An adjustable floor lamp based on instantaneous mounting structure
The instant installation structure and locking component design enable the storage and height adjustment of the floor lamp lighting components, solving the problem of traditional floor lamps being easily damaged and improving their service life and aesthetics.
Patent Information
- Application Number
- CN202411748752.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2044-12-02
AI Technical Summary
The lighting components of traditional floor lamps are easily damaged by the external environment, which affects their service life and lighting effects.
It adopts an instant installation structure. By storing the lighting components inside the tube body, and using locking components and guide grooves and other structures to achieve the extension and height adjustment of the lighting components, the wires are hidden in a special channel, and the LED line lights can adjust the illumination direction.
It protects the lighting components, reduces the volume of the floor lamp, makes it easier to store, improves flexibility and aesthetics, and extends its service life.
Smart Images

Figure CN119393720B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of floor lamps, in particular to an adjustable floor lamp based on an instantaneous mounting structure. Background Art
[0002] In the field of modern home and public lighting, floor lamps, as a common lighting device, not only carry the basic function of providing lighting, but also gradually incorporate more considerations about aesthetics, convenience and practicality.
[0003] The lighting components of traditional floor lamps are directly exposed to the outside, making them vulnerable to damage from the external environment, such as dust, moisture, impact, etc., thereby shortening their service life and reducing lighting effects. Summary of the Invention
[0004] The present invention provides an adjustable floor lamp based on an instantaneous mounting structure, which can overcome certain defects of the prior art.
[0005] According to the present invention, an adjustable floor lamp based on an instantaneous mounting structure includes a floor lamp body, which includes a counterweight seat and a tube body detachably arranged at the counterweight seat. A storage cavity with an upward opening is formed inside the tube body. A lighting assembly is telescopically arranged inside the storage cavity. A locking assembly is provided at the bottom wall of the lighting assembly. The locking assembly is used to adjust the telescopic length of the lighting assembly.
[0006] The present invention discloses an adjustable floor lamp based on an instant installation structure. By retracting the lighting component into the interior of the tube body, the lighting component can be protected, effectively preventing the lighting component from being exposed to the outside for a long time, and the volume of the floor lamp body can be reduced for easy storage.
[0007] It can be understood that the lighting assembly is retractably arranged through the storage cavity inside the tube body, so that the user can adjust the height of the lighting assembly according to actual needs, which not only meets the lighting needs in different usage scenarios, but also improves the flexibility of the floor lamp.
[0008] Preferably, the lighting assembly includes a mounting rod slidably arranged inside the storage cavity, a vertically arranged plug-in cavity is formed coaxially with the mounting rod and the storage cavity, an adjustment rod is slidably provided in the plug-in cavity, and the adjustment rod is used to drive the unlocking or locking of the locking assembly.
[0009] By sliding the lighting component inside the storage cavity and using the plug-in cavity and adjustment rod to achieve height adjustment and locking, a simple and quick adjustment method is provided for the user. The user only needs to lift or press the adjustment rod to unlock or lock the locking component, thereby completing the height adjustment of the lighting component and simplifying the operation process.
[0010] Preferably, a vertically arranged sliding cavity is formed inside the adjusting rod, a through opening communicating with the sliding cavity is formed on the outer wall of the adjusting rod, a wire tube cooperating with the sliding cavity is formed inside the plug-in cavity, a through opening is formed on the outer wall of the wire tube and connected to a fixed block at the side wall of the plug-in cavity, and the wire tube is used for passing the wire.
[0011] The through-opening formed on the outer wall of the adjusting rod and connected to the sliding cavity, and the through-opening formed on the outer wall of the wire tube and connected to the fixing block on the side wall of the plug-in cavity ensure that the adjusting rod can remain stable and smooth during the sliding process. At the same time, the fixing block also fixes the wire tube to prevent it from displacement or loosening during the adjustment process.
