Energy-saving illuminating lamp adopting instantaneous splicing lampshade structure
Through the instantaneous splicing lampshade structure and magnetic suction connection design, the difficulty of disassembly and assembly and cleaning of LED industrial and mining lamps in high dust and high vibration environments is solved, and rapid deployment, low-cost maintenance and efficient cleaning are achieved, meeting emergency maintenance needs.
Patent Information
- Application Number
- CN202510849711.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2045-06-24
AI Technical Summary
When existing LED industrial and mining lamps are used in high dust or high vibration environments, the lampshade is easily covered with dust, resulting in a decrease in light transmittance, and disassembly and assembly are time-consuming and labor-intensive, unable to meet the needs of emergency repair or rapid deployment, and the installation and maintenance cost is high.
The instantaneous splicing lampshade structure is adopted, and the instantaneous connection and disassembly of the lampshade and the power box is realized through magnetic suction connection and elastic support frame design. Combined with the automatic cleaning function of the gray scraper plate, it reduces tool dependence and manual cleaning steps.
It realizes rapid connection and disassembly between the lampshade and the power box, reduces installation and maintenance costs, improves cleaning efficiency in high dust environments, avoids decreased light transmittance and waste of power resources, and adapts to the stable use of high vibration environments.
Smart Images

Figure CN120402852A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of lighting lamps, and particularly relates to an energy-saving lighting lamp adopting an instantaneously spliced lamp cover structure. Background Art
[0002] Industrial and mining lamps are a type of lighting equipment specifically designed for high-intensity working environments such as industry and mining, and need to meet special requirements such as large area, high brightness, stability, and anti-interference. LED industrial and mining lamps are the current mainstream type, and most of them are composed of a lamp body, a lamp cover, and a power supply box, with advantages such as energy saving, long service life, and high luminous efficiency, gradually replacing traditional lamps.
[0003] In response to this, the present application designs an energy-saving lighting lamp adopting an instantaneously spliced lamp cover structure. Most of the existing LED industrial and mining lamps adopt a detachable splicing structure, and the disassembly and assembly time-consuming rely on tools, which does not solve the need for instant disassembly and assembly, cannot meet the requirements of emergency repair or rapid deployment, and has a high installation and maintenance cost; they often need to be used in high-dust or high-vibration environments for a long time, which will cause mechanical damage to the LED industrial and mining lamps, and the irradiation end face of the lamp cover is covered with dust, which will lead to a decrease in light transmittance, and it is necessary to increase the brightness of the LED industrial and mining lamps to maintain an effective lighting effect, thereby causing waste of electric power resources. In addition, most of them are manually disassembled and cleaned regularly to remove dust on the surface, which is time-consuming and laborious. Summary of the Invention
[0004] Aiming at the above-mentioned shortcomings of the prior art, the present invention provides an energy-saving lighting lamp adopting an instantaneously spliced lamp cover structure, which can effectively solve the problems in the prior art that most LED industrial and mining lamps adopt a detachable splicing structure, cannot meet the requirements of emergency repair or rapid deployment, and have a high installation and maintenance cost; they often need to be used in high-dust or high-vibration environments for a long time, which will cause mechanical damage to the LED industrial and mining lamps, and the irradiation end face of the lamp cover is covered with dust, which will lead to a decrease in light transmittance, thereby causing waste of electric power resources. In addition, most of them are manually disassembled and cleaned regularly to remove dust on the surface, which is time-consuming and laborious.
[0005] To achieve the above object, the present invention is realized through the following technical solutions:
[0006] The present invention provides an energy-saving lighting lamp adopting an instantaneously spliced lamp cover structure, including:
[0007] A lamp cover body with a lamp body installed inside, a power supply box is arranged above the lamp cover body, a plurality of accommodation grooves evenly distributed in a circle are opened at the upper end of the power supply box, a sleeve plate is rotatably sleeved on the outer wall of the lamp cover body, the sleeve plate is of an annular structure, a dust cleaning part is jointly arranged on the power supply box and the sleeve plate, and a plug-in part is jointly arranged on the lamp cover body and the power supply box;
[0008] Among them, the dust cleaning part includes rotating shafts symmetrically installed on the outer wall of the sleeve plate on the left and right. Symmetrically sliding sleeves are sleeved on the outer walls of the rotating shafts on the left and right. The connecting seats are L-shaped structures. Tensile springs are sleeved on the parts of the outer walls of the rotating shafts between the sleeve plate and the connecting seats. Dust cleaning groups are respectively and jointly arranged on the connecting seats on the left and right and the power supply box;
[0009] Among them, the plug-in part includes a positioning groove opened at the bottom end of the power supply box. The positioning groove is composed of an annular groove and a plurality of rectangular grooves evenly distributed in a rectangle. Columns are symmetrically arranged on the upper left and right of the upper end of the lamp shade body. A sliding sleeve is slidably sleeved on the upper end of the outer wall of the column through a buffer spring. A plug-in group is jointly arranged on the sliding sleeve and the power supply box.
