CN202002041U - Supporting structure for horizontal igniting high power xenon lamp unit - Google Patents

Supporting structure for horizontal igniting high power xenon lamp unit Download PDF

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Publication number
CN202002041U
CN202002041U CN 201020507548 CN201020507548U CN202002041U CN 202002041 U CN202002041 U CN 202002041U CN 201020507548 CN201020507548 CN 201020507548 CN 201020507548 U CN201020507548 U CN 201020507548U CN 202002041 U CN202002041 U CN 202002041U
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CN
China
Prior art keywords
xenon lamp
anode
cathode
lamp
gripper shoe
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN 201020507548
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Chinese (zh)
Inventor
向艳红
张容
李竑松
蒋山平
于江
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Beijing Institute of Spacecraft Environment Engineering
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Beijing Institute of Spacecraft Environment Engineering
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Priority to CN 201020507548 priority Critical patent/CN202002041U/en
Application granted granted Critical
Publication of CN202002041U publication Critical patent/CN202002041U/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Abstract

The utility model discloses a supporting structure for a horizontal igniting high power xenon lamp unit. The supporting structure comprises a lamp support and an adjusting mechanism, wherein the lamp support is used for placing a high power xenon lamp and fixed on the adjusting mechanism; and the adjusting mechanism drives the lamp support to achieve the displacement adjusting of the xenon lamp. The lamp support comprises a Z-shaped baseboard, an anode supporting board and a cathode supporting board; and the anode supporting board and the cathode supporting board are fixed at two ends of the Z-shaped baseboard respectively to form the lamp support. The lower part of the cathode supporting board arranged at the higher end of the Z-shaped baseboard is mechanically connected with the adjusting mechanism; and the anode and the cathode of the xenon lamp are respectively arranged at the anode supporting board and the cathode supporting board to realize the support of the xenon lamp in the horizontal igniting work status. The supporting structure for the horizontal igniting high power xenon lamp unit achieves the key technology of unstressed installation and fix of the xenon lamp with the supporting in the horizontal status. The supporting structure guarantees the reliable connection of the xenon lamp in the horizontal igniting status, can be adjusted freely, and ensures the safety operation of the xenon lamp.

