Light supplementing lamp
The supplemental lighting device simplifies lamp head angle adjustment with a rotating wheel mechanism, improving user convenience and operational precision by automating the adjustment process.
Patent Information
- Application Number
- CN202422266959.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-14
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-14
AI Technical Summary
The existing fill light head adjustment operation is complicated and requires manual pulling and locking, resulting in inconvenient operation.
The roulette structure and stop structure are adopted to control the rotation and adjustment angle of the roulette under the weight of the lamp head through buttons, and automatically locking is achieved through the complementary design of the tooth groove and the tooth back, simplifying the adjustment process.
It realizes convenient adjustment and fast locking of the lamp head angle, improving operating efficiency.
Smart Images

Figure CN223105970U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of lighting devices, and particularly to a fill light. Background Art
[0002] A fill light for beauty use is a professional lighting device, usually used in occasions such as beauty, eyelash extension, nail art or tattoo, etc., to reduce shadows and assist users in improving the accuracy of operations. Since the position of the lamp head needs to be adjusted according to the actual lighting situation during the operation, the support base connecting the lamp head is generally set to be multi-section adjustable. The existing ones are mostly in the form of hinge rotation, and it is necessary to manually pull the lamp head to adjust and then lock it, and the operation is relatively complicated. Utility Model Content
[0003] Based on this, the problem solved by this application is to provide a fill light that can facilitate the adjustment of the angle of the lamp head.
[0004] This application provides a fill light, including:
[0005] A lamp head;
[0006] A lever arm, including a first end and a second end, and the first end is connected to the lamp head;
[0007] A grounding support rod for grounding support, and the grounding support rod includes a mounting end and a support end;
[0008] A first rotating assembly, including a wheel disc structure and a stopping structure, the wheel disc structure is arranged on the second end of the lever arm, and the stopping structure is arranged on the mounting end of the grounding support rod;
[0009] A button is arranged on the stopping structure. When the button is pressed, under the self-weight of the lamp head, the wheel disc structure rotates relative to the stopping structure, and when the button is released, it is locked.
[0010] In one embodiment,
[0011] The wheel disc structure includes an elastic member and a rotating disc;
[0012] The stopping structure includes an end cover. At least one tooth is arranged on the rotating disc, and a plurality of tooth grooves are arranged in a ring on the end cover. The tooth selectively inserts into each tooth groove for stopping. The elastic member elastically presses the rotating disc for setting, so as to keep the rotating disc in contact with the end cover. Pressing the button will push the rotating disc away from the end cover to release the tooth so that the rotating disc and the end cover rotate relative to each other;
[0013] The back of the tooth of the gear tooth is gradually lifted along the clockwise direction and is inclined. The inclination angle of each tooth groove is complementary to that of the tooth back. When the rotating disk rotates clockwise, the gear tooth abuts against the tooth groove for stopping. When the rotating disk rotates counterclockwise, the gear tooth presses against the elastic member in the reverse direction to rotate.
[0014] In one embodiment,
[0015] The rotating disk includes a first surface and a second surface which are oppositely arranged. A plurality of gear teeth are arranged in a ring on the first surface, and the elastic member is elastically pressed on the second surface;
[0016] The end cover includes a third surface and a fourth surface which are oppositely arranged. Each tooth groove is arranged on the third surface of the end cover. The button faces the fourth surface of the end cover. At least one protrusion is arranged on the button. The protrusion penetrates through the end cover and abuts against the rotating disk. When the button is pressed, the protrusion presses the rotating disk to separate from the end cover.
[0017] In one embodiment,
[0018] The wheel disk structure further includes an annular housing and a mounting post. An accommodating cavity is arranged in the annular housing and one end is open. The mounting post is accommodated in the annular housing and extends along the axial direction of the annular housing. The rotating disk is movably sleeved on the mounting post. The elastic member is arranged as an annular elastic sheet, and at least one elastic sheet extends from the annular elastic sheet to abut against the rotating disk. At least one limiting block is further arranged in the annular housing, and the limiting block is clamped with the rotating disk;
[0019] The stopping structure further includes two outer wheels. Each outer wheel is rotatably sleeved on the annular housing. The end cover is arranged on one of the outer wheels. The end cover faces the opening of the annular housing to contact or separate from the rotating disk. The button covers the end cover.
[0020] In one embodiment, it further includes a cantilever, a second rotating assembly and a connecting rod. The cantilever includes a third end and a fourth end. The third end is connected to the first end of the force arm through the second rotating assembly. The fourth end is connected to the lamp holder through the connecting rod.
