CN206839074U - Non-crystaline amorphous metal jet quenching apparatus - Google Patents

Non-crystaline amorphous metal jet quenching apparatus Download PDF

Info

Publication number
CN206839074U
CN206839074U CN201720733007.3U CN201720733007U CN206839074U CN 206839074 U CN206839074 U CN 206839074U CN 201720733007 U CN201720733007 U CN 201720733007U CN 206839074 U CN206839074 U CN 206839074U
Authority
CN
China
Prior art keywords
heat
conducting piece
water
amorphous metal
crystaline amorphous
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.)
Active
Application number
CN201720733007.3U
Other languages
Chinese (zh)
Inventor
王伟
向军
史忠山
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Heyi New Material Institute Co Ltd
Original Assignee
Guangdong Heyi New Material Institute Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Guangdong Heyi New Material Institute Co Ltd filed Critical Guangdong Heyi New Material Institute Co Ltd
Priority to CN201720733007.3U priority Critical patent/CN206839074U/en
Application granted granted Critical
Publication of CN206839074U publication Critical patent/CN206839074U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Heat Treatment Of Articles (AREA)

Abstract

The utility model discloses a kind of non-crystaline amorphous metal jet quenching apparatus.The non-crystaline amorphous metal jet quenching apparatus includes rotation clamping plate, rotary driving part, heat-conducting piece, liquid inlet port, water receiver, water inlet pipe and outlet pipe.It is for two and relative to rotate clamping plate;Heat-conducting piece is in both ends open and hollow cylinder, and heat-conducting piece has closed thermal conductive cavity, and heat-conducting piece is set on the periphery of two rotation clamping plates and surrounds cooling chamber with two rotation clamping plates;Rotary driving part is connected to rotation clamping plate and moves heat-conducting piece rotation for driving rotating clamp strip.Outer wall of the liquid outlet of liquid inlet port toward heat-conducting piece.Water receiver is located in cooling chamber, water receiver and liquid inlet port geo-stationary;Water inlet pipe is connected to water receiver and connected with water receiver;Outlet pipe is communicated in cooling chamber;The side wall of water receiver towards heat-conducting piece has multiple hole for water sprayings, and the inwall of heat-conducting piece towards cooling chamber has pin rib structure.The non-crystaline amorphous metal jet quenching apparatus can reach very fast cooling and require.