[0012] It can be understood that the vertically arranged sliding cavity formed inside the adjusting rod and the wire tube matched therewith provide a special passage for the wires, so that the wires can be neatly hidden inside the adjusting rod and the plug-in cavity, avoiding the exposure of the wires, and the structure is more compact and compact. Through the clever layout, the structure of the entire floor lamp is more compact and easy to assemble, thereby improving the overall aesthetics and neatness of the floor lamp.
[0013] Preferably, an annular groove and a first limiting groove are formed inwardly at the top wall of the mounting rod, a protrusion that cooperates with the first limiting groove is formed at the outer wall of the adjusting rod, a locking piece is rotatably provided in the annular groove, a second limiting groove corresponding to the first limiting groove is formed at the locking piece, the locking piece is used to limit the protrusion that is inserted into the first limiting groove, and a gripping portion is provided at the top of the adjusting rod.
[0014] The annular groove and the first limiting groove on the top wall of the mounting rod, as well as the protrusion on the outer wall of the adjusting rod, form a stable locking mechanism. When the adjusting rod slides to the desired position, the protrusion will be stuck in the first limiting groove. At this time, by rotating the locking piece, the protrusion will be stuck to form a limit. The operation is simple and quick to lock the adjusting rod stably.
[0015] Preferably, a mounting cavity for mounting the locking assembly is formed at the bottom wall of the mounting rod;
[0016] The locking assembly includes a plurality of sliders arranged at equal intervals along the circumference of the adjusting rod and slidingly arranged inside the mounting cavity. A plurality of movable openings corresponding to the sliders are formed on the outer wall of the mounting rod, and a card block is slidably provided at the movable opening. A connecting rod is formed on the corresponding side of the slider and the card block, passing through the mounting rod and connected to the card block. A spring is provided between the slider and the inner wall of the mounting cavity. The spring is used to provide an elastic force to keep the slider pressed toward the adjusting rod. An inclined surface is formed on the slider to cooperate with the adjusting rod.
[0017] Through the above structure, the user can quickly unlock and lock the lighting assembly, and the structure is stable and reliable.
[0018] When locking, by pressing down the adjustment rod, its outer wall will squeeze the inclined surface on the slider, causing the slider to move outward in the installation cavity and compress the spring. At the same time, the slider drives the connecting rod to move outward, and the outward movement of the connecting rod pushes the card block to engage with the card slot, thereby locking the lighting assembly;
[0019] When unlocking, by lifting the adjustment rod, the spring releases the elastic force, causing the slider to move inward, and the inward movement of the slider drives the connecting rod to move inward. The inward movement of the connecting rod drives the card block to reset to the movable opening, thereby releasing the lock on the lighting component.
[0020] Preferably, the inner wall of the storage cavity is formed with guide grooves at equal intervals along the circumferential direction, and a convex portion cooperating with the guide grooves is formed on the outer wall of the mounting rod. The guide grooves are used to limit the circumferential direction of the mounting rod.
[0021] The close fit between the guide groove and the convex portion ensures accurate circumferential positioning of the mounting rod in the receiving cavity, preventing the mounting rod from deflecting when rotating or subjected to external force, thereby ensuring accurate installation and stable operation of the lighting assembly.
[0022] It can be understood that the setting of the guide groove and the protrusion simplifies the installation and disassembly process of the mounting rod. It is only necessary to align the protrusion with the guide groove and then slide the mounting rod along the direction of the guide groove to easily complete the installation. Similarly, when disassembling, only the reverse operation is required, which improves the convenience and efficiency of the user's operation.
[0023] Preferably, a mounting groove is formed between adjacent protrusions, and a symmetrically arranged mounting piece is hingedly provided at the middle of the mounting groove. LED linear lights are rotatably provided at the mounting pieces, and a connecting piece is provided at one end of the LED linear lights away from the mounting groove.
[0024] By hingedly connecting the mounting piece and the LED linear light to the mounting groove, the lighting mode can be adjusted as needed. In the first form of lighting mode, the mounting piece is snapped into the mounting groove, that is, the LED linear light is irradiated in the vertical direction to the horizontal direction, and the whole light is divergent in the horizontal direction.