Description

Level is lighted high-power xenon lamp unit support structure
Technical field
The utility model belongs to the space environment simulation field, and the level of relating in particular to is lighted high-power xenon lamp unit support structure.
Background technology
Level is lighted the carrier of high-power xenon lamp unit as light level incident type solar simulator light source, vertically light the xenon lamp unit with respect to xenon lamp, do not need the refractive power speculum, the advantage that has conserve energy, saves the laboratory space, saves development and operation funds.This technology late nineteen eighties abroad comes into operation, the xenon lamp unit in for example European 6 meters large-scale solar simulators of ESTEC irradiation face diameter and 3 meters solar simulators of IABG irradiation face diameter, and also do not use at home.
Summary of the invention
The purpose of this utility model provides the high-power xenon lamp unit support structure that is used for glancing incidence type solar simulator that a kind of level is lighted, requirement can the load level state xenon lamp of work down, and make it not be subjected to additional stress, guarantee xenon lamp operation safely and reliably at work.
To achieve these goals, the utility model has adopted following technical scheme:
A kind of level is lighted high-power xenon lamp unit support structure, comprise for lamp bracket and the governor motion of placing high-power xenon lamp, lamp bracket is fixed on the governor motion, governor motion drives the displacement adjusting that lamp bracket is realized xenon lamp, wherein lamp bracket comprises Z-shaped base plate, anode-supported plate and cathode branch fagging, the anode-supported plate, the cathode branch fagging is separately fixed at the two ends of Z-shaped base plate and forms lamp bracket, the cathode branch fagging below mechanical connection that is in Z-shaped base plate higher position one end has governor motion, the anode of xenon lamp and negative electrode are placed on respectively on anode and the cathode branch fagging, and realization xenon lamp level is lighted the support under the duty.
The anode-supported plate is made of gripper shoe and adiabatic cushion block, and gripper shoe is fixed on the Z-shaped base plate by adiabatic cushion block, and the anode tap of xenon lamp freely is placed in the mounting groove on the gripper shoe.
The cathode branch fagging is made of cathode end, cross-over block and gripper shoe, cathode end is placed in the U-lag of cross-over block, takes screw to fix at its two ends, is fixed on the Z-shaped base plate by gripper shoe.The cathode end of xenon lamp is installed in the installing hole of cathode end and fastening.
Level of the present utility model light high-power xenon lamp unit lamp solved xenon lamp under level with the unstressed key technology that installs and fixes of supporting mechanism, xenon lamp is lighted in level is connected reliably under the state, regulate freely, guaranteed the safe operation of xenon lamp.
Description of drawings
Fig. 1 is the schematic diagram that level of the present utility model is lighted high-power xenon lamp unit support structure.
Wherein, 1 is the cathode branch fagging; 2 is governor motion; 3 is lamp bracket; 4 is Z-shaped base plate; 5 is the anode-supported plate.
Fig. 2 is the cathode support composition that hardens;
Wherein, 6 is cathode end, and 7 is gripper shoe, and 8 is cross-over block.
Fig. 3 is the anode-supported composition that hardens
Wherein, 9 is gripper shoe, and 10 is adiabatic cushion block.
The specific embodiment
Below in conjunction with accompanying drawing structure of the present utility model and operation principle are described further.
As shown in Figure 1, level of the present utility model is lighted high-power xenon lamp unit support structure and is comprised for lamp bracket 3 and the governor motion 2 of placing high-power xenon lamp, lamp bracket 3 is fixed on the governor motion 2, governor motion 2 drives the displacement adjusting that lamp bracket 3 is realized xenon lamp, wherein lamp bracket 3 comprises Z-shaped base plate 4, anode-supported plate 5 and cathode branch fagging 1, anode-supported plate 5, cathode branch fagging 1 is separately fixed at the two ends of Z-shaped base plate 4 and forms lamp bracket, the cathode branch fagging 1 below mechanical connection that is in Z-shaped base plate 4 higher positions one end has governor motion 2, the anode of xenon lamp and negative electrode are placed on respectively on anode and the cathode branch fagging, and realization xenon lamp level is lighted the support under the duty.
Cathode branch fagging 1 is made of cathode end 6, cross-over block 8 and gripper shoe 7, cathode end 6 is installed in the U-lag of cross-over block 8, takes screw to fix at its two ends, cross-over block 8 is fixing with gripper shoe 7, and, be installed on the Z-shaped base plate by gripper shoe 7.Cathode end 6 is made up of the terminal, briquetting, tight fixed bolt and the locking nut that have installation and locating slot, is used for connecting being fastenedly connected of cathode end at xenon lamp.Concrete structure is referring to Fig. 2.
Anode-supported plate 5 is made of gripper shoe 9 and adiabatic cushion block 10, and gripper shoe 9 is fixed with adiabatic cushion block 10, and by adiabatic cushion block 10, is fixed on the Z-shaped base plate.Above gripper shoe, it is the U-lag of circular arc that a bottom surface is arranged, and is used for connecting placement anode stiff end at xenon lamp.Specifically referring to Fig. 3.
The anode-supported plate 5 of lamp bracket is the severeest parts that are heated, additional stress for the lamp anode end that reduces to cause because of gripper shoe 9 thermal expansions, the material of gripper shoe 9 is elected the stainless steel of surface finish as, it is little to the absorption coefficient of solar radiation, at the both side surface fluting, make the area of dissipation of the gripper shoe 9 of 0.035m (length) * 0.024m (wide) * 0.272m (height) reach 0.05m simultaneously 2, can heat radiation preferably under the effect of air blast cooling.
Anode-supported plate 5 and cathode branch fagging 1 are installed in the two ends of Z-shaped base plate 4 respectively, have constituted lamp bracket 3.In order to guarantee that xenon lamp can operate as normal after installing and can not be subjected to additional stress, specially made a simulation rod that axiality is Φ 0.05mm.When the assembled in situ of lamp bracket, at first under the monitoring of spirit level,, will simulate rod then and be installed on the lamp bracket lamp bracket axis level-off, the two ends of regulating the lamp bracket axis are coaxial.Finally, all meet the requirements of under the situation, lamp bracket is fixed on the slide block of governor motion in lamp bracket axis horizontal degree, axiality.
When carrying out the installation of xenon lamp, cathode terminal axle with xenon lamp inserts in the installing hole of cathode terminal earlier, the anode tap of xenon lamp is dropped on the mounting groove of anode-supported plate 5, then the negative electrode briquetting is put into the installing hole of cathode terminal, tighten the tight fixed bolt that is positioned at the cathode terminal top lightly, and with nut check.Formed like this that xenon lamp and lamp bracket 3 one ends are fastening, end connected mode freely, both guaranteed to be electrically connected reliable, avoided again because the generation of the additional stress that thermal expansion caused.
Although above the specific embodiment of the present utility model is described in detail and illustrates, but what should indicate is, we can carry out various changes and modification to above-mentioned enforcement, but these do not break away from the scope that spirit of the present utility model and appended claim are put down in writing.