Description

Non-crystaline amorphous metal jet quenching apparatus
Technical field
Technical field of heat transfer is the utility model is related to, more particularly to a kind of non-crystaline amorphous metal jet quenching apparatus.
Background technology
Non-crystaline amorphous metal is solidified by super chilling, and atom has little time ordered arrangement crystallization during alloy graining, so as to obtain long-range Unordered structure, crystal grain, crystal boundary without crystal alloy are present, thus have many unique performances, such as excellent magnetic, Wearability, corrosion resistance, high intensity, high rigidity and high tenacity, high resistivity and mechanical-electric coupling performance etc., in electronic industry more Paid attention to get over, be widely used.But the manufacturing technique requirent of non-crystaline amorphous metal is high.
Non-crystaline amorphous metal is also referred to as single typically using flash set technology as the new material developed rapidly in recent years Roller chilling method manufactures.Common technological process includes:(amorphous crystallizes dispensing-smelting furnace melting-current stabilization bag-nozzle bag-chill roll Device)-coiled material is made.Wherein can liquid metal obtain quick, uniform cooling in amorphous crystallizer, be limitation non-crystaline amorphous metal production Quality, the key factor of performance.Although constantly there is manufacturer to start to produce amorphous band now, also improve axle using various methods Uniform temperature to cooling, the defects of cooldown rate is relatively low, but improvement is limited.Because flowing side in passage be present in cooling water Interlayer, so under traditional design thinking, cooldown rate can not be also improved again even if by increasing cooling water flow.
Utility model content
Based on this, it is necessary to which providing a kind of can reach very fast cooling and require so as to producing the non-of high-quality non-crystaline amorphous metal Peritectic alloy jet quenching apparatus.
A kind of non-crystaline amorphous metal jet quenching apparatus, including rotation clamping plate, rotary driving part, heat-conducting piece, liquid inlet port, water storage Device, water inlet pipe and outlet pipe;
The quantity of the rotation clamping plate is two, and two rotation clamping plates are relative;The heat-conducting piece is in both ends open Cylindrical shape, the inwall of the heat-conducting piece are set on the periphery of two rotation clamping plates and surrounded with two rotation clamping plates Cooling chamber;The rotary driving part is connected to the rotation clamping plate for driving the rotating clamp strip to move the heat-conducting piece Rotate;
The liquid inlet port has liquid storage cylinder and is communicated in the inlet and liquid outlet of the liquid storage cylinder, the liquid outlet Toward the outer wall of the heat-conducting piece;Between the water receiver is located in the cooling chamber and had with the cavity wall of the cooling chamber Every the water receiver and the liquid inlet port geo-stationary;The water inlet pipe is connected to the water receiver and connected with the water receiver Logical, the water inlet pipe is used to connect with pressure water source;One end of the outlet pipe is communicated in the cooling chamber, the other end be used for Suction machine connects;The side wall of the water receiver towards the heat-conducting piece has multiple hole for water sprayings, and the heat-conducting piece is towards described cold But the inwall of chamber has micro groove structure.
In one of the embodiments, the internal diameter of the hole for water spraying is 0.1mm-3mm.
In one of the embodiments, the inwall of the heat-conducting piece towards the cooling chamber has micro groove structure.
In one of the embodiments, the micro groove structure includes multiple tactic sawtooth and/or multiple orders are arranged The projection of row.
In one of the embodiments, the micro groove structure is covered with the heat-conducting piece towards the inwall of the cooling chamber.
In one of the embodiments, in addition to multiple sparge pipes, multiple sparge pipes are respectively positioned in the cooling chamber, One end of multiple sparge pipes is all extended in the water receiver, and the other end all extends to the outside of the water receiver and direction In the inwall of the heat-conducting piece.
In one of the embodiments, the sparge pipe is curved, and multiple sparge pipes arrange in order, the water spray The ozzle of pipe is in flat.
In one of the embodiments, the rotation clamping plate is rounded, and the radial section of the water receiver is described in sector The inwall gap of the curved wall of water receiver and the heat-conducting piece coordinates.
In one of the embodiments, in addition to two rotating shafts, each rotating shaft both ends open and be in hollow shape, two The rotating shaft extends through the middle part of a rotation clamping plate, and two rotating shafts connect with the cooling chamber, it is described enter Water pipe and the outlet pipe extend through two rotating shafts.
In one of the embodiments, two rotating shafts and the corresponding rotation clamping plate detachable connection.
In one of the embodiments, each rotating shaft is respectively provided with outwardly towards the edge of described rotation clamping plate one end Flanging, each rotating shaft are connected by flanging and fastener with the corresponding rotation clamping plate.
In one of the embodiments, the linear tubulose of the water inlet pipe, the outlet pipe and the corresponding rotating clamp Plate is vertical;One end of the outlet pipe is bent to form kink in 90 °, and the outlet pipe hangs down with the corresponding rotation clamping plate Straight and described kink is parallel with the corresponding rotation clamping plate.
