An illuminating lamp

CN224814878UActive Publication Date: 2026-09-29ZHEJIANG LIAOJIA INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202522559758.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-12-02
Publication Date
2026-09-29
Estimated Expiration
2035-12-02

AI Technical Summary

Technical Problem

当需要更换损坏的照明件时,维护人员必须拆卸整个灯罩或使用专用工具进行操作,过程繁琐且耗时

Benefits of technology

(1)通过设置底座、灯柱和照明组件,其中照明组件包括灯罩、快换组件和多个滑动设置的照明件,实现了照明灯的整体结构优化和模块化设计。这种设计使得多个照明件能够通过滑动方式便捷地安装和拆卸,无需拆卸整个灯罩或使用额外工具,大大简化了更换过程,提高了维护效率。同时,快换组件的引入降低了操作难度,即使非专业人员也能轻松完成更换,减少了因操作不当导致的损坏风险。此外,滑动连接方式确保了照明件的稳定性和对齐精度,避免了传统固定方式中常见的松动或接触不良问题,从而提升了照明灯的可靠性和使用寿命。整体结构紧凑,适用于多种照明场景,满足了用户对快速维护和高效操作的需求;

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Abstract

The utility model provides a kind of lighting lamp, comprising: base;Lamp post, lamp post connects base;Illumination component, illumination component connects lamp post, illumination component further includes: lamp shade, lamp shade is equipped with accommodating space;Quick-change component, quick-change component is equipped in accommodating space;Multiple illuminating pieces, multiple illuminating pieces sliding are equipped in quick-change component.The utility model improves the replacement efficiency of lighting lamp.
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Description

Technical Field

[0001] This utility model relates to the field of lighting technology, and more specifically, to a lighting lamp. Background Technology

[0002] In existing technologies, lighting fixtures typically employ a fixed structure, with lighting components such as bulbs or LED modules directly mounted inside the lampshade and secured by screws or clips. When a damaged lighting component needs replacement, maintenance personnel must disassemble the entire lampshade or use specialized tools, a cumbersome and time-consuming process. For example, some lighting fixtures require unscrewing multiple screws to open the lampshade before manually replacing the lighting component. This design not only increases maintenance costs but also easily leads to lampshade breakage or insecure installation, affecting lighting performance and safety. Furthermore, for lighting fixtures with multiple lighting components, the replacement process is even more complex because the confined space restricts operation, easily causing damage or misinstallation of components. Therefore, existing lighting fixtures have significant shortcomings in terms of replacement and disassembly. Users need a lighting fixture structure that allows for quick and convenient replacement of lighting components to reduce maintenance difficulty and improve efficiency. Utility Model Content

[0003] Therefore, this utility model provides a lighting lamp that improves the replacement efficiency of lighting fixtures.

[0004] To solve the above problems, this utility model provides a lighting lamp, including: a base; a lamp post connected to the base; a lighting component connected to the lamp post, the lighting component further including: a lampshade with a receiving space inside; a quick-change component disposed in the receiving space; and multiple lighting elements slidably disposed on the quick-change component.

[0005] Compared to existing technologies, this technical solution achieves the following advantages: By setting up a base, lamp post, and lighting components, including a lampshade, quick-change components, and multiple sliding lighting elements, the overall structure of the lighting fixture is optimized and modularized. This design allows multiple lighting elements to be easily installed and removed via sliding, without disassembling the entire lampshade or using additional tools, greatly simplifying the replacement process and improving maintenance efficiency. Simultaneously, the introduction of quick-change components reduces operational difficulty, allowing even non-professionals to easily complete replacements, reducing the risk of damage due to improper operation. Furthermore, the sliding connection method ensures the stability and alignment accuracy of the lighting components, avoiding the loosening or poor contact problems common in traditional fixing methods, thereby improving the reliability and lifespan of the lighting fixture. The overall structure is compact, suitable for various lighting scenarios, and meets users' needs for rapid maintenance and efficient operation.

[0006] In one embodiment of this utility model, the lighting assembly further includes: a quick-change assembly disposed on one side of the receiving space, and a replacement space provided between the quick-change assembly and the other side of the receiving space; the replacement space allows the lighting element to be moved out of and into the quick-change assembly.