[0010] Further, the dust cleaning group includes an installation sliding groove opened at the upper end of the vertical section of the connecting seat. A support frame is slidably installed in the installation sliding groove through a tensile spring. The support frame is in a boomerang structure, and the outer wall of the support frame is movably attached to the inner wall of the corresponding accommodation groove.
[0011] Further, the dust cleaning group further includes two front and rear arc-shaped grooves opened at one end of the support frame facing the inner wall of the bottom end of the accommodation groove. A scraping plate is slidably installed in the arc-shaped grooves through a compression spring.
[0012] Further, the plug-in group includes a plurality of card slots evenly opened on the inner wall of the positioning groove. The plurality of card slots are respectively located on the inner walls of the longer sections of the plurality of rectangular grooves of the positioning groove. The card slot is composed of an arc-shaped sliding groove and a plurality of semi-waist-shaped sliding grooves evenly distributed in an arc shape, and the inner wall of the middle part of the bottom end of the arc-shaped sliding groove on the card slot is chamfered.
[0013] Further, the plug-in group further includes a circular sliding groove opened on the outer wall of the sliding sleeve. A plug rod is slidably installed in the circular sliding groove through a compression spring. The insertion end of the plug rod is slidably attached to the inner wall of the card slot.
[0014] Further, a strong magnet is embedded in the upper end of the sliding sleeve, and a plurality of strong magnets evenly distributed in a circle are also embedded in the inner wall of the upper end of the positioning groove corresponding to the strong magnet.
[0015] Further, a circular magnet is embedded at one end of the support frame away from the connecting seat, and circular magnets are also embedded on the inner walls of the plurality of accommodation grooves corresponding to the circular magnet. The circular magnet on the support frame is magnetically connected to the circular magnet on the corresponding accommodation groove.
[0016] Further, a plurality of arc-shaped magnets evenly distributed in a circle are embedded on the outer wall of the lamp shade body and the inner wall of the sleeve plate. The arc-shaped magnet on the sleeve plate is magnetically connected to the corresponding arc-shaped magnet on the lamp shade body.
[0017] The technical solution provided by the present invention has the following beneficial effects compared with the prior art:
[0018] An energy-saving lighting lamp with an instantaneous splicing lampshade structure provided by the present invention. Installers drive the corresponding sliding sleeves to insert into the alignment grooves respectively through the left and right columns on the lampshade body, and rotate the lampshade body so that it drives the corresponding sliding sleeves to slide along the alignment grooves through the left and right columns respectively until the left and right sliding sleeves drive the corresponding insertion rods to move to the positions of the left and right card slots respectively. Two of the strong magnets on the inner wall of the upper end of the alignment groove will correspond to the strong magnets on the left and right sliding sleeves, and will drive the upper ends of the left and right sliding sleeves to closely adhere to the inner wall of the upper end of the alignment groove. Moreover, the left and right sliding sleeves will drive the corresponding insertion rods to move towards the inner wall of the upper end of the alignment groove respectively. The left and right insertion rods will slide from the arc-shaped sliding grooves of the card slots to the semi-waist-shaped sliding grooves in the middle, thereby achieving the effect of instantaneous connection between the lampshade body and the power supply box. Disassembly and assembly do not require tools, meeting the requirements of emergency repair or rapid deployment, and effectively reducing the installation and maintenance costs.
[0019] When used for a long time in a high-dust environment, after the irradiation end face of the lampshade is covered with dust, installers manually control the left and right support frames to rotate 180 degrees in the opposite direction around the corresponding rotation axes to return to the original position until the circular magnets on the left and right support frames are magnetically attracted to each other, and the scraping ends of the multiple scraping plates closely adhere to the irradiation end face of the lampshade body. Finally, installers rotate the sleeve plate, and it drives the corresponding connecting seats to rotate synchronously through the left and right rotation axes respectively. The left and right connecting seats will drive the corresponding two scraping plates to rotate synchronously through the corresponding support frames respectively, thereby achieving the rapid cleaning of the irradiation end face of the LED industrial and mining lamp lampshade, saving time and effort, avoiding the problem that the light transmittance decreases due to the dust covering the irradiation end face of the lampshade, and the need to increase the brightness of the LED industrial and mining lamp to maintain an effective lighting effect, thus causing a waste of electric power resources, which is contrary to the required energy-saving performance requirements.
