High-luminous-efficiency sodium lamp with explosion-proof lamp structure
The design of the explosion-proof lamp structure prevents sodium lamps from exploding due to high temperature and pressure during use, thus solving the safety threat to personnel and facilities posed by sodium lamp explosions and ensuring the stable operation of the lighting system.
Patent Information
- Application Number
- CN202423146658.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Existing sodium lamps, due to their extremely high internal temperature and high-pressure gas content, are prone to shattering over time, affecting the normal operation of the lighting system and posing a safety threat to surrounding personnel and facilities.
The explosion-proof lamp structure includes a mounting block, mounting threads, lamp housing, positive terminal post, negative terminal post, lamp tube, protective sleeve, diffuser, anti-leak rod, annular airbag, extension ring plate, and trigger button. The protective sleeve prevents debris from scattering, the annular airbag seals the diffuser, and the anti-leak rod collects debris, thus eliminating the risk of explosion.
It effectively prevents fragments from scattering everywhere after a light tube explodes, protecting the safety of surrounding personnel and facilities, and ensuring the normal operation of the lighting system.
Smart Images

Figure CN223612366U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to lighting lamps and lanterns technical field especially, relates to a high light efficiency sodium lamp with prevent the structure of lamp body explosion. BACKGROUND
[0002] Sodium lamp is widely used in road lighting, square lighting and many outdoor lighting fields because of its high luminous efficiency, strong fog penetration and other advantages.
[0003] The existing sodium lamp has many problems in the actual use process, the internal temperature of sodium lamp is extremely high when working, and the lamp is filled with high-pressure gas, with the increase of the service time of the lamp, the electrode is aged, the quartz glass shell is impacted by high temperature and the internal gas pressure changes, and other factors interact, which easily causes the dangerous situation of lamp body explosion, not only seriously affects the normal operation of the lighting system, but also may cause safety threat to the surrounding personnel and facilities.
[0004] To solve the above problems, we propose a high light efficiency sodium lamp with prevent the structure of lamp body explosion. UTILITY MODEL CONTENTS
[0005] The utility model discloses a high light efficiency sodium lamp with prevent the structure of lamp body explosion, solve the internal temperature of the existing sodium lamp in the actual use process extremely high, and the lamp is filled with high-pressure gas, with the increase of the service time of the lamp, the dangerous situation of lamp body explosion is easily caused, not only seriously affects the normal operation of the lighting system, but also may cause safety threat to the surrounding personnel and facilities.
[0006] To achieve the above object, the utility model adopts a high light efficiency sodium lamp with prevent the structure of lamp body explosion, including prevent the structure of lamp body explosion, the prevent structure of lamp body explosion includes the mounting block, installs the thread, the lamp house, the positive pole column, the negative pole column, the lamp tube and the protective sleeve, install the thread with the mounting block fixed connection lies in the outer surface of the mounting block, the lamp house with The mounting block fixed connection lies in one side of the mounting block, and the lamp house with Install the thread is vertically arranged, the positive pole column with The lamp house fixed connection lies in the inside one side of the lamp house close to the mounting block, the negative pole column with The lamp house fixed connection lies in the inside one side of the lamp house away from the positive pole column, one end of the lamp tube with The positive pole column detachable connection lies in the one side of the positive pole column away from the lamp house, the other end of the lamp tube with The negative pole column detachable connection lies in the one side of the negative pole column away from the lamp house, and the lamp tube is arranged in The inside of the lamp house, the protective sleeve with The lamp house fixed connection lies in the inside of the lamp house, and the protective sleeve is also arranged on The outer surface of the lamp tube.
[0007] The explosion-proof lamp structure also includes a diffuser, which is fixedly connected to the lamp housing and located inside the lower part of the lamp housing, and is positioned below the protective cover.
[0008] The explosion-proof lamp structure also includes a leak-proof rod, which is detachably connected to the lamp housing and located inside the lamp housing. The leak-proof rod is also located on the outer surface of the protective sleeve and above the diffuser.
