CN219658663U - Xenon lamp heat radiation structure of fluorescence spectrometer - Google Patents

Xenon lamp heat radiation structure of fluorescence spectrometer Download PDF

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Publication number
CN219658663U
CN219658663U CN202320375103.0U CN202320375103U CN219658663U CN 219658663 U CN219658663 U CN 219658663U CN 202320375103 U CN202320375103 U CN 202320375103U CN 219658663 U CN219658663 U CN 219658663U
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China
Prior art keywords
xenon lamp
heat dissipation
connecting seat
fluorescence spectrometer
main part
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CN202320375103.0U
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Chinese (zh)
Inventor
顾达鸣
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Shanghai Huiguan Qimai Medical Instrument Co ltd
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Shanghai Huiguan Qimai Medical Instrument Co ltd
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Abstract

The utility model discloses a xenon lamp radiating structure of a fluorescence spectrometer, which comprises a fan cover, a fluorescence spectrometer main body and a xenon lamp main body, wherein the end part of the xenon lamp main body is connected with a connecting seat, the connecting seat is arranged on one side of the fluorescence spectrometer main body, a plurality of radiating frames are arranged on the connecting seat, radiating fins are arranged on the radiating frames, a heat absorbing plate is arranged on the inner side of each radiating frame, and a detachable fan cover is arranged at the end part of each radiating frame. The utility model is provided with the connecting seat, the connecting seat can be connected with the fluorescent spectrometer main body through the bolt, the end part of the xenon lamp main body can be embedded into the connecting seat, the side of the end face of the connecting seat is provided with the heat radiation frame, the inner side of the heat radiation frame is provided with the heat absorbing plate, and the heat absorbing plate can be clamped and fixed on the outer side of the xenon lamp main body to absorb heat.