[0020] The LED industrial and mining lamp can also be used for a long time in a high-vibration environment. The tension springs connected to the left and right support frames and the buffer springs connected to the left and right columns can effectively avoid the problem that the lampshade body and the lamp body become loose and fall off due to vibration. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0022] Figure 1 It is a three-dimensional structure schematic diagram in the embodiment of the present invention;
[0023] Figure 2 It is a structure schematic diagram of a three-dimensional partial section in the embodiment of the present invention;
[0024] Figure 3 It is a schematic structural diagram of the power supply box in a three-dimensional top-down sectional view in the embodiment of the present invention;
[0025] Figure 4 It is a schematic structural diagram of the power supply box in a three-dimensional partial sectional view in the embodiment of the present invention;
[0026] Figure 5 It is a schematic structural diagram of the sleeve plate and the dust cleaning part in a three-dimensional separated state in the embodiment of the present invention;
[0027] Figure 6 It is a schematic structural diagram of the power supply box and the dust cleaning part in a three-dimensional separated state in the embodiment of the present invention;
[0028] Figure 7 It is a schematic structural diagram of the plug-in group in a three-dimensional separated state in the embodiment of the present invention;
[0029] Figure 8 It is a schematic structural diagram of the working state transformation of the lamp shade body and the sleeve plate in three dimensions when adjusting the irradiation direction in the embodiment of the present invention;
[0030] Figure 9 It is a schematic structural diagram of the working state transformation of the lamp shade body and the dust cleaning part in three dimensions when cleaning the dust in the embodiment of the present invention.
[0031] The reference numerals in the figure respectively represent: 1. lamp shade body; 2. lamp body; 3. power supply box; 4. sleeve plate; 5. dust cleaning part; 51. rotating shaft; 52. connecting seat; 53. dust cleaning group; 531. support frame; 532. scraping plate; 533. circular magnet; 6. plug-in part; 61. alignment groove; 62. column; 63. sliding sleeve; 64. plug-in group; 641. card slot; 642. plug rod; 643. strong magnet. Detailed implementation manners
[0032] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without making creative efforts shall fall within the protection scope of the present invention.
[0033] The present invention will be further described below with reference to the embodiments.
[0034] Embodiment:
[0035] Please refer to Figures 1-9 , the present invention provides a technical solution: an energy-saving lighting lamp adopting an instant splicing lamp shade structure, including:
[0036] The lamp housing body 1 with a lamp body 2 installed inside, a power supply box 3 is arranged above the lamp housing body 1, a plurality of receiving grooves evenly distributed in a circle are opened at the upper end of the power supply box 3, a sleeve plate 4 is rotatably sleeved on the outer wall of the lamp housing body 1, the sleeve plate 4 is of an annular structure, a dust cleaning part 5 is jointly arranged on the power supply box 3 and the sleeve plate 4, and a plug-in part 6 is jointly arranged on the lamp housing body 1 and the power supply box 3;
[0037] Among them, the dust cleaning part 5 includes rotating shafts 51 symmetrically and rotatably installed on the left and right sides of the outer wall of the sleeve plate 4, connecting seats 52 are symmetrically and slidably sleeved on the outer walls of the rotating shafts 51 on the left and right sides, the connecting seats 52 are of an L-shaped structure, a tension spring is sleeved on the part of the outer wall of the rotating shaft 51 between the sleeve plate 4 and the connecting seat 52, and dust cleaning groups 53 are jointly arranged on the connecting seats 52 on the left and right sides and the power supply box 3 respectively;
[0038] Among them, the plug-in part 6 includes a positioning groove 61 opened at the bottom end of the power supply box 3, the positioning groove 61 is composed of an annular groove and a plurality of rectangular grooves evenly distributed in a rectangle, columns 62 are symmetrically arranged on the left and right sides of the upper end of the lamp housing body 1, a sliding sleeve 63 is slidably sleeved on the upper end of the outer wall of the column 62 through a buffer spring, and a plug-in group 64 is jointly arranged on the sliding sleeve 63 and the power supply box 3.
[0039] The dust cleaning group 53 includes an installation sliding groove opened at the upper end of the vertical section of the connecting seat 52, a support frame 531 is slidably installed in the installation sliding groove through a tension spring, the support frame 531 is of a boomerang structure, and the outer wall of the support frame 531 is movably attached to the inner wall of the corresponding receiving groove.
[0040] The dust cleaning group 53 further includes two front and rear arc-shaped grooves opened at one end of the support frame 531 facing the inner wall of the bottom end of the receiving groove, and a scraping plate 532 is slidably installed in the arc-shaped grooves through a compression spring.
