CN204231683U - A kind of structure of carbon fibre heating fluorescent tube - Google Patents

A kind of structure of carbon fibre heating fluorescent tube Download PDF

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Publication number
CN204231683U
CN204231683U CN201420639785.2U CN201420639785U CN204231683U CN 204231683 U CN204231683 U CN 204231683U CN 201420639785 U CN201420639785 U CN 201420639785U CN 204231683 U CN204231683 U CN 204231683U
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Prior art keywords
fluorescent tube
quartz glass
carbon fibre
sealing
heating
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CN201420639785.2U
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Chinese (zh)
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朴时兴
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Individual
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Individual
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Abstract

The utility model relates to the structure of a kind of carbon fibre heating fluorescent tube, and exothermic material if tungsten filament is through the heating lamp tube formed after sealing in quartz glass tube, then adopts the mode of screw socket or socket to be connected with power supply by traditional electric heating fluorescent tube.The utility model is made up of heating space, sealing, quartz glass tube, electric heating body, front terminal, energising terminal and ceramic lamp base, in the heating space that electric heating body is placed in hollow, heat-resisting quartz glass tube and curl extend, the raw material of electric heating body adopt the carbon fibre that conductivity is superior; Good effect of the present utility model is the energising terminal structure that have employed sheet, also can replace fluorescent tube easily without the need to decomposing parts around.Meanwhile, the process of installing ceramic lamp base is out of shape under can preventing sealing high temperature, also can protect sealing not by external impact simultaneously.

