Induction self-starting energy-saving lamp
By designing a replacement and storage mechanism for induction self-starting energy-saving lamps, the problem of manual climbing and power outage required for LED lamp wick replacement is solved. Lamp wick replacement without power outage and automatic power supply are realized, which improves replacement efficiency and safety.
Patent Information
- Application Number
- CN202411918151.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2044-12-23
AI Technical Summary
The existing LED lamp core replacement process requires manual operation at height and power outage, which affects the normal operation of other lamps and is inconvenient to operate.
An induction self-starting energy-saving lamp is designed, which includes a replacement mechanism and a storage mechanism. The top plate is fixed by a connecting piece. The wick can be replaced without powering off through the replacement mechanism, and the storage mechanism is used to store spare wicks. The circuit is connected by a rod and a copper tube to realize automatic power supply and replacement of the wick.
The LED lamp core can be replaced without powering off, which improves the replacement efficiency and safety, simplifies the operation process and avoids affecting other lamps.
Smart Images

Figure CN119594373B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of energy-saving lamps, in particular to an induction self-starting energy-saving lamp. Background Art
[0002] Existing energy-saving lamps mostly use LED wicks for lighting. Because LED wicks have low power consumption and high energy conversion efficiency, they can save a lot of electricity. In some usage scenarios, LED wicks can be connected to a circuit with a voice control switch to make the lamp a voice-controlled lamp. The voice-controlled switch can control the on and off of the circuit when it detects a sound signal, realizing the function of voice-controlled turning on and off of the lamp.
[0003] General LED lamp wicks are mostly plate-type, with varying numbers of lamp beads and driving power supplies fixed on one side. The positive and negative wires are connected to the driving power supply part, and a magnet is fixed on the other side of the wick to adsorb and fix the wick to the lamp. When replacing lamps, conventional LED lamp wicks are mostly connected through snap-on terminal blocks, and the lamps are generally replaced manually. When manually replacing ceiling lamps, workers need to work at height, which is an inconvenient process. When replacing the wick of a single lamp, in order to ensure the safety of personnel, the power supply of the area needs to be turned off, which affects the normal operation of other lamps in the area and is inconvenient. Summary of the Invention
[0004] The object of the present invention is to provide an induction self-starting energy-saving lamp to solve the problems raised in the above background technology.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] An induction self-starting energy-saving lamp, comprising:
[0007] A top plate and a frame used to be fixed to the ceiling, a replacement mechanism for assisting manual replacement of LED wicks, and a storage mechanism for storing spare LED wicks, mounting holes are provided at the four corners of the top surface of the top plate, the top end of the frame is fixedly connected to the bottom surface of the top plate, the frame is an open structure on one side, and the top end of the opening on one side of the frame is rotatably connected to a door panel, the replacement mechanism is located below the frame, the replacement mechanism includes a shell, and a circular hole is provided in the middle of the shell, the top surface of the shell is fixedly connected to the bottom end of the frame, and a ring body is provided inside the circular hole of the shell, the outer side wall of the ring body is rotatably connected to two connecting pipes, and one end of the two connecting pipes is rotatably connected to the inner side wall of the circular hole on the shell, an adsorption plate is slidably sleeved inside the ring body, and support rings are fixedly connected on opposite sides of the ring body, and the storage mechanism is located inside the frame.
[0008] Furthermore, the inner diameter of the support ring is smaller than the diameter of the adsorption plate, the outer side wall of the adsorption plate is fixedly connected with a plurality of ridges, and the inner side wall of the ring body is provided with a plurality of grooves, and the plurality of ridges are slidably engaged in the adjacent grooves, the inner side wall of the ring body is provided with two incisions, and a push rod is provided inside the two incisions, the two push rods respectively pass through the two connecting tubes, and the two ends of the two push rods respectively pass through the two ends of the shell, the thickness of the adsorption plate is smaller than the thickness of the ring body, and the outer side wall of the adsorption plate is provided with two push openings, the other ends of the two push rods are fixedly connected with a rail, any rail is slidably engaged with the adjacent incision, and a movable plate is slidably engaged inside any rail, one end of the two movable plates is rotatably connected with a push roller, and the two movable plates correspond one to one with the two push openings.
[0009] Furthermore, a lampshade is provided under the shell, and a pull plate and a snap-in plate are fixedly connected to the outer side wall of the lampshade, the pull plate and the snap-in plate are arranged diagonally with the center of the lampshade as the center, and one end of the pull plate is rotatably connected to the bottom surface of the shell, the bottom surface of the shell is fixedly connected to a U-shaped frame, and a support plate is slidably snapped between the two arms of the U-shaped frame, a plurality of rebound springs are fixedly connected between one side of the support plate and an inner wall of the U-shaped frame, and the snap-in plate is movably snapped above the support plate.
[0010] Furthermore, a U-shaped rod is provided at both ends of the shell, and a connecting ring belt is provided in the middle of the opposite sides of the shell, two rollers are provided inside any connecting ring belt, any roller is rotatably connected between the top surface and the inner bottom surface of the shell, and any connecting ring belt is rotatably sleeved between the outer sides of two adjacent rollers, one end of the two arms of any U-shaped rod is fixedly connected to the outer sides of the two connecting ring belts respectively, and the two U-shaped rod ends on any connecting ring belt are diagonally arranged with the center of the two adjacent rollers as the center, and a plurality of reset springs are fixedly connected between an inner wall of any U-shaped rod and the outer side wall of the circular hole on the shell, and a sleeve hole is opened on the inner wall of the two connecting ring belts, and the two sleeve holes are rotatably sleeved with the outer sides of the two support rods respectively.
