Jumping bulb and metal halide lamp thereof
By introducing a jump structure into the metal halide lamp, using mercury balls and inert gas to generate ultraviolet rays under the action of electric field, the problem of slow start-up speed of existing metal halide lamps is solved, and a faster fish luring effect is achieved.
Patent Information
- Application Number
- CN202420863766.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-24
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-04-24
AI Technical Summary
The existing metal halide lamps are slow to start and cannot meet the fishery's demand for faster fish luring.
A bubble jump structure is adopted, including quartz tubes, electrode components, mercury balls and inert gases, and ultraviolet rays are generated through bubble jumps to promote the start of the metal halide lamp.
UV light generated by bubbling is injected into the light-emitting tube, ionizing and accelerating the glow power generation of the metal halide, significantly increasing the starting speed of the lamp.
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Figure CN222883487U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of luminescence, and more specifically, to a jumping bulb and a metal halide lamp thereof. Background Art
[0002] In recent years, high-power metal halide lamps have been increasingly used in the field of light-induced fish luring. Taking advantage of the light-attraction of fish, light is used to attract fish schools, which are then rounded up or caught by fishing, thereby increasing the fishermen's catch.
[0003] It has the advantages of high light efficiency, low light decay, long life, strong fish attracting ability, etc. In actual use, it has the characteristics of light volume, easy installation and replacement, seawater resistance, and shockproof. The light has strong penetration in seawater and a wide illumination range, which can attract fish to the greatest extent.
[0004] The existing metal halide lamps have a slow startup speed. The fishery industry is in urgent need of a fish attracting lamp with a faster startup speed to improve industry efficiency. Summary of the invention
[0005] The utility model overcomes the shortcoming of the existing metal halide lamp that the starting speed is slow, and provides a jumping bulb and a metal halide lamp thereof, which has a higher starting speed and can improve industrial efficiency.
[0006] In order to solve the above technical problems, the utility model adopts the following technical solutions:
[0007] A jumping bubble comprises a quartz tube, an electrode assembly, a mercury pill and an inert gas. The quartz tube has a closed bubble, the closed bubble is hollow to form a closed cavity, the mercury pill and the inert gas are arranged in the closed cavity, the upper part of the electrode assembly extends into the closed cavity, and the lower part of the electrode assembly is located outside the electrode assembly.
[0008] The present application utilizes jumping bubbles to generate ultraviolet rays, thereby increasing the starting speed of metal halide lamps. The closed cavity in the closed bubble is used to seal the mercury pellet and the inert gas, which generate light of the corresponding spectrum, namely ultraviolet rays, under the action of the electric field.
[0009] Preferably, the closed bubble is a cavity formed by rotating a closed ring body along an axis with a radial cross section, and the electrode assembly is arranged along the axis. The electrode introduces polarity at one end and generates another polarity outside the quartz tube, thereby prompting the mercury pellet and the inert gas to generate ions and approach the corresponding polarity. By arranging the electrode assembly in the middle, the distance between the electrode assembly and the closed bubble surface is as close as possible, thereby obtaining the best luminous effect.
[0010] Preferably, the quartz tube is provided with a clamping seal at the lower part of the closed cavity, the clamping seal and the closed bubble are integrated, the electrode assembly passes through the clamping seal into the closed cavity and is fixedly connected to the clamping seal. The clamping seal and the quartz tube are integrated into one body or even an integrated structure by high temperature melting, and positioning is achieved by the clamping seal.
[0011] Preferably, a sealing cap is provided on the top of the closed bubbler, the sealing cap is an integral structure with the closed bubbler, and the sealing cap is used to close the feed channel for introducing the inert gas and mercury pellets into the closed cavity. The sealing cap is in the shape of a cone extending along the axial direction, and the sealing is achieved by high-temperature melting.
[0012] A metal halide lamp comprises a light-emitting tube, an electrode bracket, a jumping bulb as described above, a lampshade and a stud, wherein the stud is mounted on the lampshade, the light-emitting tube, the electrode bracket and the jumping bulb are located in the lampshade, the stud is electrically connected to electrodes at both ends of the light-emitting tube through the electrode bracket, the electrode assembly of the jumping bulb is electrically connected to the electrode bracket connected to an electrode at one end of the light-emitting tube, and the jumping bulb is embedded in an electrode at the other end of the light-emitting tube, and light generated by the jumping bulb can enter the light-emitting tube.
[0013] The light-emitting tube is used to generate ultraviolet rays, which are irradiated into the light-emitting tube to assist the metal halide therein to generate glow electricity faster and improve the starting speed. Its structure includes electrodes arranged at both ends of the light-emitting tube, the electrodes are connected to the external power supply through screw ports, the electrode assembly of the jumping bubble is electrically connected to one electrode, and is arranged in another electrode, thereby forming an electric field, prompting the mercury pills and inert gas inside the closed cavity to emit light, and through the limitation of the position, the generated light is injected into the light-emitting tube.