Description

A kind of structure of carbon fibre heating fluorescent tube
Technical field
The utility model relates to a kind of electrically heated heating appliances, particularly relates to a kind of structure of heating fluorescent tube of lamp shape electric heater.
Background technology
At present, along with the raising of people's quality of life, also more and more higher to the requirement of product, exothermic material if tungsten filament is through the heating lamp tube formed after sealing in the quartz glass tube of transparency and heat-proof, then adopts the mode of screw socket or socket to be connected with power supply by particularly traditional electric heating fluorescent tube.This kind of inapplicable connection sending the carbon fibre heating fluorescent tube of heat of high temperature of connected mode, dangerous also unreliable.Also connection heating fluorescent tube and the terminal of power suppling part is had to be connected with electric wire merely or use screw terminal to connect.Therefore, if when heating tubes breaks down needs to replace, after must first the part of heating fluorescent tube all being decomposed, fluorescent tube could be replaced, extremely inconvenience.
Summary of the invention
In order to overcome the deficiency that prior art exists, providing a kind of carbon fibre to heat the structure of fluorescent tube, is the purpose of this utility model place, this fluorescent tube should heating efficiency high, easy to use again, to install and dismounting safety, reliable.
The purpose of this utility model carrys out specific implementation by following technical measures, a kind of structure of carbon fibre heating fluorescent tube, it is characterized in that it is made up of the heating space of hollow, the sealing sealing of heating space, quartz glass tube, electric heating body, front terminal, energising terminal and ceramic lamp base, described heating space position at two ends by the quartz glass tube hollow part sealed; The fluorescent tube that certain length bends to U-shaped lamp tube shapes with radian or the parallel shape of double-H groove weld is got at described quartz glass tube two ends, or double-H groove weld cross fluorescent tube, or Ω shape fluorescent tube.In the heating space that described electric heating body is placed in hollow and curl extend, the raw material of electric heating body adopt the carbon fibre that conductivity is superior; What be connected to electric heating body two ends is the side of two front terminal, the opposite side of two front terminal is connected to gives prominence to the energising terminal forming round-meshed sheet and the ceramic lamp base being enclosed within quartz glass channel closure composition from the afterbody of quartz glass tube, the architectural feature of described ceramic lamp base be in the side of its length direction be can clamp sealing enclosed slot and opposite side is the port holding energising terminal; The port architectural feature of described energising terminal also comprises the welding hole of through whole ceramic lamp base, and described energising terminal and the combination of power suppling part adopt the clip shape of easy disassembly.
The scope of application of the utility model carbon fibre heating fluorescent tube is 300W ~ 3000W.
Good effect of the present utility model is to provide a kind of heating fluorescent tube.Conveniently assembled with power suppling part, have employed the energising terminal structure of sheet, therefore also can replace fluorescent tube easily without the need to decomposing parts around.Meanwhile, install ceramic lamp base to the sealing of quartz glass tube, such process is out of shape under can preventing sealing high temperature, also can protect sealing not by external impact simultaneously.
Accompanying drawing explanation
Fig. 1 is the structural representation of a kind of carbon fibre heating of the utility model fluorescent tube embodiment.
Fig. 2 is the exploded perspective view of Fig. 1.
In accompanying drawing, each legend marks the meaning be expressed as follows respectively: 100, quartz glass tube; 110, heating space; 120, seal; 200, electric heating body; 300, front terminal; 310, the 1st brace; 320, the 2nd brace; 321, molybdenum filament; 400, be energized terminal; 401, locking plate; 401a, circular hole; 401b, semicircular ring; 500, ceramic lamp base; 510, enclosed slot; 520, port.
Embodiment
Be further described below in conjunction with embodiment and accompanying drawing 1, accompanying drawing 2 pairs of the utility model:
The carbon fibre heating fluorescent tube of the present embodiment to be a kind of power be Ω shape of 300W, concrete structure as shown in Figure 1: it comprises quartz glass tube 100, the heating space 110 of hollow and sealing 120; Arrange electric heating body 200 in heating space 110, electric heating body 200 is connected with the front terminal 300 at glass two ends, and the other end of front terminal 300 is the energising terminal 400 of laminated structure and this energising terminal forms circular hole 401a from quartz glass tube 100 afterbody section is outstanding; Quartz glass tube 100 forms the heating efficiency that transparent visible heating space 110 can improve electric heating body 200 to greatest extent.
Diameter is the length that the quartz glass tube 100 of 10mm intercepts two ends is 400mm, bend to the carbon fibre heating fluorescent tube that upper end radian is the Ω shape of 80mm diameter along cylinder direction, two ends sealing is formed sealing 120 to keep heating space 110 sealing state by quartz glass tube 100; Electric heating body 200 is arranged on the heating space 110 of quartz glass 100 and curl extends.The raw material of electric heating body 200 adopt the carbon fibre that conductivity is superior.Front terminal 300 is connected to the two ends of electric heating body 200, and its effect is confession induced current that also can be unstable by the negative effect of electric heating body 200 heat; The formation of front terminal 300 in two sub-sections, be welded on electric heating body 200 tail end the first brace 310 and while connecting with the first brace 310 compression seal enter the second brace 320 of sealing 120 inside; The molybdenum that front terminal 300 adopts the coefficient of expansion less, meanwhile, in order to connect with the energising terminal 400 mentioned below, the second brace 320 extends a bit of molybdenum filament 321, and this molybdenum filament 321 runs through and protrudes from outside sealing 120.
Energising terminal 400 contacts generation current with power suppling part, and the molybdenum filament 321 outstanding with sealing 120 place of quartz glass tube 100 is fixed; Energising terminal 400 and the binding site of aforementioned power source supply department are designed to locking plate 401 shape of easy disassembly, locking plate 401 be laminar metal material with the structure of the socket phase counterpart of aforementioned power source supply department, the two mode that can relatively advance combines; There is a circular hole 401a on locking plate 401 surface, and this kind of design can prevent quartz glass tube 100 from coming off from the power suppling part of the corresponding design of circular hole 401a structure easily; Locking plate 401 surface is semicircular ring 401b, is not subject to resistance when this kind of design can make locking plate 401 enter power suppling part.When heating tubes breaks down and needing to change also without the need to decomposing whole part, as long as load onto new fluorescent tube after old fluorescent tube is taken out just can complete replacement operation quickly and easily, consumer oneself also can complete.
In addition, quartz glass tube 100 also comprises the ceramic lamp base 500 being enclosed within sealing 120 position.There is the enclosed slot 510 that can hold sealing the side of this ceramic lamp base 500 length direction, and opposite side is the port 520 inserting energising terminal 400.
A welding hole running through ceramic lamp base 500 is separately had between enclosed slot 510 and port 520.The effect of this welding hole utilizes welding manner sealing 120, molybdenum filament 321 and energising terminal 400 to be linked into an integrated entity, and solder joint can prevent ceramic lamp base 500 from coming off from sealing 120.
In sum, the heating lamp tube that provides of the present embodiment.Convenient assembled with power suppling part, therefore also can replace fluorescent tube easily without the need to decomposing parts around.Meanwhile, install ceramic lamp base 500 to the sealing 120 of quartz glass tube 100, under such process can prevent sealing 120 high temperature, distortion also can protect sealing 120 not by external impact simultaneously.

