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Characterization of Metallurgical and Mechanical Properties of Thixowelded AISI D2 and AISI 304 Steels

Journal of Materials Engineering and Performance, 2020
In this study, AISI D2 tool steel was thixowelded with AISI 304 austenitic stainless steel by using a direct partial remelting technique. The joining parameters (temperature, soaking time, and contact area) have been investigated by studying their effects on the mechanical and metallurgical properties of the thixowelded joint.
M. N. Mohammed   +3 more
openaire   +1 more source

The Effect of Cryogenic Treatment on the Properties of AISI D2

Materials and Manufacturing Processes, 2009
The tool steel AISI D2 is usually processed by vacuum hardening followed by multiple tempering cycles. Deep cold treatment in between the hardening and tempering processes could reduce processing time and improve the final properties. Blocks of AISI D2 were vacuum hardened from different austenitizing temperatures.
C. H. Surberg   +2 more
openaire   +1 more source

Investigation of boriding kinetics of AISI D2 steel

Surface Engineering, 2014
A diffusion model was suggested to analyse the growth kinetics of Fe2B layers formed on AISI D2 steel by the pack-boriding process. It was used to estimate the boron diffusion coefficients of Fe2B in the temperature range of 1123–1273 K by applying the mass balance equation at the (Fe2B/substrate) interface.
M. Ortiz-Domínguez   +6 more
openaire   +1 more source

Precision radial turning of AISI D2 steel

The International Journal of Advanced Manufacturing Technology, 2008
This paper compares finite element model (FEM) simulations with experimental and analytical findings concerning precision radial turning of AISI D2 steel. FEM machining simulation employs a Lagrangian finite element-based machining model applied to predict cutting and thrust forces, cutting temperature and plastic strain distribution.
J. Paulo Davim   +5 more
openaire   +1 more source

Studies on the effect of cryogenic machining of AISI D2 steel

Materials Today: Proceedings, 2021
Abstract The milling operation for an AISI D2 graded steel produces an extremely maximized heat in cutting area and it guides to several damages in the forces during cutting operation, finishing the surface of the workpiece, and life of the tool. Cryogenic metal removing operations are an eco-friendly and innovative way for the reduction of heat in ...
S. Ravi, P. Gurusamy
openaire   +1 more source

Prediction of Machining Performances in Hardened AISI D2 Steel

Materials Today: Proceedings, 2019
Abstract The current research focuses on predicting the surface roughness, the flank wear and (chip–tool) interface temperature when turning the hardened AISI D2 (55 ± 1 HRC) employing a mixed ceramic (Al2O3 + TiCN) tool in dry condition. Quadratic regression methodology has been introduced and their performances are compared on basis of mean error ...
Ramanuj Kumar   +5 more
openaire   +1 more source

Surface Topography in Machining of AISI D2 Hardened Steel

Applied Mechanics and Materials, 2013
Surface topography plays an important part in understanding the nature of machined surfaces. This study is focused on surface topography of AISI D2 hardened steel (58-62 HRC) under dry milling process. Roughness, surface morphology and defects analysis were investigated.
N.A.H. Jasni, Mohd Amri Lajis
openaire   +1 more source

AISI TYPE D2

Alloy Digest, 1965
Abstract AISI Type D2 is a high-carbon, high-chromium air-hardening tool and die steel capable of great hardness and high resistance to abrasive wear. It is non-deforming and is also somewhat corrosion resistant. This datasheet provides information on composition, hardness, tensile properties, and compressive strength as well as fracture
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UDDEHOLM AISI D2

Alloy Digest, 1999
Abstract Uddeholm AISI D2 is a high-carbon, high-chromium, air-hardening tool and die steel capable of great hardness and high resistance to abrasive wear. It is nondeforming and is also somewhat corrosion resistant. This datasheet provides information on composition, physical properties, hardness, and elasticity.
openaire   +1 more source

Characterization of Niobium Carbonitride Coating on AISI D2 Steel

Materials Science Forum, 2007
Thermo-diffusion coatings containing Nitrogen, Carbon and Niobium (N+C+Nb) on AISI D2 steel have been carried out by an initial tufftriding process followed by saturation with Niobium. The properties of the diffusion layer, namely microstructure, phase composition and micro-hardness of the Niobium carbonitride layer, have been studied. The influence of
U. Sen, S. Sen
openaire   +1 more source

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