[0041] The plug-in group 64 includes a plurality of card slots 641 evenly opened on the inner wall of the positioning groove 61, the plurality of card slots 641 are respectively located on the inner walls of the longer sections of the plurality of rectangular grooves of the positioning groove 61, the card slots 641 are composed of an arc-shaped sliding groove and a plurality of semi-waist-shaped sliding grooves evenly distributed in an arc, and the inner wall of the bottom end of the arc-shaped sliding groove on the card slot 641 is chamfered.
[0042] The plug-in group 64 further includes a circular sliding groove opened on the outer wall of the sliding sleeve 63, a plug rod 642 is slidably installed in the circular sliding groove through a compression spring, and the insertion end of the plug rod 642 is slidably attached to the inner wall of the card slot 641.
[0043] A strong magnet 643 is embedded at the upper end of the sliding sleeve 63, and a plurality of strong magnets 643 (not shown) are also embedded in the upper end inner wall of the positioning groove 61 corresponding to the strong magnet 643 and are evenly distributed in a circle.
[0044] One end of the support frame 531 away from the connecting seat 52 is embedded with a circular magnet 533, and circular magnets 533 are also embedded on the inner walls of multiple accommodating grooves corresponding to the circular magnet 533. The circular magnet 533 on the support frame 531 is magnetically connected to the circular magnet 533 on the corresponding accommodating groove.
[0045] A plurality of arc magnets evenly distributed in a circle are embedded on the outer wall of the lamp cover body 1 and the inner wall of the sleeve plate 4. The arc magnets on the sleeve plate 4 are magnetically connected to the corresponding arc magnets on the lamp cover body 1.
[0046] During specific implementation:
[0047] First, the lamp cover body 1 and the power supply box 3 in this application adopt a momentary connection method. When installing the LED industrial and mining lamp, the power supply box 3 is fixedly installed at a suitable lighting position in advance through the installation components. It should be noted that the installation methods are mostly wall-mounted installation, hanging installation, fixed installation, and mobile installation. As long as the multiple accommodating grooves at the upper end of the power supply box 3 are not blocked, it should also be noted that the left and right connecting seats 52 on the sleeve plate 4 initially face the irradiation end. At this time, the circular magnets 533 on the left and right support frames 531 are in a magnetically connected state with each other, and the scraping ends of the multiple scraping plates 532 are closely attached to the irradiation end surface of the lamp cover body 1.
[0048] Then, from the direction facing the bottom end of the power supply box 3, the installer drives the corresponding sliding sleeves 63 to insert into the alignment grooves 61 respectively through the left and right columns 62 on the lamp cover body 1. During this period, the sliding sleeves 63 will make adaptive sliding compensation along the outer walls of the columns 62. The left and right insertion rods 642 will be squeezed and retracted into the corresponding circular chutes respectively. Then, the installer rotates the lamp cover body 1 so that it drives the corresponding sliding sleeves 63 to slide along the alignment grooves 61 through the left and right columns 62 until the left and right sliding sleeves 63 drive the corresponding insertion rods 642 to move to the positions of the left and right card slots 641 respectively. At this time, under the action of the compression spring, the left and right insertion rods 642 will respectively extend out of the corresponding circular chutes and insert into the corresponding card slots 641. Since the left and right insertion rods 642 are located at the middle positions of the card slots 641 at this time, two of the strong magnets 643 on the upper inner wall of the alignment groove 61 will correspond to the strong magnets 643 on the left and right sliding sleeves 63, and under the action of the magnetic attraction force, drive the upper ends of the left and right sliding sleeves 63 to be closely attached to the upper inner wall of the alignment groove 61, and the left and right sliding sleeves 63 will drive the corresponding insertion rods 642 to move towards the upper inner wall of the alignment groove 61 respectively. The left and right insertion rods 642 will slide from the arc-shaped chutes of the card slots 641 to the semi-waist-shaped chutes in the middle, thereby realizing the effect of momentary connection between the lamp cover body 1 and the power supply box 3. Disassembly and assembly do not require tools, meeting the needs of emergency maintenance or rapid deployment, and effectively reducing the installation and maintenance costs.
