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Article
Concentration-Dependent High-Temperature Deformation Mechanism of Hexagonal Close-Packed Ti-Al Alloys
The dependence of Al alloying on the high-temperature deformation physics of Ti-Al alloys was investigated in the present study. The mechanisms of planar dislocation slip, enhanced 〈c + a〉 activity and stacking f...
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Article
Dependence of Nb do** on microstructure and mechanical properties of Al2O3/Ti3SiC2 composites
In this work, the Al2O3/Ti3SiC2 composites with different Nb do** amounts (0–5 vol%) were prepared by vacuum hot pressing sintering (30 MPa, 1450 for 1 h). Various tests and characterization had been performed ...
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Article
On the Enhanced Deformability of Brittle Intermetallics Through the Design of Heterogeneous Multi-layered Structure
Industrial manufacturing, forming, and application of brittle materials such as Ti3Al intermetallic compounds are influenced by their poor plastic deformability. For evading such a dilemma, we propose a heterogen...
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Article
Intrinsic Properties and Structure of AB2 Laves Phase ZrW2
Using the first-principle calculations along with the quasi-harmonic Debye model, we explore the structural, thermodynamic, mechanical, and electronic properties of ZrW2 intermetallic considering temperature or p...
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Article
Combustion Synthesis of TiB2-TiC/42CrMo4 Composites with Gradient Joint Prepared in Different High-Gravity Fields
The novel TiB2-TiC/42CrMo4-laminated composite materials were successfully fabricated by combustion synthesis in different high-gravity fields. This ceramic/metal composite material possesses continuously graded ...
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Article
Open AccessFusion bonding and microstructure formation in TiB2-based ceramic/metal composite materials fabricated by combustion synthesis under high gravity
The novel ceramic/metal composite materials were successfully fabricated by combustion synthesis in high gravity field. In this paper, the Ti-B4C was selected as the main combustion reaction system to obtain TiB2