CN1803367A - Heat pipe continuous delivery welding method and its device - Google Patents

Heat pipe continuous delivery welding method and its device Download PDF

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Publication number
CN1803367A
CN1803367A CN 200510002190 CN200510002190A CN1803367A CN 1803367 A CN1803367 A CN 1803367A CN 200510002190 CN200510002190 CN 200510002190 CN 200510002190 A CN200510002190 A CN 200510002190A CN 1803367 A CN1803367 A CN 1803367A
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heat pipe
welding
continuously
unit
transmits
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CN 200510002190
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Chinese (zh)
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CN100406185C (en
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徐惠群
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Individual
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Individual
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Abstract

The invention discloses a welding continuous transmission method and device of heat pipe, which is characterized by the following: placing the heat pipe of stitched closure in the aggregate unit; outputting the pulse signal through outside control unit at continuous interval pattern; driving the power generation component of transmission unit to rotate the shaft; making once shaft rotation as the driving location pattern forwards of transmission band; sending out the heat pipe of aggregate unit through transmission unit; welding the joint; finishing continuous transmission operation for welded pipe.

Description

Heat pipe transmits the method and the device of welding continuously
Technical field
The present invention relates to a kind of method and device of heat pipe welding, relate in particular to a kind of heat pipe that utilizes after continuous mode of movement is carried pressing sealing, and heat pipe is delivered to the heat pipe that processing such as carrying out pressing sealing on the welding unit handles transmits the method and the device of welding continuously.
Background technology
Present known heat pipe has the Rapid Thermal conducting effect, so heat pipe extensively is used on the electronic building brick, can fast the heat that electronic building brick produced be left.At present the heat pipe making step roughly is divided into: hot-fluid design → pipe shaft, end cap and fill pipe machining → chemical solvent grease removal and steps such as ultrasonic cleansing → sintered copper powder capillary structure shaping and pipe shaft, end cap, filling pipe, welding → heat pipe semi-finished product vacuum leak detection → heating in vacuum → vacuum degassing and working fluid quantitative filling → filling are managed crimping, cut off, welding → heat pipe finished product test → finish.
At the equipment that steps such as above-mentioned heat pipe filling deairing and sealing welding are used, heat pipe is filled the degasification bonding machine automatically as is well known.On the employed board of this bonding machine, be provided with a rotating disk, but on average cut apart the feeding clip mechanism that is provided with the processing of clamping heat pipe on this rotating disk, with disconnected device of take out device (mechanical arm), feeding device, positioner, device for filling, degasification and stone roller and welder, order substation correspondence is arranged on the rotating disk periphery again.
This heat pipe is filled the degasification bonding machine automatically, when the processing processing operation, behind the jaw gripping heat pipe with take out device, heat pipe is transmitted on the anchor clamps of rotating disk, by under dial rotation and the positioner control, heat pipe is gone on each work station process processing operation one by one again.Yet this processing is handled board and not only is difficult for setting up, and occupies easily and set up the space, has limited heat pipe processing processing operation time and speed on the processing processing operation especially, causes the few defective of heat pipe quantity of being produced.
In addition, heat pipe is after annealing heat treatment, and material is very soft, very easily because of pawl folder strength bestow improper, and mechanical deflection, and the situation that the heat pipe surface is crushed and is out of shape by pawl takes place.
Content of the present invention
Main purpose of the present invention is to solve the defective that exists in the above-mentioned prior art.The present invention will be the processing machine redesign of welding automatically of the heat pipe of pressing sealing, the heat pipe that this processing machine can be transmitted continuously behind the pressing sealing carries out weld job, makes quality, speed of production and quantity to improve heat control.
