The fourth assembling end is arranged at one end of the fourth assembling arm. A second accommodating groove is formed on one side of the fourth assembling end. The shape of the second accommodating groove matches that of the fixing arm. The second accommodating groove is used for accommodating the fixing arm.
[0019] Additional aspects and advantages of the present application will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present application. Description of the Drawings
[0020] The present application will be further described below in conjunction with the accompanying drawings and embodiments, where:
[0021] Figure 1 is a schematic structural diagram of the main lamp base assembly machine of the present application;
[0022] Figure 2 is a partial schematic structural diagram of the main lamp base assembly machine of the present application;
[0023] Figure 3 is Figure 1 a schematic structural diagram of the third assembly driving device and the fourth assembly driving device in
[0024] Figure 4 is Figure 1 a schematic structural diagram of the placement cavity in
[0025] Figure 5 is Figure 1 a schematic structural diagram of the second assembly end in
[0026] Figure 6 is Figure 1 a schematic structural diagram of the first assembly end in
[0027] Figure 7 is Figure 1 a schematic structural diagram of the fourth assembly end in
[0028] Figure 8 is Figure 1 a schematic structural diagram of the third assembly end in
[0029] Figure 9 is a schematic structural diagram of the main lamp base;
[0030] Figure 10 is Figure 9 a schematic structural diagram of the first mounting hole position and the second mounting hole position of the main lamp base in
[0031] Figure 11 is Figure 9 a schematic structural diagram of the rotating arm and the fixed arm of the main lamp base in
[0032] Reference numerals:
[0033] Frame 100, top frame 110, placement seat 120, placement cavity 130, first moving channel 131, second moving channel 140, third moving channel 141;
[0034] The first assembly mechanism 200, the first assembly driving device 210, the first assembly arm 211, the lifting driving device 212, the guiding slider 213, the guiding slide rail 214, the movable seat 215, the second assembly driving device 220, the second assembly arm 221, the second loading part 230, the second assembly end 231, the first receiving groove 232, the first loading part 240, the first assembly end 241, the connecting plug protrusion 242, the first limiting interval 243, the first limiting block 244, the second limiting block 245, the second limiting interval 246;
[0035] The second assembly mechanism 300, the third assembly driving device 310, the third assembly arm 311, the third loading part 320, the positioning block 321, the positioning plug protrusion 322, the third assembly end 323, the fourth assembly driving device 330, the fourth assembly arm 331, the fourth loading part 340, the second receiving groove 341, the fourth assembly end 342;
[0036] The main lamp holder 400, the first mounting hole position 410, the second mounting hole position 411;
[0037] The movable lamp body 500, the first lamp part 510, the rotating arm 520, the first clamping part 521, the first limiting part 522, the extending plug protrusion 523;
[0038] The fixed lamp body 600, the second lamp part 610, the fixed arm 620, the second clamping part 630, the second limiting part 640, the first positioning groove 641, the second positioning groove 642. Detailed implementation manners
[0039] The embodiments of the present application will be described in detail below. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present application, and should not be construed as a limitation to the present application.
[0040] In the description of the present application, it should be understood that the orientation or positional relationship indicated by terms such as up, down, front, back, left, right, etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as a limitation to the present application.
[0041] In the description of the present application, the meaning of "several" is more than one, the meaning of "multiple" is more than two, and understandings such as "greater than", "less than", "exceeding", etc. do not include the recited number, while understandings such as "above", "below", "within", etc. include the recited number. If there is a description of "first" and "second", it is only for the purpose of distinguishing technical features and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or implicitly indicating the sequence of the indicated technical features.
[0042] In the description of the present application, unless otherwise clearly defined, terms such as "arrangement", "installation", "connection", etc. shall be understood in a broad sense, and those skilled in the art can reasonably determine the specific meanings of the above terms in the present application in combination with the specific content of the technical solution.
[0043] In the description of the present application, the description with reference to terms such as "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic descriptions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.
