LED explosion-proof lamp tube connecting assembly and explosion-proof lamp
By designing an LED explosion-proof lamp connection component that automatically connects to the power supply, the problem of low efficiency of traditional connection methods is solved, rapid installation and stable power supply are achieved, labor costs and safety risks are reduced, and system stability and maintenance convenience are improved.
Patent Information
- Application Number
- CN202423146215.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-10-14
- Estimated Expiration
- 2034-12-19
AI Technical Summary
The traditional connection method of LED explosion-proof lamps is inefficient and requires frequent manual wiring, which increases the time and cost of installation and maintenance and poses safety risks.
An LED explosion-proof lamp tube connection component is designed, which includes a power supply component and a relatively movable fixing component. At least one end of the fixing component is elastic and automatically connects to the power supply, simplifying the installation process and ensuring the stability of the electrical connection.
It achieves rapid installation and stable power supply of lamps, reduces labor costs and safety risks, simplifies maintenance processes, and improves work efficiency and system stability.
Smart Images

Figure CN223435030U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of explosion-proof lamps, in particular to an LED explosion-proof lamp tube connection component and an explosion-proof lamp. Background Art
[0002] In the field of lighting technology, LED explosion-proof lamps play a vital role in special industrial environments where flammable and explosive materials are present due to their high efficiency, energy saving, and high safety. However, traditional LED explosion-proof lamp connection methods often rely on manual wiring to ensure circuit connectivity, which not only increases the time cost of installation and maintenance but also easily leads to safety risks due to operational errors. The inconvenience of traditional wiring methods is particularly evident in application scenarios where lamps need to be frequently replaced, such as large industrial plants, underground parking lots, and other public facilities. Each lamp replacement requires professionals to perform a series of complex procedures, which reduces work efficiency and increases operating costs.
[0003] Therefore, it is necessary to develop an LED explosion-proof lamp tube connection assembly explosion-proof lamp that can be quickly connected and easy to replace, significantly improving installation efficiency and maintenance convenience. Utility Model Content
[0004] In view of the problem of low efficiency of the connection method of LED explosion-proof lamps in the above-mentioned prior art, the technical solution adopted by the present invention to solve the technical problem is:
[0005] A connection assembly for an LED explosion-proof lamp tube includes a connection assembly body for mounting the lamp tube and supplying power to the lamp tube, wherein the connection assembly body includes a power supply assembly and a fixing assembly that can be relatively displaced with the power supply assembly. The fixing assembly is used to mount the lamp tube and has at least one end that is elastic. When the lamp tube is mounted on the fixing assembly, one end of the fixing assembly moves toward the power supply assembly and connects with the power supply assembly, thereby supplying power to the lamp tube.
[0006] Furthermore, the scheme describes an LED explosion-proof lamp tube connection assembly, wherein the fixing assembly includes a first fixing portion for fixing one end of the lamp tube, and a second fixing portion for fixing the other end of the lamp tube, the power supply assembly is located on the side of the first fixing portion away from the lamp tube, and the second fixing portion is provided with a top pressing portion, the top pressing portion drives the lamp tube to move toward the first fixing portion, and the lamp tube simultaneously drives the first fixing portion to move toward the power supply assembly and connect.
[0007] Furthermore, the scheme describes an LED explosion-proof lamp tube connection assembly, wherein the power supply assembly is provided with a power supply part connected to a power source, and the first fixed part is provided with an elastically arranged contact part. When the first fixed part moves toward the power supply assembly, the contact part contacts the power supply part, so that the connection assembly body supplies power to the lamp tube.
[0008] Further, the LED explosion-proof lamp tube connecting assembly according to the scheme, wherein the first fixing part is further provided with a conductive part for communication with the contact part, and a butt joint part on one side of the lamp tube for connection with the lamp tube, the butt joint part is provided with a butt joint part inner cavity, the conductive part is located in the butt joint part inner cavity, and the conductive part and the inner wall of the butt joint part inner cavity form a first insertion hole for insertion of the electrode of the lamp tube.