[0049] After the lamp shade body 1 and the power supply box 3 are connected, the installer also needs to manually control the left and right support frames 531 to rotate 180 degrees around the corresponding rotating shafts 51. The left and right support frames 531 will respectively drive the corresponding connecting seats 52 to rotate 180 degrees around the rotating shafts 51 until the left and right support frames 531 respectively correspond to the corresponding receiving grooves on the power supply box 3. Under the action of the tension springs, the left and right support frames 531 will respectively be inserted into the corresponding receiving grooves, and the round magnets 533 on the left and right support frames 531 will respectively be magnetically connected to the round magnets 533 on the corresponding receiving grooves. During this period, since the support frame 531 is slidably installed in the connecting seat 52 through the tension spring, and a tension spring is sleeved on the part of the outer wall of the rotating shaft 51 between the sleeve plate 4 and the connecting seat 52, the left and right support frames 531 can be freely pulled outward, so as to prevent the left and right support frames 531 from being blocked by the power supply box 3. Under the action of the tension spring, the left and right support frames 531 will closely adhere to the inner walls of the corresponding receiving grooves.
[0050] When it is necessary to adjust the forward or backward irradiation angle of the LED industrial and mining lamp, first, the installer slightly pulls out the lamp shade body 1 away from the power supply box 3, so that two of the strong magnets 643 on the upper inner wall of the alignment groove 61 are disconnected from the strong magnets 643 on the left and right sliding sleeves 63. At this time, the lamp shade body 1 will drive the left and right connecting seats 52 to move away from the power supply box 3 through the sleeve plate 4. Since the round magnets 533 on the left and right support frames 531 are respectively magnetically connected to the round magnets 533 on the corresponding receiving grooves at this time, the positions of the left and right support frames 531 will not change, only the tension spring deforms. And the lamp shade body 1 will also drive the corresponding sliding sleeves 63 to move away from the power supply box 3 through the left and right columns 62 respectively. The left and right sliding sleeves 63 will respectively drive the corresponding insertion rods 642 to move away from the power supply box 3, so that the left and right insertion rods 642 will slide from the middle semi-circular chute of the card slot 641 into the arc chute, and then the installer can freely swing the lamp shade body 1 and the sleeve plate 4 around the left and right rotating shafts 51 until, under the action of the tension springs connected to the left and right support frames 531, the left and right insertion rods 642 slide from the arc chute of the card slot 641 into any adjacent middle semi-circular chute, and the effect of adjusting the irradiation angle of the LED industrial and mining lamp to be forward or backward can be achieved.
[0051] When it is necessary to adjust the left or right irradiation angle of the LED industrial and mining lamp, first, the installer pulls out the lamp shade body 1 away from the power supply box 3, so that the left and right insertion rods 642 respectively slide from the middle semi-circular chute of the card slot 641 into the arc chute and exit from the chamfered area in the middle of the bottom of the arc chute, and the rapid disassembly of the LED industrial and mining lamp can be completed.
[0052] Repeat the above steps of the instantaneous connection between the lamp shade body 1 and the power supply box 3. The difference is that, again, the front and rear columns 62 on the lamp shade body 1 drive the corresponding sliding sleeves 63 to insert into the alignment slots 61 respectively. Then, the installer rotates the lamp shade body 1, so that the front and rear columns 62 drive the corresponding sliding sleeves 63 to slide along the alignment slots 61 respectively until the front and rear sliding sleeves 63 drive the corresponding insertion rods 642 to move to the positions of the front and rear card slots 641. The front and rear insertion rods 642 will respectively extend out of the corresponding circular sliding grooves and insert into the corresponding card slots 641. Two of the strong magnets 643 on the upper inner wall of the alignment slot 61 will correspond to the strong magnets 643 on the front and rear sliding sleeves 63, and under the action of the magnetic attraction force, drive the upper ends of the front and rear sliding sleeves 63 to closely fit on the upper inner wall of the alignment slot 61, and the front and rear sliding sleeves 63 will respectively drive the corresponding insertion rods 642 to move towards the upper inner wall of the alignment slot 61. The front and rear insertion rods 642 will slide from the arc-shaped sliding grooves of the card slots 641 to the middle semi-waist-shaped sliding grooves, and the instantaneous connection work between the lamp shade body 1 and the power supply box 3 is completed again.
[0053] Repeat the above steps of adjusting the irradiation angle of the LED industrial and mining lamp forward or backward. First, the installer slightly pulls out the lamp shade body 1 to the side away from the power supply box 3, so that two of the strong magnets 643 on the upper inner wall of the alignment slot 61 are disconnected from the magnetic attraction connection with the strong magnets 643 on the front and rear sliding sleeves 63. At this time, the lamp shade body 1 will drive the front and rear connecting seats 52 to move to the side away from the power supply box 3 through the sleeve plate 4. The lamp shade body 1 will also drive the corresponding sliding sleeves 63 to move to the side away from the power supply box 3 through the front and rear columns 62 respectively. The front and rear sliding sleeves 63 will respectively drive the corresponding insertion rods 642 to move to the side away from the power supply box 3, so that the front and rear insertion rods 642 will slide from the middle semi-waist-shaped sliding grooves of the card slots 641 to the arc-shaped sliding grooves. Then, the installer can freely swing the lamp shade body 1 and the sleeve plate 4 around the front and rear rotating shafts 51 until, under the action of the tension springs connected to the front and rear support frames 531, the front and rear insertion rods 642 slide from the arc-shaped sliding grooves of the card slots 641 to any adjacent semi-waist-shaped sliding groove, and the effect of adjusting the irradiation angle of the LED industrial and mining lamp to the left or right can be achieved.
