CN104120295A - Foamed aluminum semi continuous vacuum foaming device and method - Google Patents

Foamed aluminum semi continuous vacuum foaming device and method Download PDF

Info

Publication number
CN104120295A
CN104120295A CN201410314029.7A CN201410314029A CN104120295A CN 104120295 A CN104120295 A CN 104120295A CN 201410314029 A CN201410314029 A CN 201410314029A CN 104120295 A CN104120295 A CN 104120295A
Authority
CN
China
Prior art keywords
generation device
initial pore
tundish
vacuum
pore generation
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.)
Granted
Application number
CN201410314029.7A
Other languages
Chinese (zh)
Other versions
CN104120295B (en
Inventor
左孝青
王俊
谢香云
胡松
杨皓
罗晓旭
陆建生
周芸
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.)
Kunming University of Science and Technology
Original Assignee
Kunming University of Science and Technology
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 Kunming University of Science and Technology filed Critical Kunming University of Science and Technology
Priority to CN201410314029.7A priority Critical patent/CN104120295B/en
Publication of CN104120295A publication Critical patent/CN104120295A/en
Application granted granted Critical
Publication of CN104120295B publication Critical patent/CN104120295B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Abstract

The invention discloses a foamed aluminum semi continuous vacuum foaming device and method, and belongs to the field of foam metal material. The foamed aluminum semi continuous vacuum foaming device is composed of three parts: a tundish, an initial pore generation device and a vacuum foaming furnace. The tundish and the initial pore generation device are in seamless connection, and the initial pore generation device and the vacuum foaming furnace are in semi continuous connection. During preparation of foamed aluminum, firstly a tackified aluminum alloy melt is introduced in the tundish and is kept at a certain liquid level height, then air is introduced into the initial pore generation device having the same liquid level height to make initial pores generated in the tackified aluminum alloy melt, finally, the melt is allowed to flow into a preheated stainless steel crucible in the vacuum foaming furnace in a semi continuous mode, and melt foams are cooled and solidified to obtain the foamed aluminum. The foamed aluminum semi continuous vacuum foaming device is adopted to prepare the foamed aluminum, has the characteristics of high efficiency and low cost, and can realize semi continuous industrialization production of the foamed aluminum.