[0011] Furthermore, two slots are provided on the outer wall of the ring body, and the outer walls of the two connecting ring belts are fixedly connected with inserts. Two inserts are provided on the inner wall of the circular hole on the shell, and the two inserts respectively pass through the two inserts, and one end of the two inserts is movably connected to the inside of the two slots.
[0012] Furthermore, a fixing plate is fixedly connected to the bottom surface of the shell, and two connecting holes are provided on one side of the fixing plate, contact tubes are slidably sleeved inside the two connecting holes, and a connecting plate is fixedly connected between the two contact tubes, a plurality of tension springs are fixedly connected between the connecting plate and the fixing plate, a positioning rod is fixedly connected to one side of the connecting plate, and one end of the positioning rod passes through one side of the fixing plate, the replacement mechanism is equipped with a copper tube for fixedly sleeved with the wire, a plastic ring is fixedly sleeved on the outer side wall of any copper tube, two U-shaped clips are fixedly connected to one side of any supporting ring, and a slot for movable clamping of the plastic ring is provided between the two arms of the two U-shaped clips, and a magnet is fixedly connected to the outer side wall of any plastic ring and the bottom end of the slot on the two U-shaped clips.
[0013] Furthermore, a pull strap is fixedly connected to the inner wall of a U-shaped rod, and one end of the pull strap passes through the bottom surface of the shell and is fixedly connected to one side of the pull plate; a connecting strap is fixedly connected to the inner wall of another U-shaped rod, and one end of the connecting strap passes through the inner wall of the circular hole on the shell and is fixedly connected to the top of the connecting plate; the inner wall of the circular hole of the shell is fixedly connected to the limiting plate, and the connecting strap passes around one end of the limiting plate.
[0014] Furthermore, the storage mechanism includes:
[0015] The cylinder body, the guide rail and the two slide rails, the cylinder body is an open structure at the bottom end, the outer wall of the cylinder body is provided with a cutting groove, and the inner wall of the cylinder body is provided with multiple sliding holes, a protrusion is slidably sleeved inside any sliding hole, and a pressure spring is fixedly connected between one end of any protrusion and the inner wall of the adjacent sliding hole, the top surface of the cylinder body is fixedly connected with a slide plate, the guide rail is located inside the frame body, the slide plate is slidably engaged with the inside of the guide rail, the two slide rails are fixedly connected between the bottom surface of the top plate and the top surface of the shell, the two slide rails are slidably engaged with a slider, and the two sliders are fixedly connected to one end of the guide rail.
[0016] Furthermore, the top surface of the cylinder is fixedly connected to two vertical poles, and the bottom ends of the two vertical poles are provided with clamping grooves, and any copper tube and the adjacent plastic ring are slidably clamped in the adjacent clamping grooves.
[0017] Furthermore, there are two sliding through holes on the top surface of the shell, and rotating rods are provided inside the two sliding through holes. The two rotating rods are rotatably connected to support plates on the opposite sides of the two rotating rods, and one end of any support plate is fixedly connected to the top surface of the shell. The two rotating rods are respectively located inside the two connecting rings, and two fixed rails are fixedly connected between the opposite sides of the frame. The tops of the two rotating rods are provided with sliding grooves, and the inside of the two sliding grooves are slidably connected with moving blocks, and the two moving blocks are slidably connected to the inside of the two fixed rails, and any moving block is located above the support plate on the adjacent rotating rod. One side of the two rotating rods is provided with a conflicting passage Hole, and a shift block is slidably sleeved inside the two interfering through holes, one end of any shift block is fixedly connected to the inner wall of the adjacent connecting ring belt, and any shift block is located below the support plate on the adjacent rotating rod, and the outer side walls of the two moving blocks are fixedly connected with a pull rope, and one end of any pull rope passes through the top of the adjacent fixed rail, and any pull rope is equipped with a plurality of guide wheels, and one end of any pull rope is fixedly connected to the top surface of the guide rail after passing through the matching multiple guide wheels, and any guide wheel is equipped with a U-shaped seat, and any guide wheel is rotatably connected between the two arms of the adjacent U-shaped seat, and one end of any U-shaped seat is fixedly connected to the adjacent frame side wall or the bottom surface of the top plate.
[0018] Compared with the prior art, the present invention has the following beneficial effects:
[0019] 1. By fixing the top plate to the ceiling with a connector, and then using a storage mechanism to store multiple wicks inside the frame, when the wicks in use have problems such as aging and need to be replaced, the wicks currently in use can be removed by using the replacement mechanism, and the wicks inside the storage mechanism can be moved out of the frame for use through the replacement mechanism, so that the wicks can be replaced without turning off the power, which is convenient for users to replace LED wicks.