[0044] In the prior art, in order to increase the illumination range of an induction lamp, a three-axis induction lamp is designed in the prior art. The three-axis induction lamp includes a main lamp base 400, two movable lamp bodies 500, and a fixed lamp body 600. First mounting holes 410 are provided at both ends of the main lamp base 400. The movable lamp body 500 includes a first lamp portion 510, a rotating arm 520, a first clamping portion 521, and a first limiting portion 522. The first lamp portion 510 is mounted at one end of the rotating arm 520, the first clamping portion 521 is mounted at the other end of the rotating arm 520. One end of the first clamping portion 521 is rotatably connected to the first mounting hole 410. The first limiting portion 522 is located inside the main lamp base 400, so that the first limiting portion 522 is clamped with the inserted end of the first clamping portion 521 to limit the first clamping portion 521 in the first mounting hole 410. The fixed lamp body 600 includes a second lamp portion 610, a fixed arm 620, a second clamping portion 630, and a second limiting portion 640. A second mounting hole 411 is provided on one side of the main lamp base 400. The second lamp portion 610 is mounted at one end of the fixed arm 620, the second clamping portion 630 is mounted at the other end of the fixed arm 620. One end of the second clamping portion 630 is rotatably connected to the second mounting hole 411. The second limiting portion 640 is located inside the main lamp base 400, so that the second limiting portion 640 is clamped with the inserted end of the second clamping portion 630 to limit the second clamping portion 630 in the second mounting hole 411. However, the installation process of the three-axis induction lamp mainly relies on manual operation. Although this process can complete the fixation and assembly of the three-axis induction lamp, the clamping installation process of multiple axes is more complex and time-consuming, resulting in low assembly efficiency.
[0045] Referring to Figures 1 to 11 , an induction lamp main lamp base assembly machine, comprising:
[0046] A frame 100, with a top frame 110 provided at the top of the frame 100;
[0047] A placement seat 120, provided at the top of the frame 100. A placement cavity 130 is provided inside the placement seat 120 for placing the main lamp base 400. First movable channels 131 are provided at both ends of the placement seat 120, a second movable channel 140 is provided on one side of the placement seat 120, and a third movable channel 141 is provided on the other side of the placement seat 120. The first movable channels 131, the second movable channel 140, and the third movable channel 141 communicate with the placement cavity 130;
[0048] The first assembly mechanism 200 is disposed inside the top frame 110 and is used to assemble the first clamping portion 521 and the first limiting portion 522 to the main lamp holder 400. The first assembly mechanism 200 includes two first assembly arms 211 and two second assembly arms 221. One ends of the two first assembly arms 211 are respectively slidably connected to two sides inside the top frame 110, and the other ends of the two first assembly arms 211 extend into the placement cavity 130. The other end of the first assembly arm 211 is used to load the first limiting portion 522. The two second assembly arms 221 are respectively slidably engaged with the two first moving channels 131, and one end of the second assembly arm 221 is used to load the rotating arm 520;
[0049] The second assembly mechanism 300 is disposed on the top of the frame 100 and is used to assemble the second clamping portion 630 and the second limiting portion 640 to the main lamp holder 400. The second assembly mechanism 300 includes a third assembly arm 311 and a fourth assembly arm 331. The third assembly arm 311 is slidably engaged with the second moving channel 140, and one end of the third assembly arm 311 is used to load the second limiting portion 640. The fourth assembly arm 331 is slidably engaged with the third moving channel 141, and one end of the fourth assembly arm 331 is used to load the fixed arm 620.
[0050] It can be understood that when assembling the three-axis induction lamp, the main lamp holder 400 is placed in the placement cavity 130 of the placement seat 120, and the two second assembly arms 221 respectively load the rotating arms 520. When the two second assembly arms 221 slide in the two first moving channels 131, the two second assembly arms 221 assemble the first clamping portions 521 of the two rotating arms 520 into the first mounting holes 410 on both sides of the main lamp holder 400. At the same time, the two first assembly arms 211 in the first assembly mechanism 200 respectively load the first limiting portions 522, and the two first assembly arms 211 move into the placement cavity 130 under the sliding connection on both sides inside the top frame 110, and assemble the two first limiting portions 522 into the penetrating ends of the two first clamping portions 521, so that the first clamping portion 521 is limited in the first mounting hole 410, thereby completing the installation of the two rotating arms 520; At this time, the fourth assembly arm 331 loads the fixed arm 620, and the fourth assembly arm 331 is slidably engaged in the third moving channel 141, so that the fourth assembly arm 331 assembles the second clamping portion 630 of the fixed arm 620 into the second mounting hole 411 of the main lamp holder 400. At the same time, the third assembly arm 311 in the second assembly mechanism 300 loads the second limiting portion 640, and the third assembly arm 311 is slidably engaged in the second moving channel 140, and the third assembly arm 311 assembles the second limiting portion 640 into the penetrating end of the second clamping portion 630, so that the second clamping portion 630 is limited in the second mounting hole 411, thereby completing the installation of the fixed arm 620, replacing manual operation and improving the assembly efficiency of the main lamp holder 400.
