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Performance of Maraging Steel Sleeves Produced by SLM with Subsequent Age Hardening. [PDF]

open access: yesMaterials (Basel), 2020
Tyczyński P   +5 more
europepmc   +1 more source
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Maraging Steels

1990
Abstract Maraging steels comprise a special class of high-strength steels that differ from conventional steels in that they are hardened by a metallurgical reaction that does not involve carbon. Instead, these steels are strengthened by the precipitation of intermetallic compounds at temperatures of about 480 deg C.
Kurt Rohrbach, Michael Schmidt
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MARAGING STAINLESS STEEL

Anti-Corrosion Manual, 1966
The Carpenter Steel Company in the USA have announced developmet of a high-strength, high-ductility stainless steel. Called Carpenter Custom-455, the new steel has a yield strength in excess of 240,000 p.s.i.—the highest in the stainless family.
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Maraging Steels

2001
Abstract This article discusses the effects of alloying on the properties and behaviors of maraging steels. It describes how maraging steels differ from conventional steels in that they are strengthened, not by carbon, but by the precipitation of intermetallic compounds.
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Silicon in maraging steels

Metal Science and Heat Treatment, 1970
1. Silicon sharply reduces the solubility of molybdenum in α-iron. 2. Silicon reduces the solubility of titanium and molybdenum in Fe−Ni martensite, increasing the precipitation-hardening effect in maraging steels. 3. Maraging steels with a strength of ∼190 kg/mm2 and satisfactory plasticity can be obtained by adding silicon,
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Dilatometric testing of maraging steel [PDF]

open access: possible, 2016
Dilatometry is a method of measuring changes in volume, length, width or thickness of the material sample during the time, caused by temperature changes. Through dilatometric testing of materials, it is possible to determine the dilatation behaviour of the material during heating and cooling.
Milinović, Andrijana   +2 more
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Radiation resistance of maraging steel

Metal Science and Heat Treatment, 1974
1. The radiation resistance of maraging steels is superior to that of pearlitic steels. After irradiation with an integral neutron flux of 8·1020N/cm2 at 70–100° the ductile-brittle transition temperature of the pearlitic steel rises from −80 to +100°, while that of the maraging steel remains below −80°.
Yu. A. Zot'ev   +4 more
openaire   +1 more source

Phase composition of maraging steels

Metal Science and Heat Treatment, 1969
1. The highly dispersed hardening phase (Fe, Ni, Co)2Mo is formed during aging of steels N17K9M5 and N18K9M5T at 550–640°C. 2. Besides the intermetallic phase based on Fe2Mo, the η Ni3Ti phase with a hexagonal lattice is formed in steel N18K9M5T at 600–640°C. 3. In steels N15, N17, N18K9, N17K9M5, and N18K9M5T tempered in the
N. F. Lashko   +3 more
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Residual strength of maraging steel

Journal of Materials Science, 1989
Surface crack tension (SCT) specimens of 18 Ni 1800 MPa grade maraging steel (parent metal and welded) were used to evaluate the residual strength in 0.015 and 0.03m wide panels. For 0.03 m wide panels which satisfy infinite plate condition up to 0.006 m surface crack length, the residual strength variation between minimum and maximum crack sizes lie ...
V. Diwakar   +3 more
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