[0020] 2. Use the connecting piece to fix the top plate to the ceiling, stack multiple wicks vertically inside the cylinder in sequence, and cover the positive and negative wires on all the wicks with copper tubes and then clip them into the clip grooves on the two vertical rods, clip the slide on the cylinder into the inside of the guide rail, so that the lowest wick in the cylinder is supported by the supporting ring above the ring body, and the copper tube on the wick is adsorbed on the two U-shaped card plates on the adjacent supporting rings, and the other wicks in the cylinder are supported by the protrusions below them. The wick currently in use is on the supporting ring below the shell, and the magnet on the wick currently in use is adsorbed by the adsorption plate, and the positive and negative wires on the wick currently in use are both covered with copper tubes, and the copper tubes are adsorbed and fixed inside the two U-shaped card plates on the adjacent supporting rings, and the neutral and live wires in the circuit are respectively connected to the two contact tubes, and the other U-shaped rod pulls the connecting plate through the connecting belt to drive the two contact tubes to contact the copper tubes on the positive and negative wires of the wick currently in use, thereby powering the wick currently in use;
[0021] 3. By using a rod-shaped object to move the supporting plate, the lampshade rotates and falls naturally, and then the long rod is used to push the lampshade to rotate away from the ring body, so that the lampshade pulls the adjacent U-shaped rod to move through the pull belt, so that the U-shaped rod drives the two connecting ring belts to rotate synchronously, and the two connecting ring belts drive the two U-shaped rods to move towards each other, so that the connecting belt is loosened when the other U-shaped rod moves, and then the connecting plate drives the two contact tubes to be pulled by the adjacent tension springs to first detach from the copper tube on the current wick, and then the two stop rods drive the two moving plates to insert into the adjacent stop ports, driving the adsorption ring to move upward , so that the currently used wick detaches from the adsorption plate and falls naturally, and the adsorption ring is adsorbed with the lowest wick in the barrel. As the two U-shaped rods continue to move, the two rotating ring belts drive the two inlay plates to detach from the adjacent slots, so that the ring body can rotate. The two U-shaped rods continue to move, so that the two rotating connecting ring belts drive the adjacent rotating rods to rotate through the adjacent shifting blocks, so that the moving blocks on the rotating rods pull the barrel body and the guide rail upward through the adjacent pull ropes, so that the ring body can naturally flip over due to the heavier weight of its upper part, so that the wick at the bottom of the barrel rotates with the ring body to the bottom of the shell;
[0022] 4. By loosening the lampshade, the two U-shaped rods are reset by the adjacent reset springs, and the two connecting ring belts are reversed, so that the cylinder is pressed down first, the ring body that may be in a shaking state is pressed and positioned, and the cylinder and the ring body are in contact to generate vibration, so that the wick in the cylinder squeezes the adjacent protrusions and moves downward due to vibration and its own weight, and the wick at the bottom after moving down contacts the supporting ring above the ring body, and the copper tube on the wick is adsorbed to the inside of the U-shaped card plate on the adjacent supporting ring, and then the two inlaid plates are reset by the adjacent reversed connecting ring belts and re-engaged in the adjacent card slots, and then the two push rods are reset, and the two movable plates slide inside the adjacent card rails due to their own weight and reset to the bottom of the adjacent incision, and then another U-shaped rod pulls the connecting belt to drive the connecting plate and the two contact tubes to contact the copper tube on the replaced wick for power supply. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0024] Figure 2 This is a schematic diagram of the internal structure of the lampshade in the present invention;
[0025] Figure 3 This invention Figure 2 A partial enlarged view of the middle part;
[0026] Figure 4 It is a schematic diagram of the structure of the replacement mechanism in the present invention;
[0027] Figure 5 This is a schematic diagram of the structure of the ring body, adsorption plate and support ring in the present invention;
[0028] Figure 6 It is a schematic diagram of the structure of the movable plate in the present invention;
[0029] Figure 7 It is a schematic diagram of the internal structure of the shell in the present invention;
[0030] Figure 8 It is a schematic diagram of the copper tube structure in the present invention;
[0031] Figure 9 This is a schematic diagram of the internal structure of the frame in the present invention;
[0032] Figure 10 This is a schematic diagram of the movement trajectory of the pull rope in the present invention;
[0033] Figure 11 It is a schematic diagram of the transfer rod structure of the present invention;
[0034] Figure 12 It is a schematic diagram of the cylinder structure in the present invention;
[0035] Figure 13 This invention Figure 12 A partial enlarged view of point B in the middle.
[0036] In the figure: 100, top plate; 200, frame; 210, door panel; 300, replacement mechanism; 301, copper tube; 302, plastic ring; 310, housing; 311, U-shaped frame; 312, supporting plate; 313, rebound spring; 320, lampshade; 321, pull plate; 322, snap-in plate; 330, ring body; 331, cutout; 332, slot; 333, connecting pipe; 340, supporting ring; 341, U-shaped clip; 350, adsorption plate; 351, butt joint; 360, butt rod; 361, card rail; 362, movable plate; 370, U-shaped rod; 371. Pull belt; 372. Connecting belt; 373. Return spring; 380. Connecting ring belt; 381. Panel; 382. Dial block; 390. Fixed plate; 391. Contact tube; 392. Connecting plate; 393. Tension spring; 394. Positioning rod; 395. Limiting plate; 400. Storage mechanism; 410. Cylinder; 411. Slide plate; 412. Slide hole; 413. Protrusion; 414. Compression spring; 420. Guide rail; 430. Slide rail; 440. Fixed rail; 450. Rotating rod; 451. Moving block; 452. Pull rope; 460. Vertical pole. DETAILED DESCRIPTION
[0037] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0038] See also Figures 1-13 In an embodiment of the present invention, an induction self-starting energy-saving lamp includes:
[0039] The top plate 100, frame 200, replacement mechanism 300 for assisting manual replacement of LED wicks and storage mechanism 400 for storing spare LED wicks are fixed to the ceiling. The top surface of the top plate 100 is provided with mounting holes at the four corners. The top of the frame 200 is fixedly connected to the bottom surface of the top plate 100. The frame 200 is an open structure on one side, and the top of the opening on one side of the frame 200 is rotatably connected to the door panel 210. The replacement mechanism 300 is located below the frame 200. The replacement mechanism 300 includes a shell 310. , and a circular hole is opened in the middle of the shell 310, the top surface of the shell 310 is fixedly connected to the bottom end of the frame 200, and a ring body 330 is provided inside the circular hole of the shell 310, and the outer wall of the ring body 330 is rotatably connected to two connecting tubes 333, and one end of the two connecting tubes 333 is rotatably connected to the inner wall of the circular hole on the shell 310, an adsorption plate 350 is slidably sleeved inside the ring body 330, and support rings 340 are fixedly connected on both opposite sides of the ring body 330, and the storage mechanism 400 is located inside the frame 200.