[0021] In one embodiment, a pin seat is arranged at the fourth end of the cantilever. The connecting rod includes a fifth end and a sixth end. The fifth end is inserted into the pin seat. A handle is further arranged. The handle penetrates through the fifth end of the connecting rod and the pin seat to rotate and adjust the relative angle between the connecting rod and the pin seat.
[0022] In one embodiment, it further includes a swivel wheel base which is disposed on the supporting end of the grounding strut. A plurality of swivel wheels are provided on the swivel wheel base for sliding relative to the ground.
[0023] In one embodiment, the lamp head includes:
[0024] A mounting base connected to the sixth end of the connecting rod;
[0025] A first lamp socket including a first connecting end and a first free end,
[0026] A second lamp socket including a second connecting end and a second free end. The first connecting end and the second connecting end are rotatably disposed on the mounting base for rotating the first lamp socket and the second lamp socket from a first state to a second state;
[0027] The first state is a state where the first lamp socket and the second lamp socket are opened at 180 degrees, and the second state is a state where the first lamp socket and the second lamp socket are opened at an acute angle or arranged side by side.
[0028] In one embodiment, both the first lamp socket and the second lamp socket are arranged as arc-shaped strip structures, and the first lamp socket and the second lamp socket have the same radius of curvature, so as to be symmetrically arranged on the same side of the mounting base. When in the first state, the first lamp socket and the second lamp socket are combined to form an arc shape.
[0029] In one embodiment,
[0030] Shaft components are provided on both the first connecting end and the second connecting end, and two groove components are respectively provided on the mounting base corresponding to each of the shaft components;
[0031] The shaft component includes a rotating shaft and at least two guiding shafts;
[0032] The groove component includes a rotating groove and at least two arc-shaped guiding grooves arranged around the rotating groove. The rotating shaft is rotatably disposed in the rotating groove, and each of the guiding shafts is respectively inserted into each of the guiding grooves to rotate along each of the guiding grooves;
[0033] At least two fasteners are further provided. Each of the fasteners passes through the notch of each of the guiding grooves and is assembled in each of the guiding shafts. The head diameter of each of the fasteners is greater than the notch width of the guiding groove to be supported on the guiding groove.
[0034] Based on the above description, the supplementary light in the present application at least includes a lever arm and a grounding strut. The grounding strut is generally vertically arranged for grounding support. The installation end of the grounding strut and the second end of the lever arm are rotatably arranged through the first rotating assembly, and the first end of the lever arm is connected to the lamp head, thereby realizing the function of adjusting the angle of the lamp head. The turntable structure and the stop structure are rotatably connected, and a button is arranged on the stop structure. When the button is pressed, the turntable structure will rotate downward, i.e., clockwise, under the self-weight of the lamp head, so as to automatically adjust the angle between the lever arm and the grounding strut. When it reaches the appropriate position, releasing the button can achieve locking, making the adjustment of the lamp head more convenient and fast. Description of the Drawings
[0035] Figure 1 Schematic structural diagram of the supplementary light provided by the embodiment of the present application;
[0036] Figure 2 Schematic structural diagram of the first rotating assembly provided by the embodiment of the present application;
[0037] Figure 3 One of the exploded structural diagrams of the first rotating assembly provided by the embodiment of the present application;
[0038] Figure 4 Another exploded structural diagram of the first rotating assembly provided by the embodiment of the present application;
[0039] Figure 5 Schematic structural diagram of the cantilever and the handle provided by the embodiment of the present application;
[0040] Figure 6 One of the schematic structural diagrams of the lamp head provided by the embodiment of the present application;
[0041] Figure 7 Another schematic structural diagram of the lamp head provided by the embodiment of the present application;
[0042] Figure 8 For Figure 6 The enlarged view at A in
[0043] Figure 9 For Figure 7 The enlarged view at B in
[0044] Figure 10 Exploded structural diagram of the first lamp socket provided by the embodiment of the present application. Detailed Description of the Embodiment
[0045] To make the above objects, features, and advantages of the present application more obvious and understandable, the following detailed description of the specific embodiments of the present application is provided in conjunction with the accompanying drawings.
[0046] It should be noted that the terms "first", "second", etc. in the description, claims and the above-mentioned drawings of this application are used to distinguish similar objects, and do not necessarily describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of this application described here can be implemented in an order other than those illustrated or described here.
[0047] In the description of this application, it should be noted that unless otherwise clearly specified and limited, the terms "set", "installed", "connected", "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to specific situations.
[0048] In the description of this specification, the descriptions referring to terms such as "embodiment", "one embodiment" and "one implementation manner" mean that the specific features, structures, materials or characteristics described in connection with the embodiment or implementation manner are included in at least one embodiment or implementation manner of this application. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or implementation manner. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or implementation manners in a suitable manner.