Description

Xenon lamp heat radiation structure of fluorescence spectrometer
Technical Field
The utility model relates to the relevant field of a xenon lamp heat dissipation structure of a fluorescence spectrometer, in particular to a xenon lamp heat dissipation structure of a fluorescence spectrometer.
Background
The xenon lamp heat dissipation structure of the fluorescence spectrometer is used for conducting heat dissipation protection on the xenon lamp in the using process, and avoids overheat damage of the xenon lamp;
for example, patent publication CN211208389U (fluorescence spectrometer xenon lamp heat radiation structure): including the front lighting lamp shade of discharging, the one end outer wall of front lighting lamp shade of discharging is equipped with the fixing base, and the inner wall middle part joint of fixing base has the lamp holder, the tip body coupling of lamp holder has the sealed tube, and the other end inner wall middle part joint of sealed tube has the end plug, the inner wall axis department of sealed tube is equipped with conduit, luminotron and protection architecture in proper order, and the luminotron is located between conduit and the protection architecture. According to the utility model, the heat is quickly transferred out by attaching the heat dissipation ring to the heating source, meanwhile, the starting and the stopping of the xenon lamp are controlled, the temperature-change metal clamping head and the temperature-change metal joint are clamped, the temperature-change metal clamping head and the temperature-change metal joint are of spoon-shaped structures, and a small loop circuit is formed between the contact surface and the non-contact surface, so that the current is reduced, the working power is reduced, and the effect of controlling the process of the heating source is achieved;
therefore, the xenon lamp of the fluorescence spectrometer at the current stage is assembled with the fluorescence spectrometer in a built-in mode, heat dissipation is slow due to full sealing, and the heat dissipation assembly and the xenon lamp are integrally arranged and cannot be in mutually independent structures, so that the heat dissipation fins are inconvenient to replace after being damaged, and the heat is easy to damage the xenon lamp body.
Disclosure of Invention
The utility model aims to provide a xenon lamp radiating structure of a fluorescence spectrometer, which is used for solving the problems that the xenon lamp of the fluorescence spectrometer, which is provided in the background art, is assembled with the fluorescence spectrometer in a built-in way, the heat is slowly radiated due to full sealing, a radiating component and the xenon lamp are integrated and cannot be in mutually independent structures, the radiating fin is inconvenient to replace after being damaged, and the xenon lamp body is easily damaged by the heat.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a fluorescence spectrometer xenon lamp heat radiation structure, includes fan cover, fluorescence spectrometer main part and xenon lamp main part, the tip and the connecting seat of xenon lamp main part are connected, the connecting seat is established in one side of fluorescence spectrometer main part, be equipped with a plurality of heat dissipation frames on the connecting seat, be equipped with radiating fin on the heat dissipation frame, the inboard of heat dissipation frame is equipped with the absorber plate, the tip of heat dissipation frame is equipped with detachable fan cover.
In a further embodiment, a fan is arranged in the middle of the fan cover, and the fan cover is opposite to the xenon lamp body.
In a further embodiment, the device further comprises a limiting frame, wherein the limiting frame is arranged among the plurality of radiating frames and used for supporting the tail part of the xenon lamp body.
In a further embodiment, a clamping groove is formed in the side of the end face of the fan cover, and the end face of the heat dissipation frame is inlaid and fixed with the clamping groove.
In a further embodiment, the heat dissipation frames are of arc structures, six heat dissipation frames are arranged in total, and the six heat dissipation frames are uniformly arranged on the end face of the connecting seat in an annular mode.
In a further embodiment, a lamp cap socket is arranged in the middle of the connecting seat, and the end head of the xenon lamp body is inserted into the lamp cap socket, so that lamplight is emitted into the inner cavity of the fluorescent spectrometer body through the lamp cap socket.
Compared with the prior art, the utility model has the beneficial effects that:
the utility model is provided with the connecting seat, the connecting seat can be connected with the fluorescent spectrometer main body through the bolt, the end part of the xenon lamp main body can be embedded into the connecting seat, the side of the end face of the connecting seat is provided with the heat radiation frame, the inner side of the heat radiation frame is provided with the heat absorbing plate, and the heat absorbing plate can be clamped and fixed on the outer side of the xenon lamp main body to absorb heat.
According to the utility model, the xenon lamp main body and the fluorescence spectrometer main body can be externally installed through the connecting seat, the installation mode enables heat to be conveniently dissipated, the fan is arranged at the end part of the heat dissipation frame, and the heat dissipation effect of the xenon lamp main body is greatly improved by matching with the fan.
Drawings
FIG. 1 is a schematic diagram of a xenon lamp heat dissipation structure of a fluorescence spectrometer;
FIG. 2 is a schematic view of a fan guard according to the present utility model;
FIG. 3 is a front view of the connecting base of the present utility model;
fig. 4 is a schematic structural view of the portion a of the present utility model.
In the figure: 1. a fan cover; 2. a heat dissipation frame; 3. a connecting seat; 4. a fluorescence spectrometer body; 5. a heat absorbing plate; 6. a heat radiation fin; 7. a xenon lamp body; 8. a limiting frame; 9. a blower; 10. a clamping groove; 11. a lamp cap socket.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments.