Description

A kind of semicontinuous vacuum foam apparatus and method of foamed aluminium
Technical field
The semicontinuous vacuum foam apparatus and method that the present invention relates to a kind of foamed aluminium, belong to foam metal material field.
Background technology
Foaming closed-cell aluminum foam (hereinafter to be referred as foamed aluminium) has the dual nature of structured material and functional materials concurrently, there is the advantages such as low density, high specific strength, energy absorption, sound-absorbing, damping vibration attenuation, in fields such as aerospace, the vehicles, building, machinery, noise control, have wide practical use.
The method of preparing at present foamed aluminium mainly contains powder metallurgy, direct gas-blowing foaming method and foam melt method.Powder metallurgic method is applicable to small size and short run foamed aluminium is produced, and is unsuitable for large-scale commercial production; Although directly gas-blowing foaming method can realize the continuous production of foamed aluminium, exist pore structure homogeneity to be difficult to control and the deficiency that foamed aluminium fragility is high that obtains; Foam melt method is owing to adopting comparatively expensive TiH2 whipping agent and adopting the discontinuous making pattern of batch processing to make cost higher.
At present, the bottleneck that hinders foamed aluminium acquisition widespread use is its high cost, cause structure applications and the sound absorption function application of foamed aluminium to be difficult to be accepted by market, and its pore structure of foamed aluminium and performance that the continuous foamed method of existing direct air blowing is made also do not reach market application requiring, therefore, developing new continuous or semicontinuous foaming technology of preparing, improve preparation efficiency, reduce costs, is that foamed aluminium obtains the major issue that technical scale application needs solution.
Summary of the invention
The object of the invention is to the deficiency low for existing foamed aluminium preparation efficiency, cost is high, a kind of semicontinuous vacuum foam preparation facilities of foamed aluminium is provided, adopt the semicontinuous vacuum foam device of foamed aluminium of the present invention to prepare foamed aluminium, there is high-level efficiency, feature cheaply, can realize the semicontinuous industrial production of the controlled foamed aluminium of pore structure; This device comprises tundish 6, initial pore generation device 11, vacuum foam stove 19, tundish 6 and initial pore generation device 11 seamless links, initial pore generation device 11 and the semicontinuous connection of vacuum foam stove 19;
Tundish 6 comprises plumbago crucible I 1, control valve I 3, aluminium alloy melt entrance 4, liquid level observer 5, heating unit I 7, plumbago crucible I 1 is placed in the inside of tundish 6, heating unit I 7 is positioned at the interior of tundish 6, the top of tundish 6 is provided with aluminium alloy melt entrance 4 and liquid level observer 5, and aluminium alloy melt entrance 4 places are provided with control valve I 3;
Initial pore generation device 11 comprises ventpipe 10, heating unit II 12, porous swivel nozzle 13, plumbago crucible II 14, control valve II 15, spout 16, ventpipe 10 is positioned at the inside of initial pore generation device 11, the place, air outlet of ventpipe 10 is provided with porous swivel nozzle 13, plumbago crucible II 14 is placed in the inside of initial pore generation device 11, heating unit II 12 is positioned at the interior of initial pore generation device 11, the lower end of initial pore generation device 11 is provided with spout 16, and spout 16 places are provided with control valve II 15;
Vacuum foam stove 19 comprises movable pulley 17, heating unit III 18, vacuum extractor 20, Stainless Steel Crucible 21, and the bottom of vacuum foam stove 19 is provided with movable pulley 17, and Stainless Steel Crucible 21 is positioned at the inside of vacuum foam stove 19; Vacuum extractor 20 is positioned at the top of vacuum foam stove 19 and the sidewall of vacuum foam stove 19 is tightly connected.
Melt liquid level height in tundish 6 of the present invention and initial pore generation device 11 is consistent, and liquid level is the 1/2-2/3 of tundish 6 and initial pore generation device 11 height.
Tundish 6 of the present invention and initial pore generation device 11 are by communicating pipe 8 seamless link.
Between initial pore generation device 11 of the present invention and vacuum foam stove 19, pass through head piece 16 and the semicontinuous connection of control valve 15.
Movable pulley 17 is equipped with in vacuum foam stove of the present invention 19 bottoms.
The outside of Stainless Steel Crucible 21 of the present invention is provided with water-in 23, water outlet 24, water-cooled tube 25, can under vacuum, carry out cooling after vacuum foam.
The semicontinuous vacuum foam device of foamed aluminium of the present invention, for the preparation of the method for foamed aluminium, specifically comprises the following steps:
(1) at the aluminium alloy melt 2 of the interior introducing tackify of tundish 6 and keep certain liquid level;
(2) to having, in the initial pore generation device 11 of identical liquid level, pass into air and make to produce in tackifying fusant initial pore;
(3) melt semi-continuously flows in the Stainless Steel Crucible 21 after the interior preheating of vacuum foam stove 19, removes vacuum foam stove 19, seals and vacuumize foaming, and melt foam cooled and solidified, obtains foamed aluminium.
The aluminium alloy of tackify described in step of the present invention (1), temperature is above 20 ~ 50 ℃ of aluminium alloy fusing point, contains the tackifier SiC of aluminium alloy quality 5 ~ 10%, the granularity of tackifier SiC is 10 ~ 30 μ m;
