A fan lamp
Patent Information
- Application Number
- CN202522212247.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-17
AI Technical Summary
[0005]本申请提供一种风扇灯,用于解决现有的铁笼内置扇支撑架由于固定在电机盘上,导致包装体积过大,从而增加运输成本,以及其刚性连接在受到冲击时容易造成外观和结构损坏的问题,影响产品的市场竞争力和用户体验
[0016]本申请所提供的一种风扇灯,采用了伸缩式和摇摆式支撑架的结构设计,通过这种优化支撑架的连接方式与结构,实现了产品在包装时的紧凑折叠或缩小,装完成后整体稳固牢靠,且造型美观,显著减少了产品的整体包装体积,从而有效降低了长途运输与仓储环节的成本;这种创新性的安装结构能够有效缓冲和吸收外部冲击能量,避免了刚性连接带来的应力集中问题,从而大幅降低了支撑架及产品主体因碰撞冲击而发生变形或损坏的风险,提高了产品的耐用性和可靠性;同时,这种结构设计简洁合理,对生产设备要求低,装配工序简便,不仅提高了生产效率,还有利于保证产品尺寸的一致性及稳定性,使得产品质量更易于把控。而且,本申请所述结构无需使用复杂昂贵的精密构件,材料成本低廉,加工工艺简单,非常适合规模化量产,具有极高的市场竞争力。因此,本申请兼顾了产品的稳固性与安装的便利性,同时也优化了供应链成本。
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Figure CN224800520U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of fan mounting technology, and in particular to a fan light. Background Technology
[0002] Currently, most of the iron cage built-in fan products on the market use a mounting method where the support frame is directly fixed to the motor plate.
[0003] While this rigid connection structure can ensure support stability, it reveals significant defects in actual production and transportation: On the one hand, because the support frame and motor disk form an integral rigid structure, the overall packaging volume of the product is large, significantly increasing storage space occupation and transportation costs, especially in bulk transportation; on the other hand, when the product is subjected to external impact during transportation or use, the rigid connection support frame lacks buffering capacity, which can easily cause deformation of the support frame itself, and even affect the motor disk and surrounding structures, causing appearance damage or functional damage, affecting the reliability and service life of the product.
[0004] There is no effective design solution to the above problems in the existing technology. Therefore, there is an urgent need for a new type of support frame installation structure that can effectively reduce the packaging volume and improve the impact resistance of the product while ensuring the support function. Utility Model Content
[0005] This application provides a fan light that addresses the problems of existing iron cage built-in fan support frames being too bulky due to their fixed position on the motor plate, thus increasing transportation costs, and the rigid connection of these frames being prone to damage to appearance and structure when subjected to impact, thereby affecting the product's market competitiveness and user experience.
[0006] In a first aspect, this application provides a fan light, comprising: a fan assembly, a light-emitting component, a mounting base, a housing, and at least two support frames. At least one first end of the support frame is pivotally connected to the mounting base via a pivoting assembly. The second end of the support frame is detachably connected to the housing, allowing the housing to be connected to the mounting base. The fan assembly is located within the space surrounding the housing and disposed below the mounting base. The mounting base includes a mounting portion and an electrical portion. The mounting portion extends outward from the outer periphery of the top of the electrical portion. The mounting portion has a plurality of mounting holes penetrating the mounting portion. The first end of each support frame is pivotally connected to one of the mounting holes, thereby enabling adjustment of the mounting angle between the support frame and the mounting base.
[0007] In one embodiment of this application, one of the support frames includes a first sleeve, a second sleeve, and a spring pin; a first end of the first sleeve is detachably connected to the mounting portion, and a first end of the second sleeve is engaged with a second end of the first sleeve via the spring pin; the second end of the second sleeve is detachably connected to the housing of the fan light; a first positioning hole is provided on the outer wall of the first sleeve, and a second positioning hole is provided on the outer wall of the second sleeve; the positions of the first positioning hole and the second positioning hole correspond to each other; the spring pin includes an elastic portion and a positioning pin; the positioning pin is fixedly disposed on the top end of the elastic portion.
[0008] In one embodiment of this application, the inner diameter of the first sleeve is greater than or equal to the outer diameter of the second sleeve; the spring pin is disposed inside the second sleeve, and the positioning pin is located at the second positioning hole. When the second sleeve slides to a preset position, the elastic part pops out the positioning pin, so that the positioning pin passes through the second positioning hole and the first positioning hole in sequence, thereby adjusting the installation length between the support frame and the mounting base.
[0009] In one embodiment of this application, the outer diameter of the first sleeve is less than or equal to the inner diameter of the second sleeve; the spring pin is disposed inside the first sleeve, and the positioning pin passes through the first positioning hole. When the first sleeve and the second sleeve slide relative to each other to a preset position, the second positioning hole of the second sleeve aligns with the first positioning hole of the first sleeve, and the elastic part pops out the positioning pin, so that the positioning pin passes through the first positioning hole and the second positioning hole in sequence, thereby adjusting the installation length between the support frame and the mounting base.
[0010] In one embodiment of this application, the cross-sections of the first sleeve and the second sleeve may be square or circular.
[0011] In one embodiment of this application, the pivot assembly includes: a connecting sleeve, a round pin, a wide washer, a nut, and a bolt; the support frame is connected to the mounting portion of the mounting base via the pivot assembly; the round pin passes sequentially through the mounting holes on the connecting sleeve and the mounting portion, with the top end of the round pin protruding from the mounting hole, and is fixed and limited by the wide washer, nut, and bolt, thereby enabling adjustment of the rotation angle between the support frame and the mounting base.
[0012] In one embodiment of this application, the round pin includes: a pin body and a boss; the boss extends outward from the outer periphery of the bottom of the pin body, and the diameter of the boss is larger than the inner diameter of the connecting sleeve; the round pin is mutually limited by the boss and the connecting sleeve, and the pin body of the round pin and the mounting hole are fixed to the wide washer by the nut, so that the support frame can be detachably connected to the mounting base.
[0013] In one embodiment of this application, the outer shell includes at least two cage shells; a first connecting portion is provided on the cage shell, and a second connecting portion is provided on the vertical arm of the support frame; the first connecting portion is fixedly connected to the second connecting portion, so that the cage shell and the mounting base are connected through the support frame.
[0014] In one embodiment of this application, the support frame may adopt a C-shaped, strip-shaped, or L-shaped structure.
[0015] As described above, the fan light of this application has the following beneficial effects:
[0016] This application provides a fan light that employs a telescopic and swing-type support frame structure. This optimized connection method and structure of the support frame allows for compact folding or shrinking of the product during packaging. After assembly, the entire unit is stable and reliable, with an aesthetically pleasing design, significantly reducing the overall packaging volume and thus effectively lowering costs during long-distance transportation and warehousing. This innovative installation structure effectively buffers and absorbs external impact energy, avoiding stress concentration problems caused by rigid connections. This significantly reduces the risk of deformation or damage to the support frame and the product body due to collisions and impacts, improving product durability and reliability. Simultaneously, this structural design is simple and reasonable, requiring minimal production equipment and simplifying assembly processes. This not only improves production efficiency but also helps ensure product dimensional consistency and stability, making product quality easier to control. Furthermore, the structure described in this application does not require complex and expensive precision components, resulting in low material costs and simple processing, making it ideal for mass production and giving it high market competitiveness. Therefore, this application balances product stability and ease of installation while also optimizing supply chain costs. Attached Figure Description
[0017] Figure 1A The image shown is a top view of the three-dimensional structure of the fan light described in this application embodiment.
[0018] Figure 1B The image shown is a perspective view of the three-dimensional structure of the fan light described in this application embodiment.
[0019] Figure 2 The image shown is an exploded view of the fan light described in an embodiment of this application.
[0020] Figure 3A The image shown is a bottom view of the fan light support frame and mounting base connected as described in this application embodiment.
[0021] Figure 3B The image shown is a side view of the fan light support frame connected to the mounting base as described in an embodiment of this application.
[0022] Figure 4 The image shown is an exploded view of the support frame for the fan light described in an embodiment of this application.
[0023] Figure 5 The diagram shown is a structural schematic of the first sleeve and the second sleeve described in an embodiment of this application.
[0024] Explanation of icon numbers
[0025] Serial Number Name
[0026] 1. Fan light
[0027] 100 Fan Assembly
[0028] 200 light-emitting components
[0029] 300 Mounting Base
[0030] 310 Installation Department
[0031] 320 Electrical Department
[0032] 330 mounting holes
[0033] 400 casing
[0034] 410 Cage Shell
[0035] 500 support frame
[0036] The first end of the 500A support frame
[0037] Serial Number Name
[0038] The second end of the 500B support frame
[0039] 500S crossarm
[0040] 500P vertical arm
[0041] 510 First Sleeve
[0042] 510A First end of the first sleeve
[0043] 510B First Sleeve Second End
[0044] 511 First positioning hole
[0045] 520 Second Sleeve
[0046] 520A Second Sleeve First End
[0047] 520B Second Sleeve Second End
[0048] 521 Second positioning hole
[0049] 530 spring pin
[0050] 531 Elastic part
[0051] 532 Positioning Pin
[0052] 2 Pivot Components
[0053] 540 Nut
[0054] 550 nut
[0055] 560 Wide Pad
[0056] 570 round pin
[0057] 571 Pin body
[0058] 572 convex platform
[0059] 590 Connecting Sleeve
[0060] 600 First connecting part
[0061] 700 Second connecting part
[0062] 710 Fixing Plate
[0063] 800 threaded hole Detailed Implementation
[0064] The present application will be further described below with reference to the accompanying drawings, but the scope of protection of the present application is not limited to the following description.
[0065] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. This application can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, unless otherwise specified, the following embodiments and features in the embodiments can be combined with each other.
[0066] It should be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this application. Therefore, the drawings only show the components related to this application and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.
[0067] The following embodiments of this application provide a fan light that solves the problems of existing iron cage built-in fan support frames being fixed on the motor plate, resulting in excessive packaging volume, thus increasing transportation costs, and the rigid connection being prone to appearance and structural damage when subjected to impact.
[0068] This application provides a fan light that employs a telescopic and swing-type support frame structure design. This optimized connection method and structure of the support frame allows for compact folding or shrinking of the product during packaging. After packaging, the overall structure is stable and reliable, with an aesthetically pleasing appearance, significantly reducing the overall packaging volume and thus effectively lowering costs in long-distance transportation and warehousing. The cage shell adopts a split structure (two or more pieces), resulting in a small packaging volume, strong impact resistance, resistance to deformation, and ease of manufacturing, with convenient processing, easy size control, and low cost. The support frame is movably mounted on the mounting base. The mounting section allows the support frame to swing freely left and right in the horizontal direction, effectively mitigating some of the impact when the fan light is subjected to shocks during transportation or installation, and reducing transportation costs. Simultaneously, the support frame structure incorporates two sleeves fixed together by spring pins, allowing for telescopic movement. When slid to its maximum length, the spring pins secure the two telescopic rod holes for mutual fixation. This support frame structure allows for adjustable telescopic lengths; when in use, it extends to its maximum length for convenient and quick installation of components such as the outer cover; when transported, it shortens to its minimum length to reduce packaging volume and save on transportation costs.
[0069] The following will describe in detail, with reference to the accompanying drawings, the principle and implementation of a fan light according to this embodiment, so that those skilled in the art can understand the fan light of this embodiment without creative effort.
[0070] Please see Figure 1A , Figure 1B , Figure 2 , Figure 3A , Figure 3B , Figure 4 and Figure 5 The fan light 1 includes: a fan assembly 100, a light-emitting component 200, a mounting base 300, a housing 400, and at least two support frames 500. The mounting base 300 is disposed above the center of the housing 400; the fan assembly 100 is located within the space surrounded by the housing 400 and disposed below the mounting base 300; the light-emitting component 200 is mounted on the inner side of the support frame 500.
[0071] In one embodiment, the first end 500A of the support frame is detachably connected to the mounting base 300, and the second end 500B of the support frame is detachably connected to the housing 400, so that the housing 400 is connected to the mounting base 300.
[0072] The mounting base 300 includes a mounting portion 310 and an electrical portion 320. The mounting portion 310 extends outward from the outer periphery of the top of the electrical portion 320, and the mounting portion 310 is provided with a plurality of mounting holes 330 penetrating through it. The first end 500A of the support frame is pivotally connected to the mounting holes 330, thereby allowing adjustment of the mounting angle between the support frame 500 and the mounting base 300. The support frame 500 may have a C-shaped, strip-shaped, or L-shaped structure.
[0073] Furthermore, the preferred structure of the support frame 500 is as follows: Figures 2 to 4 As shown, the support frame 500 includes a horizontal arm 500S and a vertical arm 500P. The horizontal arm 500S is connected to the vertical arm 500P, and the support frame 500 is generally L-shaped. The free end of the horizontal arm 500S is provided with a pivot assembly 2. The pivot assembly 2 includes a connecting sleeve 590, a round pin 570, a washer 560, a nut 550, and a bolt 540. The connecting sleeve 590 is fixedly connected to the free end of the horizontal arm 500S. The connecting sleeve 590 has a hollow through hole, and the center line of the through hole is perpendicular to the axis of the horizontal arm 500S. The pin 570 includes a pin body 571 and a boss 572. The outer surface of the pin body 571 is provided with an external thread (not shown in the figure). The boss 572 extends outward from the bottom outer periphery of the pin body 571. The diameter of the boss 572 is larger than the inner diameter of the connecting sleeve 590. When the pivot assembly 2 is connected to the mounting part 310, the boss 572 abuts against the lower surface of the connecting sleeve 590 in the circumferential direction, thereby ensuring the reliability of the connection between the pivot assembly 2 and the mounting part 310. The nut 550 and the screw 540 both have internal threads, and both the nut 550 and the screw 540 can be threadedly connected to the pin body 571.
[0074] In other words, the support frame is connected to the mounting portion of the mounting base via the pivot assembly; the round pin passes sequentially through the connecting sleeve and the mounting hole on the mounting portion, with the tip of the round pin protruding from the mounting hole and fixed and limited by the wide washer, nut, and bolt, thereby allowing adjustment of the rotation angle between the support frame and the mounting base. The round pin is mutually limited by the boss and the connecting sleeve, and the pin body and the mounting hole are fixed by the nut and the wide washer, so that the support frame can be detachably connected to the mounting base.
[0075] The first end 500A of the support frame is detachably connected to the mounting base 300. Specifically, the support frame 500 is detachably connected to the mounting base 300 via the pivot assembly 2. During installation, first align the through hole of the connecting sleeve 590 with the mounting hole 330 on the mounting part 310. Then, the pin body 571 of the round pin 570 passes through the through hole of the connecting sleeve 590 and the mounting hole 330 from bottom to top and protrudes from the upper surface of the mounting hole 330. Next, the washer 560 is fitted onto the protruding part of the pin body 571. Then, the nut 550 and the screw cap 540 are screwed onto the protruding part in sequence, and the nut is brought close to the washer.
[0076] This design achieves both a detachable connection and a pivotal connection between the support frame and the mounting unit. When transporting the fan light, the support frame and mounting unit can be disassembled, and related components can be packaged separately, thereby reducing packaging volume, increasing the quantity transported at one time, and lowering transportation costs. During the installation or use of the fan light, if it is impacted due to improper operation or accidental contact, the crossarm of the support frame can rotate to a certain extent relative to the mounting unit. This rotation can mitigate some of the impact. Compared to existing technologies, the support frame is less prone to deformation and will not easily cause cosmetic or functional damage to the chassis and surrounding structures, thus improving the reliability and extending the service life of the fan light.
[0077] It should be noted that the degree of tightening of the nut on the pin body in the axial direction should meet the following conditions: ensuring a certain degree of tightness between the pivot assembly and the mounting part, while ensuring that there are small gaps between the washer and the upper surface of the mounting hole 330, and between the upper surface of the connecting sleeve and the lower surface of the mounting hole, so that the cross arm can rotate to a certain extent relative to the mounting part through the pivot assembly. The aforementioned degree of tightness and the dimensions of the small gaps are not limited in this application. Those skilled in the art can determine them based on conventional installation experience and the actual environment of the fan light, and can adjust the degree of tightening of the nut and bolt on the pin body as appropriate according to the actual situation.
[0078] Furthermore, a preferred structure for the outer shell 400 is as follows: the outer shell 400 adopts a split structure. Specifically, the outer shell 400 includes two or more cage shells 410, each cage shell 410 having a first connecting portion 600 on both sides. The two or more cage shells 410 are connected end-to-end to form a closed outer shell 400. The split structure of the outer shell 400 results in a small packaging volume, simple manufacturing process, convenient processing, easy size control, and low price.
[0079] Furthermore, each of the vertical arms 500P of the support frame 500 is provided with a second connecting part 700, which fixes two adjacent first connecting parts 600 on any adjacent cage housing 410 to the same second connecting part 700, so that the cage housing 410 and the mounting base 300 are connected through the support frame 500, thereby completing the initial assembly of the outer shell.
[0080] Preferably, the vertical arm 500P is further provided with a threaded hole 800 located outside the edge of the second connecting part 700, and the outer shell 400 also includes a fixing piece 710, with fixing holes at both ends of the fixing piece 710. After the initial assembly of the outer shell is completed, the fixing piece 710 is placed on the connection position of the first connecting part and the second connecting part, so that the fixing holes at both ends of the fixing piece 710 are aligned with the threaded holes 800 on the vertical arm 500P. Bolts are screwed into the fixing holes and threaded holes to fix the fixing piece 710 at the connection position, thereby completing the final assembly of the outer shell. At this time, the outer shell presents a hollow closed structure. This setting can make the connection between the first connecting part 600 and the second connecting part 700 more secure, and can also make the appearance of the connection position smooth and flat. Furthermore, the connection structure design of the outer shell 400 with the above-described assembly form is convenient to install, has a good user experience, and is stable and reliable after installation, and has an aesthetically pleasing appearance.
[0081] Preferably, the number of support frames is at least two, and the number of cage shells 410 and fixing plates 710 are the same as the number of support frames. As a preferred design, the cage shell is arc-shaped, and the resulting outer shell has a circular cross-section; alternatively, the cage shell can also be planar and linear, and the resulting outer shell has a rectangular cross-section. Further, the first connecting part is a bent sheet, and the second connecting part is a narrow, elongated slot adapted to the bent sheet, capable of accommodating two adjacent bent sheets. In addition, the first and second connecting parts can adopt any form of detachable structure well known to those skilled in the art.
[0082] Please continue reading. Figure 4 and Figure 5 .
[0083] In one embodiment, the cross arm 500S of the support frame 500 includes a first sleeve 510, a second sleeve 520, and a spring pin 530.
[0084] The first sleeve 510 and the second sleeve 520 are coaxially sleeved and can slide relative to each other along the axial direction. The first sleeve 510 or the second sleeve 520 is provided with a spring pin 530 to limit their sliding stroke. The spring pin 530 includes an elastic part 531 and a positioning pin 532; the positioning pin 532 is fixedly disposed at the top end of the elastic part 531. When the first sleeve 510 and the second sleeve 520 slide relative to each other to a preset position, they can be fixed relative to each other by the spring pin 530. Furthermore, the first end 500A of the first sleeve is detachably connected to the mounting part 310, and the first end 520A of the second sleeve is engaged with the second end 510B of the first sleeve via the spring pin 530; the second end 520B of the second sleeve is detachably connected to the housing 400 of the fan light 1.
[0085] Furthermore, the outer wall of the first sleeve 510 is provided with a first positioning hole 511, and the first positioning hole 511 is located at the second end 510B of the first sleeve; the outer wall of the second sleeve 520 is provided with a second positioning hole 521, and the second positioning hole 521 is located at the first end 520A of the second sleeve. When the first sleeve 510 or the second sleeve 520 slides to a preset position, the positions of the first positioning hole 511 and the second positioning hole 521 correspond to each other.
[0086] The cross-sections of the first sleeve 510 and the second sleeve 520 can be square or circular.
[0087] Furthermore, the dimensional relationship between the first sleeve 510 and the second sleeve 520 includes two different cases: the inner diameter of the first sleeve 510 is greater than or equal to the outer diameter of the second sleeve 520; or, the outer diameter of the first sleeve 510 is less than or equal to the inner diameter of the second sleeve 520.
[0088] When the inner diameter of the first sleeve 510 is greater than or equal to the outer diameter of the second sleeve 520, the second sleeve 520 is inserted into the first sleeve 510, the spring pin 530 is disposed in the second sleeve 520, and the positioning pin 532 is located at the second positioning hole 521. When the second sleeve 520 slides to a preset position, the elastic part 531 pops out the positioning pin 532, so that the positioning pin 532 passes through the second positioning hole 521 and the first positioning hole 511 in sequence, thereby fixing the position of the first sleeve 510 and the second sleeve 520 and preventing them from sliding relative to each other further, thereby achieving the purpose of adjusting the installation length between the support frame 500 and the mounting base 300.
[0089] When the outer diameter of the first sleeve 510 is less than or equal to the inner diameter of the second sleeve 520, the first sleeve 510 is inserted into the second sleeve. The spring pin 530 is disposed inside the first sleeve 510 and is in a compressed state. The positioning pin 532 passes through the first positioning hole 511. Due to the constraint of the outer wall of the second sleeve 520, the top end of the positioning pin 532 forms a point contact with the outer wall of the second sleeve. When the first sleeve 510 and the second sleeve 520 slide relative to each other to a preset position, the second positioning pin of the second sleeve 520... When the positioning hole 521 is aligned with the first positioning hole 511 of the first sleeve 510, the positioning pin 532 is no longer restricted by the outer wall of the second sleeve 520. The elastic part 531 pops out the positioning pin 532, so that the positioning pin 532 passes through the first positioning hole 511 and the second positioning hole 521 in sequence, thereby fixing the position of the first sleeve 510 and the second sleeve 520 and preventing them from sliding relative to each other further. This allows the installation length between the support frame 500 and the mounting base 300 to be adjusted.
[0090] In other words, as the first sleeve 510 or the second sleeve 520 slides, the second positioning hole 521 of the second sleeve 520 will gradually move to align with the first positioning hole 511 of the first sleeve 510. When aligned, the elastic part 531 of the spring pin 530 returns to its original shape, causing the positioning pin 532 to be pushed out and engaged in the first positioning hole 511 and the second positioning hole 521. The spring pin 530 is disposed inside the first sleeve 510 or the second sleeve 520 and moves synchronously with the first sleeve 510 or the second sleeve 520. That is, the first sleeve 510 and the second sleeve 520 of the cross arm can slide telescopically, and after the first sleeve 510 and the second sleeve 520 slide to their longest relative length, the spring pin 530 fixes the two positioning holes to achieve mutual fixation. The first sleeve 510 and the second sleeve 520 are both hollow tubes, and the inner cavity of the tube can be used for cables or wires connected to the light-emitting component 200 to pass through.
[0091] Therefore, the aforementioned structure of the crossarm allows for adjustment of its length. In use, the crossarm can be extended to its maximum length for convenient and quick installation of components such as the housing; during transportation, it can be shortened to its minimum length to reduce packaging volume and save on shipping costs. The support frame can be made of metal or plastic to ensure its strength.
[0092] Therefore, the combination of the swing and telescopic structures used in this application can reduce the intensity of the impact force generated during transportation and installation, making the fan light less prone to deformation; and the overall stability after installation is strong and the appearance is beautiful; at the same time, it can also reduce the packaging volume during transportation, and it has a buffer compared to rigid connections when receiving impacts, making it less prone to damage.
[0093] In summary, the fan light provided in this application adopts a telescopic and swing-type support frame structure design. This optimized connection method and structure of the support frame allows for compact folding or shrinking of the product during packaging. After assembly, the overall structure is stable and reliable, with an aesthetically pleasing appearance, significantly reducing the overall packaging volume and thus effectively lowering costs in long-distance transportation and warehousing. This innovative installation structure effectively buffers and absorbs external impact energy, avoiding stress concentration problems caused by rigid connections. This significantly reduces the risk of deformation or damage to the support frame and the product body due to collisions and impacts, improving the product's durability and reliability. Simultaneously, this structural design is simple and reasonable, requiring minimal production equipment and simplifying assembly processes. This not only improves production efficiency but also helps ensure the consistency and stability of product dimensions, making product quality easier to control. Moreover, the structure described in this application does not require complex and expensive precision components, has low material costs, and simple processing technology, making it very suitable for mass production and possessing extremely high market competitiveness.
[0094] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this application. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this application should still be covered by the claims of this application.
Claims
1. A fan light, comprising: A fan assembly, a light-emitting component, a mounting base, a housing, and at least two support brackets, wherein a first end of at least one of the support brackets is pivotally connected to the mounting base via a pivoting assembly, and a second end of the support bracket is detachably connected to the housing so that the housing is connected to the mounting base; the fan assembly is located within a space surrounded by the housing and disposed below the mounting base; characterized in that... The mounting base includes a mounting section and an electrical section; The mounting portion extends outward from the outer periphery of the top of the electrical portion. The mounting portion is provided with a plurality of mounting holes through the mounting portion in the circumferential direction. The first end of the support frame is pivotally connected to the mounting holes, thereby enabling adjustment of the mounting angle between the support frame and the mounting base.
2. The fan light according to claim 1, characterized in that, One of the support frames includes a first sleeve, a second sleeve, and a spring pin; The first end of the first sleeve is detachably connected to the mounting part, and the first end of the second sleeve is engaged with the second end of the first sleeve by the spring pin; the second end of the second sleeve is detachably connected to the housing of the fan light. The outer wall of the first sleeve is provided with a first positioning hole, and the outer wall of the second sleeve is provided with a second positioning hole; the positions of the first positioning hole and the second positioning hole are corresponding. The spring pin includes an elastic part and a positioning pin; the positioning pin is fixedly disposed at the top end of the elastic part.
3. The fan light according to claim 2, characterized in that, The inner diameter of the first sleeve is greater than or equal to the outer diameter of the second sleeve; The spring pin is disposed inside the second sleeve, and the positioning pin is located at the second positioning hole. When the second sleeve slides to the preset position, the elastic part pops out the positioning pin, so that the positioning pin passes through the second positioning hole and the first positioning hole in sequence, thereby adjusting the installation length between the support frame and the mounting base.
4. The fan light according to claim 2, characterized in that, The outer diameter of the first sleeve is less than or equal to the inner diameter of the second sleeve; The spring pin is disposed inside the first sleeve, and the positioning pin passes through the first positioning hole. When the first sleeve and the second sleeve slide relative to each other to a preset position, the second positioning hole of the second sleeve aligns with the first positioning hole of the first sleeve, and the elastic part pops out the positioning pin, so that the positioning pin passes through the first positioning hole and the second positioning hole in sequence, thereby adjusting the installation length between the support frame and the mounting base.
5. The fan light according to claim 2, characterized in that, The cross-sections of the first sleeve and the second sleeve can be square or circular.
6. The fan light according to claim 1, characterized in that, The pivot assembly includes: a connecting sleeve, a round pin, a wide washer, a nut, and a bolt; The support frame is connected to the mounting portion of the mounting base via the pivot assembly; The pin passes through the connecting sleeve and the mounting hole on the mounting part in sequence, and the top end of the pin protrudes from the mounting hole. It is fixed and limited by the wide washer, nut and screw, so that the rotation angle between the support frame and the mounting base can be adjusted.
7. The fan light according to claim 6, characterized in that, The round pin includes: a pin body and a boss; The boss extends outward from the outer periphery of the bottom of the pin body, and the diameter of the boss is larger than the inner diameter of the connecting sleeve. The round pin is mutually limited by the boss and the connecting sleeve. The pin body and the mounting hole of the round pin are fixed to the wide washer by the nut, so that the support frame can be detachably connected to the mounting base.
8. The fan light according to claim 1, characterized in that, The outer casing includes at least two cage-like shells; The cage shell is provided with a first connecting part, and the vertical arm of the support frame is provided with a second connecting part; The first connecting part is fixedly connected to the second connecting part so that the cage shell and the mounting base are connected by the support frame.
9. The fan light according to claim 1, characterized in that, The support frame can adopt a C-shaped, strip-shaped, or L-shaped structure.