[0054] When used in a high-dust environment for a long time, after the irradiation end face of the lamp cover is covered with dust, first, the installer controls the lamp cover body 1 to return to the initial installation state, that is, the left and right two insertion rods 642 are exactly located at the middle positions of the card slots 641, and two of the strong magnets 643 on the inner wall of the upper end of the alignment slot 61 and the strong magnets 643 on the left and right two sliding sleeves 63 are in a magnetically attracted connection state with each other. Then, the installer manually controls the left and right two support frames 531 to rotate 180 degrees in the reverse direction around the corresponding rotating shafts 51 to return to their original positions. The left and right two support frames 531 will respectively drive the corresponding connecting seats 52 to rotate 180 degrees in the reverse direction around the rotating shafts 51 until the circular magnets 533 on the left and right two support frames 531 are in a magnetically attracted connection state, and the scraping ends of the multiple scraping plates 532 are closely attached to the irradiation end face of the lamp cover body 1. During this period, the left and right two support frames 531 will respectively withdraw from the corresponding receiving grooves.
[0055] Finally, the installer rotates the sleeve plate 4, so that it drives the corresponding connecting seats 52 to rotate synchronously through the left and right two rotating shafts 51 respectively. The left and right two connecting seats 52 will respectively drive the corresponding two scraping plates 532 to rotate synchronously through the corresponding support frames 531, so as to realize the rapid cleaning of the irradiation end face of the LED industrial and mining lamp lamp cover, which is time-saving and labor-saving, and avoids the problem that the light transmittance decreases due to the dust covering the irradiation end face of the lamp cover, and it is necessary to increase the brightness of the LED industrial and mining lamp to maintain an effective lighting effect, thus causing a waste of electric power resources, which is contrary to the required energy-saving performance requirements.
[0056] It should also be noted that the LED industrial and mining lamp can also be used in a high-vibration environment for a long time. When illuminating forward, the strong magnetic force between the multiple strong magnets 643 and the tensile force possessed by the left and right two support frames 531 jointly connect the lamp cover body 1 and the lamp body 2. When illuminating obliquely, the lamp cover body 1 and the power supply box 3 are connected through the tensile force possessed by the left and right two support frames 531. When cleaning the ash, the lamp cover body 1 and the power supply box 3 are connected through the strong magnetic force between the multiple strong magnets 643, and the tensile springs connected to the left and right two support frames 531 and the buffer springs connected to the left and right two columns 62 can effectively avoid the problem that the lamp cover body 1 and the lamp body 2 are loosened and fallen off due to vibration.
[0057] In summary, the present application has the following advantages:
[0058] Advantage 1: The installer drives the corresponding sliding sleeves 63 to insert into the alignment slots 61 respectively through the left and right columns 62 on the lamp shade body 1, and rotates the lamp shade body 1 to drive the corresponding sliding sleeves 63 to slide along the alignment slots 61 through the left and right columns 62 respectively. Until the left and right sliding sleeves 63 drive the corresponding insertion rods 642 to move to the positions of the left and right card slots 641 respectively, two of the strong magnets 643 on the upper inner wall of the alignment slot 61 will correspond to the strong magnets 643 on the left and right sliding sleeves 63, and will drive the upper ends of the left and right sliding sleeves 63 to closely fit on the upper inner wall of the alignment slot 61. And the left and right sliding sleeves 63 will drive the corresponding insertion rods 642 to move towards the upper inner wall of the alignment slot 61 respectively. The left and right insertion rods 642 will slide from the arc-shaped chutes of the card slots 641 to the semi-waist-shaped chutes in the middle, thus realizing the instantaneous connection effect of the lamp shade body 1 and the power supply box 3. Disassembly and assembly do not require tools, meeting the requirements of emergency repair or rapid deployment, and effectively reducing the installation and maintenance costs.