[0009] Further, the LED explosion-proof lamp tube connecting assembly according to the scheme, wherein the first fixing part and the power supply assembly are connected through an elastic connection mode, and the connecting assembly main body further comprises a reset assembly fixed between the first fixing part and the power supply assembly.
[0010] Further, the LED explosion-proof lamp tube connecting assembly according to the scheme, wherein the second fixing part is further provided with a fixing part main body for mounting the top pressing part, the top pressing part is elastically connected with the fixing part main body, and the top pressing part is provided with a second insertion hole for insertion of the lamp tube.
[0011] Further, the LED explosion-proof lamp tube connecting assembly according to the scheme, wherein the first fixing part and the second fixing part on one side of the lamp tube respectively extend a limiting end, and the limiting end is used for limiting the direction of the lamp tube.
[0012] Further, the LED explosion-proof lamp tube connecting assembly according to the scheme, wherein the limiting end is provided with a plurality of dismounting holes for dismounting the lamp tube.
[0013] Further, the LED explosion-proof lamp tube connecting assembly according to the scheme, wherein the first fixing part and the power supply assembly are connected through an elastic connection mode, and the connecting assembly main body further comprises a reset assembly fixed between the first fixing part and the power supply assembly.
[0014] Further, the LED explosion-proof lamp tube connecting assembly according to the scheme, wherein the first fixing part and the power supply assembly are connected through an elastic connection mode, and the connecting assembly main body further comprises a reset assembly fixed between the first fixing part and the power supply assembly.
[0015] The beneficial effects of the utility model are as follows:
[0016] The utility model provides a power supply component and a fixing component that can be relatively displaced with the power supply component in the connecting component, so that when the lamp tube is installed, at least one end of the fixing component automatically moves toward the power supply component and connects to the power supply, thereby quickly powering the lamp tube. This arrangement not only simplifies the installation process of the LED explosion-proof lamp tube, avoids the tedious process of manual wiring, thereby improving work efficiency and reducing labor costs, but also effectively reduces the safety risks caused by operational errors; in addition, at least one end of the fixing component has an elastic effect, ensuring that when the lamp tube is placed, the fixing component can move toward the power supply component and contact it to establish a circuit. At the same time, this arrangement also enables the fixing component to automatically return to its original position after the lamp tube is removed, thereby simplifying the maintenance process and ensuring that the best electrical connection state can be achieved for each installation.
[0017] The present invention will be further described below with reference to the accompanying drawings and specific implementation methods. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic diagram of the appearance of an LED explosion-proof lamp tube connection component of the present utility model.
[0019] Figure 2 This is a partial schematic diagram of the connecting component body of an LED explosion-proof lamp tube connecting component of the present invention.
[0020] Figure 3 This is a partial cross-sectional schematic diagram of the connecting component body of an LED explosion-proof lamp tube connecting component of the present invention.
[0021] Figure 4 This is a schematic diagram of the appearance of an LED explosion-proof lamp tube connection component of the present utility model.
[0022] Figure 5 This is a schematic diagram of a partial explosion of the connecting component body of an LED explosion-proof lamp tube connecting component of the present invention.
[0023] Figure 6 This is a schematic diagram of the first fixing part and power supply assembly of an LED explosion-proof lamp tube connection assembly of the present invention.
[0024] Figure 7 This is a schematic diagram of the explosion of the first fixing part and the power supply component of an LED explosion-proof lamp tube connection assembly of the present invention.
[0025] Figure 8 This is a schematic diagram of the appearance of the first fixing part of an LED explosion-proof lamp tube connection assembly of the present invention.
[0026] Figure 9 This is an enlarged schematic diagram of the first fixing portion I of an LED explosion-proof lamp tube connection assembly of the present invention.