[0049] The following will describe this application in detail with reference to the drawings.
[0050] To solve the above technical problems, in combination with Figures 1-4 as shown, an embodiment of this application provides a supplementary light, including:
[0051] a lamp head 10;
[0052] a force arm 5, including a first end 51 and a second end 52, the first end 51 is connected to the lamp head 10;
[0053] a grounding strut 6 for grounding support, the grounding strut 6 includes a mounting end 62 and a support end 61;
[0054] a first rotating assembly 8, including a wheel structure 71 and a stopping structure 72, the wheel structure 71 is arranged on the second end 52 of the force arm 5, and the stopping structure 72 is arranged on the mounting end 62 of the grounding strut 6;
[0055] a button 724 is arranged on the stopping structure 72. When the button 724 is pressed, under the self-weight of the lamp head 10, the wheel structure 71 rotates relative to the stopping structure 72, and when the button 724 is released, it is locked.
[0056] It should be noted that the supplementary light at least includes a force arm 5 and a grounding support rod 6. The grounding support rod 6 is generally vertically arranged for grounding support. The mounting end 62 of the grounding support rod 6 and the second end 52 of the force arm 5 are rotatably arranged through the first rotating assembly 8, and the first end 51 of the force arm 5 is connected to the lamp head 10, so as to realize the function of adjusting the angle of the lamp head 10. The disk structure 71 and the stop structure 72 are rotatably connected, and a button 724 is arranged on the stop structure 72. When the button 724 is pressed, the disk structure 71 will rotate downward, that is, clockwise, under the self-weight of the lamp head 10, so as to automatically adjust the angle between the force arm 5 and the grounding support rod 6. When in a suitable position, releasing the button 724 can achieve locking, making the adjustment of the lamp head 10 more convenient and fast.
[0057] In an embodiment of the present application, in combination with Figure 3 and Figure 4 as shown,
[0058] the disk structure 71 includes an elastic member 714 and a rotating disk 715;
[0059] the stop structure 72 includes an end cover 723. At least one tooth 716 is arranged on the rotating disk 715, and a plurality of tooth grooves 7232 are arranged in a circular arrangement on the end cover 723. The tooth 716 is selectively inserted into each tooth groove 7232 for stopping. The elastic member 714 is elastically pressed against the rotating disk 715 to keep the rotating disk 715 in contact with the end cover 723. Pressing the button 724 will push the rotating disk 715 away from the end cover 723 to release the tooth 716 so that the rotating disk 715 and the end cover 723 rotate relative to each other;
[0060] The back 7161 of the tooth 716 is gradually lifted and inclined along the clockwise direction, and the inclination angle of each tooth groove 7232 is complementary to the back 7161 of the tooth. When the rotating disk 715 rotates clockwise, the tooth 716 abuts against the tooth groove 7232 for stopping. When the rotating disk 715 rotates counterclockwise, the tooth 716 presses against the elastic member 714 in the reverse direction for rotation.
[0061] It should be noted that the first rotating component 8 cooperates with the rotating disk 715 and the end cover 723. When the button 724 is in a locked state, the elastic member 714 elastically presses the rotating disk 715, so that the rotating disk 715 and the end cover 723 are abutted against each other, so that the gear teeth 716 are selectively inserted into each of the tooth grooves 7232 for stopping. At this time, the rotating disk 715 cannot be driven to rotate under the dead weight of the lamp holder 10, that is, the force arm 5 cannot be driven to rotate; and when the end cover 723 is pressed, the end cover 723 pushes the rotating disk 715 to leave the end cover 723, so that the rotating disk 715 reversely squeezes the elastic member 714, so that the gear teeth 716 are released from the tooth grooves 7232. At this time, the rotating disk 715 will rotate downward under the dead weight of the lamp holder 10, so that the angle between the force arm 5 and the grounding support rod 6 can be automatically adjusted. When it reaches the appropriate position, the button 724 can be released to achieve locking. When the rotating disk 715 rotates clockwise, the lamp head 10 is adjusted downward, and when the rotating disk 715 rotates counterclockwise, the lamp head 10 is lifted upward. The tooth back 7161 of the gear 716 is lifted in the clockwise direction to an inclined setting, and the inclined direction of the tooth groove 7232 is opposite to that of the tooth back 7161 to complement each other. When the rotating disk 715 abuts against the end cover 723, when the rotating disk 715 rotates clockwise, the high point of the tooth back 7161 abuts against the tooth groove 7232 to stop, so that the button 724 needs to be pressed to make the gear tooth 716 disengage from the tooth groove 7232, and then the rotating disk 715 can rotate clockwise under the weight of the lamp head 10, and the lamp head 10 can be locked by releasing the button 724; and when the rotating disk 715 rotates counterclockwise, that is, the user directly turns the lamp head 10, the low point of the tooth back 7161 will be rotated out along the tooth groove 7232, thereby extruding the elastic member 714 in the reverse direction for rotation, and at this time, the button 724 does not need to be pressed. In summary, the lamp head 10 can be adjusted conveniently and quickly.