Referring to fig. 1-4, an embodiment of the present utility model is provided: the utility model provides a fluorescence spectrometer xenon lamp heat radiation structure, includes fan housing 1, fluorescence spectrometer main part 4 and xenon lamp main part 7, and the tip and the connecting seat 3 of xenon lamp main part 7 are connected, and the connecting seat 3 is established in one side of fluorescence spectrometer main part 4, is equipped with a plurality of heat dissipation frame 2 on the connecting seat 3, is equipped with radiating fin 6 on the heat dissipation frame 2, and the inboard of heat dissipation frame 2 is equipped with absorber plate 5, and the tip of heat dissipation frame 2 is equipped with detachable fan housing 1.
The connecting seat 3 is convenient to connect with the xenon lamp main body 7, and is connected with one side of the fluorescence spectrometer main body 4, the heat dissipation frame 2 is used for dissipating heat outside the fixed xenon lamp main body 7, the heat absorbing plate 5 absorbs heat outside the xenon lamp main body 7, and the fan 9 in the fan cover 1 is used for blowing and dissipating the heat.
Further, a fan 9 is arranged in the middle of the fan cover 1, and the fan cover 1 and the xenon lamp body 7 are arranged opposite to each other.
Further, the xenon lamp comprises a limiting frame 8, wherein the limiting frame 8 is arranged among the plurality of radiating frames 2 and used for supporting the tail position of the xenon lamp body 7, and the xenon lamp body 7 is supported and fixed through the limiting frame 8.
Further, the clamping groove 10 is formed in the side of the end face of the fan cover 1, the end face of the heat dissipation frame 2 is inlaid and fixed with the clamping groove 10, and the heat dissipation frame 2 and the fan cover 1 are conveniently assembled through the clamping groove 10.
Further, the heat dissipation frame 2 is of an arc structure, six heat dissipation frames 2 are arranged in total, the six heat dissipation frames 2 are annularly and uniformly arranged on the end face of the connecting seat 3, and the outer side of the xenon lamp main body 7 can be subjected to multi-position heat dissipation through the plurality of heat dissipation frames 2.
Further, the middle part of connecting seat 3 is equipped with lamp holder socket 11, and the end of xenon lamp main part 7 inserts in lamp holder socket 11, makes light penetrate into fluorescent spectrometer main part 4's inner chamber by lamp holder socket 11, and it is convenient to inlay the equipment with xenon lamp main part 7 through lamp holder socket 11.
Working principle: during the use, fix the connecting seat 3 through the bolt in the light inlet department of fluorescence spectrometer main part 4, then inlay the lamp holder socket 11 at the middle part of xenon lamp main part 7 with the connecting seat 3, and make the inboard absorber plate 5 of heat dissipation frame 2 and the outside meshing of xenon lamp main part 7, and consolidate the installation of xenon lamp main part 7 through spacing 8, inlay the equipment with the tip of heat dissipation frame 2 with the draw-in groove 10 of fan housing 1 inboard, blow through the fan 9 of fan housing 1 inboard, can accelerate the heat dissipation of xenon lamp main part 7, absorb the heat outside the xenon lamp main part 7 through absorber plate 5, and dispel the heat through fin 6.
It will be evident to those skilled in the art that the utility model is not limited to the details of the foregoing illustrative embodiments, and that the present utility model may be embodied in other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive, the scope of the utility model being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides a fluorescence spectrometer xenon lamp heat radiation structure, includes fan housing (1), fluorescence spectrometer main part (4) and xenon lamp main part (7), its characterized in that: the end of xenon lamp main part (7) is connected with connecting seat (3), one side in fluorescence spectrum appearance main part (4) is established to connecting seat (3), be equipped with a plurality of heat dissipation frame (2) on connecting seat (3), be equipped with radiating fin (6) on heat dissipation frame (2), the inboard of heat dissipation frame (2) is equipped with absorber plate (5), the end of heat dissipation frame (2) is equipped with detachable fan housing (1).
2. The fluorescence spectrometer xenon lamp heat radiation structure according to claim 1, wherein: the middle part of fan housing (1) is equipped with fan (9), fan housing (1) is just to setting up with xenon lamp main part (7).
3. The fluorescence spectrometer xenon lamp heat radiation structure according to claim 1, wherein: the xenon lamp further comprises a limiting frame (8), wherein the limiting frame (8) is arranged among the plurality of radiating frames (2) and is used for supporting the tail part of the xenon lamp main body (7).
4. The fluorescence spectrometer xenon lamp heat radiation structure according to claim 2, wherein: the fan cover is characterized in that a clamping groove (10) is formed in the side of the end face of the fan cover (1), and the end face of the heat dissipation frame (2) is inlaid and fixed with the clamping groove (10).
5. The fluorescence spectrometer xenon lamp heat radiation structure according to claim 1, wherein: the heat dissipation frames (2) are of arc structures, six heat dissipation frames (2) are arranged in total, and the six heat dissipation frames (2) are uniformly arranged on the end face of the connecting seat (3) in an annular mode.
6. The fluorescence spectrometer xenon lamp heat radiation structure according to claim 1, wherein: the middle part of connecting seat (3) is equipped with lamp holder socket (11), the end of xenon lamp main part (7) inserts in lamp holder socket (11), makes light penetrate fluorescent spectrometer main part (4)'s inner chamber by lamp holder socket (11).
CN202320375103.0U 2023-03-03 2023-03-03 Xenon lamp heat radiation structure of fluorescence spectrometer Active CN219658663U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320375103.0U CN219658663U (en) 2023-03-03 2023-03-03 Xenon lamp heat radiation structure of fluorescence spectrometer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320375103.0U CN219658663U (en) 2023-03-03 2023-03-03 Xenon lamp heat radiation structure of fluorescence spectrometer

Publications (1)

Publication Number Publication Date
CN219658663U true CN219658663U (en) 2023-09-08

Family

ID=87862140

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320375103.0U Active CN219658663U (en) 2023-03-03 2023-03-03 Xenon lamp heat radiation structure of fluorescence spectrometer

Country Status (1)

Country Link
CN (1) CN219658663U (en)

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