[0027] Figure 10 This is a cross-sectional schematic diagram of a first fixing portion and a power supply assembly of an LED explosion-proof lamp tube connection assembly of the present invention.
[0028] Figure 11 This is a partial schematic diagram of the connecting component body of an LED explosion-proof lamp tube connecting component of the present invention.
[0029] Figure 12 This is a schematic diagram of the appearance of the second fixing part of an LED explosion-proof lamp tube connection assembly of the present invention. DETAILED DESCRIPTION
[0030] The following describes the embodiments of the present invention in detail with reference to the accompanying drawings.
[0031] like Figure 1-12 The LED explosion-proof lamp tube connection assembly shown includes a connection assembly body 1 for installing the lamp tube and supplying power to the lamp tube, wherein the connection assembly body 1 includes a power supply assembly 11 and a fixing assembly 12 that can be relatively displaced with the power supply assembly 11. The fixing assembly 12 is used to install the lamp tube and has at least one end that is elastic. When the lamp tube is installed on the fixing assembly 12, one end of the fixing assembly 12 moves toward the power supply assembly 11 and connects with the power supply assembly 11, thereby supplying power to the lamp tube.
[0032] The present invention provides a power supply component 11 and a fixing component 12 that can be relatively displaced with the power supply component 11 in the connecting component, so that when the lamp tube is installed, at least one end of the fixing component 12 automatically moves toward the power supply component 11 and connects to the power supply, thereby quickly powering the lamp tube. This arrangement not only simplifies the installation process of the LED explosion-proof lamp tube, avoids the tedious process of manual wiring, thereby improving work efficiency and reducing labor costs, but also effectively reduces the safety risks caused by operational errors; in addition, at least one end of the fixing component 12 has an elastic effect, ensuring that when the lamp tube is placed, the fixing component 12 can move toward the power supply component 11 and contact it to establish a circuit. At the same time, this arrangement also enables the fixing component 12 to automatically return to its initial position after the lamp tube is removed, thereby simplifying the maintenance process and ensuring that the best electrical connection state can be achieved for each installation.
[0033] Specifically, the present invention provides a power supply component 11 and a fixing component 12 that is elastically connected to the power supply component 11 in the connecting component body 1, so that at least one end of the fixing component 12 can be relatively displaced with the power supply component 11. When the lamp tube is installed on the fixing component 12, one end of the lamp tube will be connected to one end of the fixing component 12, and will automatically push the fixing component 12 to move toward and contact the power supply component 11, ultimately achieving electrical connection, ensuring that the lamp tube can quickly obtain power supply. At the same time, the other end of the lamp tube will be installed at the other end of the fixing component 12, thereby ensuring that the lamp tube can be stably fixed in the fixing component 12. This setting effectively simplifies the connection process between the lamp tube and the power supply, so that the operator does not need to repeat complex manual wiring operations, effectively shortening the time required for each replacement or installation of a new lamp tube; further, at least one end of the fixing component 12 has an elastic effect, so that the end of the fixing component 12 with an elastic effect can restore the top pressure under the elastic action, thereby improving stability; further, the present invention eliminates human errors such as poor contact or wrong connection of lines that may occur in the traditional wiring process, thereby reducing human intervention and reducing the risk of misoperation.
[0034] Further, such as Figure 1-12 An LED explosion-proof lamp tube connection assembly is shown, wherein the fixing assembly 12 includes a first fixing portion 121 for fixing one end of the lamp tube, and a second fixing portion 122 for fixing the other end of the lamp tube, the power supply assembly 11 is located on the side of the first fixing portion 121 away from the lamp tube, and the second fixing portion 122 is provided with a top pressing portion 1221, the top pressing portion 1221 drives the lamp tube to move toward the first fixing portion 121, and the lamp tube simultaneously drives the first fixing portion 121 to move toward the power supply assembly 11 and connect.