In step of the present invention (2), passing into air capacity is 12 ~ 25% of aluminium alloy melt volume;
In step of the present invention (3), the temperature of the interior Stainless Steel Crucible 21 of vacuum foam stove 19 is identical with the temperature of tackify aluminium alloy melt, and vacuum tightness is 1 ~ 10Pa, and foamed time is 5 ~ 25s; Foaming post-foaming body is cooling under vacuum; The porosity of prepared foamed aluminium is 70 ~ 85%, and mean pore size is 0.5 ~ 5mm.
While preparing foamed aluminium with device of the present invention, first at the aluminium alloy melt of the interior introducing tackify of tundish 6 and keep certain liquid level; Then to have in the initial pore generation device 11 of identical liquid level, pass into a small amount of air make to produce in tackifying fusant aperture little, be evenly distributed, the initial pore of One's name is legion; Finally melt is semi-continuously flowed in the Stainless Steel Crucible 21 of vacuum foam stove 19 interior preheatings, remove vacuum foam stove 19, seal and vacuumize, gas in initial pore expands and makes aluminium alloy melt foaming under vacuum, and melt foam cooled and solidified, obtains foamed aluminium.
Beneficial effect of the present invention:
Utilize device of the present invention, by tackify aluminium alloy melt continuous operation, initial pore, produce, include semi-continuous running and the vacuum foam of the tackify aluminium alloy melt of initial pore, do not adopting under the condition of whipping agent, by the method for gas vacuum expansion, realization can foamed aluminium alloy melt semi-continuous running and foaming, there is high-level efficiency, advantage cheaply, can realize the semicontinuous industrial production of foamed aluminium.
Accompanying drawing explanation
Fig. 1 is the semicontinuous vacuum foam preparation facilities of foamed aluminium;
Fig. 2 is the schematic appearance of Stainless Steel Crucible;
Fig. 3 is the use procedure figure of the semicontinuous vacuum foam preparation facilities of foamed aluminium.
In figure: 1-plumbago crucible, the aluminium alloy melt of 2-tackify, 3-control valve, 4-aluminium alloy melt entrance, 5-liquid level observer, 6-tundish, 7-heating unit, 8-communicating pipe, 9-control valve, 10-ventpipe, the initial pore generation device of 11-, 12 heating units, 13-porous swivel nozzle, 14-plumbago crucible, 15-control valve, 16-spout, 17-movable pulley, 18-heating unit, 19-vacuum foam stove, 20-vacuum extractor, 21-Stainless Steel Crucible, 22-foamed aluminium, 23-water-in, 24-water outlet, 25-water-cooled tube.
Embodiment
Below in conjunction with embodiment and accompanying drawing, the present invention is described in further details, but protection scope of the present invention is not limited to described content.
embodiment 1
The described semicontinuous vacuum foam device of this enforcement comprises tundish 6, initial pore generation device 11, vacuum foam stove 19, tundish 6 and initial pore generation device 11 seamless links, initial pore generation device 11 and the semicontinuous connection of vacuum foam stove 19 (as shown in Figure 1 and 2);
Tundish 6 comprises plumbago crucible I 1, control valve I 3, aluminium alloy melt entrance 4, liquid level observer 5, heating unit I 7, plumbago crucible I 1 is placed in the inside of tundish 6, heating unit I 7 is positioned at the interior of tundish 6, the top of tundish 6 is provided with aluminium alloy melt entrance 4 and liquid level observer 5, and aluminium alloy melt entrance 4 places are provided with control valve I 3;
Initial pore generation device 11 comprises ventpipe 10, heating unit II 12, porous swivel nozzle 13, plumbago crucible II 14, control valve II 15, spout 16, ventpipe 10 is positioned at the inside of initial pore generation device 11, the place, air outlet of ventpipe 10 is provided with porous swivel nozzle 13, plumbago crucible II 14 is placed in the inside of initial pore generation device 11, heating unit II 12 is positioned at the interior of initial pore generation device 11, the lower end of initial pore generation device 11 is provided with spout 16, and spout 16 places are provided with control valve II 15;
Vacuum foam stove 19 comprises movable pulley 17, heating unit III 18, vacuum extractor 20, Stainless Steel Crucible 21, and the bottom of vacuum foam stove 19 is provided with movable pulley 17, and Stainless Steel Crucible 21 is positioned at the inside of vacuum foam stove 19; Vacuum extractor 20 is positioned at the top of vacuum foam stove 19 and the sidewall of vacuum foam stove 19 is tightly connected.
This implements described tundish 6 and initial pore generation device 11 passes through communicating pipe 8 seamless link.
With semicontinuous vacuum foam device described in the present embodiment, prepare foamed aluminium, specifically comprise the following steps:
By the ZL 102 alloy melt melt temperature of tackify, it is 620 ℃, the SiC particle that includes granularity 10 ~ 15 μ m, add-on and be alloy melt quality 10% is introduced tundish 6 and initial pore generation device 11, and keeping liquid level is 1/2 of tundish 6 and initial pore generation device 11 height; To passing into air intake in the melt in initial pore generation device 11, be 25% of alloy melt volume, by porous swivel nozzle 13, in melt, produce the initial pore of aperture 0.08 ~ 0.18mm; Vacuum foam stove 19 moves to initial pore generation device 11 head piece 16 places and connects material after being preheating to 620 ℃, remove and vacuumize foaming after connecting material, and vacuum tightness is that 10Pa, foamed time are 25s; After vacuum foam finishes, melt foam is cooled and solidified under vacuum, obtains porosity 85%, the foamed aluminium that aperture is 2.5 ~ 5mm, as shown in Figure 3.