[0062] In one embodiment of the present application, Figure 3 and Figure 4 As shown,
[0063] The rotating disk 715 includes a first surface 7152 and a second surface 7153 that are opposite to each other. A plurality of gear teeth 716 are arranged in a ring shape on the first surface 7152. The elastic member 714 elastically presses on the second surface 7153.
[0064] The end cap 723 includes a third surface 7233 and a fourth surface 7231 which are oppositely arranged. Each of the tooth grooves 7232 is arranged on the third surface 7233 of the end cap 723. The button 724 is arranged towards the fourth surface 7231 of the end cap 723. At least one protrusion 7241 is arranged on the button 724. The protrusion 7241 penetrates through the end cap 723 and abuts against the rotating disk 715. When the button 724 is pressed, the protrusion 7241 squeezes the rotating disk 715 to separate from the end cap 723.
[0065] It should be noted that, preferably, the gear teeth 716 are arranged in a ring shape and are multiple, so that each of the gear teeth 716 engages with each of the tooth grooves 7232 respectively to increase the stability of the stop. The first surface 7152 of the rotating disk 715 and the third surface 7233 of the end cap 723 are oppositely arranged, and the gear teeth 716 and the tooth grooves 7232 are respectively arranged on the first surface 7152 and the third surface 7233 for cooperation. Preferably, the elastic piece 7141 is arranged adjacent to the second surface 7153 of the rotating disk 715, so that the elastic piece 7141 presses on the second surface 7153 to abut the first surface 7152 of the rotating disk 715 against the third surface 7233 of the end cap 723. Preferably, the button 724 is arranged on the fourth surface 7231 of the end cap 723. A protrusion 7241 is arranged on the button 724. The protrusion 7241 penetrates through the end cap 723 and abuts against the first surface 7152 of the rotating disk 715. Thus, by pressing the button 724, the rotating disk 715 can be pushed to separate from the end cap 723.
[0066] In an embodiment of the present application, in combination Figures 1-4 as shown
[0067] The wheel structure 71 further includes an annular housing 712 and a mounting post 713. The annular housing 712 is provided with an accommodation cavity and an opening 717 at one end. The mounting post 713 is accommodated in the annular housing 712 and extends along the axial direction of the annular housing 712. The rotating disk 715 is movably sleeved on the mounting post 713. The elastic member 714 is arranged as an annular elastic sheet 7142, and at least one elastic piece 7141 extends from the annular elastic sheet 7142 to abut against the rotating disk 715. At least one limiting block 7121 is further arranged in the annular housing 712, and the limiting block 7121 is engaged with the rotating disk 715;
[0068] The stopping structure 72 further includes two outer wheels 722. Each of the outer wheels 722 is rotatably sleeved on the annular housing 712. A end cover 723 is provided on one of the outer wheels 722. The end cover 723 is arranged facing the opening 717 of the annular housing 712 to contact or separate from the rotating disk 715. The button 724 is covered on the end cover 723.
[0069] It should be noted that the wheel disk structure 71 further includes a first sleeve 711 sleeved on the second end 52 of the force arm 5. The annular housing 712 is integrated on the first sleeve 711. An installation post 713 is arranged inside the annular housing 712. The installation post 713 is set as a cylinder. Preferably, the installation post 713 is arranged along the axial direction of the annular housing 712 and is located at the middle position of the annular housing 712. The annular elastic sheet 7142 is concentrically arranged with the annular housing 712 and is located outside the installation post 713. A rotating disk 715 is movably sleeved on the installation post 713. Specifically, the rotating disk 715 can move up and down along the axial direction of the installation post 713. The limiting block 7121 is a block in a hook shape. Preferably, a plurality of the limiting blocks 7121 are arranged at intervals on the inner wall of the annular housing 712. A plurality of grooves 7151 are correspondingly arranged on the periphery of the rotating disk 715 to be clamped with each of the limiting blocks 7121, so that the rotating disk 715 rotates together with the annular housing 712. Preferably, three elastic sheets 7141 extend from the annular elastic sheet 7142 towards the rotating disk 715 to elastically press on the rotating disk 715 respectively to squeeze the rotating disk 715 towards the opening 717 of the annular housing 712. The stopping structure 72 includes a second sleeve 721 sleeved on the installation end 62 of the grounding support rod 6, and two outer wheels 722 integrated on the second sleeve 721. The two outer wheels 722 are arranged in a hollow annular shape to be rotatably sleeved on both ends of the annular housing 712 respectively. An end cover 723 is integrally provided on one of the outer wheels 722. A button 724 is provided on the end cover 723, and a cover body with the same shape as the button 724 is provided on the other outer wheel 722 to be more beautiful.