[0025] The second form of irradiation: rotate any mounting part to the horizontal position, and then irradiate the top, bottom, front and back. Figure 10 The form shown can be positioned and improved in stability by connecting the connectors with bolts.
[0026] Through the adjustable setting of the lighting components, the lighting components can be combined according to needs, which increases the scope of application of the device and greatly improves the practicality of the device.
[0027] The LED line lights are rotatably provided at the mounting parts, so that the LED line lights can be rotated around the mounting parts, thereby realizing flexible adjustment of the lighting direction and angle. Users can easily adjust the lighting range of the LED line lights according to actual needs to meet the lighting needs in different scenes.
[0028] Preferably, card slots are formed at equal intervals on the inner wall of the guide slot, and the card slots are used for carding and fitting the card blocks.
[0029] A simple, stable and precise locking mechanism is achieved through the snap-fit cooperation between the slot and the block. When the mounting rod is inserted into the storage cavity and rotated to the appropriate position, the block will automatically snap into the corresponding slot, thereby ensuring that the mounting rod is firmly locked in the circumferential and axial directions. This not only improves the stability of the floor lamp, but also prevents the mounting rod from accidentally rotating or loosening due to external forces.
[0030] Preferably, recesses are formed on both the top wall and the bottom wall of the mounting groove.
[0031] Through the above structure, the user can better rotate the LED linear light through the recessed portion.
[0032] Preferably, a threaded portion is formed at the opening of the storage cavity, and a cover plate is detachably provided at the threaded portion, and the cover plate is used to seal the interior of the storage cavity.
[0033] The tight fit between the threaded portion and the cover ensures that the interior of the storage cavity is effectively sealed, which not only prevents external impurities such as dust and moisture from entering the storage cavity and affecting the normal operation of the LED line lights or other internal components, but also keeps the interior of the storage cavity clean and dry, thereby extending the service life of the product. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 This is a schematic diagram of the overall structure of an adjustable floor lamp based on an instantaneous mounting structure;
[0035] Figure 2 This is a schematic diagram of the overall side cross-sectional structure of an adjustable floor lamp based on an instantaneous mounting structure;
[0036] Figure 3 This is a schematic structural diagram of a lighting assembly of an adjustable floor lamp based on an instantaneous mounting structure in a first state;
[0037] Figure 4 The diagram is a top-down cross-sectional structural diagram of the tube body of an adjustable floor lamp based on an instantaneous mounting structure.
[0038] Figure 5 The figure is a schematic diagram of the side cross-sectional structure of the tube body of an adjustable floor lamp based on an instantaneous mounting structure.
[0039] Figure 6 The figure is a schematic diagram of the side cross-sectional structure of the mounting rod and adjustment rod of an adjustable floor lamp based on a momentary mounting structure.
[0040] Figure 7 The figure is a schematic diagram of the cross-sectional structure of the mounting rod of an adjustable floor lamp based on a momentary mounting structure.
[0041] Figure 8 The figure is a schematic side cross-sectional structural diagram of a locking assembly of an adjustable floor lamp based on a momentary mounting structure.
[0042] Figure 9 The figure is a top-down cross-sectional structural diagram of the mounting rod of an adjustable floor lamp based on an instantaneous mounting structure.
[0043] Figure 10 The figure is a schematic diagram of the second state structure of the lighting component of an adjustable floor lamp based on a momentary mounting structure.
[0044] 100, floor lamp body; 110, tube body; 120, cover plate; 130, counterweight seat; 210, storage cavity; 220, mounting rod; 230, locking assembly; 240, adjustment rod; 310, mounting groove; 320, mounting member; 330, LED linear light; 410, guide groove; 420, slot; 510, threaded portion; 610, ring groove; 611, first limit groove; 620, Locking member; 630, second limiting groove; 640, sliding cavity; 650, through-port; 660, protrusion; 670, gripping portion; 680, plug-in cavity; 690, wire tube; 691, fixing block; 810, mounting cavity; 830, movable port; 840, clamping block; 850, connecting rod; 860, slider; 870, inclined surface; 880, spring; 910, recess; 1010, connecting member. DETAILED DESCRIPTION
[0045] In order to further understand the content of the present invention, the present invention is described in detail with reference to the embodiments. It should be understood that the embodiments are merely for explanation of the present invention and are not intended to limit the present invention.