[0051] In addition, the first assembly arm 211, the second assembly arm 221, the third assembly arm 311, and the fourth assembly arm 331 can be driven by a motor or a cylinder.
[0052] Referring to Figures 1 to 11 , the first assembly mechanism 200 includes two first loading parts 240 and two second loading parts 230. The two first loading parts 240 are respectively installed at the other ends of the two first assembly arms 211. The two first loading parts 240 are located in the placement cavity 130. The first loading part 240 is used for loading the first clamping part 521 so that the first clamping part 521 faces the two first moving channels 131. The two second loading parts 230 are respectively installed at one ends of the two second assembly arms 221. The second loading part 230 is used for loading the rotating arm 520 so that the clamping part of the rotating arm 520 faces the placement cavity 130.
[0053] It can be understood that when the rotating arm 520 is loaded into the second loading part 230 and the first clamping part 521 is loaded into the first loading part 240, at this time, the first clamping part 521 of the rotating arm 520 faces the placement cavity 130, and the first limiting part 522 will face the two first moving channels 131, so that the first clamping part 521 can be aligned with the first mounting hole position 410 of the main lamp holder 400, and the first limiting part 522 is aligned with the penetrating end of the first clamping part 521, ensuring the correct directions of the first clamping part 521 and the first limiting part 522 during the assembly process, not only improving the assembly efficiency, but also reducing the operation errors during the assembly process and ensuring the assembly quality.
[0054] Referring to Figures 1 to 5 , the first assembly mechanism 200 includes two lifting drive devices 212, two first assembly drive devices 210, two second assembly drive devices 220, and two movable seats 215. The two movable seats 215 are respectively slidably engaged with the inner sides of both sides of the top frame 110. The two lifting drive devices 212 are arranged on the top of the top frame 110. The two movable seats 215 are respectively connected to the two lifting drive devices 212. The two lifting drive devices 212 respectively drive the two movable seats 215 to lift. The two first assembly drive devices 210 are respectively arranged on one side of the two movable seats 215. The two first assembly arms 211 are respectively installed on one side of the two first assembly drive devices 210. The two first assembly drive devices 210 respectively drive the two first assembly arms 211 to move. The two second assembly drive devices 220 are arranged on the inner sides of both sides of the top frame 110. The two second assembly arms 221 are respectively installed on one side of the two second assembly drive devices 220. The two second assembly drive devices 220 respectively drive the two second assembly arms 221 to move.
[0055] It can be understood that during the assembly process, when the first assembly arm 211 needs to assemble the first limiting portion 522 to the insertion end of the first clamping portion 521, due to the different sizes of the main lamp socket 400, the height between the first clamping portion 521 and the first assembly arm 211 is different. Therefore, the lifting drive device 212 is responsible for driving the movable seat 215 to move up and down to adjust the relative height between the first assembly arm 211 and the main lamp socket 400, so that the first limiting portion 522 can be accurately assembled to the insertion end of the first clamping portion 521. When the first limiting portion 522 is correctly assembled under the drive of the first assembly drive device 210, the lifting drive device 212 can drive the movable seat 215 to move again for the next assembly cycle, ensuring the precise height adjustment between the first assembly arm 211 and the first clamping portion 521 during the assembly process, improving the accuracy and efficiency of the assembly, and enabling the first assembly arm 211 to adapt to the first clamping portions 521 of different heights, improving the versatility and flexibility of the equipment.
[0056] Referring to Figures 1 to 5 , the first assembly mechanism 200 includes two guiding sliders 213 and two guiding slide rails 214. The two guiding slide rails 214 are installed on both inner sides of the top frame 110. The two guiding sliders 213 are respectively arranged on the other side of the two movable seats 215, so that the two guiding sliders 213 are respectively in sliding fit with the two guiding slide rails 214.
[0057] It can be understood that the two guiding slide rails 214 are installed on both inner sides of the top frame 110, thereby providing a fixed track for guiding the movement of the guiding sliders 213 of the movable seat 215 in the horizontal direction, ensuring the stability of the movable seat 215 during the assembly process and preventing it from shifting or sliding in the horizontal direction.