[0040] Specifically, the expansion bolts are passed through the mounting holes on the top plate 100 and fixed to the ceiling, so that the top plate 100 is fixed to the ceiling, and the existing LED wick is used for lighting. The back of the existing LED wick has a magnet for adsorbing and fixing it on the lamp, and the wick has a positive wire and a negative wire for connecting with the neutral wire and the live wire in the circuit. The LED wick can be turned on and off by using a sound sensor switch. The sound sensor switch is connected to the live wire in the existing circuit to control the live wire. When the sound sensor switch detects a sound signal, it can control the connection of the circuit to make the LED wick light up, thereby realizing the induction self-start of the LED lamp. The sound sensor switch is a prior art and will not be described here. To elaborate, when in use, the two LED wicks are placed on the top and bottom of the ring body 330 respectively, and the magnets on the two LED wicks are close to the adsorption plate 350, and the bottom surfaces of the two LED wicks will be against the adjacent support ring 340, so that the plate is located below the shell 310 and the other LED wick is located inside the frame 200, and the wires on one LED wick are connected to the neutral and live wires in the existing circuit to make it illuminate. When the lamp beads on one LED wick are aged, the ring body 330 in the circular hole on the shell 310 can be rotated to the bottom of the shell 310 for illumination, so that the aged LED wick can be replaced in time.
[0041] Example 1
[0042] like Figure 2-Figure 6As shown, in this embodiment, the inner diameter of the support ring 340 is smaller than the diameter of the adsorption plate 350, the outer side wall of the adsorption plate 350 is fixedly connected with a plurality of ridges, and the inner side wall of the ring body 330 is provided with a plurality of grooves, and the plurality of ridges are slidably engaged with the adjacent grooves, the inner side wall of the ring body 330 is provided with two incisions 331, and the inside of the two incisions 331 is provided with a push rod 360, the two push rods 360 respectively pass through the inside of the two connecting pipes 333, and the two ends of the two push rods 360 respectively pass through the two ends of the shell 310, the thickness of the adsorption plate 350 is smaller than the thickness of the ring body 330, and the outer side wall of the adsorption plate 350 is provided with two push holes 351, the other ends of the two push rods 360 are fixedly connected with a rail 361, any rail 361 is slidably engaged with the inside of the adjacent incision 331, and any A movable plate 362 is slidably connected to the inside of a rail 361, and one end of the two movable plates 362 is rotatably connected to a roller, and the two movable plates 362 correspond one-to-one to the two resisting openings 351. A lampshade 320 is provided under the shell 310, and the outer wall of the lampshade 320 is fixedly connected to a pull plate 321 and a card-in plate 322. The pull plate 321 and the card-in plate 322 are arranged diagonally with the center of the lampshade 320 as the center, and one end of the pull plate 321 is rotatably connected to the bottom surface of the shell 310. A U-shaped frame 311 is fixedly connected to the bottom surface of the shell 310, and a support plate 312 is slidably connected between the two arms of the U-shaped frame 311. A plurality of rebound springs 313 are fixedly connected between one side of the support plate 312 and an inner wall of the U-shaped frame 311, and the card-in plate 322 is movably connected to the top of the support plate 312.
[0043] The wick 350 is then pulled out of the way by the pulley 340 and the pulley 341 is pulled inwardly to the left of the wick 350. The wick 350 is then pulled outwardly to the right of the pulley 340. The wick 350 is then pulled outwardly to the right of the pulley 340. When the wick is replaced, the lampshade 320 can be replaced by rotating the lampshade 320 so that the locking plate 322 can push the supporting plate 312 to move above the supporting plate 312. The supporting plate 312 can be reset by the rebound spring 313 to support the locking plate 322 and fix the lampshade 320 so that the lampshade 320 covers the bottom of the wick. When the wick needs to be replaced, the supporting plate 312 can be pushed away from the locking plate 322 by using a rod-like tool, such as a mop rod, so that the lampshade 320 can automatically rotate by the pulling plate 321 due to its own weight so that it does not block the wick.
