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Results 11 - 20 of 381 for Iron-copper-carbon
  • Article - 21 Aug 2024
    Alloys combine multiple elements to create materials with superior properties, essential for advancements in industries like aerospace and automotive.
  • Article - 12 Apr 2001
    This article outlines the effects on steel of the addition of elements including chromium, nickel, vanadium, molybdenum, tungsten, boron, cobalt, titanium, aluminium, manganese, and silicon.
  • Article - 24 Sep 2001
    Pure titanium exists in the alpha phase at room temperature and transforms to the beta phase at 882°C. The beta phase has many beneficial properties and can be frozen in using certain alloying...
  • Article - 18 Jul 2023
    This article from Eltra discusses how analyzing battery components helps ensure quality of battery life.
  • Article - 21 Apr 2021
    To fine-tune the desired properties of commonly used metals they must be treated, either chemically or with heat treatment processes. This article will discuss annealing and tempering, two commonly...
  • Article - 8 Dec 2017
    The process of heat-treating metals on the industrial scale primarily serves to improve the overall properties of the metals required for their future use.
  • Article - 20 Nov 2002
    Offshore structures require special materials due to the highly corrosive environment in which they exist. These conditions and the corrosion mechanisms are described. The materials that have been...
  • Article - 17 May 2013
    Unlike iron, which has been in use for over a thousand years, stainless steel is a relative newcomer to the materials science world, having first been produced only 100 years ago.
  • Article - 23 Aug 2016
    Stainless steels contain several alloying elements that are in line with the specific composition and grade. The following sections describe the alloying additions and the reasons they are present,...
  • Article - 11 Mar 2015
    Galvanic corrosion may occur when two dissimilar metals are in contact with one another in the presence of an electrolyte creating an electronic pathway for the movement of electrons (such as water).

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