TDI Value Web B.V.

Netherlands

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C21D 5/00 - Heat treatment of cast-iron 2
C21D 8/00 - Modifying the physical properties by deformation combined with, or followed by, heat treatment 2
Found results for  patents

1.

Method of heat treating a cast iron, in particular a nodular cast iron

      
Application Number 14004994
Grant Number 09708677
Status In Force
Filing Date 2012-03-13
First Publication Date 2014-02-20
Grant Date 2017-07-18
Owner TDI VALUE WEB B.V.; (Netherlands)
Inventor
  • Van Eldijk, Pieter Cornelis
  • Van Eldijk, Abraham

Abstract

The invention relates to a method of heat treating a cast iron having graphite particles, in particular a cast iron having graphite nodules with a substantially spherical geometry. The method comprises the step of subjecting the cast iron to a first austenitizing temperature, in order to obtain a cast iron having an austenite matrix with a substantially homogeneous carbon content. Subsequently, at least part of the cast iron is subjected to at least a second, different austenitizing temperature in order to change, in at least part of the cast iron, the carbon concentration in a part of the matrix surrounding the (spherical) geometry of the graphite particles. The method yields improved controllability on strength properties characteristics for cast irons including malleable irons, in particular for ductile iron.

IPC Classes  ?

  • C21D 5/00 - Heat treatment of cast-iron
  • C21D 8/00 - Modifying the physical properties by deformation combined with, or followed by, heat treatment

2.

A METHOD OF HEAT TREATING A CAST IRON, IN PARTICULAR A NODULAR CAST IRON

      
Application Number NL2012050155
Publication Number 2012/125031
Status In Force
Filing Date 2012-03-13
Publication Date 2012-09-20
Owner TDI VALUE WEB B.V. (Netherlands)
Inventor
  • Van Eldijk, Pieter Cornelis
  • Van Eldijk, Abraham

Abstract

The invention relates to a method of heat treating a cast iron having graphite particles, in particular a cast iron having graphite nodules with a substantially spherical geometry. The method comprises the step of subjecting the cast iron to a first austenitizing temperature, in order to obtain a cast iron having an austenite matrix with a substantially homogeneous carbon content. Subsequently, at least part of the cast iron is subjected to at least a second, different austenitizing temperature in order to change, in at least part of the cast iron, the carbon concentration in a part of the matrix surrounding the (spherical) geometry of the graphite particles. The method yields improved controllability on strength properties characteristics for cast irons including malleable irons, in particular for ductile iron.

IPC Classes  ?

  • C21D 5/00 - Heat treatment of cast-iron
  • C21D 8/00 - Modifying the physical properties by deformation combined with, or followed by, heat treatment