[0044] like Figure 7As shown, in this embodiment, U-shaped rods 370 are provided at both ends of the shell 310, and connecting rings 380 are provided in the middle of the opposite sides of the shell 310. Two rollers are provided inside any connecting ring 380, and any roller is rotatably connected between the top surface and the bottom surface of the shell 310. Any connecting ring 380 is rotatably sleeved between the outer walls of two adjacent rollers. One end of the two arms of any U-shaped rod 370 is fixedly connected to the outer walls of the two connecting rings 380 respectively, and the ends of the two U-shaped rods 370 on any connecting ring 380 are diagonally centered with the center of the two adjacent rollers. Arrangement, a plurality of return springs 373 are fixedly connected between the inner wall of any U-shaped rod 370 and the outer wall of the circular hole on the shell 310, and the inner walls of the two connecting rings 380 are each provided with a sleeve hole, and the two sleeve holes are respectively rotatably sleeved with the outer walls of the two supporting rods 360, and the outer wall of the ring body 330 is provided with two card grooves 332, and the outer walls of the two connecting rings 380 are fixedly connected with the insert 381, and the inner wall of the circular hole on the shell 310 is provided with two insert grooves, and the two insert plates 381 respectively pass through the interior of the two insert grooves, and one end of the two insert plates 381 is respectively movably engaged with the interior of the two card grooves 332.
[0045] In the specific implementation, in the initial state, one end of the two panels 381 is respectively stuck in the two slots 332 to fix the position of the ring body 330 to prevent it from turning over. When the wick is replaced, the two U-shaped rods 370 are moved toward each other, so that the two connecting ring belts 380 can rotate synchronously, and the two U-shaped rods 370 drive the two rods 360 to move toward each other through the adjacent sleeve holes, so that the two moving plates 362 contact the adsorption plate 350 to move up, and the adsorption plate 350 moves up and is aligned with the frame 2. 00 After the internal wick is adsorbed, continue to move the two U-shaped rods 370 toward each other so that the two panels 381 are completely separated from the two slots 332, so that the ring body 330 can be flipped. At this time, the wick originally located below the ring body 330 automatically falls off, and the adsorption plate 350 and the wick inside the frame 200 are both located above the ring body 330, so that the weight above the ring body 330 is greater, so that the ring body 330 naturally flips due to its own weight, driving the wick in the frame 200 to rotate to the bottom of the shell 310.
[0046] like Figure 2-Figure 3 and Figure 7-Figure 8As shown, in this embodiment, a fixing plate 390 is fixedly connected to the bottom surface of the shell 310, and two connecting holes are provided on one side of the fixing plate 390. Contact tubes 391 are slidably sleeved inside the two connecting holes, and a connecting plate 392 is fixedly connected between the two contact tubes 391. A plurality of tension springs 393 are fixedly connected between the connecting plate 392 and the fixing plate 390. A positioning rod 394 is fixedly connected to one side of the connecting plate 392, and one end of the positioning rod 394 passes through one side of the fixing plate 390. The replacement mechanism 300 is equipped with a copper tube 301 for fixedly sleeved with the wire. A plastic ring 302 is fixedly sleeved on the outer wall of any copper tube 301. Two U-shaped clamping plates 341 are fixedly connected to one side of any supporting ring 340. And there are slots for the movable snap connection of the plastic ring 302 between the two arms of the two U-shaped clamping plates 341. A magnet is fixedly connected to the outer wall of any plastic ring 302 and the bottom end of the inner slot on the two U-shaped clamping plates 341. A pull strap 371 is fixedly connected to the inner wall of one U-shaped rod 370, and one end of the pull strap 371 passes through the bottom surface of the shell 310 and is fixedly connected to one side of the pull plate 321. A connecting strap 372 is fixedly connected to the inner wall of the other U-shaped rod 370, and one end of the connecting strap 372 passes through the inner wall of the circular hole on the shell 310 and is fixedly connected to the top of the connecting plate 392. The inner wall of the circular hole of the shell 310 is fixedly connected to the limiting plate 395, and the connecting strap 372 bypasses one end of the limiting plate 395.
[0047] In specific implementation, when in use, the positive and negative wires on the LED wick can be covered with the copper tube 301, and the plastic ring 302 on the copper tube 301 can be clamped inside the notch of the U-shaped clamping plate 341 on the adjacent support ring 340, so that the magnet on the plastic ring 302 is adsorbed and fixed with the magnet inside the adjacent notch, and the neutral wire and the live wire in the circuit are fixed to one end of the two contact tubes 391 respectively, so that the neutral wire and the live wire can contact the two copper tubes 301 on the adjacent support ring 340 through the two contact tubes 391, and power the LED wick on the adjacent support ring 340. The bottom surface of the body 310 is close to the circular hole of the shell 310. When replacing the wick, the user can use a rod-like object to push the lampshade 320 to rotate away from the ring body 330, so that the pull plate 321 pulls a U-shaped rod 370 toward the center of the shell 310 through the pull belt 371, and the U-shaped rod 370 drives the two connecting ring belts 380 to rotate synchronously, driving the two U-shaped rods 370 to move toward each other, so that the other U-shaped rod 370 moves to relax the connecting belt 372, and then the multiple tension springs 393 reset to pull the connecting plate 392 and the two contact tubes 391 away from the adjacent support rings. The copper tube 301 on 340 is pulled up by the two U-shaped rods 370, and then the two U-shaped rods 370 continue to move, so that the two resisting rods 360 move up through the moving plate 362 against the adsorption plate 350. At this time, the lamp wick originally located under the shell 310 automatically falls down due to its own weight and pulls the copper tube 301 connected to its own positive and negative lines out of the adjacent U-shaped card plate 341. Then, as the two U-shaped rods 370 continue to move, the two inserts 381 are disengaged from the adjacent card slots 332, so that the ring body 330 naturally flips over due to its own weight, and then the lampshade 320 is released. The two U-shaped rods 370 are pulled up by the adjacent return springs 373. The two insert plates 381 are automatically reset so that they are re-engaged in the position of the fixing ring body 330 in the slot 332, and then the two push rods 360 are reset so that the two movable plates 362 fall back to the bottom of the adjacent cutout 331 due to their own weight. Then, another U-shaped rod 370 is used to pull the connecting plate 392 to move through the connecting belt 372. Since the connecting belt 372 bypasses one end of the limiting plate 395, the connecting belt 372 can pull the connecting plate 392 toward the end of the limiting plate 395, so that the connecting plate 392 drives the two contact tubes 391 to contact the copper tube 301 on the adjacent support ring 340 again for power supply.
