CN1510386A - Method and device for removing inner noncondensed gas of hot pipe - Google Patents
Method and device for removing inner noncondensed gas of hot pipe Download PDFInfo
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- CN1510386A CN1510386A CNA021598975A CN02159897A CN1510386A CN 1510386 A CN1510386 A CN 1510386A CN A021598975 A CNA021598975 A CN A021598975A CN 02159897 A CN02159897 A CN 02159897A CN 1510386 A CN1510386 A CN 1510386A
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- heat pipe
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- gas inside
- exhaust outlet
- concretive gas
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Abstract
A method for removing the non-coagulating gas from heat tube includes such steps as pre-filling a working fluid in the heat tube by a predefined amount, heating the working fluid to its saturation temp and then to boiling and evaporating state for using its vapour to repel the non-coagulating gas outlet of the heat tube until the exhausted vapor reaches a certain quantity, and sealing the heat tube. Its apparatus is composed of a heating tool and a sealing unit.
Description
Technical field
The present invention relates to a kind of method and device thereof of removing not concretive gas inside heat pipe, relate in particular to a kind of being applicable to when making heat pipe, can enclose under the situation of amount of working fluid of inside heat pipe grasping desire more accurately, remove the directly device of use of the method for this not concretive gas inside heat pipe and this method institute.
Background technology
Because heat pipe has characteristics such as high hot biography ability, flash heat transfer, high thermoconductivity, in light weight, no mobile component, simple in structure and multipurpose, can transmit a large amount of heat and do not consume electric power, therefore the radiating requirements of very suitable electronic product.In addition, existing heat pipe inwall is equipped with capillary structure (wick structure), this capillary structure can be has capillary mesh grid etc., by the capillarity of capillary structure, can be convenient to the transmission of working fluid (working fluid) in the heat pipe.
And in the past when making heat pipe, the steam flow that is sprayed with the heating method of displacing is driven the not concretive gas (non-condensing gas) in the heat pipe out of; The method is used for being at normal temperatures liquid working fluid, and is applicable to the less water of operator's risk factor, dichlorodifluoromethan (freon 113), ethanol (ethanol) or the like.This method is injecting in the heat pipe more than the working fluid of enclosed volume slightly, the exhaust outlet of temporary transient locking heat pipe upper end, heating makes the steam air pressure of working fluid reach 0.2~0.4Mpa, then, the heat pipe exhaust outlet that to temporarily lock again is open, make the inside and outside pressure balance of heat pipe, working fluid begins flickering, from the exhaust outlet ejection steam of heat pipe.Flickering is a kind ofly to evaporate into the physical phenomenon (saturation water sharply gasifies) of gaseous state by liquid moment, and this flickering separates the molten gas of depositing of working fluid, and the steam flow of ejection is driven the not concretive gas in the heat pipe out of.After suitably driving steam out of, the exhaust outlet of sealing heat pipe can fully outgas in this heat pipe; And the amount of working fluid of enclosing is amount of working fluid and the Fluid Volume of driving out of with steam poor of excessive inclosure in advance, and this must be in advance according to heat time heating time and its temperature and heat pipe shape, the amount of displacing of seeking knowledge.
But in the above-mentioned method, because steam flow is sealed by the exhaust outlet of the temporary transient locking of heat pipe earlier, after the steam pressure of working fluid was enough, the exhaust outlet that just will be somebody's turn to do temporary transient locking was decontroled, and utilizes steam that not concretive gas is driven out of.But the operation of the exhaust outlet of the temporary transient locking of this relieving, and the discharge rate that can't accurately grasp steam flow is (because of decontroling the moment of exhaust outlet, steam can be gone out apace, and bore and the exhaust outlet of decontroling exhaust outlet differ by being closed to complete opening institute's time spent at every turn, influence the precision of actual inclosure amount of working fluid so the steam discharge rate can't accurately be learnt), cause desire to enclose amount of working fluid and the actual amount of working fluid of being enclosed gap to some extent more or less in heat pipe, and owing to temporary transient locking at exhaust outlet, lock once more after opening again and seal, can cause sealing part to harden, influence the qualitative management and control of heat pipe because of excessively processing.
Therefore, above-mentioned existing application on reality is used, obviously has inconvenience and defective in the method for discharging not concretive gas inside heat pipe, remains to be improved.