[0070] In an embodiment of the present application, in combination with Figure 5 as shown, it further includes a cantilever 4, a second rotating assembly 7, and a connecting rod 44. The cantilever 4 includes a third end 42 and a fourth end 41. The third end 42 is connected to the first end 51 of the force arm 5 through the second rotating assembly 7. The fourth end 41 is connected to the lamp head 10 through the connecting rod 44.
[0071] It should be noted that the third end 42 of the cantilever 4 is connected to the first end 51 of the force arm 5 through the second rotating assembly 7. The second rotating assembly 7 has the same structure as the first rotating assembly 8. Thus, the cantilever 4 can also adjust the angle between it and the force arm 5, and further can adjust the position and direction of the lamp head 10 in a multi-stage manner, making the adjustment range of the lamp head 10 larger and more convenient.
[0072] In an embodiment of the present application, as shown in Figure 5 a pin seat 43 is provided on the fourth end 41 of the cantilever 4. The connecting rod 44 includes a fifth end 441 and a sixth end 442. The fifth end 441 is inserted into the pin seat 43. A handle 45 is also provided. The handle 45 penetrates through the fifth end 441 of the connecting rod 44 and the pin seat 43 to rotationally adjust the relative angle between the connecting rod 44 and the pin seat 43.
[0073] It should be noted that the sixth end 442 of the connecting rod 44 is vertically connected to the lamp head 10. A pin seat 43 is provided on the fourth end 41 of the cantilever 4. An opening is provided on the fifth end 441 of the connecting rod 44, and this end is inserted into the pin seat 43. At this time, the handle 45 penetrates through the pin seat 43 and the opening. Thus, rotating the handle 45 can adjust the relative angle between the connecting rod 44 and the cantilever 4, that is, can adjust the angle of the lamp head 10 relative to the cantilever 4, and further realize the adjustment of the illumination angle of the lamp head 10.
[0074] In an embodiment of the present application, as shown in Figure 1 it further includes a universal wheel base 9. The universal wheel base 9 is provided on the supporting end 61 of the grounding support rod 6. A plurality of universal wheels 91 are provided on the universal wheel base 9 for sliding relative to the ground.
[0075] It should be noted that a universal wheel base 9 is also provided. The universal wheel base 9 is provided with a plurality of universal wheels 91 facing the ground, so that on the basis of grounding support, it can slide. Thus, the user can slide and displace the fill light by dragging it, further increasing the convenience of the fill light.
[0076] In an embodiment of the present application, as shown in Figures 6-10 the lamp head 10 includes:
[0077] a mounting seat 1, connected to the sixth end 442 of the connecting rod 44;
[0078] a first lamp socket 2, including a first connection end 21 and a first free end 22,
[0079] The second lamp holder 3 includes a second connection end 31 and a second free end 32. The first connection end 21 and the second connection end 31 are rotatably arranged on the mounting base 1, for rotating the first lamp holder 2 and the second lamp holder 3 from a first state to a second state;
[0080] The first state is a state where the first lamp holder 2 and the second lamp holder 3 are opened at 180 degrees, and the second state is a state where the first lamp holder 2 and the second lamp holder 3 are opened at an acute angle or arranged side by side.
[0081] It should be noted that the supplementary light includes a first lamp holder 2 and a second lamp holder 3. The first lamp holder 2 and the second lamp holder 3 are rotatably arranged on the mounting base 1. The first lamp holder 2 and the second lamp holder 3 are both arranged in an arc shape, so that they can be opened at 180 degrees and then spliced to form a semi-circular arc shape, forming a common lighting shape. It can be understood that the angle between the first lamp holder 2 and the second lamp holder 3 can also be rotated and adjusted to an acute angle or a state of being side by side at 0 degrees. When the first lamp holder 2 and the second lamp holder 3 approach each other, since the lighting area gradually decreases, the lighting brightness increases, so it is suitable for use scenarios that require higher lighting brightness and a smaller lighting angle, and can be rotated and folded for easy transportation during transportation.
