Solid-liquid cast-rolling compounding device and method for producing reticular reinforcement interlayer composite material

A composite material and mesh material technology, which is applied in the field of production equipment for mesh reinforced sandwich composite materials, can solve the problems of poor bonding quality, high production cost, low productivity, etc., achieve short flow, achieve accurate distribution, and avoid mutual impact. Effect

Active Publication Date: 2016-02-03
YANSHAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in actual production, the above methods all have problems such as low productivity, high production cost, and poor bonding quality due to long production lines or complicated processes.

Method used

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  • Solid-liquid cast-rolling compounding device and method for producing reticular reinforcement interlayer composite material
  • Solid-liquid cast-rolling compounding device and method for producing reticular reinforcement interlayer composite material
  • Solid-liquid cast-rolling compounding device and method for producing reticular reinforcement interlayer composite material

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0066] The fiber cloth 102 is a mesh carbon fiber cloth with nickel-plated surface, the carbon fiber specification is 100-3000K, the fiber cloth thickness is 0.2-1 mm, the width is 200-1200 mm, and the mesh size is 0.1-2 mm. The first metal liquid and the second metal liquid are both selected as liquid pure aluminum, and the carbon fiber reinforced aluminum matrix sandwich composite material with a product thickness of 1.5-5mm is obtained by casting and rolling, which can be used as structural parts of aerospace and other equipment to reduce weight. and electromagnetic shielding.

[0067] S1. Preheat the flow distribution and guide assembly 5 so that the inner cavity temperature reaches 500°C. Continuously inject argon gas into the central rectangular channel of the flow distribution and guide assembly as a protective gas;

[0068] S2. Roll up the mesh-shaped woven carbon fiber cloth 102 with a thickness of 0.5mm and nickel-plated surface to the uncoiler 101, and prepare the ...

Embodiment 2

[0076] The fiber cloth 102 is selected as mesh carbon fiber cloth with nickel-plated surface, the carbon fiber specification is 100-3000K, the fiber cloth thickness is 0.2-1 mm, the width is 200-1200 mm, and the mesh size is 0.1-1 mm. The first metal liquid is selected as AlMn3000 series alloy, which has good corrosion resistance. The second metal liquid is selected as AlSi4000 series alloy, which has good welding performance. The thickness of the product is 1-5mm. AlMn-carbon fiber- AlSi interlayer composite material can be used in chemical pipelines.

[0077] S1. Preheat the flow distribution and guide assembly 5 so that the inner cavity temperature reaches 500°C. Continuously inject argon gas into the central rectangular channel of the flow distribution and guide assembly as a protective gas;

[0078] S2. Roll up the net-like woven carbon fiber cloth 102 with a thickness of 0.5mm and nickel-plated surface to the uncoiler 101, and prepare the molten metal pouring devices 3 ...

Embodiment 3

[0086] Fiber cloth 102 is selected as 304 stainless steel woven wire mesh with surface cleaning treatment, and the diameter of the wire is Width 200~1200mm, mesh size 2~6mm. Both the first molten metal and the second molten metal are selected from 6061 aluminum alloy, the thickness of the product is 1-10mm, and the steel wire mesh reinforced sandwich composite material is obtained by casting and rolling.

[0087] S1. Preheat the flow distribution and guide assembly 5 so that the inner cavity temperature reaches 500°C. Continuously feed argon gas into the central rectangular channel 52 of the flow distribution and guide assembly 5 as a protective gas;

[0088] S2. Coil the 304 stainless steel wire mesh 102 with a steel wire diameter of 0.2 mm and a cleaned surface to the uncoiler 101, and prepare molten metal pouring devices 3 and 4, and keep the temperature of the aluminum alloy melt on both sides at 700°C;

[0089] S3. The stainless steel wire mesh 102 is uncoiled horizont...

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Abstract

The invention provides a solid-liquid cast-rolling compounding device for producing a reticular reinforcement interlayer composite material. The solid-liquid cast-rolling compounding device comprises an uncoiler, a steering roll, a molten metal pouring device and a cast-rolling machine. The molten metal pouring device comprises a first pouring unit for containing first molten metal and a second pouring unit for containing second molten metal. The first pouring unit and the second pouring unit are arranged on the two sides of the reticular material respectively in parallel. The invention further provides a continuous cast-rolling compounding method for producing the reticular reinforcement interlayer composite material. The reticular material is fed into a cast-rolling region after being subjected to surface pretreatment, through dummy ingot flow blockage and seam thickness pre-distribution control, the surface treatment technology, the quick solidification technology and the rolling compounding technology are combined, the interface is compounded reliably, and the device and the method have the beneficial effects that the manufacturing procedure is short, efficiency is high, cost is low and the types of products are various.

Description

technical field [0001] The invention relates to a production equipment and method of a network-shaped reinforced interlayer composite material, in particular to equipment and a method for producing a network-shaped reinforced sandwich composite material by a solid-liquid casting-rolling composite method. Background technique [0002] With the development of modern science and technology, the requirements for the use of metal materials are no longer limited to a single mechanical property, but require metal materials to have comprehensive characteristics of structure and function under multi-field or even extreme service conditions. Fiber-reinforced metal matrix composites Came into being. Fiber reinforcement methods are mainly divided into two types: network overall reinforcement and short fiber dispersion reinforcement. At present, the problem of controlling the uniformity of short fiber reinforcement dispersed in the matrix has not been completely solved, and the network ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B22D11/06B21B1/46
Inventor 黄华贵王巍季策燕猛杜凤山
Owner YANSHAN UNIV
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