[0059] Advantage 2: When it is necessary to adjust the forward or backward irradiation angle of the LED industrial and mining lamp, first the installer slightly pulls out the lamp shade body 1 to the side away from the power supply box 3, so that two of the strong magnets 643 on the upper inner wall of the alignment slot 61 are disconnected from the strong magnets 643 on the left and right sliding sleeves 63. At this time, the lamp shade body 1 will drive the left and right connecting seats 52 to move to the side away from the power supply box 3 through the sleeve plate 4, and will drive the corresponding sliding sleeves 63 to move to the side away from the power supply box 3 through the left and right columns 62 respectively. The left and right sliding sleeves 63 will drive the corresponding insertion rods 642 to move to the side away from the power supply box 3 respectively, so that the left and right insertion rods 642 will slide from the semi-waist-shaped chutes in the middle of the card slots 641 to the arc-shaped chutes. Then the installer can freely swing the lamp shade body 1 and the sleeve plate 4 around the left and right rotating shafts 51 until the left and right insertion rods 642 slide from the arc-shaped chutes of the card slots 641 to any adjacent semi-waist-shaped chute, and the effect of adjusting the irradiation angle of the LED industrial and mining lamp to be forward or backward can be achieved.
[0060] Advantage 3: The installer pulls out the lamp shade body 1 to the side away from the power supply box 3, so that the left and right insertion rods 642 slide from the semi-waist-shaped chutes in the middle of the card slots 641 to the arc-shaped chutes respectively, and exit from the chamfered area in the middle of the bottom of the arc-shaped chute, then the rapid disassembly work of the LED industrial and mining lamp can be completed.
[0061] Advantage 4: When it is necessary to adjust the irradiation angle of the LED industrial and mining lamp to the left or right, the instantaneous connection between the lamp cover body 1 and the power supply box 3 is completed again. Repeat the above steps of adjusting the irradiation angle of the LED industrial and mining lamp forward or backward. Control the lamp cover body 1 to drive the front and rear connecting seats 52 away from the power supply box 3 through the sleeve plate 4. The lamp cover body 1 will also drive the corresponding sliding sleeves 63 away from the power supply box 3 through the front and rear columns 62 respectively. The front and rear sliding sleeves 63 will drive the corresponding insertion rods 642 away from the power supply box 3 respectively, so that the front and rear insertion rods 642 will slide from the semi-waist-shaped sliding groove in the middle of the card slot 641 to the arc-shaped sliding groove. Then, the installer can freely swing the lamp cover body 1 and the sleeve plate 4 around the front and rear rotating shafts 51 until, under the action of the tension springs connected to the front and rear support frames 531, the front and rear insertion rods 642 slide from the arc-shaped sliding groove of the card slot 641 to any adjacent semi-waist-shaped sliding groove, thus achieving the effect of adjusting the irradiation angle of the LED industrial and mining lamp to the left or right.
[0062] Advantage 5: When used in a high-dust environment for a long time, after the irradiation end face of the lamp cover is covered with dust, the installer manually controls the left and right support frames 531 to rotate 180 degrees in the reverse direction around the corresponding rotating shafts 5l to return to the original position until the circular magnets 533 on the left and right support frames 531 are magnetically attracted to each other, and the scraping ends of the multiple scraping plates 532 are closely attached to the irradiation end face of the lamp cover body 1. Finally, the installer rotates the sleeve plate 4, which drives the corresponding connecting seats 52 to rotate synchronously through the left and right rotating shafts 51 respectively. The left and right connecting seats 52 will drive the corresponding two scraping plates 532 to rotate synchronously through the corresponding support frames 531 respectively, thereby realizing the rapid cleaning of the irradiation end face of the LED industrial and mining lamp lamp cover, saving time and effort, avoiding the problem that the light transmittance decreases due to the dust covering the irradiation end face of the lamp cover, and the need to increase the brightness of the LED industrial and mining lamp to maintain an effective lighting effect, which in turn causes waste of electric power resources and is contrary to the required energy-saving performance requirements.
[0063] Advantage 6: It should also be noted that the LED industrial and mining lamp can also be used in a high-vibration environment for a long time. When illuminating forward, the strong magnetic force between multiple strong magnets 643 and the tensile force of the left and right support frames 531 jointly connect the lamp cover body 1 and the lamp body 2. When illuminating obliquely, the lamp cover body 1 and the power supply box 3 are connected through the tensile force of the left and right support frames 531. When cleaning the dust, the lamp cover body 1 and the power supply box 3 are connected through the strong magnetic force between multiple strong magnets 643. Moreover, the tensile springs connected to the left and right support frames 531 and the buffer springs connected to the left and right columns 62 can effectively avoid the problem that the lamp cover body 1 and the lamp body 2 loosen and fall off due to vibration.
[0064] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the protection scope of the technical solutions of the various embodiments of the present invention.