In one of the embodiments, the water temperature for the cryogenic thermostat water that the water inlet pipe is passed through is 3 DEG C -5 DEG C.
Above-mentioned non-crystaline amorphous metal jet quenching apparatus, by cold in the water inlet pipe water receiver that is connected with pressure water source But water has higher hydraulic pressure, and the cooling water of high hydraulic pressure passes through the hole for water spraying of water receiver towards the inwall injection of heat-conducting piece so that The inwall cooling of heat-conducting piece is rapid, good cooling effect, and by the non-crystaline amorphous metal jet quenching apparatus, can reach very fast cooling will Ask so as to produce high-quality non-crystaline amorphous metal.Above-mentioned non-crystaline amorphous metal jet quenching apparatus, Heat transfer boundary layer can be effectively destroyed, dropped The heat-exchange capacity of low surface resistance of heat transfer, strengthening fluid and wall, and segment fluid flow can be caused to be confined to a relatively thin layer Interior flowing, the rate of flow of fluid for improving wall, augmentation of heat transfer are highly effective., can also be in heat exchange surface if flow velocity is sufficiently high Cavitation phenomenon is produced, cavitation phenomenon further greatly improves heat exchange efficiency, successfully manage the heat exchange work of high hot-fluid along with phase transformation Condition, this improves equipment integral heat sink ability, can greatly improve single start yield, improve production efficiency.Above-mentioned amorphous closes Golden jet quenching apparatus, micro groove structure being provided with the inwall of heat-conducting piece, pin rib structure make it that heat-conducting piece heat exchange area is bigger, It is stronger to flow disturbance, can efficient hardening heat exchange, improve the exchange capability of heat of equipment, increase equipment capacity, improve production efficiency.
Above-mentioned non-crystaline amorphous metal jet quenching apparatus, using the circular sparge pipe of fine pore so that come out from sparge pipe It is fast to cool down water flow velocity, heat exchange is rapid.
Above-mentioned non-crystaline amorphous metal jet quenching apparatus, using cryogenic thermostat water cooling, cryogenic thermostat water can ensure intensity of cooling With cooling capacity stability, non-crystaline amorphous metal forming quality is improved.
Brief description of the drawings
Fig. 1 is an embodiment non-crystaline amorphous metal jet quenching apparatus axial sides schematic diagram;
Fig. 2 is the radial side schematic diagram of non-crystaline amorphous metal jet quenching apparatus shown in Fig. 1.
Description of reference numerals
10th, non-crystaline amorphous metal jet quenching apparatus;100th, clamping plate is rotated;200th, heat-conducting piece;210th, micro groove structure;300th, feed liquor Mouth;310th, liquid storage cylinder;320th, inlet;330th, liquid outlet;400th, water receiver;410th, hole for water spraying;500th, water inlet pipe;600th, water outlet Pipe;700th, kink;800th, rotating shaft;900th, fastener;20th, profile band.
Embodiment
For the ease of understanding the utility model, the utility model is more fully retouched below with reference to relevant drawings State.Preferred embodiment of the present utility model is given in accompanying drawing.But the utility model can come in fact in many different forms It is existing, however it is not limited to embodiment described herein.On the contrary, the purpose for providing these embodiments is made to public affairs of the present utility model Open the understanding more thorough and comprehensive of content.
It should be noted that when element is referred to as " being fixed on " another element, it can be directly on another element Or there may also be element placed in the middle.When an element is considered as " connection " another element, it can be directly connected to To another element or it may be simultaneously present centering elements.
Unless otherwise defined, all of technologies and scientific terms used here by the article is led with belonging to technology of the present utility model The implication that the technical staff in domain is generally understood that is identical.It is simply in term used in the description of the present utility model herein The purpose of description specific embodiment, it is not intended that in limitation the utility model.Term as used herein "and/or" includes The arbitrary and all combination of one or more related Listed Items.
Referring to shown in Fig. 1 and Fig. 2, the present embodiment relate to a kind of non-crystaline amorphous metal jet quenching apparatus 10.The non-crystaline amorphous metal Jet quenching apparatus 10 includes rotation clamping plate 100, rotary driving part, heat-conducting piece 200, liquid inlet port 300, water receiver 400, water inlet Pipe 500 and outlet pipe 600.The water temperature for the cryogenic thermostat water that water inlet pipe 500 is passed through is 3 DEG C -5 DEG C.
In the present embodiment, referring to shown in Fig. 1 and Fig. 2, the quantity of rotation clamping plate 100 is two, two rotation clamping plates 100 Relatively.
Referring to shown in Fig. 1 and Fig. 2, heat-conducting piece 200 is in the cylindrical shape of both ends open, namely the sagittal plane of heat-conducting piece 200 is in Annular.Heat-conducting piece 200 has a closed thermal conductive cavity, and heat-conducting piece 200 is set on the peripheries of two rotation clamping plates 100 and with two Individual rotation clamping plate 100 surrounds cooling chamber.
Rotary driving part is connected to rotation clamping plate 100 and drives heat-conducting piece 200 to rotate for driving rotation clamping plate 100. In the present embodiment, rotary driving part can be motor, be not shown in the accompanying drawings.