[0009] The explosion-proof lamp structure further includes an annular airbag and an extension ring plate. The annular airbag is detachably connected to the lamp housing and is located inside the lamp housing. The annular airbag is disposed on one side inside the diffuser. The extension ring plate is fixedly connected to the annular airbag and is located on the side of the annular airbag away from the lamp housing. The extension ring plate is disposed inside the diffuser.
[0010] The explosion-proof lamp structure also includes a trigger button, which is fixedly connected to the annular airbag and located above the annular airbag. The trigger button is located inside the lamp housing and below the protective cover.
[0011] This utility model discloses a high-efficiency sodium lamp with an explosion-proof structure, comprising an explosion-proof structure including a mounting block, mounting threads, a lamp housing, a positive electrode post, a negative electrode post, a lamp tube, and a protective sleeve. The mounting threads are fixedly connected to the mounting block and located on the outer surface of the mounting block. The lamp housing is fixedly connected to the mounting block and located on one side of the mounting block, with the lamp housing perpendicular to the mounting threads. The positive electrode post is fixedly connected to the lamp housing and located on the inner side of the lamp housing near the mounting block. The negative electrode post is fixedly connected to the lamp housing and located on the inner side of the lamp housing away from the positive electrode post. One end of the lamp tube is detachably connected to the positive electrode post and located on the outer surface of the mounting block. The positive electrode is located on the side away from the lamp housing, and the other end of the lamp tube is detachably connected to the negative electrode and located on the side away from the lamp housing. The lamp tube is located inside the lamp housing, and the protective sleeve is fixedly connected to the lamp housing and located inside the lamp housing. The protective sleeve is also located on the outer surface of the lamp tube. By modifying and replacing the traditional structure with an explosion-proof lamp structure, the problem of existing sodium lamps having extremely high internal temperatures and being filled with high-pressure gas during actual use, which can easily lead to the lamp body exploding as the lamp is used for longer periods, not only seriously affecting the normal operation of the lighting system but also potentially posing a safety threat to surrounding personnel and facilities, is effectively solved. Attached Figure Description
[0012] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0013] Figure 1 is the overall structure of the present application schematic diagram.
[0014] Figure 2 is the overall structure of the present application front view.
[0015] Figure 3 is the overall structure of the present application Figure 2 A-A line structure section view.
[0016] Figure 4 is the overall structure of the present application Figure 2 B-B line structure section view.
[0017] 101-mounting block, 102-mounting thread, 103-lamp shell, 104- light scattering port, 105-positive column, 106-negative column, 107-lamp tube, 108-protective sleeve, 109-leakage prevention rod, 110-annular air bag, 111- extension ring plate, 112-trigger button. DETAILED DESCRIPTION
[0018] The embodiments of the present application will be described in detail below, and the examples of the embodiments are shown in the drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application.
[0019] Please refer to Figures 1-4 , Figure 1 is the overall structure of the present application schematic diagram, Figure 2 is the overall structure of the present application front view, Figure 3 is the overall structure of the present application Figure 2 A-A line structure section view, Figure 4 is the overall structure of the present application Figure 2 B-B line structure section view.
