CN109097613A - A kind of composite device of copper and aluminium, lead element - Google Patents

A kind of composite device of copper and aluminium, lead element Download PDF

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Publication number
CN109097613A
CN109097613A CN201811193315.7A CN201811193315A CN109097613A CN 109097613 A CN109097613 A CN 109097613A CN 201811193315 A CN201811193315 A CN 201811193315A CN 109097613 A CN109097613 A CN 109097613A
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CN
China
Prior art keywords
furnace
aluminium
copper
blender
lead element
Prior art date
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Pending
Application number
CN201811193315.7A
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Chinese (zh)
Inventor
林建斌
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KUNSHAN JIANJIN INDUSTRY DESIGN Co Ltd
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KUNSHAN JIANJIN INDUSTRY DESIGN Co Ltd
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Priority to CN201811193315.7A priority Critical patent/CN109097613A/en
Publication of CN109097613A publication Critical patent/CN109097613A/en
Pending legal-status Critical Current

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    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C1/00Making non-ferrous alloys
    • C22C1/02Making non-ferrous alloys by melting
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C9/00Alloys based on copper
    • C22C9/01Alloys based on copper with aluminium as the next major constituent
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C9/00Alloys based on copper
    • C22C9/08Alloys based on copper with lead as the next major constituent

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Materials Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Manufacture And Refinement Of Metals (AREA)

Abstract

The invention discloses a kind of copper and aluminium, the composite device of lead element, including frame and the high-temperature melting furnace being arranged on frame, high-temperature stirring furnace and molding die and storage copper, the storage bin of aluminium element and lead element, the storage bin is set to the top of high-temperature melting furnace, the high-temperature melting furnace includes the main furnace of high temperature melting and the auxiliary furnace of multiple high temperature meltings being arranged near the main furnace of high temperature melting, the bottom of the main furnace of high temperature melting and the auxiliary furnace of multiple high temperature meltings is connect by feed pipe with high-temperature stirring furnace, the high-temperature stirring furnace includes the bell at the top of furnace body and setting furnace body, the feeding cylinder of bottom, the first blender is provided in the furnace body, stirring motor outside first blender and furnace body.The present invention is novel in design, structure is simple, easy to use, can produce the copper composite material of heterogeneity and different proportion, for studying, convenient for selecting wherein optimal composite material.