[0014] Preferably, the electrode bracket includes a first electrode bracket and a second electrode bracket, the first electrode bracket is provided with a first hoop, the second electrode bracket and the first electrode bracket are provided with a second hoop, and the electrodes at both ends of the light-emitting tube are fixed by the first hoop and the second hoop. The light-emitting tube is positioned by the first electrode bracket and the second electrode bracket and is electrically connected to an external power supply through the first electrode bracket and the second electrode bracket.
[0015] Preferably, the electrode assembly is fixedly connected to the electrode bracket.
[0016] Compared with the prior art, the beneficial effects of the utility model are:
[0017] The ultraviolet rays generated by the jumping bubble are injected into the light-emitting tube, causing the light-emitting tube to ionize and increase the starting speed. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the bubble jumping device of the utility model;
[0019] Figure 2 is a schematic diagram of a metal halide lamp of the utility model;
[0020] In the figure:
[0021] Jumping bubble 1, quartz tube 10, closed bubble 110, closed cavity 111, clamping body 12, sealing cap 13, electrode assembly 14, light-emitting tube 2, electrode bracket 3, first electrode bracket 31, second electrode bracket 32, first hoop 4, second hoop 5, lampshade 5, stud 6. DETAILED DESCRIPTION
[0022] The present disclosure is further described below in conjunction with the accompanying drawings and embodiments.
[0023] It should be noted that the following detailed descriptions are illustrative and are intended to provide further explanation of the present application. Unless otherwise specified, all technical and scientific terms used herein have the same meanings as those commonly understood by those skilled in the art to which the present application belongs.
[0024] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, unless the context clearly indicates otherwise, the singular form is also intended to include the plural form. In addition, it should be understood that when the terms "comprise" and / or "include" are used in this specification, it indicates the presence of features, steps, operations, devices, components and / or combinations thereof.
[0025] In the present disclosure, terms such as "upper", "lower", "left", "right", "front", "back", "vertical", "horizontal", "side", "bottom" and the like indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings. They are relational words determined only for the convenience of describing the structural relationships of the various parts or elements of the present disclosure, and do not specifically refer to any part or element in the present disclosure and should not be understood as limitations on the present disclosure.
[0026] Example:
[0027] A kind of jumping bubble 1, ginseng Figure 1 As shown, it includes a quartz tube 10, an electrode assembly 14, a mercury pill and an inert gas. The quartz tube 10 has a closed bubble 110. The closed bubble 110 is hollow to form a closed cavity 111. The mercury pill and the inert gas are arranged in the closed cavity 111. The upper part of the electrode assembly 14 extends into the closed cavity 111, and the lower part of the electrode assembly 14 is located outside the electrode assembly 14.
[0028] The quartz tube 10 and the electrode assembly 14 are clamped to form a clamping body 12, and the quartz tube 10 and the electrode assembly 14 are fixedly connected, and one end of the quartz tube 10 is opened and closed. The clamping body 12 is an integral structure with the closed bubble 110, and the electrode assembly 14 passes through the clamping seal and enters the closed cavity 111 and is fixedly connected to the clamping seal. The clamping body 12 and the quartz tube 10 are integrally formed or even integrally structured by high-temperature melting, and positioning is achieved by the clamping body 12.
[0029] The other end of the quartz tube 10 is put into mercury pellets and inert gas after the exhaust step. The opening is then sealed by high temperature to form a sealing cap 13. Therefore, the sealing cap 13 is an integral structure with the closed bubbler 110. The shape of the sealing cap 13 is a cone extending along the axial direction, and the sealing is achieved by high temperature melting.
[0030] The closed bubble 110 is a cavity formed by rotating a closed ring body along an axis with a radial cross section, and the electrode assembly 14 is arranged along the axis. The electrode introduces one end polarity and generates another polarity outside the quartz tube 10, thereby prompting the mercury pellet and the inert gas to generate ions and approach the corresponding polarity. By arranging the electrode assembly 14 in the middle, the distance from the electrode assembly 14 to the surface of the closed bubble 110 is as close as possible, thereby obtaining the best luminous effect.
[0031] The skin jump bulb 1 generates ultraviolet rays, thereby increasing the starting speed of the metal halide lamp. The closed cavity 111 in the closed bubble 110 is used to seal the mercury pill and the inert gas. The mercury pill and the inert gas generate light of the corresponding spectrum, namely ultraviolet rays, under the action of the electric field to promote the light emitting tube 2.