[0020] The utility model provides a high light efficiency sodium lamp with prevent exploding lamp structure, including prevent exploding lamp structure, the prevent exploding lamp structure includes mounting block 101, install screw 102, lamp house 103, positive pole 105, negative pole 106, lamp tube 107, protective sleeve 108, astigmatic mouth 104, prevent leakage rod 109, annular air bag 110, extension ring plate 111 and trigger button 112, the inside temperature of the existing sodium lamp is extremely high in actual use process, and is filled with high pressure gas in the lamp, with the increase of lamp use length, the dangerous condition of easy initiation lamp body burst, not only seriously influence the normal operation of lighting system, can also cause the security threat of surrounding personnel and facilities problem, can understand, the foregoing scheme can when using high light efficiency sodium lamp, will be by staff install mounting block 101 cooperation install screw 102 to specified position, when the explosion of lamp appears when long -time use, first will be by protective sleeve 108 protection, prevent the debris of lamp tube 107 burst scatters everywhere, and when protective sleeve 108 cannot bear the shock wave of explosion and break, since high pressure gas spouts in an instant, will trigger trigger button 112, whereby annular air bag 110 will start, will extend extension ring plate 111, whereby astigmatic mouth 104 is sealed, whereby cooperation prevent leakage rod 109 will collect the debris, prevent the harm of debris to surrounding personnel and facilities, whereby will effectively solved the inside temperature of the existing sodium lamp is extremely high in actual use process, and is filled with high pressure gas in the lamp, with the increase of lamp use length, the dangerous condition of easy initiation lamp body burst, not only seriously influence the normal operation of lighting system, can also cause the security threat of surrounding personnel and facilities problem.
[0021] For this specific embodiment, the mounting thread 102 is fixedly connected with the mounting block 101 and located on the outer surface of the mounting block 101, the lamp shell 103 is fixedly connected with the mounting block 101 and located on one side of the mounting block 101, and the lamp shell 103 is vertically arranged with the mounting thread 102, the positive pole 105 is fixedly connected with the lamp shell 103 and located on the inner side of the lamp shell 103 close to the mounting block 101, the negative pole 106 is fixedly connected with the lamp shell 103 and located on the inner side of the lamp shell 103 away from the positive pole 105, one end of the lamp tube 107 is detachably connected with the positive pole 105 and located on the side of the positive pole 105 away from the lamp shell 103, the other end of the lamp tube 107 is detachably connected with the negative pole 106 and located on the side of the negative pole 106 away from the lamp shell 103, and the lamp tube 107 is arranged in the interior of the lamp shell 103, the protective sleeve 108 is fixedly connected with the lamp shell 103 and located in the interior of the lamp shell 103, and the protective sleeve 108 is also arranged on the outer surface of the lamp tube 107. When using high light efficiency sodium lamp, the mounting block 101 is installed in the specified position by the mounting thread 102, and when the lamp explodes after long time use, the protective sleeve 108 is used to prevent the fragments of the exploded lamp tube 107 from scattering everywhere.
[0022] Among them, the light scattering port 104 is fixedly connected with the lamp shell 103 and located below the interior of the lamp shell 103, and the light scattering port 104 is arranged below the protective sleeve 108. The light scattering port 104 is a component for scattering the light emitted by the lamp tube 107.
[0023] Secondly, the leakage prevention rod 109 is detachably connected with the lamp shell 103 and located in the interior of the lamp shell 103, and the leakage prevention rod 109 is arranged on the outer surface of the protective sleeve 108 and above the light scattering port 104. The annular air bag 110 is activated to extend the extension ring plate 111, thereby sealing the light scattering port 104, and thereby collecting the fragments with the leakage prevention rod 109 to prevent the fragments from causing harm to the surrounding personnel and facilities.
[0024] Meanwhile, the annular air bag 110 is detachably connected with the lamp shell 103 and located inside the lamp shell 103, and the annular air bag 110 is arranged at the inner side of the light scattering port 104, the extension ring plate 111 is fixedly connected with the annular air bag 110 and located at the side of the annular air bag 110 away from the lamp shell 103, and the extension ring plate 111 is arranged inside the light scattering port 104, the annular air bag 110 is started to extend the extension ring plate 111, thereby sealing the light scattering port 104.
[0025] In addition, the trigger button 112 is fixedly connected with the annular air bag 110 and located above the annular air bag 110, and the trigger button 112 is arranged inside the lamp shell 103, and the trigger button 112 is arranged below the protective sleeve 108, when the protective sleeve 108 cannot withstand the shock wave of explosion and is broken, the trigger button 112 is triggered due to the high-pressure gas sprayed out in an instant, thereby the annular air bag 110 is started.