Claims
1. An energy-saving lighting lamp adopting an instantaneous splicing lamp shade structure, characterized in that, Including: A lamp cover body (1) with a lamp body (2) installed inside. Above the lamp cover body (1), there is a power supply box (3). At the upper end of the power supply box (3), a plurality of receiving grooves evenly distributed in a circle are opened. The outer wall of the lamp cover body (1) is rotatably sleeved with a sleeve plate (4). The sleeve plate (4) is of an annular structure. A dust cleaning part (5) is jointly arranged on the power supply box (3) and the sleeve plate (4). An insertion part (6) is jointly arranged on the lamp cover body (1) and the power supply box (3); Wherein, the dust cleaning part (5) includes rotating shafts (51) symmetrically and rotatably installed on the left and right sides of the outer wall of the sleeve plate (4). Connecting seats (52) are symmetrically and slidably sleeved on the outer walls of the rotating shafts (51) on the left and right sides. The connecting seat (52) is of an L-shaped structure. A tension spring is sleeved on the part of the outer wall of the rotating shaft (51) between the sleeve plate (4) and the connecting seat (52). Dust cleaning groups (53) are respectively jointly arranged on the connecting seats (52) on the left and right sides and the power supply box (3); Wherein, the insertion part (6) includes a positioning groove (61) opened at the bottom end of the power supply box (3). The positioning groove (61) is composed of an annular groove and a plurality of rectangular grooves evenly distributed in a rectangle. Columns (62) are symmetrically arranged on the left and right sides at the upper end of the lamp cover body (1). A sliding sleeve (63) is slidably sleeved on the upper end of the outer wall of the column (62) through a buffer spring. An insertion group (64) is jointly arranged on the sliding sleeve (63) and the power supply box (3).
2. The energy-saving lighting lamp adopting an instant splicing lampshade structure according to claim 1, characterized in that: The dust cleaning group (53) includes an installation sliding groove opened at the upper end of the vertical section of the connecting seat (52). A support frame (531) is slidably installed in the installation sliding groove through a tension spring. The support frame (531) is of a boomerang structure, and the outer wall of the support frame (531) is movably attached to the inner wall of the corresponding receiving groove.
3. The energy-saving lighting lamp adopting the instantaneous splicing lampshade structure according to claim 2, wherein: The dust cleaning group (53) further includes two front and rear arc-shaped grooves opened at one end of the support frame (531) facing the inner wall of the bottom end of the receiving groove. A dust scraping plate (532) is slidably installed in the arc-shaped grooves through a compression spring.
4. An energy-saving lighting lamp adopting an instantaneous splicing lampshade structure according to claim 1, characterized in that: The insertion group (64) includes a plurality of card slots (641) evenly opened on the inner wall of the positioning groove (61). The plurality of card slots (641) are respectively located on the inner walls of the longer sections of the plurality of rectangular grooves of the positioning groove (61). The card slot (641) is composed of an arc-shaped sliding groove and a plurality of semi-waist-shaped sliding grooves evenly distributed in an arc. And the inner wall of the middle part of the bottom end of the arc-shaped sliding groove on the card slot (641) is chamfered.
5. The energy-saving lighting lamp adopting an instantaneously spliced lampshade structure according to claim 4, characterized in that: The insertion group (64) further includes a circular sliding groove opened on the outer wall of the sliding sleeve (63). A plug rod (642) is slidably installed in the circular sliding groove through a compression spring. The insertion end of the plug rod (642) is slidably attached to the inner wall of the card slot (641).
6. The energy-saving lighting lamp adopting the instantaneous splicing lampshade structure according to claim 5, characterized in that: A strong magnet (643) is embedded at the upper end of the sliding sleeve (63). A plurality of strong magnets (643) evenly distributed in a circle are embedded in the upper end inner wall of the positioning groove (61) corresponding to the strong magnet (643).
7. An energy-saving lighting lamp adopting an instantaneous splicing lampshade structure according to claim 3, characterized in that: A circular magnet (533) is embedded at one end of the support frame (531) away from the connecting seat (52). Circular magnets (533) are also embedded on the inner walls of the plurality of receiving grooves corresponding to the circular magnet (533). The circular magnet (533) on the support frame (531) is magnetically connected to the circular magnet (533) on the corresponding receiving groove.
8. An energy-saving lighting lamp adopting an instantaneous splicing lampshade structure according to claim 1, characterized in that: A plurality of arc-shaped magnets evenly distributed in a circle are embedded on the outer wall of the lamp shade body (1) and the inner wall of the sleeve plate (4), and the arc-shaped magnets on the sleeve plate (4) are magnetically connected to the corresponding arc-shaped magnets on the lamp shade body (1).
Citation Information
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