Block metal composite and its prepartion method

A composite material and bulk metal technology, applied in the field of bulk metal composite materials and its preparation, can solve the problems of easy grain growth, particle agglomeration, and small proportion of powder materials, so as to reduce chemical reactions and process routes Simple, High-Ratio Effects

Inactive Publication Date: 2004-03-10
周照耀
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The method of stirring casting with powder particles in the liquid is to mechanically stir above the opening of the crucible to generate a vortex in the molten metal to introduce powder particles. The disadvantage of this method is that when the powder particle size is less than 10 μm, it cannot be passed through the stirring method Let the powder enter the metal liquid, and the powder cannot be evenly distributed in the matrix material, and the microstructure is not repeatable
The preparation methods of the above-mentioned composite materials cannot make the powder evenly distributed in the matrix material, the proportion of the powder material in the composite material is small, and the microstructure is not repeatable, so the stability and reliability of the performance of the composite material cannot be guaranteed. Guaranteed
Disadvantages of the casting method: On the one hand, the finer the reinforcement particles, the higher the specific mechanical properties of the corresponding material; on the other hand, the more serious the agglomeration of the finer particles, it is difficult to obtain the optimal performance of the material by ordinary casting methods
For example, iron-based powder forming parts are generally sintered at 1080°C for two hours, which consumes a lot of energy, and the green body will inevitably be deformed during sintering, which will affect the accuracy of the part.
For nanocrystalline powder, the crystal grains are easy to grow during the sintering process, making it difficult to maintain the properties of nanocrystals
Due to the large number of pores in the powder sintered material, the material is discontinuous and the subsequent machining performance is poor

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0015] The impregnation tank is a container tank made of steel plate that can hold liquid. The liquid will not leak out when it is contained in the tank. Spread silica powder with an average particle size of 100 μm on the bottom of the impregnation tank to a certain thickness, and shake it firmly. Silica powder, forming a powder bed; place the brass block (could be copper powder) for melt infiltration on the powder bed; place the infiltration tank containing the silica powder and the brass block Put it into the heating furnace (the heating furnace can be sealed and evacuated, or it can be sealed and inflated to withstand a certain air pressure), and after closing the furnace door, it is vacuumed to reach a vacuum degree of 10Pa; the heater in the heating furnace is used during the heating process. The brass block is melted; when the brass block on the silica powder bed in the impregnation tank is completely melted into liquid, the liquid covers the powder bed, and the temperatu...

Embodiment 2

[0017] First, the aluminum oxide ceramic powder is pressed into a prefabricated block on a press; then the aluminum oxide prefabricated block is placed in a hanging basket made of heat-resistant steel or graphite, and the hanging basket uses a cross bar to hold the powder block Press it down to prevent the powder prefabricated block from soaking in the impregnating liquid and floating out of the liquid surface; then put the hanging basket into the impregnation tank made of heat-resistant steel, and use a pad under the hanging basket so that the impregnating liquid can flow from the The bottom of the prefabricated block is impregnated into the prefabricated block, and the hanging basket is fixed with a cross bar; the cast aluminum ZL106 alloy block material used for melting impregnation, or aluminum alloy powder can be placed in the impregnation tank; the aluminum oxide powder filled with Put the impregnation tank of the prefabricated block and ZL106 block into the heating furna...

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Abstract

A composite metal block is prepared from the powdered material with high smelting point and the metallic material with lower smelting point through loading them in an infiltration container, putting the container in heater, vacuumizing while preheating, heating untile the temp is higher than the smelting point of metallic material bue lower than the smelting point of powdered material for smelting the metallic material to become liquid, holding the temp while pressurizing, and cooling. Its advantages are high infiltration speed, high uniformity, and large size of product.

Description

(1) Technical field [0001] The invention relates to the technical field of composite materials and preparation methods thereof, in particular to a bulk metal composite material and a preparation method thereof. (2) Background technology [0002] At present, the manufacturing method of the alloy is to melt the various component metals that constitute the alloy material and mix them in a liquid state. The components of the mixed metal liquid are made as uniform as possible by the method of stirring, and the method of adding a modifier is used to increase the number of crystal nuclei to achieve crystal grains. purpose of refinement. Since the liquid metal as a whole changes from a liquid state to a solid state, it must go through the process of nucleation, crystallization, and grain growth, and the location and quantity of nucleation are very random, and the microstructure is difficult to control. Common defects in casting such as Structural defects such as shrinkage porosity,...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B22D19/14C22C47/08
Inventor 周照耀
Owner 周照耀
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