[0058] Referring to Figures 5 to 6 、 Figure 11 , the first loading portion 240 includes a first assembly end 241, a connecting plug projection 242 and a plurality of first limiting blocks 244. The first assembly end 241 is arranged at the other end of the first assembly arm 211. The connecting plug projection 242 is installed on one side of the first assembly end 241. Usually, the shape of the first limiting portion 522 is cylindrical. The connecting plug projection 242 is used for inserting into the inside of the first limiting portion 522. The plurality of first limiting blocks 244 are arranged on one side of the first assembly end 241. The plurality of first limiting blocks 244 are distributed annularly around the connecting plug projection 242, so that the first limiting blocks 244 and the connecting plug projection 242 are separated into a first limiting interval 243, and the first limiting interval 243 is used for the insertion of the connecting plug projection 242.
[0059] It can be understood that when the first limiting part 522 needs to be loaded onto the first assembling end 241, the connecting insertion protrusion 242 is inserted into the interior of the first limiting part 522 to ensure that the first limiting part 522 is placed on the first assembling end 241, and the connecting insertion protrusion 242 can provide sufficient connection strength to prevent the first clamping part 521 from loosening or shifting during the assembly process; moreover, the first limiting block 244 and the connecting insertion protrusion 242 are separated to form a limiting interval, providing a space for the insertion of the connecting insertion protrusion 242, providing an additional positioning and stabilizing function, further enhancing the stability of the installation of the first limiting part 522, and ensuring the accuracy and efficiency of the assembly.
[0060] Refer to Figures 5 to 6 、 Figure 11 As shown in FIGS.
[0061] It can be understood that when the first limiting part 522 is placed on the first assembling end 241, the first limiting part 522 will rotate due to friction during the moving process. At this time, the first limiting interval 243 is inserted into any one of the extending clamping protrusions 523, so that the rotation position of the first limiting part 522 on the first assembling end 241 is restricted, preventing its position from being inaccurate during the assembly process, ensuring the precise position of the first clamping part 521 during the assembly process, and improving the accuracy and efficiency of the assembly.
[0062] Refer to Figures 5 to 6 、 Figure 11 As shown in FIGS.
[0063] It can be understood that the shape of the rotating arm 520 matches that of the first receiving groove 232, enabling the rotating arm 520 to be stably placed on the second assembling end 231, ensuring that the rotating arm 520 does not move during the assembly process, and enabling the first clamping part 521 during the assembly process to be accurately assembled into the first mounting hole position 410 of the main lamp socket 400.
[0064] Refer to Figures 1 to 5, the second assembly mechanism 300 includes a third assembly driving device 310, a fourth assembly driving device 330, a third loading portion 320 and a fourth loading portion 340. The third assembly driving device 310 is installed inside the top frame 110. The third assembly arm 311 is connected to the third assembly driving device 310. The third assembly driving device 310 drives the third assembly arm 311 to move. The third loading portion 320 is installed at one end of the third assembly arm 311. The third loading portion 320 is used to load the second limiting portion 640 so that the second limiting portion 640 faces the placement cavity 130. The fourth assembly driving device 330 is installed on the top of the frame 100. The fourth assembly arm 331 is connected to the fourth assembly driving device 330. The fourth assembly driving device 330 drives the fourth assembly arm 331 to move. The fourth loading portion 340 is installed at one end of the fourth assembly arm 331. The fourth loading portion 340 is used to load the fixed arm 620 so that the second clamping portion 630 of the fixed arm 620 faces the placement cavity 130.
[0065] It can be understood that when the third assembly arm 311 and the fourth assembly arm 331 need to be assembled, the fourth assembly driving device 330 drives the fourth assembly arm 331 to move. The fourth assembly arm 331 moves the second clamping portion 630 of the fixed arm 620 into the second installation hole position 411 of the main lamp holder 400, so as to assemble the second clamping portion 630. The third assembly driving device 310 drives the third assembly arm 311 to move. The third assembly arm 311 moves the second limiting portion 640 into the main lamp holder 400, so as to assemble the second limiting portion 640 to the penetrating end of the second clamping portion 630, thus eliminating the need for manual operation to install the second clamping portion 630 and the second limiting portion 640, improving the assembly efficiency and accuracy.