[0046] Example 1
[0047] See also Figure 1-10 The present embodiment provides an adjustable floor lamp based on an instantaneous mounting structure, including a floor lamp body 100. The floor lamp body 100 includes a counterweight seat 130 and a tube body 110 detachably arranged at the counterweight seat 130. A storage cavity 210 with an upward opening is formed inside the tube body 110. A lighting component is telescopically arranged inside the storage cavity 210. A locking component 230 is provided at the bottom wall of the lighting component. The locking component 230 is used to adjust the telescopic length of the lighting component.
[0048] The present invention discloses an adjustable floor lamp based on an instant installation structure. By retracting the lighting component into the tube body 110, the lighting component can be protected, effectively preventing the lighting component from being exposed to the outside for a long time, and the volume of the floor lamp body 100 can be reduced for easy storage.
[0049] It can be understood that the lighting assembly is retractably arranged through the storage cavity 210 inside the tube body 110, so that the user can adjust the height of the lighting assembly according to actual needs, which not only meets the lighting needs in different usage scenarios, but also improves the flexibility of the floor lamp.
[0050] In this embodiment, the lighting assembly includes an installation rod 220 that is slidably arranged inside the storage cavity 210. A vertically arranged plug-in cavity 680 is formed coaxially with the installation rod 220 and the storage cavity 210. An adjustment rod 240 is slidably provided in the plug-in cavity 680. The adjustment rod 240 is used to drive the unlocking or locking of the locking assembly 230.
[0051] By sliding the lighting assembly inside the storage cavity 210 and using the plug-in cavity 680 and the adjustment rod 240 to achieve height adjustment and locking, a simple and quick adjustment method is provided to the user. Only by lifting or pressing down the adjustment rod 240 can the locking assembly 230 be unlocked or locked, thereby completing the adjustment of the lighting assembly height and simplifying the operation process.
[0052] In this embodiment, a vertically arranged sliding cavity 640 is formed inside the adjusting rod 240, a through opening 650 that passes through the sliding cavity 640 is formed at the outer wall of the adjusting rod 240, a wire tube 690 that cooperates with the sliding cavity 640 is formed inside the plug-in cavity 680, a through opening 650 is formed on the outer wall of the wire tube 690 and is connected to a fixed block 691 at the side wall of the plug-in cavity 680, and the wire tube 690 is used for passing the wire.
[0053] The through-opening 650 formed on the outer wall of the adjusting rod 240 and communicating with the sliding cavity 640, and the through-opening 650 formed on the outer wall of the wire tube 690 connected to the fixed block 691 on the side wall of the plug-in cavity 680 ensure that the adjusting rod 240 can remain stable and smooth during the sliding process. At the same time, the fixed block 691 also fixes the wire tube 690 to prevent it from being displaced or loosened during the adjustment process.
[0054] It can be understood that the vertically arranged sliding cavity 640 formed inside the adjusting rod 240 and the wire tube 690 matched therewith provide a special passage for the wires, so that the wires can be neatly hidden inside the adjusting rod 240 and the plug-in cavity 680, avoiding the exposure of the wires, and the structure is more compact and small. Through the clever layout, the structure of the entire floor lamp is more compact and easy to assemble, thereby improving the overall aesthetics and neatness of the floor lamp.
[0055] The fixing block 691 and the mounting member 320 are both formed with through holes that pass through the wire tube 690 . The through holes are used to pass wires that are electrically connected to the LED linear lights 330 .