[0026] In use, when the high light efficiency sodium lamp is used, the mounting block 101 is mounted to the specified position by the staff cooperating with the mounting thread 102, when the lamp explodes after long-time use, the protective sleeve 108 is used for protection first to prevent the fragments of the lamp tube 107 scattered everywhere, when the protective sleeve 108 cannot withstand the shock wave of explosion and is broken, the trigger button 112 is triggered due to the high-pressure gas sprayed out in an instant, thereby the annular air bag 110 is started to extend the extension ring plate 111, thereby sealing the light scattering port 104, thereby the fragments are collected by cooperating with the leakage prevention rod 109 to prevent the fragments from causing harm to the surrounding personnel and facilities, thereby effectively solving the problem that the internal temperature of the existing sodium lamp is extremely high in the actual use process, the lamp is filled with high-pressure gas, and the lamp body is easily broken with the increase of the use time of the lamp, which not only seriously affects the normal operation of the lighting system, but also may cause a safety threat to the surrounding personnel and facilities.
[0027] The above only discloses a preferred embodiment of the utility model, of course, cannot limit the scope of the utility model, and the person skilled in the art can understand that all or part of the processes of the above embodiment are implemented, and equivalent changes are made according to the utility model claim, which still belongs to the range covered by the utility model.
Claims
1. A high luminous efficiency sodium lamp with an anti-explosion lamp structure, characterized in that, comprising an anti-explosion lamp structure, the anti-explosion lamp structure comprises a mounting block, a mounting thread, a lamp shell, a positive pole, a negative pole, a lamp tube and a protective sleeve, the mounting thread is fixedly connected with the mounting block and located on the outer surface of the mounting block, the lamp shell is fixedly connected with the mounting block and located on one side of the mounting block, and the lamp shell is vertically arranged with the mounting thread, the positive pole is fixedly connected with the lamp shell and located on the inner side of the lamp shell close to the mounting block, the negative pole is fixedly connected with the lamp shell and located on the inner side of the lamp shell away from the positive pole, one end of the lamp tube is detachably connected with the positive pole and located on the side of the positive pole away from the lamp shell, the other end of the lamp tube is detachably connected with the negative pole and located on the side of the negative pole away from the lamp shell, and the lamp tube is arranged in the interior of the lamp shell, the protective sleeve is fixedly connected with the lamp shell and located in the interior of the lamp shell, and the protective sleeve is further arranged on the outer surface of the lamp tube.
2. The high luminous efficiency sodium lamp with an anti-explosion lamp structure according to claim 1, characterized in that, the anti-explosion lamp structure further comprises a light dispersing port, the light dispersing port is fixedly connected with the lamp shell and located below the interior of the lamp shell, and the light dispersing port is arranged below the protective sleeve.
3. The high luminous efficiency sodium lamp with an anti-explosion lamp structure according to claim 2, characterized in that, the anti-explosion lamp structure further comprises a leakage prevention rod, the leakage prevention rod is detachably connected with the lamp shell and located in the interior of the lamp shell, and the leakage prevention rod is arranged on the outer surface of the protective sleeve and above the light dispersing port.
4. The high luminous efficiency sodium lamp with an anti-explosion lamp structure according to claim 3, characterized in that, the anti-explosion lamp structure further comprises an annular air bag and an extension ring plate, the annular air bag is detachably connected with the lamp shell and located in the interior of the lamp shell, and the annular air bag is arranged on the inner side of the light dispersing port, the extension ring plate is fixedly connected with the annular air bag and located on the side of the annular air bag away from the lamp shell, and the extension ring plate is arranged in the interior of the light dispersing port.
5. The high luminous efficiency sodium lamp with an anti-explosion lamp structure according to claim 4, characterized in that, the anti-explosion lamp structure further comprises a trigger button, the trigger button is fixedly connected with the annular air bag and located above the annular air bag, and the trigger button is arranged in the interior of the lamp shell and below the protective sleeve.