[0082] In addition, the shapes of the first lamp holder 2 and the second lamp holder 3 can also be set according to lighting requirements, such as being set as a long strip without curvature, etc. The rotational settings of the first lamp holder 2 and the second lamp holder 3 can both achieve the above beneficial effects.
[0083] In an embodiment of the present application, in combination with Figure 6 and Figure 7 As shown, the first lamp holder 2 and the second lamp holder 3 are both arranged in an arc-shaped strip structure, and the first lamp holder 2 and the second lamp holder 3 have the same radius of curvature, so as to be symmetrically arranged on the same side of the mounting base 1. When in the first state, the first lamp holder 2 and the second lamp holder 3 are spliced to form an arc shape.
[0084] It should be noted that, preferably, the first lamp holder 2 and the second lamp holder 3 are both arranged in an arc-shaped strip structure with the same radius of curvature, and the first lamp holder 2 and the second lamp holder 3 are symmetrically and rotatably installed on the same side of the mounting base 1. Thus, when the first lamp holder 2 and the second lamp holder 3 are arranged at 180 degrees, they can be spliced to form an arc shape to conform to the shape of the lamp head 10 used in the beauty industry. And preferably, the first connection end 21 and the second connection end 31 are arranged adjacent to each other to ensure that the brightness at the splicing part is not affected.
[0085] In an embodiment of the present application, in combination with Figure 8 andFigure 9 As shown
[0086] Shaft assemblies 24 are provided on both the first connection end 21 and the second connection end 31, and two groove assemblies 12 are respectively provided on the mounting base 1 corresponding to each of the shaft assemblies 24;
[0087] The shaft assembly 24 includes a rotating shaft 241 and at least two guiding shafts 242;
[0088] The groove assembly 12 includes a rotating groove 121 and at least two arc-shaped guiding grooves 122 arranged around the rotating groove 121. The rotating shaft 241 is rotatably arranged in the rotating groove 121, and each of the guiding shafts 242 is respectively inserted into each of the guiding grooves 122 to rotate along each of the guiding grooves 122;
[0089] At least two fasteners 13 are further provided. Each of the fasteners 13 passes through the notch 1221 of each of the guiding grooves 122 and is assembled in each of the guiding shafts 242. The diameter of the head 131 of each of the fasteners 13 is greater than the width of the notch 1221 of the guiding groove 122 to rest on the guiding groove 122.
[0090] It should be noted that the first connection end 21 and the second connection end 31 are rotatably arranged by means of the shaft assembly 24 cooperating with the groove assembly 12 on the mounting base 1. By providing the shaft assembly 24 and the groove assembly 12, the connection relationship between the first lamp holder 2, the second lamp holder 3 and the mounting base 1 can be accommodated within the mounting base 1, making it more unified and aesthetically pleasing from the outside. The rotating shaft 241 and each of the guiding shafts 242 are both arranged in a circular tube shape, so as to reduce the weight of the first lamp holder 2 and the second lamp holder 3. The diameter of the rotating shaft 241 is larger than the diameter of each of the guiding shafts 242. The rotating shaft 241 is arranged at the middle position, and each of the guiding shafts 242 is arranged around the rotating shaft 241. Correspondingly, the rotating groove 121 is arranged in a circular shape, and each of the guiding grooves 122 is arranged in an arc shape and surrounds the rotating groove 121. The rotating shaft 241 is inserted into the rotating groove 121 for self-rotation, and each of the guiding shafts 242 is respectively inserted into each of the guiding grooves 122. Thus, while the rotating shaft 241 rotates, each of the guiding shafts 242 will also move along each of the guiding grooves 122 in cooperation. Preferably, the fastener 13 includes a screw and a gasket. The rod portion of the screw passes through the notch 1221 of the guiding groove 122 and is implanted into the guiding shaft 242. A gasket is provided between the head 131 of the screw and the notch 1221 of the guiding groove 122. The diameter of the gasket and / or the diameter of the head 131 of the screw is larger than the width of the notch 1221, and the tightness of the screw is set to connect the guiding shaft 242 but not fix the guiding shaft 242. Thus, the guiding shaft 242 can be prevented from dislocating through the fastener 13, and further the connection between the first lamp holder 2, the second lamp holder 3 and the mounting base 1 can be maintained.
[0091] In an embodiment of the present application, as shown in Figure 10 the first lamp holder 2 and the second lamp holder 3 both include a lamp head base 25 extending in an arc shape, a light-emitting source 26, and a lamp shade 27. The lamp head base 25 includes a bottom wall 252 and two side walls 251. The bottom wall 252 and the two side walls 251 on both sides enclose an open receiving cavity 253. The lamp shade 27 is snap-fitted at the opening 2531 of the open receiving cavity 253. The light-emitting source 26 is accommodated in the open receiving cavity 253 for forming a light-emitting surface 271 on the lamp shade 27.