[0048] Example 2
[0049] On the basis of the first embodiment, by providing a storage mechanism 400 , a plurality of LED lamp cores can be stored inside the frame 200 , thereby increasing the number of replaceable lamp cores inside the frame 200 .
[0050] like Figures 9-13 As shown, in this embodiment, the storage mechanism 400 includes:
[0051] The cylinder 410, the guide rail 420 and the two slide rails 430, the cylinder 410 is an open structure at the bottom, the outer wall of the cylinder 410 is provided with a cutting groove, and the inner wall of the cylinder 410 is provided with a plurality of slide holes 412, any slide hole 412 is slidably sleeved with a protrusion 413, and a pressure spring 414 is fixedly connected between one end of any protrusion 413 and the inner wall of the adjacent slide hole 412, the top surface of the cylinder 410 is fixedly connected with a slide plate 411, the guide rail 420 is located inside the frame 200, the slide plate 411 is slidably engaged with the inside of the guide rail 420, and the two slide rails 430 are fixedly connected to the bottom surface of the top plate 100 and the Between the top surfaces of the shell 310, the two slide rails 430 are slidably connected with sliders, and the two sliders are fixedly connected to one end of the guide rail 420. The top surface of the cylinder 410 is fixedly connected to two vertical rods 460, and the bottom ends of the two vertical rods 460 are provided with a clamping groove. Any copper tube 301 and the adjacent plastic ring 302 are slidably connected to the adjacent clamping groove. The top surface of the shell 310 is provided with two sliding through holes, and the two sliding through holes are provided with a rotating rod 450. The two rotating rods 450 are rotatably connected to the support plates on the opposite sides. One end of any support plate is fixedly connected to the top surface of the shell 310. The two rotating rods 4 50 are respectively located inside the two connecting rings 380, and two fixed rails 440 are fixedly connected between the opposite sides of the frame 200. The tops of the two rotating rods 450 are provided with sliding grooves, and the insides of the two sliding grooves are slidably connected with moving blocks 451, and the two moving blocks 451 are slidably connected to the inside of the two fixed rails 440, and any moving block 451 is located above the support plate on the adjacent rotating rod 450. A conflicting through hole is provided on one side of the two rotating rods 450, and a shifting block 382 is slidably sleeved inside the two conflicting through holes. One end of any shifting block 382 is fixed to the inner wall of the adjacent connecting ring 380. Fixed connection, any shift block 382 is located below the support plate on the adjacent rotating rod 450, and the outer walls of the two moving blocks 451 are fixedly connected with a pull rope 452, one end of any pull rope 452 passes through the top of the adjacent fixed rail 440, and any pull rope 452 is equipped with a plurality of guide wheels, and one end of any pull rope 452 is fixedly connected to the top surface of the guide rail 420 after passing through the matching multiple guide wheels, and any guide wheel is equipped with a U-shaped seat, and any guide wheel is rotatably connected between the two arms of the adjacent U-shaped seat, and one end of any U-shaped seat is fixedly connected to the adjacent side wall of the frame 200 or the bottom surface of the top plate 100.
[0052] In a specific implementation, a U-shaped seat is connected to the bottom surface of the top plate 100 and the inner wall of the frame 200, and the two pull ropes 452 are passed around the guide wheels on the matching U-shaped seat in sequence, so that the moving paths of the two pull ropes 452 are restricted by the matching guide wheels. When in use, the cylinder 410 can be taken out of the frame 200 through the door panel 210 in advance, and then a plurality of LED wicks are stacked vertically in sequence. Except for the lowest wick in the cylinder 410, the other wicks are supported by a plurality of protrusions 413 arranged in a circle below, and the positive and negative wires on all the wicks in the cylinder 410 are covered with copper tubes 301, and the plastic rings 302 on the copper tubes 301 are sequentially inserted into the clamping grooves on the adjacent vertical poles 460, and then the cylinder 410 is returned to the frame The slide 411 on the cylinder 410 is inserted into the guide rail 420 and slid to a suitable position inside the cylinder 410, so that the wick at the bottom of the cylinder 410 is supported by the supporting ring 340 located above the ring body 330, and the connecting grooves on the two vertical rods 460 are connected to the notches on the two U-shaped clamping plates 341 on the adjacent supporting rings 340, so that the copper tube 301 on the wick at the bottom of the cylinder 410 can be naturally adsorbed inside the two U-shaped clamping plates 341 on the adjacent supporting rings 340. When replacing the wick, the lampshade 320 is pushed to move the two U-shaped rods 370 toward each other, and then the other U-shaped rod 370 pulls the contact tube 391 away from the copper tube 301 on the adjacent supporting ring 340 through the pull belt 371, and then the two push rods 360 drive the two The moving plate 362 moves upward against the adsorption plate 350, causing the wick originally located below the shell 310 to fall naturally. Then, the two U-shaped rods 370 continue to move, driving the two inlay plates 381 to disengage from the adjacent slots 332, allowing the ring body 330 to rotate. However, at this time, the supporting ring 340 above the ring body 330 is pressed by the cylinder 410 and is difficult to rotate. Then, as the two U-shaped rods 370 continue to move, the shifting blocks 382 inside the two connecting ring belts 380 rotate with the adjacent connecting ring belts 380 and resist the adjacent rotating rods 450 to rotate around the adjacent support plates, causing the two rotating rods 450 to drive the adjacent moving blocks 451 to slide inside the adjacent fixed rails 440, so that the two moving blocks 451 drive the guide rails 420 and the cylinder 410 