To achieve these goals, the method of heat pipe continuous delivery deairing, stitching and sealing of the present invention and device, mainly be that the heat pipe behind the pressing sealing is placed in the unit that gathers materials, externally control module is with consecutive intervals mode output pulse signal, when the rotating shaft of the power-generating assembly of driving supply unit is rotated, this rotating shaft revolution moves lattice, after driving forwards lattice, the conveyer belt that is equivalent to supply unit locatees, can and be positioned to weld in the welding unit with the heat pipe conveying, after welding, promptly finish the continuous conveying processing operation of heat pipe welding.
The method of heat pipe continuous delivery deairing, stitching and sealing of the present invention and device can improve heat control and make quality, speed of production and quantity.
Brief description of drawings
Fig. 1 is that the heat pipe of the embodiment of the invention passes continuous conveying machine schematic diagram;
Fig. 2 is the schematic top plan view of Fig. 1;
Fig. 3 is the schematic side view of Fig. 1;
Fig. 4 is the heat pipe welding action schematic diagram () of Fig. 3;
Fig. 5 is the heat pipe welding action schematic diagram (two) of Fig. 3;
Fig. 6 is the schematic diagram of second embodiment of the invention;
Fig. 7 is the schematic diagram of third embodiment of the invention.
In the accompanying drawing, the list of parts of each label representative is as follows:
1, the 1a-heat pipe 2-unit that gathers materials
3-supply unit 4-welding unit
5-collector unit 31-power-generating assembly
311-rotating shaft 32-transmission component
33-runner 34-conveyer belt
341-placement space 6-locatees sensing cell
The specific embodiment
Relevant technology contents of the present invention and detailed description, existing conjunction with figs. is described as follows:
Fig. 1, Fig. 2 are continuous conveying machine of heat pipe of the present invention and schematic top plan view.As shown in Figure 1 and Figure 2, heat pipe of the present invention transmits the method and the device of welding continuously, mainly is when making production, and heat pipe 1 is transmitted with the continuous mode of movement of level, and in course of conveying, simultaneously the heat pipe 1 behind the pressing sealing or the draw is carried out solder up.
The method that above-mentioned heat pipe transmits welding continuously comprises: at first, the heat pipe behind the pressing sealing 1 is placed in the unit 2 that gathers materials, and continuously heat pipe 1 is sent by supply unit 3;
The power generation source that supply unit 3 is carried is any the formed power-generating assembly 31 by stepping or servo motor.The pulse signal that power-generating assembly 31 is exported by external control unit (not shown) drives.The power that power-generating assembly 31 is exported drives transmission component 32 through rotating shaft 311 and rotates, and the runner 33 on the while transmission component 32 promptly drives conveyer belt 34 and moves;
Because the external control unit is with consecutive intervals mode output pulse signal, when the power-generating assembly 31 of pulse signal driving each time, just allow the rotating shaft 311 of power-generating assembly 31 rotate lattice, this motion of rotating lattice forms supply unit 3 and is fed forward a lattice heat pipe 1, allow heat pipe 1 can accurately be positioned at (as Fig. 3, Fig. 4, shown in Figure 5) in the welding unit 4, allow welding unit 4 seal.
As shown in Figure 1 and Figure 2: in the heat pipe continuous delivery deairing, stitching and sealing manufacturing process of the present invention, employed device comprises: supply unit 3; Be arranged on the unit 2 that gathers materials of supply unit 3 one ends; The collector unit 5 that is arranged on the welding unit 4 of supply unit 3 one sides and is arranged on supply unit 3 other ends; Wherein,
The unit 2 that gathers materials is used to place the heat pipe 1 of processing to be processed;
Supply unit 3 has a power-generating assembly 31.Power-generating assembly 31 is made of any of stepping or servo motor.The rotating shaft 311 of power-generating assembly 31 is connected with a transmission component 32, transmission component 32 is provided with a runner 33, be arranged with a conveyer belt 34 that driven by runner 33 on the runner 33, conveyer belt 34 is provided with a plurality of placement spaces 341 that are used for placing at interval heat pipe 1 to be processed;
Welding unit 4 has a rifle body 41 on it, rifle body 41 front ends are welding ends 42, when externally control module is controlled welding unit 4, can make welding ends 42 that the sealing end of the heat pipe behind the pressing sealing 1 is carried out hot melt;