[0056] In this embodiment, an annular groove 610 and a first limiting groove 611 are formed inwardly at the top wall of the mounting rod 220, a protrusion 660 that cooperates with the first limiting groove 611 is formed at the outer wall of the adjusting rod 240, a locking member 620 is rotatably provided in the annular groove 610, and a second limiting groove 630 corresponding to the first limiting groove 611 is formed at the locking member 620, the locking member 620 is used to limit the protrusion 660 that is inserted into the first limiting groove 611, and a gripping portion 670 is provided at the top of the adjusting rod 240.
[0057] The annular groove 610 and the first limiting groove 611 on the top wall of the mounting rod 220, as well as the protrusion 660 on the outer wall of the adjusting rod 240, together form a stable locking mechanism. When the adjusting rod 240 slides to the desired position, the protrusion 660 will be stuck in the first limiting groove 611. At this time, by rotating the locking piece 620, it will lock the protrusion 660 to form a limit. The operation is simple and quick to stably lock the adjusting rod 240.
[0058] In this embodiment, a mounting cavity 810 for mounting the locking assembly 230 is formed at the bottom wall of the mounting rod 220;
[0059] The locking assembly 230 includes a plurality of sliders 860 that are equidistantly arranged along the circumference of the adjusting rod 240 and are slidably arranged inside the mounting cavity 810. A plurality of movable openings 830 corresponding to the sliders 860 are formed on the outer wall of the mounting rod 220. A clamping block 840 is slidably provided at the movable opening 830. A connecting rod 850 is formed on the corresponding side of the slider 860 and the clamping block 840, passing through the mounting rod 220 and connected to the clamping block 840. A spring 880 is provided between the slider 860 and the inner wall of the mounting cavity 810. The spring 880 is used to provide an elastic force to keep the slider 860 pressed toward the adjusting rod 240. A slope 870 that cooperates with the adjusting rod 240 is formed on the slider 860.
[0060] Through the above structure, the user can quickly unlock and lock the lighting assembly, and the structure is stable and reliable.
[0061] When locking, by pressing down the adjustment rod 240, its outer wall will squeeze the inclined surface 870 on the slider 860, causing the slider 860 to move outward in the installation cavity 810 and compress the spring 880. At the same time, the slider 860 drives the connecting rod 850 to move outward. The outward movement of the connecting rod 850 pushes the clamping block 840 to engage with the clamping groove 420, thereby locking the lighting assembly.
[0062] When unlocking, by lifting the adjustment rod 240, the spring 880 releases the elastic force, causing the slider 860 to move inward. The inward movement of the slider 860 drives the connecting rod 850 to move inward. The inward movement of the connecting rod 850 drives the block 840 to reset to the movable opening 830, thereby releasing the lock on the lighting assembly.
[0063] In this embodiment, guide grooves 410 are formed at equal intervals along the circumferential direction on the inner wall of the storage cavity 210 , and a protrusion that cooperates with the guide grooves 410 is formed on the outer wall of the installation rod 220 . The guide grooves 410 are used to limit the circumferential direction of the installation rod 220 .
[0064] The close fit between the guide groove 410 and the protrusion ensures the precise circumferential positioning of the mounting rod 220 in the receiving cavity 210, preventing the mounting rod 220 from shifting when rotating or subjected to external force, thereby ensuring the precise installation and stable operation of the lighting assembly.
[0065] It can be understood that the setting of the guide groove 410 and the protrusion simplifies the installation and disassembly process of the mounting rod 220. It is only necessary to align the protrusion with the guide groove 410 and then slide the mounting rod 220 along the direction of the guide groove 410 to easily complete the installation. Similarly, when disassembling, only the reverse operation is required, which improves the convenience and efficiency of the user's operation.
[0066] In this embodiment, an installation groove 310 is formed between adjacent protrusions, and a symmetrically arranged installation member 320 is hingedly provided at the middle of the installation groove 310. LED line lights 330 are rotatably provided at the installation members 320, and a connecting member 1010 is provided at the end of the LED line lights 330 away from the installation groove 310.
[0067] By hingedly connecting the mounting member 320 and the LED linear light 330 to the mounting groove 310, the lighting mode can be adjusted as needed. In the first lighting mode, the mounting member 320 is snapped into the mounting groove 310, so that the LED linear light 330 is vertically radiated horizontally.