Summary of the invention
Defective at above-mentioned prior art, main purpose of the present invention is to provide a kind of method and device thereof of removing not concretive gas inside heat pipe, it can make heat pipe in the exhaust process of carrying out not concretive gas, can grasp the discharge rate of steam flow more accurately, and try to achieve the institute desire according to heat time heating time and heat pipe caliber size and enclose amount of working fluid in the heat pipe, and then make the heat pipe precision of manufacturing better, and do not need temporarily to lock the operation of exhaust outlet, can effectively improve the quality of the structure of heat pipe sealing.
To achieve these goals, the invention provides a kind of method of removing not concretive gas inside heat pipe, its key step is as follows:
A) in the working fluid of inside heat pipe filling scheduled volume, and in this heat pipe upper end reservation one exhaust outlet;
B) this heat pipe is heated so that inner working fluid reaches its saturation temperature;
C) continue to keep this saturation temperature to working fluid to be boiling and evaporating state, the not concretive gas of this inside heat pipe is driven discharge by this exhaust outlet with the steam that utilizes evaporation; And
When d) working fluid for the treatment of this inside heat pipe arrived predetermined steam discharge rate, promptly the exhaust outlet to this heat pipe sealed.
Described method of removing not concretive gas inside heat pipe, wherein the described saturation temperature of step b) is the boiling point of working fluid.
Described method of removing not concretive gas inside heat pipe, wherein step b) before this heat pipe is heated or simultaneously, the exhaust outlet of this heat pipe is urged to the mouth of pipe that its bore forms a less gap, makes this exhaust outlet only leave narrow and small area exhaust is provided.
Described method of removing not concretive gas inside heat pipe, wherein this exhaust outlet is to utilize after the Sealing pliers mould compressing to make its bore form this gap.
Described method of removing not concretive gas inside heat pipe, wherein step c) is to add heat by control, and working fluid is leniently seethed with excitement, and avoids liquid working fluid to spray outside this heat pipe, to be used for accurately sealing up for safekeeping amount of working fluid.
Described method of removing not concretive gas inside heat pipe, wherein step c) is with heat more greatly working fluid to be seethed with excitement more tempestuously, and the working fluid of operative liquid is sprayed outside this heat pipe, to be used to improve speed of production.
Described method of removing not concretive gas inside heat pipe, wherein step d) remains on more than the saturation temperature of working fluid the temperature of the peripheral side of exhaust outlet of this heat pipe before this exhaust outlet is sealed.
Described method of removing not concretive gas inside heat pipe, wherein the peripheral side of this exhaust outlet contacts with a Sealing pliers mould, and the temperature of this Sealing pliers mould continues to remain on more than the saturation temperature of working fluid.
To achieve these goals, the present invention also provides a kind of device of removing not concretive gas inside heat pipe, and itself and above-mentioned heat pipe cooperating comprise that a heating tool and seals the unit; Wherein, this heating tool is wherein ccontaining and heating is provided for above-mentioned heat pipe pipe shaft, and be provided with jaw and locate this heat pipe, and this seals the unit and is located at this heating tool top, and, and comprise Sealing pliers mould and and make the enclosed mechanism of opening and closing mould for this Sealing pliers mould with respect to the peripheral side edge of this heat pipe sealing; So as to forming the device of removing not concretive gas inside heat pipe.
A kind of device of removing not concretive gas inside heat pipe, itself and a heat pipe cooperating; Comprise:
One heating tool, wherein ccontaining and heating is provided for this heat pipe pipe shaft, and be provided with jaw and locate this heat pipe; And
One seals the unit, is located at this heating tool top, and with respect to the peripheral side edge of this heat pipe sealing, and the enclosed mechanism that comprises the Sealing pliers mould and make the opening and closing mould for this Sealing pliers mould.
The described device of removing not concretive gas inside heat pipe, wherein this heating tool has the heater of control temperature.
The described device of removing not concretive gas inside heat pipe, wherein the jaw of this heating tool can cooperate the heat pipe of different tube diameters with the modularization manufacturing, also replaceable, dismounting.
The described device of removing not concretive gas inside heat pipe, wherein the jaw of this heating tool has the folder mouth that cooperates this heat pipe external diameter size.
The described device of removing not concretive gas inside heat pipe, wherein this Sealing pliers mould that seals the unit can cooperate the heat pipe of different tube diameters with the modularization manufacturing, also replaceable, dismounting.
Brief Description Of Drawings
Below in conjunction with accompanying drawing,, will make technical scheme of the present invention and other beneficial effects apparent by detailed description to embodiments of the invention.
In the accompanying drawing,
Fig. 1 is the schematic flow sheet of the inventive method;
Fig. 2 is the operation chart () of apparatus of the present invention;
Fig. 3 is the operation chart (two) of apparatus of the present invention;
Fig. 4 is the profile along the 4-4 direction of Fig. 2.