In the present embodiment, it is shown in Figure 1, it is preferable that the inwall of heat-conducting piece 200 towards cooling chamber has micro groove structure 210 micro groove structures 210 are covered with inwall of the heat-conducting piece 200 towards cooling chamber.The micro groove structure includes multiple tactic saws Tooth and/or multiple tactic projections.Or above-mentioned micro groove structure 210 can also be that wing laminated can also be the half of protrusion The various cross sectional shapes such as round, trapezoidal, protrusion rectangle.
Referring to shown in Fig. 1 and Fig. 2, liquid inlet port 300 has liquid storage cylinder 310 and is communicated in the inlet 320 of liquid storage cylinder 310 And liquid outlet 330.Outer wall of the liquid outlet 330 toward heat-conducting piece 200.Metal liquid enters liquid storage cylinder from inlet 320 310 and it is flowed into by liquid outlet 330 on the outer wall of heat-conducting piece 200 of rotation, the bar that 200 inwalls cool rapidly in heat-conducting piece Under part, metal liquid is molded rapidly the profile band 20 for forming sheet.
Referring to shown in Fig. 1 and Fig. 2, water receiver 400 is located in cooling chamber and has interval, water receiver with the cavity wall of cooling chamber 400 with the geo-stationary of liquid inlet port 300.The side wall of water receiver 400 towards heat-conducting piece 200 has multiple hole for water sprayings 410.Hole for water spraying 410 internal diameter is 0.1mm-3mm.
Referring to shown in Fig. 1 and Fig. 2, water inlet pipe 500 is connected to water receiver 400 and connected with water receiver 400.Water inlet pipe 500 For being connected with pressure water source.One end of outlet pipe 600 is communicated in cooling chamber, and the other end is used to connect with suction machine;Water receiver 400 side wall has multiple delivery ports, inwall of the delivery port toward heat-conducting piece 200.
Preferably, referring to shown in Fig. 1 and Fig. 2, rotation clamping plate 100 is rounded, and the radial section of water receiver 400 is in sector, The curved wall of water receiver 400 coordinates with the inwall gap of heat-conducting piece 200.
In the present embodiment, referring to shown in Fig. 1 and Fig. 2, in addition to two rotating shafts 800.Each both ends open of rotating shaft 800 and In hollow shape, two rotating shafts 800 extend through the middle part of a rotation clamping plate 100, and two rotating shafts 800 connect with cooling chamber, Water inlet pipe 500 and outlet pipe 600 extend through two rotating shafts 800.
Further, referring to shown in Fig. 1 and Fig. 2, two rotating shafts 800 and the corresponding rotation detachable connection of clamping plate 100. Each rotating shaft 800 is respectively provided with flanging outwardly towards the edge of rotation clamping plate 100 one end, and each rotating shaft 800 passes through flanging And fastener 900 connects with corresponding rotation clamping plate 100.
Further, referring to shown in Fig. 1 and Fig. 2,500 linear tubulose of water inlet pipe.Outlet pipe 600 and corresponding rotating clamp Plate 100 is vertical.One end of outlet pipe 600 is bent to form kink 700 in 90 °.Outlet pipe 600 and corresponding rotation clamping plate 100 Vertical and kink 700 is parallel with corresponding rotation clamping plate 100.
Above-mentioned non-crystaline amorphous metal jet quenching apparatus 10, pass through the water receiver of water inlet pipe 500 connected with pressure water source Cooling water in 400 has higher hydraulic pressure, and the cooling water of high hydraulic pressure is by the delivery port of water receiver 400 towards heat-conducting piece 200 Inwall injection so that the inwall cooling of heat-conducting piece 200 is rapid, good cooling effect, by the non-crystaline amorphous metal jet quenching apparatus 10, very fast cooling can be reached and required so as to produce high-quality non-crystaline amorphous metal.
Above-mentioned non-crystaline amorphous metal jet quenching apparatus 10, micro groove structure 210 is provided with the inwall of heat-conducting piece 200, it is micro- Slot structure 210 cause the heat exchange area of heat-conducting piece 200 it is bigger, it is stronger to flow disturbance, can efficient hardening heat exchange, improve equipment Exchange capability of heat, increase equipment capacity, improve production efficiency.
Above-mentioned non-crystaline amorphous metal jet quenching apparatus 10, when in use, cryogenic thermostat water can be used, using cryogenic thermostat Water can increase the heat transfer temperature difference between cooling water and copper sheathing, Simultaneous Stabilization inflow temperature, to improving equipment cooling capacity and reducing band Material thermograde is all helpful.
Each technical characteristic of embodiment described above can be combined arbitrarily, to make description succinct, not to above-mentioned reality Apply all possible combination of each technical characteristic in example to be all described, as long as however, the combination of these technical characteristics is not deposited In contradiction, the scope that this specification is recorded all is considered to be.
Embodiment described above only expresses several embodiments of the present utility model, and its description is more specific and detailed, But therefore it can not be interpreted as the limitation to the utility model patent scope.It should be pointed out that for the common of this area For technical staff, without departing from the concept of the premise utility, various modifications and improvements can be made, these all belong to In the scope of protection of the utility model.Therefore, the protection domain of the utility model patent should be determined by the appended claims.

