WO2016062019A1 - 一种试验箱 - Google Patents

一种试验箱 Download PDF

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Publication number
WO2016062019A1
WO2016062019A1 PCT/CN2015/075730 CN2015075730W WO2016062019A1 WO 2016062019 A1 WO2016062019 A1 WO 2016062019A1 CN 2015075730 W CN2015075730 W CN 2015075730W WO 2016062019 A1 WO2016062019 A1 WO 2016062019A1
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WO
WIPO (PCT)
Prior art keywords
test chamber
test box
test
cooling
box
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Application number
PCT/CN2015/075730
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English (en)
French (fr)
Inventor
欧增强
张耿超
韦设成
Original Assignee
中兴通讯股份有限公司
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Publication date
Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2016062019A1 publication Critical patent/WO2016062019A1/zh

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L1/00Enclosures; Chambers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01LCHEMICAL OR PHYSICAL LABORATORY APPARATUS FOR GENERAL USE
    • B01L7/00Heating or cooling apparatus; Heat insulating devices

Definitions

  • the utility model relates to a test box for cooling.
  • the existing test box generally cools all the functional components in the test box uniformly, and the speed is slow, and the cooling is generally performed after all the functional components are stopped.
  • This type of test chamber refers to a quick troubleshooting that is not conducive to the rapid verification and troubleshooting stages of the development process.
  • the utility model provides a test box, which can realize local temperature drop in the test box.
  • the utility model provides a test box.
  • the test box is provided with an adjusting member for adjusting a cooling position in the test box.
  • the adjusting member in the above embodiment includes an adjusting hole provided on the box of the test box.
  • the adjusting member in the above embodiment further includes a control member arranged to adjust the size of the adjusting hole.
  • test box in the above embodiment is provided with an observation member arranged to observe the operation result in the test box.
  • observation member in the above embodiment includes a transparent member disposed on the case.
  • the box of the test box in the above embodiment is provided with an outlet hole provided as a wiring.
  • test chamber in the above embodiment further includes a detecting member configured to detect the temperature in the test chamber.
  • test box in the above embodiment further includes a display configured to display the detection result of the detecting member.
  • the detecting members in the above embodiments are multiple and/or positionally adjustable.
  • the adjustment member in the above embodiment includes the control member
  • the detecting member controls the control member
  • the test box provided by the utility model adjusts the cooling position in the test box by using the set adjusting member, and realizes the controllable position of the cooling position.
  • the local cooling of the functional components in the test box can be realized, and the present solution is solved.
  • the test box has a relatively slow cooling effect; further, the control member can be used to control the cooling speed, so that the cooling process can be controlled; further, the control member can be controlled by the detecting member to realize the real-time cooling position according to the test chamber.
  • the purpose of temperature control of the cooling rate; further, the observation result can make the operation result in the test box visible to the user; further, the connection of the functional component in the test box and the external device of the test box can be realized by using the outlet hole, so that the test box is inside The functional components remain operational while cooling down.
  • FIG. 2 is a schematic structural view of a test box provided by a second embodiment of the present invention.
  • test box 1 is a schematic structural view of a test box provided by the present invention.
  • the test box 1 provided by the present invention is provided with an adjusting member 11 which is arranged to adjust the temperature lowering position in the test box.
  • the external cooling source (such as cryogenic liquid/gas, etc.) is input into the test chamber through a cooling pipe (such as a spray pipe, etc.), and the existing test box is to fix the cooling pipe to the tank of the test box, generally It is fixed in the area away from the test box to place the functional components that need to be cooled, so that the test box can be uniformly cooled, and the test box provided by the present application can use the adjusting member 11 to introduce the external cooling source into the test box, and control the actual external cooling source.
  • a cooling pipe such as a spray pipe, etc.
  • the cooling area for example, by introducing a cooling pipe (such as a spray pipe) into the interior of the test box (in this case, the adjusting member 11 can be some opening), the purpose of introducing the external cooling source into the test box can be realized, on the basis of which,
  • the user can use the adjusting member 11 to move the cooling pipe (such as the spray pipe, etc.) to a position where the temperature needs to be cooled to perform local cooling in a specific area, and the docking of the cooling pipe (such as a spray pipe, etc.) by the adjusting member 11 (this)
  • the timing adjusting member 11 may be some pipes), and the external cooling source is introduced into a specific area of the test box through the adjusting member 11, and the test box is realized by the adjusting member 11.
  • the indirect contact between the specific area and the external cooling source in this case, the adjusting member 11 may be some heat conducting material), the adjusting member 11 is cooled by the external cooling source to achieve temperature reduction for a specific area, and the like.
  • the adjusting member 11 of FIG. 1 includes an adjusting hole 111 disposed on the box of the test box, and the user introduces a cooling pipe (such as a spray pipe, etc.) into the test box through the adjusting hole 111, and can adjust the cooling temperature.
  • a cooling pipe such as a spray pipe, etc.
  • the adjusting holes 111 in the adjusting member 11 in FIG. 1 are a plurality of, and the plurality of adjusting holes 111 can realize simultaneous partial cooling of a plurality of portions, or simultaneously cool the same functional member to enhance the cooling effect.
  • the adjusting member 11 in FIG. 1 further includes a control member 112 configured to adjust the size of the adjusting hole 111, and the control member 112 can control the size of the adjusting hole 111 to realize the cooling pipe (such as a spray pipe, etc.).