The specific embodiment
See also Fig. 1, Fig. 2 and Fig. 3, it is respectively the schematic flow sheet of the inventive method, the operation chart of device () and (two).The invention provides a kind of method of removing not concretive gas inside heat pipe, its key step is as follows:
A) reserve an exhaust outlet 10 in the working fluid (working fluid, figure are slightly) of a heat pipe 1 inner filling scheduled volume, and in this heat pipe 1 upper end; The amount of working fluid that the scheduled volume of described working fluid is enclosed more than desire slightly, this exhaust outlet 10 then are the sealing part that 1 desire of heat pipe is prepared.
B) this heat pipe 1 is heated, make inner working fluid reach its saturation temperature (saturatedtemperature); This so-called saturation temperature is the boiling point of working fluid.
C) continue to keep this saturation temperature to working fluid to be boiling and evaporating state, utilize the steam of evaporation that the not concretive gas (non-condensing gas) of heat pipe 1 inside is driven discharge by this exhaust outlet 10; In this step, if in the time of need precisely sealing amount of working fluid up for safekeeping, working fluid is leniently seethed with excitement, to avoid liquid working fluid to spray outside the heat pipe 1, just control it and add heat working fluid is seethed with excitement tempestuously, yet its degasification time is also longer relatively, so, can stably control liquid working fluid and be evaporated out heat pipe 1 discharge rate outward, thereby grasp the amount of sealing up for safekeeping of working fluid easily;
And if during the amount of working fluid that does not more need precisely to seal up for safekeeping, can make working fluid make partly liquid working fluid be released by steam and spray outside the exhaust outlet 10 of this heat pipe 1 with the bigger heat that adds in more violent boiling mode, this practice is compared with preceding method, though relatively be difficult for to grasp the amount of sealing up for safekeeping of working fluid, but still have the degasification time of minimizing, reduce cost and the more high advantage of speed of production.
When d) working fluid for the treatment of heat pipe 1 inside arrived predetermined steam discharge rate, promptly the exhaust outlet 10 to this heat pipe 1 sealed.
Therefore, by above-mentioned steps flow chart, can obtain the present invention relevant for " removing the method for not concretive gas inside heat pipe ".
See also Fig. 2, Fig. 3 and shown in Figure 4, the invention provides a kind of device of removing not concretive gas inside heat pipe, itself and above-mentioned heat pipe 1 cooperating comprise that a heating tool 2 and seals unit 3;
Wherein:
This heating tool 2 has the heater 20 that can control heating amount and temperature, wherein ccontaining for this heat pipe 1 pipe shaft, and heat by these heater 20 opposite heat tubes 1, simultaneously, be provided with a jaw 21 in this heating tool 2, this jaw 21 can be clamped and fastened on heat pipe 1 on the heating tool 2 and be located.
This seals unit 3 and comprises the enclosed mechanism 31 that one group of Sealing pliers mould 30 and can be made the opening and closing mould for this group Sealing pliers mould 30, and this seals unit 3 and is located at above-mentioned heating tool 2 tops, and seal the peripheral side edge of (being exhaust outlet 10) with respect to heat pipe 1, so that this heat pipe 1 is carried out sealing operation.
In addition, described jaw 21 all can be made via modularization (modulized) with Sealing pliers mould 30, and can cooperate the heat pipe 1 of different tube diameters, also replaceable, dismounting; Jaw 21 wherein has the folder mouth 210 of the external diameter size that cooperates heat pipe 1, Sealing pliers mould 30 is then looked the difference of heat pipe 1 bore and is had enough moulds with its deadend, so, the manufacturing demand that can cooperate different heat pipe 1 calibers provides the jaw 21 and Sealing pliers mould 30 of corresponding specification.
Therefore, by above-mentioned contexture, can obtain the present invention relevant for " removing the device of not concretive gas inside heat pipe ".
In addition, if when this device carries out said method, before opposite heat tube 1 heats in step b) or simultaneously, can utilize this Sealing pliers mould 30 that the exhaust outlet 10 of heat pipe 1 is urged to the mouth of pipe that its bore forms a less gap earlier, make this exhaust outlet 10 only leave narrow and small area exhaust is provided, strengthening the inside and outside pressure differential of heat pipe 1 and to be beneficial to the discharge of not concretive gas, and also can make heat pipe 1 not be vulnerable to the pollution of environment and the discharge rate of stable control working fluid.