Description

A kind of composite device of copper and aluminium, lead element
Technical field
The present invention relates to metal field more particularly to the composite devices of a kind of copper and aluminium, lead element.
Background technique
The alloy that one or more of other elements are constituted is added using fine copper by matrix in copper alloy (copper alloy). Fine copper is also known as red copper in Zi Hong Se ﹐.Fine copper density is that 8.96 ﹐ fusing points are that there is 1083 DEG C ﹐ excellent Dao electricity ﹑ Dao Re ﹑ to prolong Malleability and corrosion resistance.It is mainly used for production and generates electricity Ji ﹑ Mu Xian ﹑ electricity Lan ﹑ Kai closing electrotechnical apparatus and the heat exchange such as Zhuan Zhi ﹑ transformer The heat conduction equipments such as the flat plate collector of Qi ﹑ Guan Dao ﹑ solar heat collector.
Brass closes gold ﹐ with the copper that zinc makees main adding elements, and there is beautiful yellow color ﹐ to be referred to as brass.Copper zinc bianry alloy claims Basis brass or simple brass.Brass more than ternary claims special brass or complex brass.Brass containing zinc lower than 36% closes Brass of the gold by solid solution group at ﹐ with good cold working performance ﹐ such as containing zinc 30% is commonly used to production bullet shell ﹐ and is commonly called as shell case Huang Copper or carobrozne.Brass alloys containing zinc between 36~42% are by the most commonly used is contain zinc 40% with solid solution Zu Cheng ﹐ Six or four brass.Other Yuan Su ﹐ such as Lv ﹑ Nie ﹑ Meng ﹑ Xi ﹑ Gui ﹑ lead etc. is often added in order to improve the Xing Neng ﹐ of basis brass.Aluminium can mention The strong degree ﹑ hardness of high brass and resistance to erosion property ﹐ but make plasticity drop low ﹐ to be suitable for seagoing vessel condenser pipe and other anti-corrosion parts.Tin can mention The intensity of high brass and to the Xing of the Nai Fu ﹐ of seawater thus claim naval Huang Tong ﹐ to be used as ship Thermal Equipment and propeller etc..Lead can improve The cutting ability of brass;This free-cutting brass is commonly used for clock and watch part.Brassing is commonly used to production valve and pipe fitting Deng.The explosion-proof knuckle buster of the common fire hydrant of ship is exactly that brass adds aluminum casting to form.
Copper alloy is widely used in electronic component, printed circuit, ship, automobile, aircraft, railway, clock and watch etc. above, it is desirable that In high precision, high density can play optimal performance, it would be desirable to be studied copper alloy and be transformed, it is made to promote it Best performance, therefore we need the model machine of a manufacture copper alloy.Currently, there are many types for the product of copper alloy, but It is also to compare lack such production equipment on the market.
In view of this, it is necessary to study the composite devices of a kind of copper and aluminium, lead element.
Summary of the invention
It is an object of the invention to overcome problem above of the existing technology, a kind of copper and aluminium, lead element are provided Composite device, the present invention is novel in design, structure is simple, easy to use, can produce heterogeneity and not on year-on-year basis The copper composite material of example, for studying, convenient for selecting wherein optimal composite material.
To realize above-mentioned technical purpose and the technique effect, the invention is realized by the following technical scheme:
A kind of composite device of copper and aluminium, lead element, including frame and the high-temperature melting furnace being arranged on frame, The storage bin of high-temperature stirring furnace and molding die and storage copper, aluminium element and lead element, the storage bin are set to height The top of warm melting furnace, the high-temperature melting furnace include the main furnace of high temperature melting and are arranged in multiple near the main furnace of high temperature melting The bottom of the auxiliary furnace of high temperature melting, the main furnace of high temperature melting and the auxiliary furnace of multiple high temperature meltings is connected by feed pipe and high-temperature stirring furnace It connects, the high-temperature stirring furnace includes the bell at the top of furnace body and setting furnace body, and the feeding cylinder of bottom is provided in the furnace body Stirring motor outside first blender, first blender and furnace body, the stirring motor are connect by drive rod with frame; It is provided with the second blender of the first blender of connection in the feeding cylinder, is set between second blender and the first blender It is equipped with block, the oral area of the block and feeding cylinder connects, the sprue gate connection on the bottom and forming module of the feeding cylinder, The molding die is connect by mold mounting rack with frame.It adopts this technical solution, copper, aluminium element and lead element difference It is stored in different storage bins, the main furnace of high temperature melting is respectively used to melting aluminum member for melting copper, the auxiliary furnace of high temperature melting Element and lead element, and it is fused into metal water, the metal water after fusing is delivered to high-temperature stirring furnace by the feed pipe of bottom, by Intracorporal first blender of furnace is stirred mixing, and the metal water after being stirred enters feeding cylinder, by feeding cylinder Metal water is injected into molding die after two blender Stirrings.Wherein, the drive rod for connecting stirring motor is used to open The block of bottom of furnace body and the metal water in driving feeding cylinder are injected into molding die.