along the two through the pull ropes 452. The slide rail 430 moves upward, so that the cylinder 410 does not block the rotation of the ring body 330, and the other wicks inside the cylinder 410 are supported by the protrusion 413 below itself. Then the ring body 330 rotates due to its own weight, causing the wick originally located at the bottom of the cylinder 410 to rotate to the bottom of the shell 310, and then the lamp cover 320 is loosened so that the two U-shaped rods 370 are driven to reset by the adjacent reset springs 373, so that the cylinder 410 is reset first and presses down against the supporting ring 340 on the flipped ring body 330 to vibrate, so that the multiple wicks in the cylinder 410 press the protrusion 413 below themselves to retract into the adjacent slide hole 412 due to their own weight and vibration, and then the wicks automatically move downward, so that the bottom wick in the cylinder 410 moves to the adjacent supporting ring 340 and is supported by the supporting ring 340.The copper tube 301 on the lowest wick in the cylinder 410, due to vibration and its own weight, enters the notch of the U-shaped retaining plate 341 on the adjacent support ring 340 and is fixed by magnets. The other cylinders 410 in the cylinder 410 move downward and stack in sequence. The cylinder 410 can press the ring body 330 to limit the ring body 330 and prevent it from shaking. Then, the two inserts 381 are reset and re-engaged in the adjacent retaining grooves 332. The two stop rods 360 are subsequently reset, causing the two movable plates 362 to slide back to the bottom of the adjacent cutouts 331 due to their own weight. Finally, the two contact tubes 391 are reset and contact the copper tube 301 on the bottom of the replaced shell 310.
[0053] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.
[0054] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.
Claims
1. An induction self-starting energy-saving lamp, characterized in that: include: The top plate (100) has mounting holes at the four corners of the top surface; A frame (200), the top end of which is fixedly connected to the bottom surface of the top plate (100); the frame (200) is a structure with an opening on one side, and the top end of the opening on one side of the frame (200) is rotatably connected to a door panel (210); A replacement mechanism (300) is located below the frame (200), the replacement mechanism (300) includes a shell (310), and a circular hole is opened in the middle of the shell (310), the top surface of the shell (310) is fixedly connected to the bottom end of the frame (200), and a ring body (330) is provided inside the circular hole of the shell (310), the outer wall of the ring body (330) is rotatably connected to two connecting pipes (333), and one end of the two connecting pipes (333) is rotatably connected to the inner wall of the circular hole on the shell (310), an adsorption plate (350) is slidably sleeved inside the ring body (330), and supporting rings (340) are fixedly connected to opposite sides of the ring body (330); The storage mechanism (400) is located inside the frame (200), and connecting rings (380) are provided in the middle of two opposite sides of the shell (310). The storage mechanism (400) includes: The cylinder (410) is a bottom-open structure, and a slide plate (411) is fixedly connected to the top surface of the cylinder (410); A guide rail (420) is located inside the frame (200), and the slide plate (411) is slidably engaged with the inside of the guide rail (420); Two slide rails (430) are fixedly connected between the bottom surface of the top plate (100) and the top surface of the shell (310), and a slider is slidably engaged inside the two slide rails (430), and the two sliders are fixedly connected to one end of the guide rail (420); The shell (310) has two sliding through holes on its top surface, and a rotating rod (450) is provided inside the two sliding through holes. The two rotating rods (450) are rotatably connected to support plates on opposite sides, and one end of each support plate is fixedly connected to the top surface of the shell (310). The two rotating rods (450) are respectively located inside the two connecting ring belts (380). Two fixed rails (440) are fixedly connected between the opposite sides of the frame (200). The tops of the two rotating rods (450) are provided with sliding grooves, and the insides of the two sliding grooves are slidably connected to moving blocks (451), and the two moving blocks (451) are slidably connected to the insides of the two fixed rails (440). The outer walls of the two moving blocks (451) are fixedly connected to pull ropes (452), and one end of each pull rope (452) is fixedly connected to the top surface of the guide rail (420) after passing through a plurality of matching guide wheels.
2. The induction self-starting energy-saving lamp according to claim 1, characterized in that: The inner diameter of the support ring (340) is smaller than the diameter of the adsorption plate (350), the outer wall of the adsorption plate (350) is fixedly connected with a plurality of ridges, and the inner wall of the ring body (330) is provided with a plurality of grooves, and the plurality of ridges are slidably engaged in the interior of adjacent grooves, the inner wall of the ring body (330) is provided with two cutouts (331), and the inside of the two cutouts (331) is provided with a push rod (360), the two push rods (360) respectively penetrate the inside of the two connecting pipes (333), and the two ends of the two push rods (360) respectively penetrate the shell (31 0) at both ends, the thickness of the adsorption plate (350) is less than the thickness of the ring body (330), and the outer wall of the adsorption plate (350) is provided with two abutting openings (351), the other ends of the two abutting rods (360) are fixedly connected with a rail (361), any rail (361) is slidably engaged with the inside of the adjacent incision (331), and any rail (361) is slidably engaged with a movable plate (362) inside, one end of the two movable plates (362) is rotatably connected with a roller, and the two movable plates (362) correspond one to one with the two abutting openings (351).