[0035] The utility model provides a first fixing part 121 and a second fixing part 122 for fixing the two ends of the lamp tube in the fixing component 12, and this arrangement ensures that the two ends of the lamp tube can be firmly fixed to the connecting component body 1; further, the second fixing part 122 is provided with a pressing part 1221, and the pressing part 1221 can apply a pressure to the lamp tube in the direction of the first fixing part 121 during the installation of the lamp tube, thereby prompting the first fixing part 121 to move toward the power supply component 11 and contact the power supply component 11 to be energized, so that the lamp tube can be automatically connected to the power supply after being installed in the connecting component body 1. This arrangement not only ensures the stability and reliability of the lamp tube installation process, but also simplifies the operation process, improves the speed and efficiency of replacing the lamp tube, and reduces the need for manual intervention, thereby reducing maintenance costs and safety risks.
[0036] Further, such as Figure 1-12An LED explosion-proof lamp tube connection assembly is shown, wherein the power supply assembly 11 is provided with a power supply part 111 connected to a power source, and the first fixing part 121 is provided with an elastically arranged contact part 1211. When the first fixing part 121 moves toward the power supply assembly 11, the contact part 1211 contacts the power supply part 111, so that the connection assembly body 1 supplies power to the lamp tube.
[0037] The utility model provides a power supply part 111 connected to the power supply on the power supply component 11, and provides an elastically arranged contact part 1211 on the first fixing part 121. In this embodiment, the contact part 1211 is fixed to the first fixing part 121 in an elastic connection manner. When the lamp tube is installed, the first fixing part 121 moves toward the power supply component 11 due to the pressure of the lamp tube, and the contact part 1211 will form a good electrical contact with the power supply part 111, thereby ensuring a stable power supply for the lamp tube. This arrangement avoids the poor contact problem that may occur in the traditional wiring method, thereby improving the stability and safety of the system, and since no additional wiring operation is required, the work efficiency is limitedly improved and the labor cost is reduced.
[0038] Further, such as Figure 1-12 An LED explosion-proof lamp tube connection assembly is shown, wherein the first fixing portion 121 is further provided with a conductive portion 1212 for communicating with the contact portion 1211, and a docking portion 1213 located on one side of the lamp tube and for connecting to the lamp tube, the docking portion 1213 is provided with a docking portion inner cavity 1214, the conductive portion 1212 is located in the docking portion inner cavity 1214, and the conductive portion 1212 and the inner wall of the docking portion inner cavity 1214 form a first insertion hole 1215 for inserting the lamp tube electrode.
[0039] The present invention provides a docking portion 1213 on the first fixing portion 121, and provides a conductive portion 1212 in communication with the contact portion 1211 in the inner cavity 1214 of the docking portion, so that the conductive portion 1212 and the inner wall of the inner cavity 1214 of the docking portion form a first insertion hole 1215 for inserting the lamp tube electrode. This arrangement provides accurate positioning and fixation for the lamp tube electrode through the first insertion hole 1215, ensures the stability of the lamp tube during use, and enhances the reliability of the electrical connection, helps to avoid poor contact problems caused by looseness or position offset, and thus improves the integrity of the system. energy and safety; further, this arrangement enables that when the lamp tube is installed in place, its electrode can accurately contact the contact portion 1211 through the first insertion hole 1215, thereby achieving fast and stable power-on. This arrangement not only simplifies the installation process of the lamp tube and improves installation efficiency, but also reduces the need for manual wiring and reduces safety risks caused by operational errors; further, in other embodiments, the docking portion 1213 can also provide a positioning function for the lamp tube. By cooperating with the docking portion 1213 and the lamp tube, the lamp tube can be more firmly installed on the connection component body 1.
[0040] Further, such as Figure 1-12 The LED explosion-proof lamp tube connection assembly shown in the figure, wherein the first fixing part 121 and the power supply assembly 11 are connected by an elastic connection, and the connection assembly body 1 also includes a reset assembly 13 fixed between the first fixing part 121 and the power supply assembly 11.