[0032] A metal halide lamp, Figure 2 As shown, it includes a light-emitting tube 2, an electrode bracket 3, the jumping bulb 1 as described above, a lampshade 5 and a stud 6.
[0033] The stud 6 is mounted on the lampshade 5, and the lampshade 5 is made of transparent glass. The stud 6 is connected to an external power supply interface. The light-emitting tube 2, the electrode bracket 3 and the jumping bulb 1 are located in the lampshade 5.
[0034] The stud 6 is electrically connected to the electrodes at both ends of the light-emitting tube 2 through the electrode bracket 3, and the light-emitting tube 2 is arranged along the axial direction of the lampshade 5. The electrode bracket 3 includes a first electrode bracket 31 and a second electrode bracket 32. The first electrode bracket 31 is provided with a first hoop 4, and a second hoop 5 is provided between the second electrode bracket 32 and the first electrode bracket 31. The electrodes at both ends of the light-emitting tube 2 are fixed by the first hoop 4 and the second hoop 5. The light-emitting tube 2 is positioned by the first electrode bracket 31 and the second electrode bracket 32 and is electrically connected to an external power supply through the first electrode bracket 31 and the second electrode bracket 32.
[0035] The electrode assembly 14 of the jumping bulb 1 is electrically connected to the electrode bracket 3 connected to the electrode at one end of the light-emitting tube 2, and the jumping bulb 1 is embedded in the electrode at the other end of the light-emitting tube 2, so that an electric field that generates ultraviolet rays is formed in the jumping bulb 1, and the light generated by the jumping bulb 1 can enter the light-emitting tube 2. The electrode assembly 14 is fixedly connected to the electrode bracket 3. Specifically, the fixed connection method is welding.
[0036] The light-emitting tube 2 is used to generate ultraviolet rays, which are irradiated in the light-emitting tube 2 to assist the metal halide therein to perform glow power generation faster and improve the starting speed. Its structure includes electrodes arranged at both ends of the light-emitting tube 2, and the electrodes are connected to the external power supply through screws. The electrode assembly 14 of the jump bulb 1 is electrically connected to one electrode and is arranged in another electrode, thereby forming an electric field, prompting the mercury pills and inert gas inside the closed cavity 111 to emit light, and through the limitation of the position, the generated light is injected into the light-emitting tube 2.
[0037] The above-described embodiments are only preferred solutions of the present invention and are not intended to limit the present invention in any form. Other variations and modifications are possible without exceeding the technical solutions described in the claims.
Claims
1. A bubble jumping device, characterized in that: It includes a quartz tube, an electrode assembly, a mercury pill and an inert gas. The quartz tube has a closed bubble, and the closed bubble is hollow to form a closed cavity. The mercury pill and the inert gas are arranged in the closed cavity. The upper part of the electrode assembly extends into the closed cavity, and the lower part of the electrode assembly is located outside the electrode assembly.
2. A jumping bubble according to claim 1, characterized in that: The closed bubble is a cavity formed by rotating a ring body with a closed radial cross section along an axis, and the electrode assembly is arranged along the axis.
3. A jumping bubble according to claim 1, characterized in that: The quartz tube is provided with a clamping seal at the lower part of the closed cavity. The clamping seal and the closed bubble are integrated into one structure. The electrode assembly passes through the clamping seal into the closed cavity and is fixedly connected to the clamping seal.
4. A jumping bubble according to claim 1, characterized in that: A sealing cap is arranged on the top of the closed bubbler, and the sealing cap is an integral structure with the closed bubbler. The sealing cap is used to seal a feed channel for introducing inert gas and mercury pellets into the closed cavity.
5. A metal halide lamp, characterized in that: The invention comprises a light-emitting tube, an electrode bracket, a jumping bulb as claimed in any one of claims 1 to 4, a lampshade and a stud, wherein the stud is mounted on the lampshade, the light-emitting tube, the electrode bracket and the jumping bulb are located in the lampshade, the stud is electrically connected to electrodes at both ends of the light-emitting tube through the electrode bracket, the electrode assembly of the jumping bulb is electrically connected to the electrode bracket connected to an electrode at one end of the light-emitting tube, and the jumping bulb is buried in an electrode at the other end of the light-emitting tube, and the light generated by the jumping bulb can enter the light-emitting tube.
6. A metal halide lamp according to claim 5, characterized in that: The electrode bracket includes a first electrode bracket and a second electrode bracket. The first electrode bracket is provided with a first hoop, and a second hoop is provided between the second electrode bracket and the first electrode bracket. The electrodes at both ends of the light-emitting tube are fixed by the first hoop and the second hoop.
7. A metal halide lamp according to claim 5, characterized in that: The electrode assembly is fixedly connected to the electrode bracket.