In addition, before the sealing operation to exhaust outlet 10 in step d), can make the temperature of Sealing pliers mould 30 continue to remain on more than the saturation temperature of working fluid earlier, and this Sealing pliers mould 30 is contacted with the exhaust outlet 10 peripheral side edge of heat pipe 1, and keep these exhaust outlet 10 opening-like attitudes (promptly earlier not with its sealing), so that be difficult for being condensed in this sealing part by the steam of this exhaust outlet 10, and then the seal quality of the environmental quality that promotes the work board and this heat pipe 1 reaches and can not hinder exhaust in exhaust outlet 10 condensations, keeps its stable steam flow rate.
Therefore, by the present invention, have following several advantages at least:
1, since heat pipe 1 the heating process in, its exhaust outlet 10 all remains on the bore (prior art must temporary transient locking exhaust outlet and its caliber size is changed) of fixed dimension, so can grasp the discharge rate of steam flow more accurately, make the amount of working fluid of enclosing in the heat pipe 1 more consistent.
2, can utilize this simple device of structure to cooperate and carry out, and this device via modular design after, can cooperate the manufacturing demand of different heat pipe 1 calibers.
3, not concretive gas via in the process of heat pipe 1 heating by discharge that steam flow is driven gradually, so utilization is more in the past heated and displaced the mode that method institute sprays steam flow moment and have more security.
4, sealing part is because of the operation of the temporary transient locking exhaust outlet 10 of not die sinking repeatedly, mold closing, so the enclosuring structure of exhaust outlet 10 can not harden because of excessively processing.
Be understandable that; for the person of ordinary skill of the art; can make other various corresponding changes and distortion according to technical scheme of the present invention and technical conceive, and these all changes and distortion all should belong to the protection domain of the appended claim of the present invention.
Claims (13)
1, a kind of method of removing not concretive gas inside heat pipe comprises the following steps:
A) in the working fluid of inside heat pipe filling scheduled volume, and in this heat pipe upper end reservation one exhaust outlet;
B) this heat pipe is heated so that inner working fluid reaches its saturation temperature;
C) continue to keep this saturation temperature to working fluid to be boiling and evaporating state, the not concretive gas of this inside heat pipe is driven discharge by this exhaust outlet with the steam that utilizes evaporation; And
When d) working fluid for the treatment of this inside heat pipe arrived predetermined steam discharge rate, promptly the exhaust outlet to this heat pipe sealed.
2, method of removing not concretive gas inside heat pipe according to claim 1, wherein the described saturation temperature of step b) is the boiling point of working fluid.
3, method of removing not concretive gas inside heat pipe according to claim 1, wherein step b) before this heat pipe is heated or simultaneously, the exhaust outlet of this heat pipe is urged to the mouth of pipe that its bore forms a less gap, makes this exhaust outlet only leave narrow and small area exhaust is provided.
4, method of removing not concretive gas inside heat pipe according to claim 3, wherein this exhaust outlet is to utilize after the Sealing pliers mould compressing to make its bore form this gap.
5, method of removing not concretive gas inside heat pipe according to claim 1, wherein step c) is to add heat by control, working fluid is leniently seethed with excitement, and avoid liquid working fluid to spray outside this heat pipe, to be used for accurately sealing up for safekeeping amount of working fluid.
6, method of removing not concretive gas inside heat pipe according to claim 1, wherein step c) is with heat more greatly working fluid to be seethed with excitement more tempestuously, and the working fluid of operative liquid is sprayed outside this heat pipe, to be used to improve speed of production.
7, method of removing not concretive gas inside heat pipe according to claim 1, wherein step d) remains on more than the saturation temperature of working fluid the temperature of the peripheral side of exhaust outlet of this heat pipe before this exhaust outlet is sealed.
8, method of removing not concretive gas inside heat pipe according to claim 7, wherein the peripheral side of this exhaust outlet contacts with a Sealing pliers mould, and the temperature of this Sealing pliers mould continues to remain on more than the saturation temperature of working fluid.
9, a kind of device of removing not concretive gas inside heat pipe, itself and a heat pipe cooperating; Comprise:
One heating tool, wherein ccontaining and heating is provided for this heat pipe pipe shaft, and be provided with jaw and locate this heat pipe; And
One seals the unit, is located at this heating tool top, and with respect to the peripheral side edge of this heat pipe sealing, and the enclosed mechanism that comprises the Sealing pliers mould and make the opening and closing mould for this Sealing pliers mould.
10, the device of removing not concretive gas inside heat pipe according to claim 9, wherein this heating tool has the heater of control temperature.