[0041] The present invention realizes a resettable connection between the first fixing part 121 and the power supply component 11 by setting a reset component 13 between the first fixing part 121 and the power supply component 11. This setting not only ensures that when the lamp tube is installed, the first fixing part 121 can move smoothly toward the power supply component 11 and achieve electrical contact, but also after the lamp tube is removed, the reset component 13 can automatically restore the first fixing part 121 to its initial position, thereby effectively simplifying the lamp tube installation and disassembly process, and also reducing operational errors that may be caused by manual intervention.
[0042] Further, such as Figure 1-12 The LED explosion-proof lamp tube connection assembly shown in the figure, wherein the second fixing part 122 is further provided with a fixing part body 1222 for installing the pressing part 1221, the pressing part 1221 is elastically connected to the fixing part body 1222, and the pressing part 1221 is provided with a second insertion hole 1223 for inserting the lamp tube.
[0043] The utility model discloses a top pressure part 1221 and fixed part main part 1222 between the mode of elastic connection is adopted for the lamp tube provides a pressure to the first fixed part 121 direction movement, and the pressure provided by top pressure part 1221 is greater than the reset force of reset assembly 13, ensure that top pressure part 1221 can exert a sustained pressure and push the lamp tube firmly to the direction of first fixed part 121, thereby realize reliable electrical contact and mechanical fixing, this setting not only enhances the stability of lamp tube installation, also ensure the stability of electrical connection, reduce the problem of poor contact caused by loosening or position deviation, further, top pressure part 1221 is equipped with the second insertion hole 1223 for the lamp tube insertion, make the lamp tube can quickly complete with the cooperation of second fixed part 122, ensure the simplicity and rapidity of installation process, and enhance the fixed effect of lamp tube, also effectively prevent the lamp tube from appearing the shaking or loosening in the use process, improve the overall stability and security of system.
[0044] Further, as shown in Figure 1-12 An LED explosion-proof lamp tube connecting assembly, wherein the first fixed part 121 and the second fixed part 122 are located on one side of the lamp tube and also respectively extend a limiting end 1216, and the limiting end 1216 is used for limiting the direction of the lamp tube.
[0045] The utility model discloses a first fixed part 121 and second fixed part 122 are located on one side of the lamp tube and respectively extend the limiting end 1216 for limiting the direction of the lamp tube, which provides a clear guiding effect for the lamp tube, helps to prevent the lamp tube from rotating due to external force during installation or use, causing damage to the lamp tube electrode, and further ensures the stable connection between the lamp tube and the connecting assembly main body 1. Further, the limiting end 1216 facilitates the alignment of the lamp tube during installation, enabling quick positioning and installation of the lamp tube, thereby improving work efficiency and reducing installation difficulty.
[0046] Further, as shown in Figure 1-12 An LED explosion-proof lamp tube connecting assembly, wherein the limiting end 1216 is provided with a plurality of dismounting holes 1217 for dismounting the lamp tube.
[0047] The utility model discloses a plurality of dismounting holes 1217 are arranged on the limiting end 1216, which enables the operator to dismount the lamp tube more conveniently and safely. Specifically, the operator can insert appropriate tools into the dismounting holes 1217 and apply force to move the first fixed part 121 and the second fixed part 122 in the opposite direction of the lamp tube, thereby separating the lamp tube. This arrangement enables the operator to dismount the lamp tube without directly acting on the lamp tube itself, thereby reducing the risk of damaging the lamp tube. Further, this arrangement also helps to simplify the dismounting process, enabling the operator to dismount and replace the lamp tube more quickly, greatly shortening the maintenance time.
[0048] Further, such as Figure 1-12 The LED explosion-proof lamp tube connection assembly shown further includes a first fixing seat 14 for fixing the first fixing portion 121 and the power supply assembly 11 , and a second fixing seat 15 for fixing the second fixing portion 122 .