Claims (3)

1. the structure of a carbon fibre heating fluorescent tube, it is characterized in that it is made up of the heating space (110) of hollow, the sealing sealing (120) of heating space, quartz glass tube (100), electric heating body (200), front terminal (300), energising terminal (400) and ceramic lamp base (500), described heating space (110) position at two ends by the quartz glass tube sealed (100) hollow part; In the heating space (110) that described electric heating body (200) is placed in hollow and curl extend, the raw material of electric heating body (200) adopt the carbon fibre that conductivity is superior; What be connected to electric heating body (200) two ends is the side of two front terminal (300), the opposite side of two front terminal (300) is connected to gives prominence to the energising terminal (400) forming round-meshed sheet and the ceramic lamp base (500) being enclosed within quartz glass channel closure (120) composition from the afterbody of quartz glass tube (100), the architectural feature of described ceramic lamp base (500) is the enclosed slot can clamping sealing (120) in the side of its length direction, and opposite side is the port holding energising terminal (400); The port architectural feature of described energising terminal (400) also comprises the welding hole of through whole ceramic lamp base (500); Described energising terminal (400) adopts locking plate (401) shape of easy disassembly with the combination of power suppling part.
2. the structure of a kind of carbon fibre heating fluorescent tube according to claim 1, it is characterized in that the certain length at described quartz glass tube (100) intercepting two ends bends to the U-shaped fluorescent tube with radian along cylinder direction, or the fluorescent tube of the parallel shape of double-H groove weld, or double-H groove weld cross fluorescent tube, or Ω shape fluorescent tube.
3., according to the structure of a kind of carbon fibre heating fluorescent tube described in claim 1, it is characterized in that the scope of application of described carbon fibre heating fluorescent tube is 300W ~ 3000W.
CN201420639785.2U 2014-10-31 2014-10-31 A kind of structure of carbon fibre heating fluorescent tube Active CN204231683U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420639785.2U CN204231683U (en) 2014-10-31 2014-10-31 A kind of structure of carbon fibre heating fluorescent tube

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420639785.2U CN204231683U (en) 2014-10-31 2014-10-31 A kind of structure of carbon fibre heating fluorescent tube

Publications (1)

Publication Number Publication Date
CN204231683U true CN204231683U (en) 2015-03-25

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CN201420639785.2U Active CN204231683U (en) 2014-10-31 2014-10-31 A kind of structure of carbon fibre heating fluorescent tube

Country Status (1)

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CN (1) CN204231683U (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104333921A (en) * 2014-10-31 2015-02-04 朴时兴 Carbon fiber heating lamp tube
CN107041025A (en) * 2017-04-07 2017-08-11 江苏圣达石英制品有限公司 A kind of novel bimodal carbon fiber heating rod

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104333921A (en) * 2014-10-31 2015-02-04 朴时兴 Carbon fiber heating lamp tube
CN107041025A (en) * 2017-04-07 2017-08-11 江苏圣达石英制品有限公司 A kind of novel bimodal carbon fiber heating rod

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