Claims (10)

1. a kind of non-crystaline amorphous metal jet quenching apparatus, it is characterised in that including rotation clamping plate, rotary driving part, heat-conducting piece, enter Liquid mouth, water receiver, water inlet pipe and outlet pipe;
The quantity of the rotation clamping plate is two, and two rotation clamping plates are relative;The heat-conducting piece is in the cylinder of both ends open Shape, the inwall of the heat-conducting piece are set on the periphery of two rotation clamping plates and surround cooling with two rotation clamping plates Chamber;The rotary driving part is connected to the rotation clamping plate and turned for driving the rotating clamp strip to move the heat-conducting piece It is dynamic;
The liquid inlet port has liquid storage cylinder and is communicated in the inlet and liquid outlet of the liquid storage cylinder, the liquid outlet direction In the outer wall of the heat-conducting piece;
The water receiver is located in the cooling chamber and has an interval with the cavity wall of the cooling chamber, the water receiver with it is described enter Liquid mouth geo-stationary;The water inlet pipe is connected to the water receiver and connected with the water receiver, and the water inlet pipe is used for and pressure Power water source connects;One end of the outlet pipe is communicated in the cooling chamber, and the other end is used to connect with suction machine;The water receiver There are multiple hole for water sprayings towards the side wall of the heat-conducting piece, the inwall of the heat-conducting piece towards the cooling chamber has microflute knot Structure.
2. non-crystaline amorphous metal jet quenching apparatus according to claim 1, it is characterised in that the internal diameter of the hole for water spraying is 0.1mm-3mm。
3. non-crystaline amorphous metal jet quenching apparatus according to claim 2, it is characterised in that the micro groove structure is covered with described Inwall of the heat-conducting piece towards the cooling chamber.
4. non-crystaline amorphous metal jet quenching apparatus according to claim 3, it is characterised in that the micro groove structure includes multiple Tactic sawtooth and/or multiple tactic projections.
5. the non-crystaline amorphous metal jet quenching apparatus according to claim 1-3 any one, it is characterised in that the rotating clamp Plate is rounded, and the radial section of the water receiver is in fan-shaped, between the inwall of the curved wall of the water receiver and the heat-conducting piece Gap coordinates.
6. the non-crystaline amorphous metal jet quenching apparatus according to claim 1-3 any one, it is characterised in that also including two Rotating shaft, each rotating shaft both ends open and be in hollow shape, two rotating shafts are extended through in a rotation clamping plate Portion, two rotating shafts are connected with the cooling chamber, and the water inlet pipe and the outlet pipe are extended through and turned described in two Axle.
7. non-crystaline amorphous metal jet quenching apparatus according to claim 6, it is characterised in that two rotating shafts with it is corresponding The rotation clamping plate detachable connection.
8. non-crystaline amorphous metal jet quenching apparatus according to claim 7, it is characterised in that each rotating shaft is described in The edge of rotation clamping plate one end is respectively provided with flanging outwardly, each rotating shaft by flanging and fastener with it is corresponding The rotation clamping plate connection.
9. the non-crystaline amorphous metal jet quenching apparatus according to claim 1-3 any one, it is characterised in that the water inlet pipe Linear tubulose, the outlet pipe are vertical with the corresponding rotation clamping plate;One end of the outlet pipe is bent to form curved in 90 ° Folding part, the outlet pipe is vertical with the corresponding rotation clamping plate and the kink with corresponding described to rotate clamping plate parallel.
10. the non-crystaline amorphous metal jet quenching apparatus according to claim 1-3 any one, it is characterised in that the water inlet The water temperature for the cryogenic thermostat water that pipe is passed through is 3 DEG C -5 DEG C.
CN201720733007.3U 2017-06-22 2017-06-22 Non-crystaline amorphous metal jet quenching apparatus Active CN206839074U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720733007.3U CN206839074U (en) 2017-06-22 2017-06-22 Non-crystaline amorphous metal jet quenching apparatus