[0049] The present invention ensures that the relative positions of the various components will not change due to external factors by providing a first fixing seat 14 for fixing the first fixing part 121 and the power supply component 11, and a second fixing seat 15 for fixing the second fixing part 122; further, the provision of the first fixing seat 14 and the second fixing seat 15 not only ensures the accurate positioning of the first fixing part 121 and the power supply component 11 and the second fixing part 122, but also helps to prevent the first fixing part 121, the power supply component 11 and the second fixing part 122 from loosening or displacement due to vibration or other external forces, thereby improving the reliability and safety of the system; further, by providing the first fixing seat 14 and the second fixing seat 15, the first fixing part 121, the power supply component 11 and the second fixing part 122 are effectively protected, thereby reducing maintenance costs and extending the service life of the product.
[0050] Further, such as Figure 1-12 The LED explosion-proof lamp tube connection assembly shown in the figure, wherein the first fixing part 121 is further provided with a guide hole 1218, and the first fixing seat 14 is provided with a guide end 141, and the guide hole 1218 and the guide end 141 cooperate to limit the moving direction of the first fixing part 121.
[0051] The present invention defines the moving direction of the first fixing portion 121 by providing a guide hole 1218 on the first fixing portion 121 and a corresponding guide end 141 on the first fixing seat 14, thereby ensuring that the first fixing portion 121 always remains on a predetermined track during movement, and avoiding the possibility of power supply failure caused by deviation or skewness of the first fixing portion 121 during movement. This setting is crucial for maintaining the stability of electrical contact and the reliability of mechanical fixation.
[0052] Further, such as Figure 1-12 The explosion-proof lamp shown includes an explosion-proof lamp tube and an LED explosion-proof lamp tube connection component for installing the explosion-proof lamp tube.
[0053] This utility model improves the installation efficiency, maintenance convenience and overall safety of the lighting system in environments with flammable and explosive substances by combining explosion-proof lamps with LED explosion-proof lamp connection components. This setting eliminates the need for traditional manual wiring, simplifies the installation and replacement process of the lamps, and allows operators to complete the rapid installation of the lamps and stable power supply without complicated procedures.
[0054] As Figure 1-12 shown, the embodiments of the utility model are as follows:
[0055] Example one:
[0056] The embodiment proposes a LED explosion-proof lamp tube connecting assembly, the purpose is to simplify the installation process of LED explosion-proof lamp tube, improve work efficiency and reduce safety risk. The connecting assembly main part 1 in the connecting assembly contains power supply assembly 11 and fixed assembly 12, wherein, fixed assembly 12 is used to install LED explosion-proof lamp tube, and the one end of power supply assembly 11 has elasticity, can realize relative movement with power supply assembly 11.
[0057] When starting installation, the operator first needs to fix first fixed part 121 and power supply assembly 11 in first fixed seat 14, and fixes second fixed part 122 in second fixed seat 15. Next, the operator inserts one end of LED explosion-proof lamp tube obliquely in the second insertion hole 1223 of the second fixed part 122 and inserts the second insertion hole 1223 of the second fixed part 122, because the spring mode is used to realize the elastic connection of the top pressure part 1221 and the fixed part main body 1222 on the second fixed part 122, so the LED explosion-proof lamp tube can move one end distance to the second fixed part 122 by top pressure top pressure part 1221, at this time, the other end of the LED explosion-proof lamp tube has enough distance with first fixed part 121, then the electrode of LED explosion-proof lamp tube is inserted into the first insertion hole 1215 formed by the inner wall of the second insertion hole 1223 of the second fixed part 122 and the second insertion hole 1223 of the second fixed part 122, because the elastic reset force of top pressure part 1221 is greater than the reset force of reset assembly 13 between first fixed part 121 and power supply assembly 11, so after the operator releases his hand, the whole LED explosion-proof lamp tube will move to the side of first fixed part 121, and top pressure first fixed part 121 to make first fixed part 121 move to power supply assembly 11. With the movement of first fixed part 121, when the LED explosion-proof lamp tube reaches the predetermined installation position, the contact part 1211 on the first fixed part 121 connected with the conductive part 1212 will contact the power supply part 111 on the power supply assembly 11, and form a circuit to provide power for the LED explosion-proof lamp tube. Among them, the contact part 1211 on the first fixed part 121 adopts elastic connection, when the contact part 1211 contacts the power supply part 111, it will not produce hard contact, but will produce elastic top pressure, to ensure that the contact part 1211 is always in contact with the power supply part 111, and will not be disconnected due to external environmental factors such as vibration. In addition, the first fixed part 121 is also provided with guide hole 1218, and the first fixed seat 14 is also provided with guide end 141, and the guide hole 1218 and the guide end 141 cooperate to ensure that the first fixed part 121 always moves along the predetermined path, to prevent deviation or skew to cause the contact part 1211 to not effectively contact the power supply part 111.
