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NbTiAl series laminate structure intermetallic compound composite material and its preparation method

An intermetallic compound and composite material technology, which is applied in the field of intermetallic compound-based composite materials, can solve the problems such as the difficulty of flexible change in the thickness of the stack and the layer thickness ratio, the low yield strength and fracture toughness at room temperature, and the weak bonding strength between the layers. , to achieve the effect of large design flexibility, high bonding strength between layers, solving low temperature brittleness and high temperature strength

Inactive Publication Date: 2010-01-20
TSINGHUA UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

The common features of these laminated intermetallic compound materials are non-metallurgical bonding between layers, weak interlayer bonding strength, and difficulty in flexibly changing the thickness and layer thickness ratio of these laminated intermetallic compound materials. Therefore, the room temperature yield strength of these laminated intermetallic compound materials and low fracture toughness

Method used

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  • NbTiAl series laminate structure intermetallic compound composite material and its preparation method
  • NbTiAl series laminate structure intermetallic compound composite material and its preparation method
  • NbTiAl series laminate structure intermetallic compound composite material and its preparation method

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Embodiment Construction

[0022] In the intermetallic composite material of the present invention, the Nb-based intermetallic compound is Nb with the A15 structure containing the NbTiAl composition. 3 Al-based intermetallic compounds, especially intermetallic compounds containing Nb12Ti22Al, also including Nb with 15 structure containing NbAl components 3 Al intermetallic compound;

[0023] The ductile metal alloy in the intermetallic composite material of the present invention is mainly a niobium-titanium solid solution alloy with a β / B2 structure, especially an Nb40Ti15Al alloy;

[0024] figure 1 shows the laminated structure Nb 3 The macrostructure of the Al / NbTiAl intermetallic compound composite, which is composed of a NbTiAl tough alloy layer with a β / B2 structure ( figure 1 Medium-dark layer, microstructure such as image 3 ) superimposed on a layer of brittle A15 structure Nb 3 Al intermetallic compound layer ( figure 1 Light to medium layer, microstructure such as figure 2 ), and then ...

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Abstract

The invention relates to a laminated metal composite of NbTiAl group, and relative production, wherein said composite is formed by one layer of Nb group flexible metal alloy layer, above one layer of Nb group metal compound, and above one layer of Nb group flexible metal alloy. The invention is made from laser deposition method, while the metal compound layer is directly composed on the flexible metal alloy layer via said method; the flexible metal layer and metal compound layer are smelt, while their thickness and ratio can be controlled. The invention has high flexibility in room temperature and high temperature.

Description

technical field [0001] The invention relates to a high-temperature NbTiAl-based intermetallic compound composite material with a laminated structure, belonging to the field of intermetallic compound-based composite materials. Background of the invention [0002] Intermetallic compounds have long-range ordered structural properties, good high-temperature strength and oxidation resistance, high specific strength, high melting point, high thermal conductivity, and low thermal expansion coefficient. They are ideal high-temperature structural materials with good potential application value . However, the structural characteristics of intermetallic compounds such as insufficient slip systems, large slip vectors, limited cross-slip, difficulty in grain boundary slip, and hydrogen embrittlement at grain boundaries lead to their large room temperature brittleness, high brittle-ductile transition temperature and very low Poor processing and forming characteristics make it difficult t...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B32B15/01B32B33/00C23C24/10B23K26/34B23K26/342
Inventor 钟敏霖何金江刘文今
Owner TSINGHUA UNIV
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