Preferably, the storage bin includes major ingredient storehouse and the connection auxiliary furnace of high temperature melting for connecting the main furnace of high temperature melting Auxiliary material storehouse.It adopts this technical solution, major ingredient storehouse is for storing copper, and auxiliary material storehouse is for storing aluminium element and lead element;Copper coin Element enters the main furnace of high temperature melting by major ingredient storehouse;Aluminium element and lead element pass through auxiliary material storehouse respectively and enter different high temperature meltings In auxiliary furnace.
Preferably, the main furnace of the high temperature melting, the auxiliary furnace of high temperature melting and high-temperature stirring furnace are set as resistance furnace or electric heating All-radiant furnace.
Preferably, first blender includes connecting the agitating shaft of stirring motor and stirring on agitating shaft being arranged in Mix impeller;Second blender includes the flight for connecting the follower arm of agitating shaft and being arranged on follower arm.Using this Technical solution drives agitating shaft by stirring motor, makes the agitator arm Stirring for stirring axis connection;Agitating shaft is in Stirring When, drive flight on the follower arm and follower arm of connection together.
Preferably, the molding die includes connecting the upper mold at sprue gate and connecting lower die, the upper mold with upper mold The type chamber of formed template, one be carved in element term, model, weight or specification in the type chamber are provided between lower die Kind is a variety of.It adopts this technical solution, makes template after molding convenient for record or identification.
Preferably, the mold mounting rack include connect upper mold upper mounted plate and lower die connection bottom plate, Fixed plate and frame, the bottom plate are connect by drive rod and guide post with the bottom plate that base of frame is arranged;Institute It states drive rod and is set as hydraulic-driven bar, the hydraulic-driven bar is connect with hydraulic control system.It adopts this technical solution, by liquid The bottom plate for pressing drive rod to be drivingly connected, makes the lower die on bottom plate be molded or be opened with upper mold.
Preferably, being provided with electromagnetic valve on the major ingredient storehouse, auxiliary material storehouse and feed pipe.Using this metal solution, by Electromagnetic valve control charging.
Preferably, the major ingredient storehouse is placed with the copper ball that purity is 99.99%, the auxiliary material storehouse is placed with purity and is 99.99% aluminium ball and shot.
Preferably, the ratio setting of the copper in the composite material, in 51%-90%, aluminium element and lead element are total Ratio setting in 49%-10%.
The beneficial effects of the present invention are:
1. novel design of the invention, structure are simple, easy to use, the copper coin of heterogeneity and different proportion can be produced Plain composite material, for studying, convenient for selecting wherein optimal composite material;
2. the device of the invention can by based on copper, supplemented by aluminium element and lead element, can produce tens kinds, The even copper composite material of hundreds of different proportion, in order to scientific research.
The above description is only an overview of the technical scheme of the present invention, in order to better understand the technical means of the present invention, And can be implemented in accordance with the contents of the specification, with presently preferred embodiments of the present invention and attached drawing is cooperated to be described in detail below.This hair Bright specific embodiment is shown in detail by following embodiment and its attached drawing.
Detailed description of the invention
The drawings described herein are used to provide a further understanding of the present invention, constitutes part of this application, this hair Bright illustrative embodiments and their description are used to explain the present invention, and are not constituted improper limitations of the present invention.In the accompanying drawings:
Fig. 1 is structural schematic diagram one of the present invention;
Fig. 2 is structural schematic diagram two of the present invention;
Fig. 3 is top view of the present invention;
Fig. 4 is high-temperature stirring furnace schematic diagram of the present invention;
Fig. 5 is lower die structure schematic diagram of the present invention.
Figure label explanation: frame 1, storage bin 2, high-temperature melting furnace 3, high-temperature stirring furnace 4, molding die 5, feed pipe 6, Furnace body 7, bell 8, feeding cylinder 9, the first blender 10, stirring motor 11, drive rod 12, the second blender 13, block 14, casting Mouth 15, mounting rack 16, major ingredient storehouse 17, auxiliary material storehouse 18, the main furnace 301 of high temperature melting, the auxiliary furnace 302 of high temperature melting, agitating shaft 101 stir Mix impeller 102, follower arm 131, flight 132, upper mold 501, lower die 502, type chamber 503, upper mounted plate 161, bottom plate 162, guide post 163, bottom plate 164.
Specific embodiment
The invention will be further described with reference to the accompanying drawing:
Referring to figs. 1 to shown in Fig. 5, a kind of composite device of copper and aluminium, lead element, including frame 1 and setting exist The storage of high-temperature melting furnace 3, high-temperature stirring furnace 4 and molding die 5 and storage copper, aluminium element and lead element on frame 1 Feed bin 2, the storage bin 2 are set to the top of high-temperature melting furnace 3, the high-temperature melting furnace 3 include the main furnace 301 of high temperature melting with And the auxiliary furnace 302 of multiple high temperature meltings near the main furnace 301 of high temperature melting is set, the main furnace 301 of the high temperature melting and multiple high The bottom that temperature melts auxiliary furnace 302 is connect by feed pipe 6 with high-temperature stirring furnace 4, the high-temperature stirring furnace 4 including furnace body 7 and The bell 8 at the top of furnace body 7 is set, and the feeding cylinder 9 of bottom is provided with the first blender 10, first stirring in the furnace body 7 Stirring motor 11 outside device 10 and furnace body 7, the stirring motor 11 are connect by drive rod 12 with frame 1;In the feeding cylinder 9 It is provided with the second blender 13 of the first blender 10 of connection, is provided between second blender 13 and the first blender 10 Block 14, the block 14 are connect with the oral area of feeding cylinder 9, the bottom and the sprue gate 15 on forming module 5 of the feeding cylinder 9 Connection, the molding die 5 are connect by mold mounting rack 16 with frame 1.Adopt this technical solution, copper, aluminium element and Lead element is stored in respectively in different storage bins 2, and the main furnace 301 of high temperature melting is for melting copper, the auxiliary furnace 302 of high temperature melting It is respectively used to fusing aluminium element and lead element, and is fused into metal water, the metal water after fusing is defeated by the feed pipe 6 of bottom It send to high temperature rabble furnace 4, mixing is stirred by the first blender 10 in furnace body 7, the metal water after being stirred enters Feeding cylinder 9, by metal water is injected into molding die 5 after 13 Stirring of the second blender in feeding cylinder 9.Wherein, even The drive rod 12 for connecing stirring motor 11 is used to open the block 14 of 7 bottom of furnace body and drives the metal water injection in feeding cylinder 9 Into molding die 5.
Preferably, the storage bin 2 includes major ingredient storehouse 17 and the connection high temperature melting of the connection main furnace 301 of high temperature melting The auxiliary material storehouse 18 of auxiliary furnace 302.It adopts this technical solution, major ingredient storehouse 17 is for storing copper, and auxiliary material storehouse 18 is for storing aluminium member Element and lead element;Copper enters the main furnace 301 of high temperature melting by major ingredient storehouse 17;Aluminium element and lead element pass through auxiliary material respectively Storehouse 18 enters in the different auxiliary furnaces 302 of high temperature melting.
Preferably, the main furnace 301 of the high temperature melting, the auxiliary furnace 302 of high temperature melting and high-temperature stirring furnace 4 are set as resistance furnace Or electric radiation furnace.
Preferably, first blender 10 includes that the agitating shaft 101 of connection stirring motor 11 and setting are being stirred Agitator arm 102 on axis 101;Second blender 13 include connection agitating shaft 101 follower arm 131 and setting into Expect the flight 132 on bar 131.It adopts this technical solution, agitating shaft 101 is driven by stirring motor 11, connects agitating shaft 101 102 Stirring of agitator arm;Agitating shaft 101 drives the follower arm 131 and follower arm 131 of connection in Stirring On flight 132 together.
Preferably, the molding die 5 includes the upper mold 501 at connection sprue gate 15 and connect lower die with upper mold 501 502, it is provided with the type chamber 503 of formed template between the upper mold 501 and lower die 502, is carved with masurium in the type chamber 503 One of title, model, weight or specification are a variety of.It adopts this technical solution, makes template after molding convenient for record or identification.
Preferably, the mold mounting rack 16 includes that the upper mounted plate 161 of connection upper mold 501 and lower die 502 connect Bottom plate 162, fixed plate 161 and frame 1, the bottom plate 162 by drive rod 12 and guide post 163 with The bottom plate 164 of 1 bottom of frame setting connects;The drive rod 12 is set as hydraulic-driven bar, the hydraulic-driven bar with it is hydraulic Control system connection.It adopts this technical solution, is hydraulically operated the bottom plate 162 of bar drive connection, makes on bottom plate 162 Lower die 502 molded or be opened with upper mold 501.
Preferably, being provided with electromagnetic valve on the major ingredient storehouse 17, auxiliary material storehouse 18 and feed pipe 6.Using this metal side Case is controlled by electromagnetic valve and is fed.
Preferably, the major ingredient storehouse 17 is placed with the copper ball that purity is 99.99%, the auxiliary material storehouse 18 is placed with purity Aluminium ball and shot for 99.99%.
Preferably, the ratio setting of the copper in the composite material, in 51%-90%, aluminium element and lead element are total Ratio setting in 49%-10%.
Specific embodiment:
In actual use, the copper, aluminium element and lead element material of different proportion are matched as needed by user, then will Proportioned copper, aluminium element and lead element are stored in respectively in different storage bins, then put into different high temperature meltings It is melted in furnace, at metal water after melting it, the metal water after fusing is delivered to high-temperature stirring furnace by the feed pipe of bottom, Mixing is stirred by intracorporal first blender of furnace, the metal water after being stirred enters feeding cylinder, by feeding cylinder Its metal water is injected into molding die after second blender Stirring, by the mold cavity forming uniform specification in molding die Template.Then, it is tested by scientific research personnel, to study the performance of its carbon/carbon-copper composite material.
The above description is merely a specific embodiment, but scope of protection of the present invention is not limited thereto, any Those familiar with the art in the technical scope disclosed by the present invention, can easily think of the change or the replacement, and should all contain Lid is within protection scope of the present invention.Therefore, the protection scope of the present invention shall be subject to the protection scope of the claims.