[0058] Example 2:
[0059] The difference between this embodiment and the first embodiment is that in this embodiment, the first fixing portion 121 and the second fixing portion 122 are located on one side of the LED explosion-proof lamp tube and extend a limiting end 1216 to limit the direction of the LED explosion-proof lamp tube, so as to prevent the LED explosion-proof lamp tube from rotating due to external force during installation or use, thereby causing damage to the electrodes of the LED explosion-proof lamp tube.
[0060] Example 3:
[0061] The difference between this embodiment and the second embodiment is that in this embodiment, the limiting end 1216 is provided with a plurality of disassembly holes 1217 for disassembling the LED explosion-proof lamp tube. When the LED explosion-proof lamp tube needs to be disassembled, the operator can use appropriate tools through the disassembly holes 1217 to push the first fixing part 121 and the second fixing part 122 in the opposite direction of the LED explosion-proof lamp tube, thereby easily achieving separation from the LED explosion-proof lamp tube without directly acting on the LED explosion-proof lamp tube itself, thereby reducing the potential risk of damage.
[0062] Example 4:
[0063] The difference between this embodiment and the third embodiment is that in this embodiment, the docking portion 1213 and the pressing portion 1221 can be respectively engaged with both ends of the LED explosion-proof lamp, so that the LED explosion-proof lamp can be more firmly installed on the connecting component body 1.
[0064] Embodiment 5:
[0065] The difference between this embodiment and the first embodiment is that the fixing component 12 in this embodiment only includes the first fixing part 121, and the LED explosion-proof lamp tube is fixed to the first fixing part 121 by a snap connection, and when the snap connection is fixed, the LED explosion-proof lamp tube will be pressed toward the first fixing part 121, so that the first fixing part 121 and the power supply component 11 are connected in circuit.
[0066] Example 6:
[0067] The difference between this embodiment and the first embodiment is that the pressing portion 1221 in this embodiment is not elastically arranged, but is fixed on the second fixing portion 122. By first inserting the LED explosion-proof lamp tube obliquely into the first insertion hole 1215, and by pressing the first fixing portion 121, a certain distance is formed between the other end of the LED explosion-proof lamp tube and the pressing portion 1221. When the operator releases the first fixing portion 121, the first fixing portion 121 will reset to a certain distance and press the LED explosion-proof lamp tube against the pressing portion 1221, thereby achieving the fixation of the LED explosion-proof lamp tube.
[0068] Embodiment seven:
[0069] The difference between this embodiment and the first embodiment is that in this embodiment, both ends of the fixing component 12 are provided with a power supply component 11 and a first fixing portion 121 elastically connected to the power supply component 11 .
[0070] Embodiment 8:
[0071] The difference between this embodiment and the first embodiment is that this embodiment further includes an explosion-proof lamp tube installed on the LED explosion-proof lamp tube connection assembly.