11, the device of removing not concretive gas inside heat pipe according to claim 9, wherein the jaw of this heating tool can cooperate the heat pipe of different tube diameters with the modularization manufacturing, also replaceable, dismounting.
12, the device of removing not concretive gas inside heat pipe according to claim 9, wherein the jaw of this heating tool has the folder mouth that cooperates this heat pipe external diameter size.
13, the device of removing not concretive gas inside heat pipe according to claim 9, wherein this Sealing pliers mould that seals the unit can cooperate the heat pipe of different tube diameters with the modularization manufacturing, also replaceable, dismounting.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CNB021598975A CN1322301C (en) | 2002-12-24 | 2002-12-24 | Method and device for removing inner noncondensed gas of hot pipe |
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CNB021598975A CN1322301C (en) | 2002-12-24 | 2002-12-24 | Method and device for removing inner noncondensed gas of hot pipe |
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CN1510386A true CN1510386A (en) | 2004-07-07 |
CN1322301C CN1322301C (en) | 2007-06-20 |
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CNB021598975A Expired - Fee Related CN1322301C (en) | 2002-12-24 | 2002-12-24 | Method and device for removing inner noncondensed gas of hot pipe |
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Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
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CN100380086C (en) * | 2004-11-24 | 2008-04-09 | 李嘉豪 | Method and special apparatus for eliminating non-condensed gas in hot pipeline |
CN100445682C (en) * | 2005-01-14 | 2008-12-24 | 徐惠群 | Degasing method by non-vertically arranging heat pipe |
CN100470182C (en) * | 2004-12-30 | 2009-03-18 | 李嘉豪 | Method and device for removing not concretive gas inside heat pipe |
CN100582636C (en) * | 2005-09-28 | 2010-01-20 | 鸿富锦精密工业(深圳)有限公司 | Preparation method of hot pipes |
CN102679782A (en) * | 2012-05-31 | 2012-09-19 | 华南理工大学 | Heat pipe vacuum liquid filling and degassing method and equipment adopting same |
FR3104450A1 (en) | 2019-12-17 | 2021-06-18 | Universite Grenoble Alpes | Process for degassing a fluid |
CN114800583A (en) * | 2022-04-18 | 2022-07-29 | 浙江大学 | Two-phase driving flexible paw |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
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US4106171A (en) * | 1974-11-29 | 1978-08-15 | Hughes Aircraft Company | Method for closure of heat pipes and device fabricated thereby |
JPH1038485A (en) * | 1996-07-25 | 1998-02-13 | Fujikura Ltd | Method and implement for filling heat pipe with working fluid |
JPH10148485A (en) * | 1996-11-18 | 1998-06-02 | Fujikura Ltd | Manufacture of heat pipe |
TW493058B (en) * | 1998-07-02 | 2002-07-01 | Showa Denko Kk | The remains of non condensing gas in heat pipe, the detecting method of non-remains, and the manufacturing method of pipes |
-
2002
- 2002-12-24 CN CNB021598975A patent/CN1322301C/en not_active Expired - Fee Related
Cited By (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN100380086C (en) * | 2004-11-24 | 2008-04-09 | 李嘉豪 | Method and special apparatus for eliminating non-condensed gas in hot pipeline |
CN100470182C (en) * | 2004-12-30 | 2009-03-18 | 李嘉豪 | Method and device for removing not concretive gas inside heat pipe |
CN100445682C (en) * | 2005-01-14 | 2008-12-24 | 徐惠群 | Degasing method by non-vertically arranging heat pipe |
CN100582636C (en) * | 2005-09-28 | 2010-01-20 | 鸿富锦精密工业(深圳)有限公司 | Preparation method of hot pipes |
CN102679782A (en) * | 2012-05-31 | 2012-09-19 | 华南理工大学 | Heat pipe vacuum liquid filling and degassing method and equipment adopting same |
CN102679782B (en) * | 2012-05-31 | 2013-12-11 | 华南理工大学 | Heat pipe vacuum liquid filling and degassing method and equipment adopting same |
FR3104450A1 (en) | 2019-12-17 | 2021-06-18 | Universite Grenoble Alpes | Process for degassing a fluid |
WO2021122769A1 (en) | 2019-12-17 | 2021-06-24 | Universite Grenoble Alpes | Method for degassing a fluid |
CN114800583A (en) * | 2022-04-18 | 2022-07-29 | 浙江大学 | Two-phase driving flexible paw |
CN114800583B (en) * | 2022-04-18 | 2023-09-26 | 浙江大学 | Two-phase driving flexible paw |
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