Claims (9)

1. the composite device of a kind of copper and aluminium, lead element, including frame (1) and the height being arranged on frame (1) The storage bin of warm melting furnace (3), high-temperature stirring furnace (4) and molding die (5) and storage copper, aluminium element and lead element (2) it is characterized by: the storage bin (2) is set to the top of high-temperature melting furnace (3), the high-temperature melting furnace (3) includes height Temperature melts main furnace (301) and the auxiliary furnace of multiple high temperature meltings (302) in the main furnace of high temperature melting (301) nearby, the height is arranged Temperature melts main furnace (301) and the bottom of the auxiliary furnace of multiple high temperature meltings (302) is connect by feed pipe (6) with high-temperature stirring furnace (4), The high-temperature stirring furnace (4) includes the bell (8) at the top of furnace body (7) and setting furnace body (7), and the feeding cylinder (9) of bottom is described It is provided with the first blender (10) in furnace body (7), first blender (10) and the stirring motor (11) of furnace body (7) outside, institute Stirring motor (11) are stated to connect by drive rod (12) with frame (1);The first blender of connection is provided in the feeding cylinder (9) (10) the second blender (13) is provided with block (14), institute between second blender (13) and the first blender (10) It states block (14) to connect with the oral area of feeding cylinder (9), the bottom and the sprue gate on forming module (5) of the feeding cylinder (9) (15) it connects, the molding die (5) is connect by mold mounting rack (16) with frame (1).
2. the composite device of a kind of copper according to claim 1 and aluminium, lead element, it is characterised in that: described Storage bin (2) includes the major ingredient storehouse (17) of the connection main furnace of high temperature melting (301) and the auxiliary material for connecting the auxiliary furnace of high temperature melting (302) Storehouse (18).
3. the composite device of a kind of copper according to claim 1 and aluminium, lead element, it is characterised in that: described The main furnace of high temperature melting (301), the auxiliary furnace of high temperature melting (302) and high-temperature stirring furnace (4) are set as resistance furnace or electric radiation furnace.
4. the composite device of a kind of copper according to claim 1 and aluminium, lead element, it is characterised in that: described First blender (10) includes the stirring of the agitating shaft (101) and setting of connection stirring motor (11) on agitating shaft (101) Impeller (102);Second blender (13) includes the follower arm (131) of connection agitating shaft (101) and is arranged in follower arm (131) flight (132) on.
5. the composite device of a kind of copper according to claim 1 and aluminium, lead element, it is characterised in that: described Molding die (5) includes the upper mold (501) of connection sprue gate (15) and connect lower die (502), the upper mold with upper mold (501) (501) the type chamber (503) of formed template is provided between lower die (502), be carved in the type chamber (503) element term, One of model, weight or specification are a variety of.
6. the composite device of a kind of copper according to claim 1 and aluminium, lead element, it is characterised in that: described Mold mounting rack (16) includes the upper mounted plate (161) of connection upper mold (501) and the bottom plate of lower die (502) connection (162), fixed plate (161) and frame (1), the bottom plate (162) pass through drive rod (12) and guide post (163) It is connect with the bottom plate (164) of frame (1) bottom setting;The drive rod (12) is set as hydraulic-driven bar, the hydraulic-driven Bar is connect with hydraulic control system.
7. the composite device of a kind of copper according to claim 1 or 2 and aluminium, lead element, it is characterised in that: institute It states major ingredient storehouse (17), be provided with electromagnetic valve on auxiliary material storehouse (18) and feed pipe (6).
8. the composite device of a kind of copper according to claim 2 and aluminium, lead element, it is characterised in that: described Major ingredient storehouse (17) be placed with purity be 99.99% copper ball, the auxiliary material storehouse (18) be placed with purity be 99.99% aluminium ball and Shot.
9. the composite device of a kind of copper according to claim 1 and aluminium, lead element, it is characterised in that: described The ratio setting of copper in composite material is in 51%-90%, and aluminium element and the total ratio setting of lead element are in 49%- 10%.
CN201811193315.7A 2018-10-14 2018-10-14 A kind of composite device of copper and aluminium, lead element Pending CN109097613A (en)

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CN201811193315.7A CN109097613A (en) 2018-10-14 2018-10-14 A kind of composite device of copper and aluminium, lead element

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113008027A (en) * 2021-02-24 2021-06-22 贵州省凯里化冶总厂 Device for manufacturing alloy for anode plate

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0648539A (en) * 1992-07-29 1994-02-22 Sumitomo Metal Mining Co Ltd Regulated powder volume taking-out device
CN101342584A (en) * 2007-07-12 2009-01-14 姚国志 Liquid processing technique for magnesium, aluminum and special equipment thereof
CN207487398U (en) * 2017-11-23 2018-06-12 江西伟强铜业科技有限公司 A kind of Novel copper alloy vacuum induction melting furnace

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0648539A (en) * 1992-07-29 1994-02-22 Sumitomo Metal Mining Co Ltd Regulated powder volume taking-out device
CN101342584A (en) * 2007-07-12 2009-01-14 姚国志 Liquid processing technique for magnesium, aluminum and special equipment thereof
CN207487398U (en) * 2017-11-23 2018-06-12 江西伟强铜业科技有限公司 A kind of Novel copper alloy vacuum induction melting furnace

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113008027A (en) * 2021-02-24 2021-06-22 贵州省凯里化冶总厂 Device for manufacturing alloy for anode plate

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Application publication date: 20181228