embodiment 2
The described semicontinuous vacuum foam device of this enforcement comprises tundish 6, initial pore generation device 11, vacuum foam stove 19, tundish 6 and initial pore generation device 11 seamless links, initial pore generation device 11 and the semicontinuous connection of vacuum foam stove 19;
Tundish 6 comprises plumbago crucible I 1, control valve I 3, aluminium alloy melt entrance 4, liquid level observer 5, heating unit I 7, plumbago crucible I 1 is placed in the inside of tundish 6, heating unit I 7 is positioned at the interior of tundish 6, the top of tundish 6 is provided with aluminium alloy melt entrance 4 and liquid level observer 5, and aluminium alloy melt entrance 4 places are provided with control valve I 3;
Initial pore generation device 11 comprises ventpipe 10, heating unit II 12, porous swivel nozzle 13, plumbago crucible II 14, control valve II 15, spout 16, ventpipe 10 is positioned at the inside of initial pore generation device 11, the place, air outlet of ventpipe 10 is provided with porous swivel nozzle 13, plumbago crucible II 14 is placed in the inside of initial pore generation device 11, heating unit II 12 is positioned at the interior of initial pore generation device 11, the lower end of initial pore generation device 11 is provided with spout 16, and spout 16 places are provided with control valve II 15;
Vacuum foam stove 19 comprises movable pulley 17, heating unit III 18, vacuum extractor 20, Stainless Steel Crucible 21, and the bottom of vacuum foam stove 19 is provided with movable pulley 17, and Stainless Steel Crucible 21 is positioned at the inside of vacuum foam stove 19; Vacuum extractor 20 is positioned at the top of vacuum foam stove 19 and the sidewall of vacuum foam stove 19 is tightly connected.
This implements described tundish 6 and initial pore generation device 11 passes through communicating pipe 8 seamless link.
With semicontinuous vacuum foam device described in the present embodiment, prepare foamed aluminium, specifically comprise the following steps:
By the ZL202 alloy melt melt temperature of tackify, it is 640 ℃, including granularity is that 15 ~ 21 μ m, add-on are SiC particle introducing tundish 6 and the initial pore generation device 11 of alloy melt quality 8%, and keeping liquid level is 2/3 of tundish 6 and initial pore generation device 11 height; To passing into air intake in the melt in initial pore generation device 11, be 12% of alloy melt volume, by porous swivel nozzle 13, in melt, produce the initial pore of aperture 0.03 ~ 0.11mm; Vacuum foam stove 19 moves to initial pore generation device 11 head piece 16 places and connects material after being preheating to 640 ℃, remove and vacuumize foaming after connecting material, and vacuum tightness is that 1Pa, foamed time are 5s; After vacuum foam finishes, melt foam is cooled and solidified under vacuum, obtains porosity 70%, the foamed aluminium that aperture is 0.5 ~ 2.5mm.
embodiment 3
The described semicontinuous vacuum foam device of this enforcement comprises tundish 6, initial pore generation device 11, vacuum foam stove 19, tundish 6 and initial pore generation device 11 seamless links, initial pore generation device 11 and the semicontinuous connection of vacuum foam stove 19;
Tundish 6 comprises plumbago crucible I 1, control valve I 3, aluminium alloy melt entrance 4, liquid level observer 5, heating unit I 7, plumbago crucible I 1 is placed in the inside of tundish 6, heating unit I 7 is positioned at the interior of tundish 6, the top of tundish 6 is provided with aluminium alloy melt entrance 4 and liquid level observer 5, and aluminium alloy melt entrance 4 places are provided with control valve I 3;
Initial pore generation device 11 comprises ventpipe 10, heating unit II 12, porous swivel nozzle 13, plumbago crucible II 14, control valve II 15, spout 16, ventpipe 10 is positioned at the inside of initial pore generation device 11, the place, air outlet of ventpipe 10 is provided with porous swivel nozzle 13, plumbago crucible II 14 is placed in the inside of initial pore generation device 11, heating unit II 12 is positioned at the interior of initial pore generation device 11, the lower end of initial pore generation device 11 is provided with spout 16, and spout 16 places are provided with control valve II 15;
Vacuum foam stove 19 comprises movable pulley 17, heating unit III 18, vacuum extractor 20, Stainless Steel Crucible 21, and the bottom of vacuum foam stove 19 is provided with movable pulley 17, and Stainless Steel Crucible 21 is positioned at the inside of vacuum foam stove 19; Vacuum extractor 20 is positioned at the top of vacuum foam stove 19 and the sidewall of vacuum foam stove 19 is tightly connected.
This implements described tundish 6 and initial pore generation device 11 passes through communicating pipe 8 seamless link.
With semicontinuous vacuum foam device described in the present embodiment, prepare foamed aluminium, specifically comprise the following steps:
By the ZL301 alloy melt melt temperature of tackify, it is 650 ℃, including granularity is that 21 ~ 30 μ m, add-on are SiC particle introducing tundish 6 and the initial pore generation device 11 of alloy melt quality 5%, and keeping liquid level is 3/5 of tundish 6 and initial pore generation device 11 height; To passing into air intake in the melt in initial pore generation device 11, be 18% of alloy melt volume, by porous swivel nozzle 13, in melt, produce the initial pore of aperture 0.05 ~ 0.13mm; Vacuum foam stove 19 moves to initial pore generation device 11 head piece 16 places and connects material after being preheating to 650 ℃, remove and vacuumize foaming after connecting material, and vacuum tightness is that 5Pa, foamed time are 15s; After vacuum foam finishes, melt foam is cooled and solidified under vacuum, obtains porosity 80%, the foamed aluminium that aperture is 2.0 ~ 3.5mm.