[0007] Compared to existing technologies, the technical benefits of this solution are as follows: By placing the quick-change assembly on one side of the receiving space and leaving replacement space on the other side, a dedicated operating area is created, allowing lighting components to be easily moved in and out of the quick-change assembly. This design optimizes the replacement process, allowing users to operate directly within the replacement space, reducing operating steps and time.

[0008] In one embodiment of this utility model, the lighting assembly further includes: a first mating part is provided on the side wall of the lampshade corresponding to the quick-change assembly; the first mating part is used to mate with the quick-change assembly, so that multiple lighting assemblies can slide between the first mating part and the quick-change assembly.

[0009] Compared with existing technologies, the technical effects achieved by this solution are as follows: By setting a first mating part on the side wall of the lampshade to cooperate with the quick-change assembly, multiple lighting components can slide stably between the first mating part and the quick-change assembly, achieving precise positioning and reliable fixation of the lighting components. The first mating part, acting as a guide structure, ensures that the lighting components remain aligned during sliding, preventing displacement or detachment, thereby improving the accuracy and consistency of installation. This mating method also simplifies the assembly process, reduces the need for manual adjustments, and lowers production and usage costs. Simultaneously, the synergistic effect of the first mating part and the quick-change assembly enhances the rigidity of the overall structure, preventing loosening due to vibration or external forces, and improving the stability and durability of the lighting fixture in harsh environments.

[0010] In one embodiment of the present invention, the lighting assembly further includes: each lighting element has an insert portion at both ends, the insert portion being used to engage with the first mating portion and the second mating portion provided in the quick-change assembly.

[0011] Compared to existing technologies, this technical solution achieves the following advantages: By providing embedded portions at both ends of each lighting element, which engage with the first mating portion and the second mating portion of the quick-change assembly, rapid locking and releasing of the lighting elements is achieved. This embedded design provides a robust connection, preventing accidental displacement of the lighting elements during use, while allowing users to replace them with a simple push-pull operation, without the need for tools. Furthermore, this mating method facilitates standardized production, reduces manufacturing complexity, and improves the maintainability and interchangeability of the lighting fixtures, meeting the needs of various application scenarios.

[0012] In one embodiment of this utility model, the quick-change component further includes a first part and a second part, and the first part and the second part are provided with a second mating part; and a wire-retaining groove is provided between the first part and the second part.

[0013] Compared with existing technologies, the technical advantages achieved by this solution are as follows: By dividing the quick-change assembly into a first part and a second part, and setting a second mating part on each part, while simultaneously incorporating a wire channel between the first and second parts, orderly management and protection of the lighting component's connecting wires are achieved. The wire channel design prevents wires from being squeezed or tangled during replacement, reducing the risk of line damage and short circuits, and improving safety. The separate structure of the first and second parts allows for more flexible installation and adjustment, accommodating lighting components of different sizes, while the second mating part ensures stable sliding and fixation of the lighting components. This layout also optimizes the use of internal space, making the overall structure more compact, facilitating maintenance and cleaning, and extending the lifespan of the lighting fixture.

[0014] In one embodiment of this utility model, two first mating parts are provided corresponding to the first part and the second part; the embedding parts are embedded and mated with the two first mating parts and the second mating parts provided on the first part and the second part, respectively.

[0015] Compared with existing technologies, the technical effects achieved by this solution are as follows: By setting two first mating parts corresponding to the first and second parts of the quick-change assembly, and by having the embedded parts at both ends of the lighting element mate with these mating parts, bidirectional stable support and uniform force distribution are achieved for the lighting element. This symmetrical design improves the installation accuracy and balance of the lighting element, preventing tilting or failure caused by loosening on one side.

[0016] In one embodiment of this utility model, the lighting lamp further includes: a cover body, which is flipped onto the lampshade and has a first locking part; the lampshade has a second locking part; wherein, when the cover body is placed on the lampshade, the first locking part and the second locking part are engaged.