[0066] Refer to Figures 7 to 8 , Figure 11 , the third loading portion 320 includes a third assembly end 323, a plurality of positioning blocks 321 and a positioning plug 322. The inside of the second limiting portion 640 is provided with a first positioning groove 641 and a plurality of second positioning grooves 642. The second positioning grooves 642 are annularly distributed around the first positioning groove 641. The third assembly end 323 is arranged at one end of the third assembly arm 311. The positioning plug 322 is arranged on one side of the third assembly end 323. The positioning plug 322 is used for plugging into the first positioning groove 641. A plurality of positioning blocks 321 are arranged on one side of the third assembly end 323 so that the plurality of positioning blocks 321 are annularly distributed around the positioning plug 322. The plurality of positioning blocks 321 are used for plugging into the plurality of second positioning grooves 642.
[0067] It can be understood that when the second limiting portion 640 is loaded onto the third assembling end 323, the positioning plug protrusion 322 on the third assembling end 323 is inserted into the first positioning groove 641 of the second limiting portion 640, providing a preliminary positioning of the position of the second limiting portion 640 to ensure that the second limiting portion 640 does not have a large deviation during the assembly process. Then, the plurality of positioning blocks 321 are inserted into the plurality of second positioning grooves 642 of the second limiting portion 640, thereby limiting the rotation position of the second limiting portion 640. While providing additional support and stability to the second limiting portion 640, it also prevents the second limiting portion 640 from rotating during movement.
[0068] Refer to Figures 7 to 8 、 Figure 11 , the fourth loading portion 340 includes a fourth assembling end 342, the fourth assembling end 342 is provided at one end of the fourth assembling arm 331, a second receiving groove 341 is formed on one side of the fourth assembling end 342, the second receiving groove 341 is matched with the shape of the fixed arm 620, and the second receiving groove 341 is used for receiving the fixed arm 620.
[0069] It can be understood that the shape of the fixed arm 620 is matched with the second receiving groove 341, so that the fixed arm 620 can be stably placed on the fourth assembling end 342, thereby providing sufficient space for the fixed arm 620 to ensure that the fixed arm 620 does not move during the assembly process.
[0070] The embodiments of the present application have been described in detail above in conjunction with the accompanying drawings. However, the present application is not limited to the above embodiments. Within the scope of knowledge possessed by those of ordinary skill in the art, various changes can be made without departing from the purpose of the present application. In addition, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.
Claims
1. The main lamp holder assembly machine for induction lamps is characterized by: include: A frame, wherein a top frame is provided on the top of the frame; A placement seat is arranged on the top of the frame, a placement cavity is provided inside the placement seat, the placement cavity is used to place the main lamp holder, first movable channels are provided at both ends of the placement seat, a second movable channel is provided on one side of the placement seat, and a third movable channel is provided on the other side of the placement seat, and the first movable channel, the second movable channel and the third movable channel are connected to the placement cavity; A first assembly mechanism is arranged inside the top frame, and is used to assemble the first clamping portion and the first limiting portion to the main lamp holder. The first assembly mechanism includes two first assembly arms and two second assembly arms. One end of the two first assembly arms is respectively slidably connected to the inner sides of the top frame, and the other ends of the two first assembly arms extend into the placement cavity. The other end of the first assembly arm is used to load the first limiting portion. The two second assembly arms are respectively slidably matched with the two first movable channels, and one end of the second assembly arm is used to load the rotating arm. The second assembly mechanism is arranged on the top of the frame, and is used to assemble the second clamping part and the second limiting part to the main lamp holder. The second assembly mechanism includes a third assembly arm and a fourth assembly arm. The third assembly arm is slidably matched with the second movable channel, and one end of the third assembly arm is used to load the second limiting part. The fourth assembly arm is slidably matched with the third movable channel, and one end of the fourth assembly arm is used to load the fixed arm.
2. The induction lamp main lamp holder assembly machine according to claim 1, characterized in that: The first assembly mechanism includes two first loading parts and two second loading parts, the two first loading parts are respectively installed at the other end of the two first assembly arms, the two first loading parts are located in the placement cavity, the first loading part is used to load the first clamping part so that the first clamping part faces the two first movable channels, the two second loading parts are respectively installed at one end of the two second assembly arms, and the second loading part is used to load the rotating arm so that the clamping part of the rotating arm faces the placement cavity.