Claims (10)

1. the semicontinuous vacuum foam device of a foamed aluminium, it is characterized in that: this device comprises tundish (6), initial pore generation device (11), vacuum foam stove (19), tundish (6) and initial pore generation device (11) seamless link, initial pore generation device (11) and the semicontinuous connection of vacuum foam stove (19);
Tundish (6) comprises plumbago crucible I (1), control valve I (3), aluminium alloy melt entrance (4), liquid level observer (5), heating unit I (7), plumbago crucible I (1) is placed in the inside of tundish (6), heating unit I (7) is positioned at the interior of tundish (6), the top of tundish (6) is provided with aluminium alloy melt entrance (4) and liquid level observer (5), and aluminium alloy melt entrance (4) locates to be provided with control valve I (3);
Initial pore generation device (11) comprises ventpipe (10), heating unit II (12), porous swivel nozzle (13), plumbago crucible II (14), control valve II (15), spout (16), ventpipe (10) is positioned at the inside of initial pore generation device (11), the place, air outlet of ventpipe (10) is provided with porous swivel nozzle (13), plumbago crucible II (14) is placed in the inside of initial pore generation device (11), heating unit II (12) is positioned at the interior of initial pore generation device (11), the lower end of initial pore generation device (11) is provided with spout (16), spout (16) locates to be provided with control valve II (15),
Vacuum foam stove (19) comprises heating unit III (18), vacuum extractor (20), Stainless Steel Crucible (21), and Stainless Steel Crucible (21) is positioned at the inside of vacuum foam stove (19); Vacuum extractor (20) is positioned at the top of vacuum foam stove (19) and the sidewall of vacuum foam stove (19) is tightly connected.
2. the semicontinuous vacuum foam device of foamed aluminium according to claim 1, it is characterized in that: the melt liquid level height in described tundish (6) and initial pore generation device (11) is consistent, liquid level is the 1/2-2/3 of tundish (6) and initial pore generation device (11) height.
3. the semicontinuous vacuum foam device of foamed aluminium according to claim 1, is characterized in that: described tundish (6) and initial pore generation device (11) are by communicating pipe (8) seamless link.
4. the semicontinuous vacuum foam device of foamed aluminium according to claim 1, is characterized in that: between described initial pore generation device (11) and vacuum foam stove (19) by head piece (16) and the semicontinuous connection of control valve (15).
5. the semicontinuous vacuum foam device of foamed aluminium according to claim 1, is characterized in that: movable pulley (17) is equipped with in vacuum foam stove (19) bottom.
6. the semicontinuous vacuum foam device of foamed aluminium according to claim 1, is characterized in that: the outside of described Stainless Steel Crucible (21) is provided with water-in (23), water outlet (24), water-cooled tube (25).
7. described in claim 1, the semicontinuous vacuum foam device of foamed aluminium, for the preparation of the method for foamed aluminium, is characterized in that, specifically comprises the following steps:
(1) in tundish (6), introduce the aluminium alloy melt (2) of tackify and keep certain liquid level;
(2) to having, in the initial pore generation device (11) of identical liquid level, pass into air and make to produce in tackifying fusant initial pore;
(3) melt semi-continuously flows in the Stainless Steel Crucible (21) after the interior preheating of vacuum foam stove (19), removes vacuum foam stove (19), seals and vacuumize foaming, and melt foam cooled and solidified, obtains foamed aluminium.
8. the semicontinuous vacuum foam preparation method of foamed aluminium according to claim 7, it is characterized in that: the aluminium alloy of tackify described in step (1), temperature is above 20 ~ 50 ℃ of aluminium alloy fusing point, contains the tackifier SiC of aluminium alloy quality 5 ~ 10%, and the granularity of tackifier SiC is 10 ~ 30 μ m.
9. the semicontinuous vacuum foam preparation method of foamed aluminium according to claim 7, is characterized in that: in step (2), passing into air capacity is 12 ~ 25% of aluminium alloy melt volume.
10. the semicontinuous vacuum foam preparation method of foamed aluminium according to claim 7, it is characterized in that: in step (3), the temperature of the interior Stainless Steel Crucible of vacuum foam stove (19) (21) is identical with the temperature of tackify aluminium alloy melt, vacuum tightness is 1 ~ 10Pa, and foamed time is 5 ~ 25s; Foaming post-foaming body is cooling under vacuum; The porosity of prepared foamed aluminium is 70 ~ 85%, and mean pore size is 0.5 ~ 5mm.
CN201410314029.7A 2014-07-03 2014-07-03 A kind of semicontinuous vacuum foam apparatus and method of foamed aluminium Expired - Fee Related CN104120295B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410314029.7A CN104120295B (en) 2014-07-03 2014-07-03 A kind of semicontinuous vacuum foam apparatus and method of foamed aluminium