  • the control member 112 can control the size of the adjusting hole 111 to realize the cooling pipe (such as a spray pipe, etc.).
  • the control of the input rate of the external cooling source can control the cooling rate so that the cooling process is controllable (fine tuning, etc.);
  • the adjustment hole 111 can be a flexible pipe connected to the test box, and the control member 112 includes An elastic member (such as a spring coil or the like), the elastic member is deformed under the control of the control member 112, and the elastic member is surrounded by the outer wall of the flexible pipe as the adjustment hole 111, and the flexible pipe is deformed by expansion/contraction, thereby controlling Adjusting the actual size of the hole 111;
  • the adjusting hole 111 is a fixing hole formed on the case, and the control member 112 includes an adjusting device covering the fixing hole (such as a rotating hole, including two semi-circles, When the opening is completely coincident, the opening is the largest, and when the opening is the smallest, the opening is the smallest.)
  • the adjusting device can adjust the size of the actual opening according to the control of the control member 112, thereby realizing the adjustment.
  • the box of the test box of FIG. 1 is provided with an observation member arranged to observe the operation result in the test box, such as a display screen, etc., which can display the operation result in the test box in real time, so that the operation result in the test box is obtained. Visible to the user.
  • an observation member arranged to observe the operation result in the test box, such as a display screen, etc., which can display the operation result in the test box in real time, so that the operation result in the test box is obtained. Visible to the user.
  • the viewing member in the above embodiment includes a transparent member disposed on the case, the transparent member has a better display effect, and the cost is low, and the transparent member may be a glass cover or the like.
  • the test box of the test box of FIG. 1 is provided with an outlet hole provided as a wiring; in the application, the product to be tested can be placed in the test box, and the power supply line is connected to the outside through the outlet hole.
  • Equipment such as power supply enables the products in the test chamber to cool while working, facilitating rapid verification of the R&D process and rapid troubleshooting during the troubleshooting phase.
  • the test chamber of FIG. 1 further includes a detecting member configured to detect the temperature in the test chamber; the temperature in the test chamber can be detected in real time to obtain a predictable effect of cooling.
  • the test chamber in the above embodiment further includes a display configured to display the detection result of the detecting member; the cooling effect is displayed to the user through the display.
  • the detecting members in the above embodiments are multiple and/or position adjustable; in this embodiment, the temperature at different positions in the test chamber can be detected as needed.
  • the detecting member controls the control member; the embodiment enables the test box to control the cooling efficiency according to the detected temperature, so as to achieve a better cooling effect.
  • the test box provided by the utility model comprises: a plurality of openings 21 (adjusting holes as adjusting members), and a controller 22 (control member as an adjusting member), temperature display 23 (as a display), temperature detecting line 24 (as a detecting member), glass cover 25 (as an observation member), outlet hole 26, and closing door 27, which are in the box
  • the position distribution on the body is shown in Figure 2;
  • the temperature detecting line 24 as the detecting member displays the temperature in the test chamber through the liquid crystal display 23 as a display, and controls the controller 22 as a control member to thereby achieve the opening as the adjusting hole. 21 size control;
  • the closing door 27 is opened, the product is placed in the box, and the output line is connected to the load outside the box through the outlet hole 26;
  • the external liquid cooling source is extended into the box through the opening 21 by using the spray pipe, and the operator looks through the glass cover 25 to position the spray pipe into the box, so that the spray pipe can accurately reach the desired position, Specifically, the spray should be started in a place where the temperature is to be lowered, so that the liquid cooling source is sprayed onto the air in the box, or on the product, or on the device, to achieve rapid cooling;
  • the temperature detecting line 24 is adjusted to detect the air temperature inside the box, and the temperature of the box body is displayed according to the temperature display 23, and the size of the opening 21 is controlled by the controller 22 to control the cooling of the spray liquid.
  • the temperature detecting line 24 can be placed on the device, according to the temperature of the temperature display 23, the size of the adjusting opening 21 is controlled by the controller 22, the amount of the cooling liquid source for the spray liquid is controlled, and the spray is controlled. speed;
  • the product can be connected to an external load to achieve temperature reduction during operation.
  • the adjustment position of the test box is used to adjust the temperature drop position in the test box, and the temperature control position can be controlled. On this basis, the local temperature drop of the functional components in the test box can be realized, and the uniform cooling effect of the existing test box is solved slowly. The problem;
  • the cooling device can be controlled by the control member, so that the cooling process can be controlled
  • the purpose of controlling the cooling speed according to the real-time temperature of the temperature drop position in the test box can be realized;
  • observation result can make the operation result in the test box visible to the user
  • connection of the functional components in the test chamber to the external components of the test chamber can be realized by using the outlet holes, so that the functional components in the test chamber remain in operation when the temperature is lowered.
  • the temperature control position can be controlled, and on this basis, the functional components in the test box can be realized.
  • the local cooling has solved the problem that the uniform cooling effect of the existing test box is relatively slow.