[0092] It should be noted that the light source 26 can be set as a lamp board or a lamp strip and arranged along the extending direction of the lamp socket 25. The bottom wall 252 and the two side walls 251 form the open receiving cavity 253. The light source 26 is arranged in the open receiving cavity 253. The surrounding arrangement of the bottom wall 252 and the two side walls 251 can make the light of the light source 26 converge and then emit light through the lamp cover 27 to improve the lighting effect. The lamp cover 27 is arranged at the opening 2531 of the open receiving cavity 253, transmitting light while protecting the light source 26 to form the light-emitting surface 271. The light-emitting surface 271 faces away from the mounting base 1, that is, the arcs of the first lamp socket 2 and the second lamp socket 3 are bent downward, so as to be suitable for a user to lie flat for beauty treatment or eyelash extension and illuminate the operation area downward.
[0093] In an embodiment of the present application, in combination with Figure 9 and Figure 10 as shown, protective sleeves 23 are respectively sleeved on the opposite ends 33 of the two lamp sockets 25. One side 232 of the protective sleeve 23 facing the lamp cover 27 is open. The lamp cover 27 extends and abuts against the side wall 231 of the protective sleeve 23. The correspondingly arranged side walls 231 of the two protective sleeves 23 are both set as arc walls for enabling the two protective sleeves 23 to rotate relatively.
[0094] It should be noted that the shaft assembly 24 is arranged on the protective sleeve 23 and thus connected to the mounting base 1 through the protective sleeve 23. The bottom surface of the protective sleeve 23 is open, so that the lamp cover 27 extends and abuts against the side wall 231 of the protective sleeve 23, making the light-emitting surface 271 formed as much as possible at the middle positions of the first lamp socket 2 and the second lamp socket 3 to reduce the dark area at the splicing position and maintain the lighting effect. The correspondingly arranged side walls 271 of the two protective sleeves 23 are both set as arc walls, so as to be able to reserve a rotation space to cooperate with the relative rotation of the first lamp socket 2 and the second lamp socket 3.
[0095] It should be noted that the above technical features continue to be combined with each other to form various embodiments not listed above, which are all regarded as the scope recorded in the description of the present application; and for those of ordinary skill in the art, improvements or transformations can be made according to the above description, and all these improvements and transformations should fall within the protection scope of the appended claims of the present application.
Claims
1. A supplementary light, characterized in that, Comprising: a lamp cap (10); a lever arm (5) including a first end (51) and a second end (52), the first end (51) being connected to the lamp cap (10); a grounding support rod (6) for grounding support, the grounding support rod (6) including a mounting end (62) and a support end (61); a first rotating assembly (8) including a rotatably connected disk structure (71) and a stop structure (72), the disk structure (71) being disposed on the second end (52) of the lever arm (5), and the stop structure (72) being disposed on the mounting end (62) of the grounding support rod (6); a button (724) is disposed on the stop structure (72), when the button (724) is pressed, under the self-weight of the lamp cap (10), the disk structure (71) rotates relative to the stop structure (72), and when the button (724) is released, locking is performed.
2. The fill light according to claim 1, wherein the disk structure (71) includes an elastic member (714) and a rotating disk (715); the stop structure (72) includes an end cap (723), at least one tooth (716) is disposed on the rotating disk (715), a plurality of tooth grooves (7232) are annularly arranged on the end cap (723), the tooth (716) is selectively inserted into each of the tooth grooves (7232) for stopping, and the elastic member (714) is elastically pressed against the rotating disk (715) for keeping the rotating disk (715) in contact with the end cap (723), pressing the button (724) will push the rotating disk (715) away from the end cap (723) to release the tooth (716) so that the rotating disk (715) and the end cap (723) rotate relative to each other; the back (7161) of the tooth (716) is gradually lifted and inclined along the clockwise direction, the inclination angle of each tooth groove (7232) is complementary to the back (7161) of the tooth, when the rotating disk (715) rotates clockwise, the tooth (716) abuts against the tooth groove (7232) for stopping, and when the rotating disk (715) rotates counterclockwise, the tooth (716) presses against the elastic member (714) in the reverse direction for rotation.