Claims (3)

1. a level is lighted high-power xenon lamp unit support structure, comprise for lamp bracket and the governor motion of placing high-power xenon lamp, lamp bracket is fixed on the governor motion, governor motion drives the displacement adjusting that lamp bracket is realized xenon lamp, it is characterized in that, lamp bracket comprises Z-shaped base plate, anode-supported plate and cathode branch fagging, the anode-supported plate, the cathode branch fagging is separately fixed at the two ends of Z-shaped base plate and forms lamp bracket, the cathode branch fagging below mechanical connection that is in Z-shaped base plate higher position one end has governor motion, the anode of xenon lamp and negative electrode are placed on respectively on anode and the cathode branch fagging, and realization xenon lamp level is lighted the support under the duty.
2. level as claimed in claim 1 is lighted high-power xenon lamp unit support structure, it is characterized in that, the anode-supported plate is made of gripper shoe and adiabatic cushion block, and gripper shoe is fixed on the Z-shaped base plate by adiabatic cushion block, and the anode tap of xenon lamp freely is placed in the mounting groove on the gripper shoe.
3. level as claimed in claim 1 is lighted high-power xenon lamp unit support structure, it is characterized in that, the cathode branch fagging is made of cathode end, cross-over block and gripper shoe, cathode end is placed in the U-lag of cross-over block, take screw to fix at its two ends, and be fixed on the Z-shaped base plate by gripper shoe, the cathode end of xenon lamp is installed in the installing hole of cathode end and fastening.
CN 201020507548 2010-08-27 2010-08-27 Supporting structure for horizontal igniting high power xenon lamp unit Expired - Lifetime CN202002041U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201020507548 CN202002041U (en) 2010-08-27 2010-08-27 Supporting structure for horizontal igniting high power xenon lamp unit

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201020507548 CN202002041U (en) 2010-08-27 2010-08-27 Supporting structure for horizontal igniting high power xenon lamp unit

Publications (1)

Publication Number Publication Date
CN202002041U true CN202002041U (en) 2011-10-05

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CN 201020507548 Expired - Lifetime CN202002041U (en) 2010-08-27 2010-08-27 Supporting structure for horizontal igniting high power xenon lamp unit

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106051638A (en) * 2016-05-27 2016-10-26 北京环境特性研究所 Fixing mechanism and fixing method for vertical lighting of xenon lamp
CN109637331A (en) * 2019-01-02 2019-04-16 北京卫星环境工程研究所 Large-scale solar simulator level point is lit a lamp cell array and its arrangement and method for supporting

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106051638A (en) * 2016-05-27 2016-10-26 北京环境特性研究所 Fixing mechanism and fixing method for vertical lighting of xenon lamp
CN106051638B (en) * 2016-05-27 2018-11-06 北京环境特性研究所 A kind of fixed mechanism, fixing means vertically lighted for xenon lamp
CN109637331A (en) * 2019-01-02 2019-04-16 北京卫星环境工程研究所 Large-scale solar simulator level point is lit a lamp cell array and its arrangement and method for supporting
CN109637331B (en) * 2019-01-02 2021-09-07 北京卫星环境工程研究所 Large-scale solar simulator horizontal ignition lamp unit array and arrangement and support method thereof

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Granted publication date: 20111005