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  • Health & Medical Sciences (AREA)
  • Clinical Laboratory Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Testing Resistance To Weather, Investigating Materials By Mechanical Methods (AREA)

Abstract

一种试验箱(1),该试验箱(1)设置有用于调节试验箱(1)内降温位置的调节件(11),利用该调节件(11)来调整试验箱(1)内的降温位置,实现了降温位置的可控,在此基础上,可以实现试验箱(1)内功能构件的局部降温。

Description

一种试验箱 技术领域
本实用新型涉及一种用于降温的试验箱。
背景技术
现有的试验箱一般是对试验箱内的所有功能构件统一降温,速度较慢,且在降温一般是在所有功能构件全部停止工作后进行。这类试验箱指不利于研发过程的快速验证和故障处理阶段的快速故障排查。
因此,如何提供一种可实现局部降温的试验箱,是本领域技术人员亟待解决的技术问题。
实用新型内容
本实用新型提供了一种试验箱,可实现试验箱内局部降温。
本实用新型提供了一种试验箱,在一个实施例中,该试验箱设置有用于调节试验箱内降温位置的调节件。
进一步的,上述实施例中的调节件包括设置于试验箱的箱体上的调节孔。
进一步的,上述实施例中的调节孔为多个。
进一步的,上述实施例中的调节件还包括设置为调整调节孔大小的控制件。
进一步的,上述实施例中的试验箱的箱体上设置有设置为观察试验箱内操作结果的观察件。
进一步的,上述实施例中的观察件包括设置于箱体上的透明构件。
进一步的,上述实施例中的试验箱的箱体上设置有设置为布线的出线孔。
进一步的,上述实施例中的试验箱还包括设置为检测试验箱内温度的检测件。
进一步的,上述实施例中的试验箱还包括设置为显示检测件检测结果的显示器。
进一步的,上述实施例中的检测件为多个和/或位置可调。
进一步的,当上述实施例中的调节件包括控制件时,检测件控制控制件。
本实用新型的有益效果:
本实用新型提供的试验箱,利用设置的调节件来调整试验箱内的降温位置,实现了降温位置的可控,在此基础上,就可以实现试验箱内功能构件的局部降温,解决了现有试验箱统一降温效果比较缓慢的问题;进一步的,利用控制件可以控制降温速度,使得降温过程可控;进一步的,利用检测件对控制件进行控制可以实现根据试验箱内待降温位置的实时温度控制降温速度的目的;进一步的,利用观察件可以使得试验箱内的操作结果对用户可见;进一步的,利用出线孔可以实现试验箱内功能构件与试验箱外部器件的连接,使得试验箱内功能构件在降温时,仍然保持工作。
附图说明
图1为本实用新型第一实施例提供的试验箱的结构示意图;
图2为本实用新型第二实施例提供的试验箱的结构示意图。
具体实施方式
现通过具体实施方式结合附图的方式对本实用新型做出进一步的诠释说明。
第一实施例:
图1为本实用新型提供的试验箱的结构示意图,由图1可知,在本实施例中,本实用新型提供的试验箱1设置有设置为调节试验箱内降温位置的调节件11。在实际应用中,外部降温源(如低温液体/气体等)通过降温管道(如喷淋管等)输入到试验箱内,现有试验箱是将降温管道固定于试验箱的箱体上,一般固定于远离试验箱内放置需要降温的功能构件的区域,使得试验箱可以统一降温,而本申请所提供的试验箱可以利用调节件11将外部降温源导入试验箱之后,控制外部降温源的实际冷却区域,如通过将降温管道(如喷淋管等)导入试验箱内部(此时调节件11可以是一些开孔),就可以实现将外部降温源导入试验箱的目的,在此基础上,用户可以利用调节件11将降温管道(如喷淋管等)移动到需要降温的位置进行特定区域的局部降温,又如通过调节件11实现与降温管道(如喷淋管等)的对接(此时调节件11可以是一些管道),将外部降温源通过调节件11导入试验箱的特定区域,又如通过调节件11实现试验箱 内特定区域与外部降温源的间接接触(此时调节件11可以是一些导热材料),利用外部降温源对调节件11进行降温以达到对特定区域的降温等。
在一些实施例,图1中的调节件11包括设置于试验箱的箱体上的调节孔111,用户将降温管道(如喷淋管等)通过调节孔111导入试验箱内部,并可以调节降温管道的出口位置,来实现对特定区域的降温。
在一些实施例,图1中的调节件11中的调节孔111为多个,多个调节孔111可以实现多个部位同时进行局部降温,或者对同一功能构件同时降温,增强降温效果。