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410314029.7A CN104120295B (en) 2014-07-03 2014-07-03 A kind of semicontinuous vacuum foam apparatus and method of foamed aluminium

Publications (2)

Publication Number Publication Date
CN104120295A true CN104120295A (en) 2014-10-29
CN104120295B CN104120295B (en) 2016-01-20

Family

ID=51765925

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410314029.7A Expired - Fee Related CN104120295B (en) 2014-07-03 2014-07-03 A kind of semicontinuous vacuum foam apparatus and method of foamed aluminium

Country Status (1)

Country Link
CN (1) CN104120295B (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106496627A (en) * 2016-10-12 2017-03-15 武汉理工大学 In the negative-pressure foaming method that air prepares epoxy foams as foaming agent
CN107058782A (en) * 2017-06-27 2017-08-18 长兴鼎盛机械有限公司 A kind of gas compression aluminium liquid foam device
CN112342423A (en) * 2020-09-15 2021-02-09 安徽省新方尊自动化科技有限公司 Processing method of foamed aluminum gun stock
CN113088740A (en) * 2021-04-07 2021-07-09 北京宏钧新材料技术有限公司 Foamed aluminum production system and production method
CN114505453A (en) * 2022-02-09 2022-05-17 安徽省新方尊自动化科技有限公司 Device and method for continuously producing foamed aluminum bar

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07223064A (en) * 1994-02-14 1995-08-22 Hitachi Cable Ltd Production of foamed metal stock
KR20030005885A (en) * 2001-07-10 2003-01-23 이동식 Semi-continual casting method of manufacturing a blowed aluminium panel
CN101109050A (en) * 2007-08-31 2008-01-23 清华大学 Method for continuously manufacturing stephanoporate aluminum product with gas direct blowing and blowing and device thereof
CN102586643A (en) * 2012-04-05 2012-07-18 中南大学 Semi-continuous production line of closed-cell aluminum foam
CN102962413A (en) * 2012-11-29 2013-03-13 中南大学 Continuous casting system capable of obtaining closed-cell foam aluminum with uniform bubble bodies
CN103667765A (en) * 2014-01-16 2014-03-26 岳阳钟鼎热工电磁科技有限公司 Continuous production equipment for foam aluminum alloy
CN203923345U (en) * 2014-07-03 2014-11-05 昆明理工大学 A kind of semicontinuous vacuum foam device of foamed aluminium