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720733007.3U CN206839074U (en) 2017-06-22 2017-06-22 Non-crystaline amorphous metal jet quenching apparatus

Publications (1)

Publication Number Publication Date
CN206839074U true CN206839074U (en) 2018-01-05

Family

ID=60801708

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720733007.3U Active CN206839074U (en) 2017-06-22 2017-06-22 Non-crystaline amorphous metal jet quenching apparatus

Country Status (1)

Country Link
CN (1) CN206839074U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107052287A (en) * 2017-06-22 2017-08-18 广东合新材料研究院有限公司 Non-crystaline amorphous metal jet quenching apparatus

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107052287A (en) * 2017-06-22 2017-08-18 广东合新材料研究院有限公司 Non-crystaline amorphous metal jet quenching apparatus

Similar Documents

Publication Publication Date Title
CN201534164U (en) Water cooling device of lead plate conticaster and lead plate conticaster
CN206839074U (en) Non-crystaline amorphous metal jet quenching apparatus
CN107976008A (en) A kind of efficiently cold liquid machine
CN107166995A (en) High-performance heat exchanger and application thereof
CN206839076U (en) Non-crystaline amorphous metal circumferentially goes out stream rapidly liquid cooling apparatus
CN202241873U (en) Cooling and heating device of injection mold
CN106238702B (en) A kind of die casting mould cooling device
CN103846399A (en) Device and method for manufacturing amorphous alloy foil sheet
CN107655248A (en) A kind of fluid state ice ice making bucket
CN107127307A (en) The very fast samming cooler prepared for amorphous
CN107052287A (en) Non-crystaline amorphous metal jet quenching apparatus
CN212682381U (en) Cooling roller with roller surface provided with guide groove structure
CN210400083U (en) Heat exchanger with sufficient cooling
CN206709671U (en) A kind of heat exchanger tube and heat exchanger with inner fin
CN107042293A (en) Non-crystaline amorphous metal circumferentially goes out stream rapidly liquid cooling apparatus
CN209350855U (en) Film production chill roll
CN209138632U (en) A kind of device for reactor cycles cooling
CN207113341U (en) A kind of injection machine cooling system
CN110102588A (en) A kind of preparation facilities revolving wing aluminum pipe and the preparation process using it
CN108705063A (en) A kind of 3 D-printing die casting cooling structure
CN209484898U (en) A kind of heat exchange coil, heat exchange coil group and evaporative condenser
CN206463965U (en) A kind of rolling type reactor
CN205464227U (en) Continuous casting crystallizer inner ring mask has cooling structure of baffling
CN206785473U (en) A kind of engine water device for cooling
CN220288339U (en) Water distributor with multilayer ring pipes

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant