Clad material solid/liquid composite dual-solidification continuous casting and forming equipment and method

A technology of cladding material and forming equipment, which is applied to the continuous casting and forming of cladding materials whose melting point of the metal of the cladding layer is lower than the melting point of the metal of the core material, and the field of solid/liquid composite double solidification continuous casting and forming equipment of the cladding material, which can solve the interface problem. Diffusion layer thickness, interface quality, cladding metal thickness is difficult to control, cladding material quality and performance are difficult to meet high standard use requirements, cladding metal thickness uniformity and stability are difficult to ensure, etc., to achieve convenient operation and maintenance, simple structure , the effect of easy replacement

Active Publication Date: 2014-11-19
UNIV OF SCI & TECH BEIJING
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

When the cladding material is formed by hot-dip plating, the core material needs to be preheated to a certain high temperature in advance, and the core material will be immersed in the cladding metal melt for a long time. It is more likely to be excessively corroded, the thickness of the interface diffusion layer of the cladding material, the interface quality (such as easy to generate intermetallic compounds, etc.) and the thickness of the cladding layer metal are difficult to control, and the thickness uniformity and stability of the cladding layer metal are difficult to guarantee , the surface quality of the cladding layer metal is poor, and at the same time, the equipment is complicated, the investment is large, the technology is difficult, and the production cost is high
[0007] Some other composite casting methods are being developed that use the cladding metal melt to continuously clad the formed solid core material (such as horizontal continuous casting cladding, down-drawing continuous casting cladding, net-shape casting and rolling). Coating method) also has various problems, mainly including that the core material must be heated in advance, the process is long, the investment in anti-oxidation of the core material is large, the required supporting facilities are many, the equipment is complicated, the operation is cumbersome, the energy consumption is large, and the production cost is high. , or the core material needs to pass through the cladding metal melt that has been heated all the time, the surface of the core material is easy to be excessively eroded, the metal elements of the core material are easy to diffuse into the cladding metal melt to cause pollution, the quality and performance of the cladding material Difficult to meet high standard use requirements, etc.

Method used

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  • Clad material solid/liquid composite dual-solidification continuous casting and forming equipment and method

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0041] The core material is a CuNi44Mn1 copper-nickel alloy rod with a diameter of 8mm, and a copper-clad copper-nickel alloy composite rod with a thickness of 1mm in the coating layer of pure copper is formed by continuous casting.

[0042] Under the protection of argon, the pure copper melt of the coating layer in the crucible (5) is heated and kept to 1130℃ by the heater (6); the traction mechanism (11) is started to make the CuNi44Mn1 copper-nickel alloy bar pass through the core material The guiding and positioning device (2) and the core material protection device (3) start to move towards the starter, and at the same time the side of the head end of the starter rod (13) leaves the position of the draft tube (7); then the coating in the crucible (5) The layer of pure copper melt flows from the bottom of the crucible (5) through the draft tube (7) into the inverse solidifier (9). The pure copper melt through the high-temperature coating layer reacts with the unpreheated CuNi4...

Embodiment 2

[0044] The core material is a 304 stainless steel pipe with a diameter of 6mm and a wall thickness of 1mm and a copper-clad stainless steel composite pipe with a cladding layer of pure copper and a thickness of 0.75mm by continuous casting.

[0045] Under the air condition, the pure copper melt of the coating layer in the crucible (5) is heated and kept to 1150℃ by the heater (6); the core material protection device (3) and 304 stainless steel are respectively transferred to the core material protection device (3) and 304 stainless steel during continuous casting. The pipe is continuously filled with argon gas; the traction mechanism (11) is activated, so that the 304 stainless steel pipe passes through the core guide positioning device (2) and the core protection device (3) and starts to move toward the guide bar, and the guide bar (13) ) The side of the head end leaves the position of the draft tube (7); then the pure copper melt of the coating layer in the crucible (5) flows fr...

Embodiment 3

[0047] The core material is a pure copper wire with a diameter of 2mm, and a silver-coated copper composite wire with a coating layer of pure silver with a thickness of 0.2mm is formed by continuous casting.

[0048] Under the protection of nitrogen, the pure silver melt of the coating layer in the crucible (5) is heated and kept to 1000℃ by the heater (6); the core material protection device (3) is continuously filled in the continuous casting process. Enter nitrogen; start the traction mechanism (11), so that the pure copper wire passes through the core material guiding and positioning device (2) and the core material protection device (3) and begins to move toward the ingot direction, and at the same time the side of the head end of the ingot rod (13) leaves The position of the draft tube (7); then the pure silver melt of the coating layer in the crucible (5) flows from the bottom of the crucible (5) through the draft tube (7) into the inverted solidifier (9), passing through t...

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Abstract

The invention belongs to the technical field of clad material continuous casting, in particular to clad material solid/liquid composite dual-solidification continuous casting and forming equipment and method. The clad material solid/liquid composite dual-solidification continuous casting and forming equipment and method are characterized in that inversion solidification and forward solidification continuous casting and forming are combined, the measures that core materials are not heated in advance, an inversion solidification device with small capacity is designed, the core materials are prevented from penetrating through clad layer melt metal for a long time, the melt metal flows out from the bottom of a crucible by relying on self-weight, and the size of the inversion solidification device and the size of a water-cooled crystallizer are controlled effectively are taken, the high quality clad materials of needed shapes and sizes are formed through continuous casting, and the equipment and the method are especially suitable for continuous casting forming of the high quality clad materials with the melting point of the clad layer metal lower than that of the core material metal. The equipment and method have the advantages that the equipment is simple in structure, parts are easy to replace, operation and maintenance are convenient to carry out, layout is reasonable and compact, investment is small, industrialized application and popularization are facilitated, the procedure of the forming process is short, energy is saved, environment is protected, cost is low, the combination freedom of the clad layer metal and the core material metal is large, and the prepared clad materials are good in quality and performance.

Description

[0001] Technical field [0002] The invention belongs to the technical field of continuous casting of cladding materials, and specifically relates to a solid / liquid composite dual solidification continuous casting forming equipment and method for cladding materials, and is particularly suitable for continuous cladding materials whose melting point of the cladding metal is lower than that of the core material. Cast forming. technical background [0003] The cladding material is a composite material coated with a layer of dissimilar metals on the core material. It has the advantages of the cladding layer metal and the core material metal. It not only has excellent comprehensive performance, but also greatly reduces the amount of precious metals and reduces the cost. Therefore, it is widely used in aerospace, energy and environmental protection, construction machinery, petrochemical, transportation, electronic information, national defense and military industry, and daily life. It is...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B22D11/041B22D19/16
Inventor 刘雪峰伍伟玉谢建新
Owner UNIV OF SCI & TECH BEIJING
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