[0017] Compared to existing technologies, this technical solution achieves the following advantages: By incorporating a flip-up cover to connect the lampshade, and utilizing the interlocking of the first and second locking parts, the lampshade can be quickly opened and closed, simplifying the maintenance process. The flip-up cover design allows users to easily access internal components without completely removing the cover, reducing the risk of lost or damaged parts. The interlocking of the first and second locking parts ensures a secure lock when the cover is closed, preventing accidental opening due to external force or vibration, thus improving safety and stability. This structure also optimizes the appearance design, making the lighting fixture more aesthetically pleasing and practical, while reducing the complexity of assembly and maintenance.

[0018] In one embodiment of this utility model, the lighting lamp further includes: a first locking part having a protrusion; and a second locking part having a through hole, wherein the protrusion is used to elastically engage with the through hole, so that the protrusion protrudes from the lampshade.

[0019] Compared with existing technologies, the technical advantages achieved by this solution are as follows: By providing a protrusion in the first locking part and a through hole in the second locking part, the protrusion and through hole are elastically engaged, and the protrusion protrudes from the lampshade, providing an intuitive and reliable locking mechanism. The elastic engagement design allows users to unlock or lock the cover with a slight press, making operation simple and quick without tools. The protrusion protruding from the lampshade facilitates user identification and operation, improving ease of use.

[0020] In one embodiment of this utility model, the lighting lamp further includes a heat dissipation grille, which is disposed on the lamp cover.

[0021] Compared to existing technologies, the technical benefits of this solution are as follows: By incorporating heat dissipation grilles into the lampshade, the heat dissipation performance of the lighting fixture is effectively improved, preventing shortened lifespan or performance degradation of lighting components due to high temperatures. The heat dissipation grilles increase the surface area, promote airflow, accelerate heat dissipation, and ensure stable operation of the lighting fixture during extended periods of use. This design also reduces heat accumulation in internal components, lowering the risk of failure while maintaining the structural integrity and aesthetics of the lampshade. Furthermore, the introduction of heat dissipation grilles extends the overall lifespan of the lighting fixture, improves energy efficiency, and is suitable for high-power or intensive lighting scenarios.

[0022] By adopting the technical solution of this utility model, the following technical effects can be achieved: (1) By setting up a base, lamp post, and lighting components, including a lampshade, quick-change components, and multiple sliding lighting parts, the overall structure of the lighting fixture is optimized and modularized. This design allows multiple lighting parts to be easily installed and removed by sliding, without disassembling the entire lampshade or using additional tools, greatly simplifying the replacement process and improving maintenance efficiency. At the same time, the introduction of quick-change components reduces the difficulty of operation, allowing even non-professionals to easily complete the replacement, reducing the risk of damage due to improper operation. In addition, the sliding connection method ensures the stability and alignment accuracy of the lighting parts, avoiding the loosening or poor contact problems common in traditional fixing methods, thereby improving the reliability and service life of the lighting fixture. The overall structure is compact, suitable for various lighting scenarios, and meets users' needs for quick maintenance and efficient operation; (2) By placing the quick-change assembly on one side of the receiving space and leaving replacement space on the other side, a dedicated operating area is created, allowing the lighting components to be easily moved in and out of the quick-change assembly. This design optimizes the replacement process, allowing users to operate directly within the replacement space, reducing operating steps and time. Attached Figure Description

[0023] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings to be used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort. Figure 1 This is a schematic diagram of the structure of a lighting lamp provided in an embodiment of the present utility model; Figure 2 One of the partial structural schematic diagrams of a lighting lamp provided for an embodiment of this utility model; Figure 3 A second partial structural schematic diagram of a lighting lamp provided for an embodiment of this utility model; Figure 4 A third partial structural schematic diagram of a lighting lamp provided for an embodiment of this utility model; Figure 5 This is a structural schematic diagram of the lighting component.

[0024] Explanation of reference numerals in the attached figures: 100. Lighting lamp; 110. Base; 120. Lamp post; 130. Lighting assembly; 131. Lampshade; 132. Receiving space; 133. Quick-change assembly; 134. Lighting element; 135. Replacement space; 136. First mating part; 137. Not required; 138a. First part; 138b. Second part; 138c. Wiring groove; 139. Second mating part; 140. Cover; 150. First locking part; 160. Second locking part; 170. Protrusion; 180. Through hole; 190. Heat dissipation grille. Detailed Implementation

[0025] To make the above-mentioned objectives, features, and advantages of this utility model more apparent and understandable, the technical solutions in the embodiments of this utility model are clearly and completely described. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0026] [First Embodiment] See Figures 1-5This utility model provides a lighting lamp 100, including: a base 110; a lamp post 120 connected to the base 110; a lighting component 130 connected to the lamp post 120, the lighting component 130 further including: a lampshade 131, the lampshade 131 having a receiving space 132; a quick-change component 133 disposed in the receiving space 132; and a plurality of lighting elements 134 slidably disposed on the quick-change component 133.