[0068] The second form of irradiation: any mounting member 320 is rotated to a horizontal position, and the upper, lower, front and rear sides can be irradiated. Figure 10 The form shown can be positioned by bolting the connector 1010 to improve stability.
[0069] Through the adjustable setting of the lighting components, the lighting components can be combined according to needs, which increases the scope of application of the device and greatly improves the practicality of the device.
[0070] The LED line lights 330 are rotatably provided at the mounting parts 320, so that the LED line lights 330 can be rotated around the mounting parts 320, thereby realizing flexible adjustment of the lighting direction and angle. Users can easily adjust the lighting range of the LED line lights 330 according to actual needs to meet the lighting needs in different scenarios.
[0071] In this embodiment, locking grooves 420 are formed at equal intervals on the inner wall of the guide groove 410 , and the locking grooves 420 are used for the locking blocks 840 to engage with each other.
[0072] A simple, stable and precise locking mechanism is achieved through the snap-fitting cooperation between the slot 420 and the block 840. When the mounting rod 220 is inserted into the receiving cavity 210 and rotated to the appropriate position, the block 840 will automatically snap into the corresponding slot 420, thereby ensuring that the mounting rod 220 is firmly locked in the circumferential and axial directions. This not only improves the stability of the floor lamp, but also prevents the mounting rod 220 from accidentally rotating or loosening due to external forces.
[0073] In this embodiment, recesses 910 are formed on both the top and bottom walls of the mounting groove 310 .
[0074] Through the above structure, the user can better rotate the LED linear light 330 through the recess 910 .
[0075] In this embodiment, a threaded portion 510 is formed at the opening of the storage cavity 210 , and a cover plate 120 is detachably provided at the threaded portion 510 . The cover plate 120 is used to seal the interior of the storage cavity 210 .
[0076] The tight fit between the threaded portion 510 and the cover plate 120 ensures that the interior of the storage cavity 210 is effectively sealed, which not only prevents external impurities such as dust and moisture from entering the storage cavity 210 and affecting the normal operation of the LED line light 330 or other internal components, but also keeps the interior of the storage cavity 210 clean and dry, thereby extending the service life of the product.
[0077] It is easy to understand that those skilled in the art can combine, split, reorganize, etc. the embodiments of the present application based on one or several embodiments provided in the present application to obtain other embodiments, and these embodiments do not exceed the scope of protection of the present application.
[0078] The above is a schematic description of the present invention and its embodiments, which is not restrictive. The embodiments shown in the embodiments are only part of the embodiments of the present invention, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by the above and, without departing from the purpose of the present invention, designs a structure and embodiment similar to the technical solution without creatively designing, they shall fall within the scope of protection of the present invention.
[0079] It is easy to understand that those skilled in the art can combine, split, reorganize, etc. the embodiments of the present application based on one or several embodiments provided in the present application to obtain other embodiments, and these embodiments do not exceed the scope of protection of the present application.
[0080] The above is a schematic description of the present invention and its embodiments, which is not restrictive. The embodiments shown in the embodiments are only part of the embodiments of the present invention, and the actual structure is not limited thereto. Therefore, if a person skilled in the art is inspired by the above and, without departing from the purpose of the present invention, designs a structure and embodiment similar to the technical solution without creatively designing, they shall fall within the scope of protection of the present invention.
Claims
1. An adjustable floor lamp based on an instantaneous mounting structure, characterized in that: The floor lamp body (100) includes a counterweight seat (130) and a tube body (110) detachably arranged at the counterweight seat (130); a storage cavity (210) with an upward opening is formed inside the tube body (110); a lighting assembly is telescopically arranged inside the storage cavity (210); a locking assembly (230) is provided at the bottom wall of the lighting assembly; and the locking assembly (230) is used to adjust the telescopic length of the lighting assembly; The lighting assembly includes a mounting rod (220) slidably arranged inside a storage cavity (210), a vertically arranged plug-in cavity (680) is formed coaxially between the mounting rod (220) and the storage cavity (210), and an adjustment rod (240) is slidably arranged in the plug-in cavity (680), and the adjustment rod (240) is used to drive the locking assembly (230) to unlock or lock.
2. The adjustable floor lamp based on the instantaneous mounting structure according to claim 1, characterized in that: A vertically arranged sliding cavity (640) is formed inside the adjusting rod (240), a through opening (650) penetrating the sliding cavity (640) is formed on the outer wall of the adjusting rod (240), a wire tube (690) cooperating with the sliding cavity (640) is formed inside the plug-in cavity (680), a through opening (650) is formed on the outer wall of the wire tube (690) and connected to a fixed block (691) at the side wall of the plug-in cavity (680), and the wire tube (690) is used for passing the wire.
3. The adjustable floor lamp based on the instantaneous mounting structure according to claim 2, characterized in that: The top wall of the mounting rod (220) is recessed inward to form an annular groove (610) and a first limiting groove (611); the outer wall of the adjusting rod (240) is formed with a protrusion (660) that matches the first limiting groove (611); a locking member (620) is rotatably provided in the annular groove (610); a second limiting groove (630) corresponding to the first limiting groove (611) is formed on the locking member (620); the locking member (620) is used to limit the protrusion (660) that is inserted into the first limiting groove (611); and a gripping portion (670) is provided on the top of the adjusting rod (240).
4. The adjustable floor lamp based on the instantaneous mounting structure according to claim 3, characterized in that: A mounting cavity (810) for mounting the locking assembly (230) is formed at the bottom wall of the mounting rod (220); The locking assembly (230) includes a plurality of sliders (860) arranged at equal intervals along the circumference of the adjustment rod (240) and slidably arranged inside the installation cavity (810), a plurality of movable openings (830) corresponding to the sliders (860) are formed on the outer wall of the installation rod (220), and a clamping block (840) is slidably provided at the movable opening (830), and a connecting rod (850) is formed on the corresponding side of the slider (860) and the clamping block (840) and passes through the installation rod (220) and is connected to the clamping block (840), a spring (880) is provided between the slider (860) and the inner wall of the installation cavity (810), and the spring (880 is used to provide an elastic force to keep the slider (860) pressed toward the adjustment rod (240), and an inclined surface (870) is formed on the slider (860) to cooperate with the adjustment rod (240).
5. The adjustable floor lamp based on the instantaneous mounting structure according to claim 4, characterized in that: The inner wall of the receiving cavity (210) is formed with guide grooves (410) at equal intervals along the circumferential direction, and the outer wall of the mounting rod (220) is formed with a convex portion that cooperates with the guide grooves (410). The guide grooves (410) are used to limit the circumferential direction of the mounting rod (220).
6. The adjustable floor lamp based on the instantaneous mounting structure according to claim 5, characterized in that: A mounting groove (310) is formed between adjacent convex portions, a symmetrically arranged mounting piece (320) is hingedly provided at the middle of the mounting groove (310), an LED linear light (330) is rotatably provided at the mounting piece (320), and a connecting piece (1010) is provided at one end of the LED linear light (330) away from the mounting groove (310).
7. The adjustable floor lamp based on the instantaneous mounting structure according to claim 5, characterized in that: Clamping grooves (420) are formed at equal intervals on the inner wall of the guide groove (410), and the clamping grooves (420) are used for clamping and matching with the clamping block (840).
8. The adjustable floor lamp based on the instantaneous mounting structure according to claim 6, characterized in that: Recesses (910) are formed on both the top and bottom walls of the mounting groove (310).
9. The adjustable floor lamp based on the instantaneous mounting structure according to claim 1, characterized in that: A threaded portion (510) is formed at the opening of the storage cavity (210), and a cover plate (120) is detachably provided at the threaded portion (510). The cover plate (120) is used to seal the interior of the storage cavity (210).
Citation Information
Patent Citations
Scalable work light
CN205174088U