3. The fill light according to claim 2, wherein the rotating disk (715) includes a first surface (7152) and a second surface (7153) disposed opposite to each other, a plurality of teeth (716) are annularly arranged on the first surface (7152), and the elastic member (714) is elastically pressed against the second surface (7153); The end cap (723) includes a third surface (7233) and a fourth surface (7231) which are oppositely arranged. Each of the tooth grooves (7232) is arranged on the third surface (7233) of the end cap (723). The button (724) is arranged towards the fourth surface (7231) of the end cap (723). At least one protrusion (7241) is arranged on the button (724). The protrusion (7241) penetrates through the end cap (723) and abuts against the rotating disk (715). When the button (724) is pressed, the protrusion (7241) presses the rotating disk (715) to separate from the end cap (723).
4. The supplementary light according to claim 3, wherein The roulette structure (71) further includes an annular housing (712) and a mounting post (713). The annular housing (712) is provided with an accommodation cavity and an opening (717) at one end. The mounting post (713) is accommodated in the annular housing (712) and extends along the axial direction of the annular housing (712). The rotating disk (715) is movably sleeved on the mounting post (713). The elastic member (714) is arranged as an annular elastic sheet (7142), and at least one elastic sheet (7141) extends from the annular elastic sheet (7142) to abut against the rotating disk (715). At least one limiting block (7121) is further arranged in the annular housing (712), and the limiting block (7121) is engaged with the rotating disk (715). The stopping structure (72) further includes two outer wheels (722). Each of the outer wheels (722) is rotatably sleeved on the annular housing (712). The end cap (723) is arranged on one of the outer wheels (722). The end cap (723) is arranged towards the opening (717) of the annular housing (712) to contact or separate from the rotating disk (715). The button (724) covers the end cap (723).
5. The supplementary light according to claim 1, characterized in that, It further includes a cantilever (4), a second rotating assembly (7) and a connecting rod (44). The cantilever (4) includes a third end (42) and a fourth end (41). The third end (42) is connected to the first end (51) of the force arm (5) through the second rotating assembly (7). The fourth end (41) is connected to the lamp head (10) through the connecting rod (44).
6. The supplementary light according to claim 5, wherein, A pin seat (43) is arranged on the fourth end (41) of the cantilever (4). The connecting rod (44) includes a fifth end (441) and a sixth end (442). The fifth end (441) is inserted into the pin seat (43). A handle (45) is further arranged. The handle (45) penetrates through the fifth end (441) of the connecting rod (44) and the pin seat (43) to rotationally adjust the relative angle between the connecting rod (44) and the pin seat (43).
7. The supplementary light according to claim 1, characterized in that, It further includes a universal wheel base (9), the universal wheel base (9) is arranged on the supporting end (61) of the grounding support rod (6), and a plurality of universal wheels (91) are arranged on the universal wheel base (9) for sliding relative to the ground.
8. The supplementary light according to claim 5, characterized in that, The lamp head (10) includes: A mounting base (1) connected to the sixth end (442) of the connecting rod (44); A first lamp socket (2) including a first connecting end (21) and a first free end (22), A second lamp socket (3) including a second connecting end (31) and a second free end (32), the first connecting end (21) and the second connecting end (31) are rotatably arranged on the mounting base (1) for rotating the first lamp socket (2) and the second lamp socket (3) from a first state to a second state; The first state is a state where the first lamp socket (2) and the second lamp socket (3) are opened at 180 degrees, and the second state is a state where the first lamp socket (2) and the second lamp socket (3) are opened at an acute angle or arranged side by side.
9. The supplementary light according to claim 8, wherein Both the first lamp socket (2) and the second lamp socket (3) are arranged in an arc-shaped strip structure, and the first lamp socket (2) and the second lamp socket (3) have the same radius of curvature, and are symmetrically arranged on the same side of the mounting base (1). When in the first state, the first lamp socket (2) and the second lamp socket (3) are combined to form an arc shape.
10. The supplementary light according to claim 8, wherein, Axis components (24) are arranged on both the first connecting end (21) and the second connecting end (31), and two groove components (12) are respectively arranged on the mounting base (1) corresponding to each of the axis components (24); The axis component (24) includes a rotating shaft (241) and at least two guiding shafts (242); The groove component (12) includes a rotating groove (121) and at least two arc-shaped guiding grooves (122) arranged around the rotating groove (121). The rotating shaft (241) is rotatably arranged in the rotating groove (121), and each of the guiding shafts (242) is respectively inserted into each of the guiding grooves (122) to rotate along each of the guiding grooves (122); At least two fasteners (13) are further provided. Each of the fasteners (13) passes through the notch (1221) of each of the guiding grooves (122) and is assembled in each of the guiding shafts (242). The diameter of the head (131) of each of the fasteners (13) is greater than the width of the notch (1221) of the guiding groove (122) to be supported on the guiding groove (122).