Collector unit 5 is used to collect the heat pipe 1 that has machined;
As the present invention during at processing and fabricating, the heat pipe 1 behind the pressing sealing is placed in the unit 2 that gathers materials earlier; When the conveyer belt 34 of supply unit 3 is driven, heat pipe 1 will fall into the placement space 341 of conveyer belt 34 automatically; Power-generating assembly 31 at supply unit 3 is subjected to the external control unit with consecutive intervals mode output pulse signal, when pulse signal drives power-generating assembly 31 each time, lattice are rotated in the rotating shaft 311 of power-generating assembly 31, this motion of rotating lattice forms the power that supply unit 3 is fed forward lattice, continuable heat pipe to be processed 1 is sent one by one.
Send continuously by conveyer belt 34 at heat pipe 1, heat pipe 1 behind pressing sealing is transferred and when being positioned at welding unit 4, external control unit starting welding unit 4, this moment, the welding ends 42 of welding unit 4 promptly carried out hot melt (as Fig. 3, Fig. 4, shown in Figure 5) with heat pipe 1 pressing sealing place.
Behind heat pipe 1 solder up, because the pulse signal that power-generating assembly 31 is exported by the external control unit drives down, lattice are rotated in the rotating shaft 31 of power-generating assembly 31 again, and will be the heat pipe 1 that finishes of solder up be sent from welding unit 4, allow next the heat pipe 1 of pressing sealing directly enter into welding unit 4, the soldered equally heat pipe of finishing 1 that seals will be transported in the collector unit 5 and collect, and promptly finish the solder up operation behind the heat pipe pressing sealing.
Fig. 6 is a second embodiment of the present invention schematic diagram.As shown in Figure 6, heat pipe of the present invention transmits welding method continuously, except the heat pipe 1 that can be used in pressing sealing, can also be used in the welding of the heat pipe 1a behind the draw.
At first, the heat pipe 1a behind the draw is placed in the unit 2 that gathers materials, and continuously heat pipe 1a is sent by supply unit 3;
The power generation source that supply unit 3 is carried is any the formed power-generating assembly 31 by stepping or servo motor.The pulse signal that power-generating assembly 31 is exported by external control unit (not shown) drives.The power that power-generating assembly 31 is exported drives transmission component 32 through rotating shaft 311 and rotates, and the runner 33 on the while transmission component 32 promptly drives conveyer belt 34 and moves.
Because the external control unit is with consecutive intervals mode output pulse signal, when pulse signal drives power-generating assembly 31 each time, just allow the rotating shaft 311 of power-generating assembly 31 rotate lattice, this motion of rotating lattice forms supply unit 3 and is fed forward the heat pipe 1a lattice that advance, heat pipe 1a can accurately be positioned in the welding unit 4, allow welding unit 4 seal.
Fig. 7 is a third embodiment of the present invention schematic diagram.As shown in Figure 7: the present invention considers that supply unit 3 is when long-time conveyance heat pipe 1, the conveyer belt 34 of supply unit 3 can be because of fatigue of materials, in the time of under power-generating assembly 31 drives, can't allowing conveyer belt 34 that heat pipe 1 conveying also accurately is positioned at the work station of welding unit 4, the present invention's welding unit 4 is provided with a location sensing cell 6, when location sensing cell 6 senses heat pipe 1 arrival, export a signal immediately to the external control unit, stop operating by external control unit controls power-generating assembly 31, after treating heat pipe 1 welding, then making power-generating assembly 31 rotate, next heat pipe 1 conveying is positioned to carry out the welding of next heat pipe 1 in the welding unit 4.
Further, the heat pipe of the present invention after with continuous conveying pressing sealing carries out the solder up operation, allows quality, speed of production and the quantity of heat pipe 1 be improved, and allows the processing machine volume-diminished relatively, can set up processing machine according to different production models.
The above only is the preferred embodiments of the present invention, be not so promptly limit claim of the present invention, the equivalent structure transformation that every utilization specification of the present invention and accompanying drawing content are done, or directly or indirectly be used in other relevant technical field, all in like manner be included in the claim of the present invention.