[0027] Specifically, in actual installation, first confirm the number of lighting components 134 to be placed in the lampshade 131. Depending on the actual situation, one, two, three, or other cases can be selected. Under the premise of multiple lighting components 134, the size of the lampshade 131 and the setting of the quick-change assembly 133 are preset according to the number of lighting components 134, that is, they are set up as a whole when the lampshade 131 is formed.

[0028] Preferably, the quick-change component 133 can also be configured as a detachable component, that is, an installation position is provided inside the lamp cover 131, and the quick-change component 133 is fixed by screws or other means.

[0029] Specifically, after determining the lighting component 134, the lighting component 134 is moved sequentially from the replacement space 135 between the quick-change assembly 133 and the first mating part 136. That is, the lighting component 134 is embedded and mated with the first mating part 136 and the second mating part 139 provided on the quick-change assembly 133, so that the lighting component 134 can slide directly between the quick-change assembly 133 and the first mating part 136. The length of the first mating part 136 is greater than that of the second mating part 139, that is, the first mating part 136 extends into the replacement space 135, so that the embedded part at one end of the lighting component 134 can be embedded into the first mating part 136 for positioning, and then the embedded part at the other end can be mated with the second mating part 139. At this time, the circuit connection wire of the lighting component 134 is located in the wire groove 138c. The subsequent lighting components 134 can be installed in the same way. After the circuit connection wire is integrated, it is connected to the outside or underground for power supply through the space reserved in the lamp post 120. The specific connection method is the same as the existing street light connection method.

[0030] Similarly, when disassembling the lighting component 134, simply move the lighting component 134 to the replacement space 135 and then remove it.

[0031] Preferably, by setting up a base 110, a lamp post 120, and a lighting assembly 130, wherein the lighting assembly 130 includes a lampshade 131, a quick-change assembly 133, and multiple slidingly arranged lighting elements 134, the overall structure of the lighting lamp 100 is optimized and modularly designed. This design allows multiple lighting elements 134 to be easily installed and removed by sliding, without disassembling the entire lampshade 131 or using additional tools, greatly simplifying the replacement process and improving maintenance efficiency. At the same time, the introduction of the quick-change assembly 133 reduces the difficulty of operation, allowing even non-professionals to easily complete the replacement, reducing the risk of damage due to improper operation. Furthermore, the sliding connection method ensures the stability and alignment accuracy of the lighting elements 134, avoiding the loosening or poor contact problems common in traditional fixing methods, thereby improving the reliability and service life of the lighting lamp 100. The overall structure is compact, suitable for various lighting scenarios, and meets users' needs for quick maintenance and efficient operation.

[0032] Specifically, the lighting assembly 130 also includes: a quick-change assembly 133 disposed on one side of the receiving space 132, and a replacement space 135 provided between the quick-change assembly 133 and the other side of the receiving space 132; the replacement space 135 allows the lighting element 134 to be moved out and into the quick-change assembly 133.

[0033] Preferably, by placing the quick-change assembly 133 on one side of the receiving space 132 and leaving a replacement space 135 on the other side, a dedicated operating area is created, allowing the lighting element 134 to be easily moved in and out of the quick-change assembly 133. This design optimizes the replacement process, allowing users to operate directly within the replacement space 135, reducing operating steps and time.

[0034] Specifically, the lighting assembly 130 also includes: a first mating part 136 is provided on the side wall of the lampshade 131 corresponding to the quick-change assembly 133; the first mating part 136 is used to mate with the quick-change assembly 133, so that multiple lighting assemblies 130 can slide between the first mating part 136 and the quick-change assembly 133.