3. The induction lamp main lamp holder assembly machine according to claim 2, characterized in that: The first assembly mechanism includes two lifting drive devices, two first assembly drive devices, two second assembly drive devices and two movable seats, the two movable seats are respectively slidably matched with the inner sides of the top frame, the two lifting drive devices are arranged at the top of the top frame, the two movable seats are respectively connected to the two lifting drive devices, the two lifting drive devices respectively drive the two movable seats to rise and fall, the two first assembly drive devices are respectively arranged on one side of the two movable seats, the two first assembly arms are respectively installed on one side of the two first assembly drive devices, the two first assembly drive devices respectively drive the two first assembly arms to move, the two second assembly drive devices are arranged on both sides of the inner side of the top frame, the two second assembly arms are respectively installed on one side of the two second assembly drive devices, and the two second assembly drive devices respectively drive the two second assembly arms to move.
4. The induction lamp main lamp holder assembly machine according to claim 3, characterized in that: The first assembly mechanism includes two guide sliders and two guide rails, the two guide rails are installed on both sides of the interior of the top frame, and the two guide sliders are respectively arranged on the other side of the two movable seats, so that the two guide sliders are respectively slidably matched with the two guide rails.
5. The induction lamp main lamp holder assembly machine according to claim 2, characterized in that: The first loading part includes a first assembling end, a connecting protrusion and a plurality of first limiting blocks, the first assembling end is arranged at the other end of the first assembling arm, the connecting protrusion is installed on one side of the first assembling end, the connecting protrusion is used to be plugged with the inside of the first limiting part, and a plurality of first limiting blocks are arranged on one side of the first assembling end, and the plurality of first limiting blocks are distributed in a ring around the connecting protrusion, so that the first limiting block and the connecting protrusion are separated into a first limiting interval, and the first limiting interval is used for the connecting protrusion to be plugged.
6. The induction lamp main lamp holder assembly machine according to claim 5, characterized in that: The first loading part includes two second limit blocks, the two second limit blocks are arranged on one side of the first assembly end, the two second limit blocks are separated to form a second limit interval, and the outer edge of the first limit part is provided with a plurality of extended protrusions, and the first limit interval is used to be plugged with any of the extended protrusions.
7. The induction lamp main lamp holder assembly machine according to claim 2, characterized in that: The second loading portion includes a second assembly end, which is arranged at one end of the second assembly arm. A first accommodating groove is opened on one side of the second assembly end, and the first accommodating groove matches the shape of the rotating arm, and the first accommodating groove is used to accommodate the rotating arm.
8. The induction lamp main lamp holder assembly machine according to claim 1, characterized in that: The second assembly mechanism includes a third assembly drive device, a fourth assembly drive device, a third loading part and a fourth loading part. The third assembly drive device is installed inside the top frame. The third assembly arm is connected to the third assembly drive device. The third assembly drive device drives the third assembly arm to move. The third loading part is installed at one end of the third assembly arm. The third loading part is used to load the second limiting part so that the second limiting part faces the placement cavity. The fourth assembly drive device is installed on the top of the frame. The fourth assembly arm is connected to the fourth assembly drive device. The fourth assembly drive device drives the fourth assembly arm to move. The fourth loading part is installed at one end of the fourth assembly arm. The fourth loading part is used to load the fixed arm so that the second clamping part of the fixed arm faces the placement cavity.
9. The induction lamp main lamp holder assembly machine according to claim 8, characterized in that: The third loading part includes a third assembly end, a plurality of positioning blocks and a positioning protrusion. The second limiting part is provided with a first positioning groove and a plurality of second positioning grooves inside, and the second positioning grooves are distributed in a ring around the first positioning groove. The third assembly end is arranged at one end of the third assembly arm, and the positioning protrusion is arranged on one side of the third assembly end. The positioning protrusion is used to be plugged into the first positioning groove. A plurality of positioning blocks are arranged on one side of the third assembly end, so that the plurality of positioning blocks are distributed in a ring around the positioning protrusion, and the plurality of positioning blocks are used to be plugged into the plurality of second positioning grooves.
10. The induction lamp main lamp holder assembly machine according to claim 8, characterized in that: The fourth loading portion includes a fourth assembly end, the fourth assembly end is arranged at one end of the fourth assembly arm, and a second accommodating groove is opened on one side of the fourth assembly end. The second accommodating groove matches the shape of the fixed arm, and the second accommodating groove is used to accommodate the fixed arm.