3. The induction self-starting energy-saving lamp according to claim 2, characterized in that: A lampshade (320) is provided below the housing (310), and a pull plate (321) and a snap-in plate (322) are fixedly connected to the outer wall of the lampshade (320), the pull plate (321) and the snap-in plate (322) are arranged diagonally with the center of the lampshade (320), and one end of the pull plate (321) is rotatably connected to the bottom surface of the housing (310), the bottom surface of the housing (310) is fixedly connected to a U-shaped frame (311), and a support plate (312) is slidably snap-in between two arms of the U-shaped frame (311), a plurality of rebound springs (313) are fixedly connected between one side of the support plate (312) and an inner wall of the U-shaped frame (311), and the snap-in plate (322) is movably snap-in connected to the top of the support plate (312).
4. The induction self-starting energy-saving lamp according to claim 3, characterized in that: U-shaped rods (370) are provided at both ends of the shell (310), and two rollers are provided inside any connecting ring belt (380). Any roller is rotatably connected between the top surface and the bottom surface of the shell (310), and any connecting ring belt (380) is rotatably sleeved between the outer side walls of two adjacent rollers. One end of each arm of any U-shaped rod (370) is fixedly connected to the outer side walls of the two connecting ring belts (380), and the ends of the two U-shaped rods (370) on any connecting ring belt (380) are arranged diagonally with the center of the two adjacent rollers as the center. A plurality of return springs (373) are fixedly connected between an inner wall of any U-shaped rod (370) and the outer side wall of the circular hole on the shell (310).
5. The induction self-starting energy-saving lamp according to claim 4, characterized in that: The outer wall of the ring body (330) is provided with two clamping grooves (332), the outer walls of the two connecting ring belts (380) are fixedly connected with a panel (381), the inner wall of the circular hole on the shell (310) is provided with two clamping grooves, and the two panel (381) respectively penetrate the inside of the two clamping grooves, and one end of the two panel (381) is movably clamped in the inside of the two clamping grooves (332).
6. The induction self-starting energy-saving lamp according to claim 5, characterized in that: The bottom surface of the housing (310) is fixedly connected to a fixing plate (390), and one side of the fixing plate (390) is provided with two connecting holes, and the insides of the two connecting holes are slidably sleeved with contact tubes (391), and a connecting plate (392) is fixedly connected between the two contact tubes (391), and a plurality of tension springs (393) are fixedly connected between the connecting plate (392) and the fixing plate (390), and one side of the connecting plate (392) is fixedly connected to a positioning rod (394), and one end of the positioning rod (394) passes through the fixing plate (39 0) side, the replacement mechanism (300) is equipped with a copper tube (301) for fixedly sleeved with the electric wire, the outer wall of any copper tube (301) is fixedly sleeved with a plastic ring (302), one side of any supporting ring (340) is fixedly connected with two U-shaped clamping plates (341), and a notch for movable clamping of the plastic ring (302) is opened between the two arms of the two U-shaped clamping plates (341), and a magnet is fixedly connected to the outer wall of any plastic ring (302) and the bottom end of the inner groove of the two U-shaped clamping plates (341).
7. The induction self-starting energy-saving lamp according to claim 6, characterized in that: A drawstring (371) is fixedly connected to an inner wall of a U-shaped rod (370), and one end of the drawstring (371) passes through the bottom surface of the shell (310) and is fixedly connected to one side of the pull plate (321). Another U-shaped rod (370) is fixedly connected to an inner wall of a connecting belt (372), and one end of the connecting belt (372) passes through the inner wall of the circular hole on the shell (310) and is fixedly connected to the top of the connecting plate (392). The inner wall of the circular hole of the shell (310) is fixedly connected to a limiting plate (395), and the connecting belt (372) passes around one end of the limiting plate (395).
8. The induction self-starting energy-saving lamp according to claim 7, characterized in that: The outer wall of the cylinder (410) is provided with a cutting groove, and the inner wall of the cylinder (410) is provided with a plurality of sliding holes (412), and a protrusion (413) is slidably sleeved inside any sliding hole (412), and a pressure spring (414) is fixedly connected between one end of any protrusion (413) and the inner wall of the adjacent sliding hole (412), and any moving block (451) is located above the support plate on the adjacent rotating rod (450), and a contact through hole is provided on one side of the two rotating rods (450), and the inside of the two contact through holes is sliding. The movable sleeve is connected with a shift block (382), one end of each shift block (382) is fixedly connected to the inner wall of the adjacent connecting ring belt (380), and each shift block (382) is located below the support plate on the adjacent rotating rod (450). One end of each pull rope (452) passes through the top of the adjacent fixed track (440). Each guide wheel is equipped with a U-shaped seat, and each guide wheel is rotatably connected between the two arms of the adjacent U-shaped seat. One end of each U-shaped seat is fixedly connected to the side wall of the adjacent frame (200) or the bottom surface of the top plate (100).
9. The induction self-starting energy-saving lamp according to claim 8, characterized in that: Two vertical rods (460) are fixedly connected to the top surface of the cylinder (410), and the bottom ends of the two vertical rods (460) are provided with a clamping groove, and any copper tube (301) and the adjacent plastic ring (302) are slidably clamped inside the adjacent clamping groove.
Citation Information
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