[0035] Preferably, a first mating part 136 is provided on the side wall of the lampshade 131 to engage with the quick-change assembly 133, allowing multiple lighting components 134 to slide stably between the first mating part 136 and the quick-change assembly 133, achieving precise positioning and reliable fixation of the lighting components 134. The first mating part 136 acts as a guide structure, ensuring that the lighting components 134 remain aligned during sliding, preventing misalignment or detachment, thereby improving the accuracy and consistency of installation. This mating method also simplifies the assembly process, reduces the need for manual adjustments, and lowers production and usage costs. Simultaneously, the synergistic effect of the first mating part 136 and the quick-change assembly 133 enhances the rigidity of the overall structure, preventing loosening due to vibration or external forces, and improving the stability and durability of the lighting lamp 100 in harsh environments.

[0036] Specifically, the lighting assembly 130 further includes: each lighting element 134 has an insert portion at both ends, the insert portion being used to engage with the first mating portion 136 and the second mating portion 139 provided in the quick-change assembly 133.

[0037] Preferably, by providing inserts at both ends of each lighting element 134, which engage with the first mating part 136 and the second mating part 139 of the quick-change assembly 133, the lighting element 134 can be quickly locked and released. This insert design provides a secure connection, preventing accidental displacement of the lighting element 134 during use, while allowing users to replace it with a simple push-pull operation without the need for tools. Furthermore, this mating method facilitates standardized production, reduces manufacturing complexity, and improves the maintainability and interchangeability of the lighting lamp 100, meeting the needs of various application scenarios.

[0038] Specifically, the quick-change component 133 also includes a first part 138a and a second part 138b, and the first part 138a and the second part 138b are provided with a second mating part 139; and a wire retention groove 138c is provided between the first part 138a and the second part 138b.

[0039] Preferably, by dividing the quick-change assembly 133 into a first part 138a and a second part 138b, and providing a second mating part 139 thereon, while providing a wire guide groove 138c between the first part 138a and the second part 138b, orderly management and protection of the connecting wires of the lighting component 134 are achieved. The design of the wire guide groove 138c avoids the wires being squeezed or tangled during replacement, reducing the risk of line damage and short circuits, and improving safety. The split structure of the first part 138a and the second part 138b allows for more flexible installation and adjustment to accommodate lighting components 134 of different sizes, while the second mating part 139 ensures the stable sliding and fixing of the lighting component 134. This layout also optimizes the use of internal space, making the overall structure more compact, facilitating maintenance and cleaning, and extending the service life of the lighting lamp 100.

[0040] Specifically, there are two first mating parts 136 corresponding to the first part 138a and the second part 138b; the embedding parts are respectively embedded and mated with the two first mating parts 136 and the second mating parts 139 provided on the first part 138a and the second part 138b.

[0041] Preferably, by providing two first mating parts 136 corresponding to the first part 138a and the second part 138b of the quick-change assembly 133 respectively, and by having the embedded parts at both ends of the lighting element 134 engage with these mating parts, bidirectional stable support and uniform force distribution of the lighting element 134 are achieved. This symmetrical design improves the installation accuracy and balance of the lighting element 134, preventing tilting or failure caused by loosening on one side.

[0042] Specifically, the lighting lamp 100 also includes: a cover 140, which is flipped onto the lampshade 131 and has a first locking part 150; the lampshade 131 has a second locking part 160; wherein, when the cover 140 covers the lampshade 131, the first locking part 150 and the second locking part 160 are engaged.

[0043] Preferably, by setting the cover 140 to flip and connect to the lampshade 131, and utilizing the interlocking engagement of the first locking part 150 and the second locking part 160, the lampshade 131 can be quickly opened and closed, simplifying the maintenance process. The flip design of the cover 140 allows users to easily access internal components without completely removing the cover 140, reducing the risk of lost or damaged parts. The interlocking engagement of the first locking part 150 and the second locking part 160 ensures that the cover 140 is securely locked when closed, preventing accidental opening due to external force or vibration, and improving safety and stability. This structure also optimizes the appearance design, making the lighting lamp 100 more aesthetically pleasing and practical, while reducing the complexity of assembly and maintenance.

[0044] Specifically, the lighting lamp 100 also includes: a first locking part 150 with a protrusion 170; a second locking part 160 with a through hole 180, the protrusion 170 being elastically engaged with the through hole 180, so that the protrusion 170 protrudes from the lamp cover 131.