在一些实施例,图1中的调节件11还包括设置为调整调节孔111大小的控制件112,控制件112可以控制调节孔111的大小,进而实现对降温管道(如喷淋管等)中外部降温源的输入速率的控制,可以控制降温速度,使得降温过程可控(微调等);在一些实施例中,调节孔111可以是连接在试验箱箱体上的柔性管道,控制件112包括弹性构件(如弹簧圈等),弹性构件在控制件112的控制下发生形变,而该弹性构件是包围在作为调节孔111的柔性管道外壁上,通过扩张/收缩使得柔性管道发生形变,进而控制调节孔111的实际大小;在另一些实施例中,调节孔111是开设在箱体上的固定孔,而控制件112包括一个覆盖固定孔的调节装置(如转动孔,包括2个半圆片,完全重合时开口最大,完全不重合时开口最小),该调节装置可以根据控制件112的控制来调节实际开口的大小,进而实现对调节孔111大小的控制。
在一些实施例,图1中试验箱的箱体上设置有设置为观察试验箱内操作结果的观察件,如显示屏等可以实时显示试验箱内操作结果的设备,使得试验箱内的操作结果对用户可见。
在一些实施例,上述实施例中的观察件包括设置于箱体上的透明构件,透明构件显示效果较佳,且成本低,透明构件可以是玻璃罩等。
在一些实施例,图1中的试验箱的箱体上设置有设置为布线的出线孔;在应用中,可以将待检测性能的产品放入试验箱内,将供电线通过出线孔连接到外部电源等设备,使得试验箱内的产品可以一边工作一边降温,便于研发过程的快速验证和故障处理阶段的快速故障排查。
在一些实施例,图1中的试验箱还包括设置为检测试验箱内温度的检测件;可以实时检测试验箱内的温度,得到降温效果的可预见。
在一些实施例,上述实施例中的试验箱还包括设置为显示检测件检测结果的显示器;通过显示器向用户显示降温效果。
在一些实施例,上述实施例中的检测件为多个和/或位置可调;本实施例就可以根据需要检测试验箱内不同位置的温度。
在一些实施例,上述实施例中的调节件包括控制件时,检测件控制控制件;本实施例使得试验箱可以根据检测到的温度来控制降温效率,以期达到更好的降温效果。
第二实施例:
现结合具体应用实例对本申请做进一步的诠释说明,如图2所示,在本实施例中,本实用新型提供的试验箱包括:多个开孔21(作为调节件的调节孔)、控制器22(作为调节件的控制件)、温度显示器23(作为显示器)、温度侦测线24(作为检测件)、玻璃罩25(作为观察件)、出线孔26、以及封闭门27,其在箱体上的位置分布如图2所示;
在本实施例中,作为检测件的温度侦测线24通过作为显示器的液晶显示器23显示试验箱内的温度,并对作为控制件的控制器22进行控制,进而达到对作为调节孔的开孔21大小的控制;
工作时,打开封闭门27,将产品放入箱体中,将输出线通过出线孔26连接到箱体外面的负载;
外部的液体降温源,使用喷淋管通过开孔21伸入箱体内,操作人员通过玻璃罩25查看喷淋管伸入箱体的位置,让喷淋管准确伸入到想要的位置,针对具体要降温的地方启动喷淋,使液体降温源喷淋到箱体中空气,或产品上,或器件上,实现快速降温;具体的,
如需调节箱体内整体温度,将温度侦测线24调整为侦测箱体内空气温度,根据温度显示器23显示箱体内空气温度,通过控制器22控制调节开孔21的大小,控制喷淋液体降温源的量以及喷淋速度;
如需调节产品上具体器件温度,可将温度侦测线24放置在器件上,根据温度显示器23温度,通过控制器22控制调节开孔21的大小,控制喷淋液体降温源的量以及喷淋速度;
由于有出线孔26,能实现让产品连接外部负载,实现在工作时降温。
综上可知,通过本实用新型的实施,至少存在以下有益效果:
利用设置的调节件来调整试验箱内的降温位置,实现了降温位置的可控,在此基础上,就可以实现试验箱内功能构件的局部降温,解决了现有试验箱统一降温效果比较缓慢的问题;
进一步的,利用控制件可以控制降温速度,使得降温过程可控;
进一步的,利用检测件对控制件进行控制可以实现根据试验箱内待降温位置的实时温度控制降温速度的目的;
进一步的,利用观察件可以使得试验箱内的操作结果对用户可见;
进一步的,利用出线孔可以实现试验箱内功能构件与试验箱外部器件的连接,使得试验箱内功能构件在降温时,仍然保持工作。
以上仅是本实用新型的具体实施方式而已,并非对本实用新型做任何形式上的限制,凡是依据本实用新型的技术实质对以上实施方式所做的任意简单修改、等同变化、结合或修饰,均仍属于本实用新型技术方案的保护范围。
工业实用性
基于本实用新型的实施例提供的上述技术方案,通过利用设置的调节件来调整试验箱内的降温位置,实现了降温位置的可控,在此基础上,就可以实现试验箱内功能构件的局部降温,解决了现有试验箱统一降温效果比较缓慢的问题。