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH07223064A (en) * 1994-02-14 1995-08-22 Hitachi Cable Ltd Production of foamed metal stock
KR20030005885A (en) * 2001-07-10 2003-01-23 이동식 Semi-continual casting method of manufacturing a blowed aluminium panel
CN101109050A (en) * 2007-08-31 2008-01-23 清华大学 Method for continuously manufacturing stephanoporate aluminum product with gas direct blowing and blowing and device thereof
CN102586643A (en) * 2012-04-05 2012-07-18 中南大学 Semi-continuous production line of closed-cell aluminum foam
CN102962413A (en) * 2012-11-29 2013-03-13 中南大学 Continuous casting system capable of obtaining closed-cell foam aluminum with uniform bubble bodies
CN103667765A (en) * 2014-01-16 2014-03-26 岳阳钟鼎热工电磁科技有限公司 Continuous production equipment for foam aluminum alloy
CN203923345U (en) * 2014-07-03 2014-11-05 昆明理工大学 A kind of semicontinuous vacuum foam device of foamed aluminium

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106496627A (en) * 2016-10-12 2017-03-15 武汉理工大学 In the negative-pressure foaming method that air prepares epoxy foams as foaming agent
CN106496627B (en) * 2016-10-12 2020-01-14 武汉理工大学 Negative pressure foaming method for preparing epoxy resin foam by taking air as foaming agent
CN107058782A (en) * 2017-06-27 2017-08-18 长兴鼎盛机械有限公司 A kind of gas compression aluminium liquid foam device
CN112342423A (en) * 2020-09-15 2021-02-09 安徽省新方尊自动化科技有限公司 Processing method of foamed aluminum gun stock
CN113088740A (en) * 2021-04-07 2021-07-09 北京宏钧新材料技术有限公司 Foamed aluminum production system and production method
CN114505453A (en) * 2022-02-09 2022-05-17 安徽省新方尊自动化科技有限公司 Device and method for continuously producing foamed aluminum bar

Also Published As

Publication number Publication date
CN104120295B (en) 2016-01-20

Similar Documents

Publication Publication Date Title
CN104120295B (en) A kind of semicontinuous vacuum foam apparatus and method of foamed aluminium
CN102417366B (en) Pore gradient silicon carbide porous ceramic and preparation method thereof
CN104046826B (en) A kind of foam magnesium sill and preparation method thereof
CN103667765B (en) A kind of continuous producing apparatus of foam aluminium alloy
CN104001879B (en) A kind of continuous casting installation for casting continuing straight through porous material and method
CN104402466A (en) Porous corundum aggregate with core-shell structure and preparation method thereof
CN204261842U (en) Atomizing lance
CN107460385B (en) A kind of light foam Mn-Cu alloy high damping material and preparation method thereof
CN106222469A (en) The preparation method of enhancement mode foam aluminium alloy
CN203923345U (en) A kind of semicontinuous vacuum foam device of foamed aluminium
CN104942269A (en) Device for improving foaming uniformity of foamed aluminum and foaming technology
CN109735732A (en) A kind of gas-blowing foaming method continuously prepares closed-cell aluminum foam device
CN204470750U (en) Prepare the active soldering device of diamond-copper composite material
CN103240405A (en) In-situ reaction precipitation manufacture device and process of lotus-root-shaped porous metal material
CN112899513B (en) Foamed aluminum with open-close hole coexisting structure and preparation method thereof
CN102392173B (en) Preparation method of open-cell formed steel
CN104475699A (en) Process of directly molding foamed aluminum parts in differential pressure casting method
CN105500666B (en) A kind of extrusion die head special for PE microporous foam tubing
CN104475697A (en) Semi-solid preparation technology for short fiber/SiCp enhanced foam aluminum-based bearing bush
CN204365978U (en) A kind of Aluminum alloy gravity tilted casting ceramic pouring cup
CN104557123B (en) A kind of silicon carbide foam ceramic material
CN101220423B (en) Method for manufacturing foam aluminum alloy
CN103343254A (en) Preparation method of pore structure controllable porous magnesium-calcium alloy
CN217449684U (en) Liquid-gas mixer for preparing foamed aluminum
CN109304449A (en) A kind of crucible furnace formula compression solidification aluminium alloy smallclothes molding machine

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20160120

Termination date: 20210703

CF01 Termination of patent right due to non-payment of annual fee