[0045] Preferably, by providing a protrusion 170 in the first locking part 150 and a through hole 180 in the second locking part 160, the protrusion 170 and the through hole 180 are elastically engaged, and the protrusion 170 is exposed above the lampshade 131, providing an intuitive and reliable locking mechanism. The elastic engagement design allows users to unlock or lock the cover 140 with a slight press, making the operation simple and quick, without tools. The protrusion 170 exposing the lampshade 131 facilitates user identification and operation, improving ease of use.

[0046] Specifically, the lighting lamp 100 also includes a heat dissipation grille 190, which is disposed on the lamp cover 131.

[0047] Preferably, by providing a heat dissipation grille 190 in the lampshade 131, the heat dissipation performance of the lighting lamp 100 is effectively improved, preventing the lighting component 134 from experiencing a shortened lifespan or performance degradation due to high temperatures. The heat dissipation grille 190 increases the surface area, promotes air circulation, accelerates heat dissipation, and ensures the stable operation of the lighting lamp 100 during long-term operation. This design also reduces heat accumulation in internal components, lowers the risk of failure, and maintains the structural integrity and aesthetics of the lampshade 131. Furthermore, the introduction of the heat dissipation grille 190 extends the overall lifespan of the lighting lamp 100, improves energy efficiency, and is suitable for high-power or dense lighting scenarios.

[0048] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although this utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this utility model.

Claims

1. A lighting lamp, characterized in that, include: Base (110); A lamp post (120) is connected to the base (110); A lighting assembly (130) connected to the lamp post (120), the lighting assembly (130) further comprising: A lampshade (131) having an accommodating space (132) inside; A quick-change assembly (133) is disposed in the receiving space (132); Multiple lighting elements (134) are slidably disposed on the quick-change assembly (133).

2. The lighting lamp according to claim 1, characterized in that, The lighting assembly (130) also includes: The quick-change assembly (133) is located on one side of the receiving space (132), and a replacement space (135) is provided between the quick-change assembly (133) and the other side of the receiving space (132); The replacement space (135) allows the lighting element (134) to be moved in and out of the quick-change assembly (133).

3. The lighting lamp according to claim 1, characterized in that, The lighting assembly (130) also includes: The lampshade (131) is provided with a first mating part (136) on the side wall corresponding to the quick-change assembly (133); The first mating part (136) is used to cooperate with the quick-change assembly (133) so that the plurality of lighting components (130) can slide between the first mating part (136) and the quick-change assembly (133).

4. The lighting lamp according to claim 3, characterized in that, The lighting assembly (130) also includes: Each lighting element (134) has an insert portion at both ends, the insert portion being used to engage with the first mating portion (136) and the second mating portion (139) provided in the quick-change assembly (133).

5. The lighting lamp according to claim 4, characterized in that, The quick-change assembly (133) further includes a first part (138a) and a second part (138b), and the first part (138a) and the second part (138b) are provided with a second mating part (139); Furthermore, a wire-retaining groove (138c) is provided between the first part (138a) and the second part (138b).

6. The lighting lamp according to claim 5, characterized in that, The first mating part (136) is provided in two parts corresponding to the first part (138a) and the second part (138b); The embedded portion is respectively embedded and engaged with two first mating portions (136) and second mating portions (139) provided on the first portion (138a) and the second portion (138b).

7. The lighting lamp according to claim 1, characterized in that, The lighting fixture also includes: Cover (140), the cover (140) is flipped onto the lampshade (131), the cover (140) is provided with a first locking part (150); The lampshade (131) is provided with a second locking part (160); When the cover (140) is placed over the lampshade (131), the first locking part (150) and the second locking part (160) are engaged.

8. The lighting lamp according to claim 7, characterized in that, The lighting fixture also includes: The first locking part (150) is provided with a protrusion (170); The second locking part (160) is provided with a through hole (180), and the protrusion (170) is used to elastically engage with the through hole (180) so that the protrusion (170) protrudes from the lampshade (131).

9. The lighting lamp according to claim 1, characterized in that, The lighting fixture also includes: A heat dissipation grille (190) is disposed on the lampshade (131).