Claims (11)

  1. 一种试验箱,所述试验箱设置有用于调节所述试验箱内降温位置的调节件。
  2. 如权利要求1所述的试验箱,其中,所述调节件包括设置于所述试验箱的箱体上的调节孔。
  3. 如权利要求2所述的试验箱,其中,所述调节孔为多个。
  4. 如权利要求2所述的试验箱,其中,所述调节件还包括设置为调整所述调节孔大小的控制件。
  5. 如权利要求1所述的试验箱,其中,所述试验箱的箱体上设置有设置为观察所述试验箱内操作结果的观察件。
  6. 如权利要求5所述的试验箱,其中,所述观察件包括设置于所述箱体上的透明构件。
  7. 如权利要求1所述的试验箱,其中,所述试验箱的箱体上设置有设置为布线的出线孔。
  8. 如权利要求1至7任一项所述的试验箱,其中,所述试验箱还包括设置为检测所述试验箱内温度的检测件。
  9. 如权利要求8所述的试验箱,其中,所述试验箱还包括设置为显示所述检测件检测结果的显示器。
  10. 如权利要求8所述的试验箱,其中,所述检测件为多个和/或位置可调。
  11. 如权利要求8所述的试验箱,其中,当所述调节件包括控制件时,所述检测件控制所述控制件。
PCT/CN2015/075730 2014-10-23 2015-04-01 一种试验箱 WO2016062019A1 (zh)

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