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Hydrogen effects in multiaxial fracture of cold-drawn pearlitic steel wires

Engineering Fracture Mechanics, 2017
Abstract Heavily drawn pearlitic steel wires have a markedly oriented microstructure as a consequence of the manufacturing process by cold drawing, thereby becoming anisotropic materials in the matter of fatigue and fracture behaviour. Such a micro-arrangement influences hydrogen assisted fracture (HAF) and produces multiaxial fracture in the form of
J. Toribio, D. Vergara, M. Lorenzo
openaire   +1 more source

Cementite Dissolution in Cold Drawn Pearlitic Steel Wires: Role of Dislocations

Materials Science Forum, 2013
Despite numerous investigations in the past, mechanism of cementite dissolution has still remained a matter of debate. The present work investigates cementite dissolution during cold wire drawing of pearlitic steel (~ 0.8wt% carbon) at medium drawing strain (up to true strain 1.4) and the role of dislocations in the ferrite matrix on the dissolution ...
Jay Chakraborty   +4 more
openaire   +1 more source

Pearlitic Steels: Wire Drawing

2016
Satyam S. Sahay, B.P. Gautham
openaire   +1 more source

High-Carbon Steels—Fully Pearlitic Microstructures and Wire and Rail Applications

2015
Abstract This chapter describes the mechanical properties of fully pearlitic microstructures and their suitability for wire and rail applications. It begins by describing the ever-increasing demands placed on rail steels and the manufacturing methods that have been developed in response.
openaire   +1 more source

410 Residual Stress in a Drawn Pearlitic Steel Wire

The Proceedings of Ibaraki District Conference, 2003
Tetsuya Suzuki, Yo Tomota
openaire   +1 more source

Delamination crack and microstructure refinement in wire-drawn pearlitic steels

The Proceedings of the Materials and Mechanics Conference, 2016
Masaki TANAKA   +3 more
openaire   +1 more source

Strain-induced coarsening of ferrite lamella in cold drawn pearlitic steel wire

Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing, 2020
Feng Fang, Jian Zhou, Jianqing Jiang
exaly  

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