[0072] The above examples are merely used to further illustrate the technical content of the present invention for easier understanding by the reader. However, they do not limit the implementation of the present invention to these examples. Any technical extension or reinvention based on the present invention is protected by the present invention. The scope of protection of the present invention shall be determined by the claims.
Claims
1. A LED explosion-proof lamp connection assembly, comprising a connection assembly body (1) for mounting the lamp and supplying power to the lamp, characterized in that: The connecting component body (1) comprises a power supply component (11) and a fixing component (12) capable of relative displacement with the power supply component (11); the fixing component (12) is used to mount a lamp tube and has at least one end that is elastic; when the lamp tube is mounted on the fixing component (12), one end of the fixing component (12) moves toward the power supply component (11) and is connected to the power supply component (11), thereby supplying power to the lamp tube.
2. The LED explosion-proof lamp connection assembly according to claim 1, characterized in that: The fixing assembly (12) comprises a first fixing portion (121) for fixing one end of the lamp tube, and a second fixing portion (122) for fixing the other end of the lamp tube. The power supply assembly (11) is located on a side of the first fixing portion (121) away from the lamp tube. The second fixing portion (122) is provided with a pressing portion (1221). The pressing portion (1221) drives the lamp tube to move toward the first fixing portion (121), and the lamp tube simultaneously drives the first fixing portion (121) to move toward the power supply assembly (11) and connect with the power supply assembly (11).
3. The LED explosion-proof lamp connection assembly according to claim 2, characterized in that: The power supply component (11) is provided with a power supply portion (111) connected to a power source, and the first fixing portion (121) is provided with an elastically arranged contact portion (1211). When the first fixing portion (121) moves toward the power supply component (11), the contact portion (1211) contacts the power supply portion (111), so that the connection component body (1) supplies power to the lamp tube.
4. The LED explosion-proof lamp connection assembly according to claim 3, characterized in that: The first fixing portion (121) is further provided with a conductive portion (1212) for communicating with the contact portion (1211), and a docking portion (1213) located on one side of the lamp tube and for connecting to the lamp tube, the docking portion (1213) being provided with a docking portion inner cavity (1214), the conductive portion (1212) being located in the docking portion inner cavity (1214), and the conductive portion (1212) and the inner wall of the docking portion inner cavity (1214) forming a first insertion hole (1215) for inserting a lamp tube electrode.
5. The LED explosion-proof lamp connection assembly according to claim 2, characterized in that: The first fixing portion (121) and the power supply assembly (11) are connected in an elastic connection manner, and the connection assembly body (1) further comprises a reset assembly (13) fixed between the first fixing portion (121) and the power supply assembly (11).
6. The LED explosion-proof lamp connection assembly according to claim 2, characterized in that: The second fixing portion (122) is further provided with a fixing portion body (1222) for mounting the pressing portion (1221), the pressing portion (1221) being elastically connected to the fixing portion body (1222), and the pressing portion (1221) being provided with a second insertion hole (1223) for inserting a lamp tube.
7. The LED explosion-proof lamp connection assembly according to claim 2, characterized in that: The first fixing portion (121) and the second fixing portion (122) are located on one side of the lamp tube and extend a limiting end (1216) respectively. The limiting end (1216) is used to limit the direction of the lamp tube.
8. The LED explosion-proof lamp connection assembly according to claim 7, characterized in that: The limiting end (1216) is provided with a plurality of disassembly holes (1217) for disassembling the lamp tube.
9. The LED explosion-proof lamp connection assembly according to claim 2, characterized in that: It also includes a first fixing seat (14) for fixing the first fixing portion (121) and the power supply assembly (11), and a second fixing seat (15) for fixing the second fixing portion (122).
10. Explosion-proof lamp, characterized by: It comprises an explosion-proof lamp tube and an LED explosion-proof lamp tube connection assembly according to any one of claims 1-9.