2018
DOI: 10.1016/j.surfcoat.2017.11.067
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Multi-scale tribological and nanomechanical behavior of cold sprayed Ti2AlC MAX phase coating

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Cited by 30 publications
(15 citation statements)
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“…MAX materials have both the metallic and ceramic behaviors as they show considerably high machinability, electrical, and thermal properties like metals and that they have superior resistance against creep, wear, and oxidation. [138] The mentioned properties can be further improved by, for example, solid solutions. Wang et al [139] prepared Ti 3 (Al, Sn)C 2 /Al 2 O 3 composites using a pressureless sintering of Ti 3 AlC 2 and SnO 2 as starting materials wherein the Al atoms were diffused out of Ti 3 AlC 2 at 800 °C to react with SnO 2 (see Figure 7).…”
Section: (10 Of 20)mentioning
confidence: 99%
“…MAX materials have both the metallic and ceramic behaviors as they show considerably high machinability, electrical, and thermal properties like metals and that they have superior resistance against creep, wear, and oxidation. [138] The mentioned properties can be further improved by, for example, solid solutions. Wang et al [139] prepared Ti 3 (Al, Sn)C 2 /Al 2 O 3 composites using a pressureless sintering of Ti 3 AlC 2 and SnO 2 as starting materials wherein the Al atoms were diffused out of Ti 3 AlC 2 at 800 °C to react with SnO 2 (see Figure 7).…”
Section: (10 Of 20)mentioning
confidence: 99%
“…As observed in the literature and from previous experiments concerning MAX phase deposition by CS [16][17][18][19][20][21], a fine granular powder would ease the formation of a denser and thicker coating. For this reason, the feedstock powder, Ti 3 AlC 2 , was sieved in order to remove the coarser constituents and remain with particles that have 20 to 40 µm dimensions.…”
Section: Materials Used For Cs Deposition-powder and Substratesmentioning
confidence: 55%
“…Such processes applied to MAX-phase materials necessitate adjustments in the initial compositions and limit the range of possible phases or coating structures. Cold spray, a relatively novel cost-effective and productive technology that belongs to the thermal spray technique, opens up a wide range of applications for these materials, due to the absence of melting, making low porosity and phase transformation-free coatings available [14][15][16][17][18][19][20][21]. These applications include erosion resistance and abradability [14], hot gas corrosion protection [15][16][17], for nuclear fuel cladding [18], tribological coatings [19], and bond-coat layers for Thermal Barrier Coating systems [20,21].…”
Section: Introductionmentioning
confidence: 99%
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“…Meanwhile, the coating of the heat sensitive material such as the nanometer amorphous material is obvious. As a result, the advantage is that there are fewer oxidation products during the preparation process [17][18][19][20][21].…”
Section: Introductionmentioning
confidence: 99%