Claims (16)

1. a heat pipe transmits the method for welding continuously,, it is characterized in that to send the method that mode is welded continuously in order to the heat pipe behind general's pressing sealing, may further comprise the steps:
A) heat pipe behind the first pressing sealing is positioned on the supply unit, utilizes supply unit conveyance heat pipe in a continuous manner;
B) heat pipe for the treatment of described pressing sealing is delivered in the welding unit by described supply unit and behind the location continuously, and described welding unit welds the sealing end of the heat pipe of pressing sealing, finishes the processing operation of continuity heat pipe welding.
2. heat pipe as claimed in claim 1 transmits the method for welding continuously, it is characterized in that the power source that produces that described supply unit is carried is provided by power-generating assembly, the power that described power-generating assembly is exported, drive transmission component through rotating shaft and rotate, drive conveyer belt by the runner on the transmission component again and move.
3. heat pipe as claimed in claim 2 transmits the method for welding continuously, it is characterized in that described power-generating assembly is any of stepping or servo motor.
4. heat pipe as claimed in claim 2 transmits the method for welding continuously, it is characterized in that described power-generating assembly is driven with consecutive intervals mode output pulse signal by the external control unit, pulse signal drives described power-generating assembly once each time, just make described rotating shaft rotate lattice, the motion of described rotation one lattice forms the process of described supply unit conveyance heat pipe, and described heat pipe accurately is positioned in the welding unit.
5. heat pipe as claimed in claim 1 transmits the method for welding continuously, it is characterized in that described heat pipe falls into the placement space of conveyer belt with interval mode.
6. heat pipe as claimed in claim 1 transmits the method for welding continuously, it is characterized in that described heat pipe with one in succession one the mode that is in contact with one another fall on the conveyer belt.
7. heat pipe as claimed in claim 1 transmits the method for welding continuously, it is characterized in that described welding unit is provided with a location sensing cell, sensing described heat pipe when arriving, export a signal to the external control unit, stop operating by the described power-generating assembly of described external control unit controls, described heat pipe accurately is positioned on the welding unit.
8. a heat pipe transmits the method for welding continuously, is used for the heat pipe behind the draw it is characterized in that to send the method that mode is welded continuously, may further comprise the steps:
A) heat pipe behind the first draw is placed on the supply unit, utilizes described supply unit conveyance heat pipe in a continuous manner;
B) treat that heat pipe behind the described draw is delivered in the welding unit by supply unit and behind the location continuously, described welding unit welds the draw place of the heat pipe of the draw, finishes the processing operation of continuity heat pipe welding.
9. a heat pipe transmits the device of welding continuously, is used for heat pipe with pressing sealing with the device that continuous mode of movement welds, and it is characterized in that, comprising:
The supply unit that described heat pipe is sent continuously;
Be positioned at the welding unit of described supply unit one side.
10. heat pipe as claimed in claim 9 transmits the device of welding continuously, it is characterized in that described supply unit has a power-generating assembly, the rotating shaft of described power-generating assembly is connected with a transmission component, be provided with a runner on described transmission component, described runner is provided with a conveyer belt that driven by runner.
11. heat pipe as claimed in claim 10 transmits the device of welding continuously, it is characterized in that described power-generating assembly is made of stepping or servo motor.
12. heat pipe as claimed in claim 10 transmits the device of welding continuously, it is characterized in that described conveyer belt is provided with a plurality of placement spaces that are used for placing at interval heat pipe to be processed.
13. heat pipe as claimed in claim 10 transmits the device of welding continuously, it is characterized in that further being provided with the unit that gathers materials at described supply unit one end.
14. heat pipe as claimed in claim 9 transmits the device of welding continuously, it is characterized in that further being provided with collector unit at the described supply unit other end.
15. heat pipe as claimed in claim 9 transmits the device of welding continuously, it is characterized in that described welding unit is provided with a location sensing cell.
16. a heat pipe transmits the device of welding continuously, is used for heat pipe with the draw with the device that continuous mode of movement welds, and it is characterized in that, comprising:
The supply unit that described heat pipe is sent continuously;
Be positioned at the welding unit of described supply unit one side.
CNB2005100021901A 2005-01-14 2005-01-14 Heat pipe continuous delivery welding method and its device Expired - Fee Related CN100406185C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNB2005100021901A CN100406185C (en) 2005-01-14 2005-01-14 Heat pipe continuous delivery welding method and its device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNB2005100021901A CN100406185C (en) 2005-01-14 2005-01-14 Heat pipe continuous delivery welding method and its device

Publications (2)

Publication Number Publication Date
CN1803367A true CN1803367A (en) 2006-07-19
CN100406185C CN100406185C (en) 2008-07-30

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CNB2005100021901A Expired - Fee Related CN100406185C (en) 2005-01-14 2005-01-14 Heat pipe continuous delivery welding method and its device

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105478829A (en) * 2016-01-29 2016-04-13 苏州市永通不锈钢有限公司 Shock-absorbing metal pipe drilling device
CN105478848A (en) * 2016-01-29 2016-04-13 苏州市永通不锈钢有限公司 Precision type metal pipe drilling device
CN108817894A (en) * 2018-07-04 2018-11-16 芜湖市泰能电热器具有限公司 A kind of electric heating tube assembly aluminum pipe supply equipment

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT1102986B (en) * 1978-01-31 1985-10-14 Cir S Pa Divisione Sasib Bolog UNI FORME FEEDING DEVICE FOR ROUND ASTIFORM OBJECTS IN PARTICULAR MULTIPLE FILTERS FOR CIGARETTES
JPS57102738A (en) * 1980-12-19 1982-06-25 Nippon Kokan Kk <Nkk> Adaptive processing apparatus
DE4326275C2 (en) * 1993-08-05 1997-10-09 Erowa Ag Method for positioning a workpiece carrier in a processing machine and workpiece carrier for performing the method
CN2612502Y (en) * 2003-01-08 2004-04-21 番禺珠江钢管有限公司 Continuous automatic tack welder

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105478829A (en) * 2016-01-29 2016-04-13 苏州市永通不锈钢有限公司 Shock-absorbing metal pipe drilling device
CN105478848A (en) * 2016-01-29 2016-04-13 苏州市永通不锈钢有限公司 Precision type metal pipe drilling device
CN108817894A (en) * 2018-07-04 2018-11-16 芜湖市泰能电热器具有限公司 A kind of electric heating tube assembly aluminum pipe supply equipment

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