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Archives for March 2012

Revealing the Microstructure of Tool Steels

March 15, 2012 by George Vander Voort

Revealing the Microstructure of Tool Steels

After we have properly prepared our tool steel specimens, it is generally best to examine them as-polished before etching – unless we are simply doing a routine test, for depth of decarburization, degree of spheroidization, and so forth. Examination of selectively etched tool steel microstructures by light microscopy provides more information than standard etchants, such as nital, picral or Vilella’s reagent. Further, the images are more suitable for quantitative measurements, especially by image analysis. Specimens must be properly prepared, damage free, if selective etchants, or color etchants, are to be applied successfully.

A number of etchants have been claimed to selectively etch certain carbides in tool steels. The response of these etchants has been evaluated using a variety of well-characterized tool steel compositions. While many are selective, they are often selective to more than one type of carbide. Furthermore, their use in image analysis must be evaluated carefully as measurements showed that the amount and size of the carbides are often greater after selective etching as many of these reagents outline and color or attack the carbides.

Tool Steel Carbides

March 15, 2012 by Dan Herring

Tool Steel Carbides

Today, tool steel heat treatment is based on a simple premise, that to obtain the optimum performance from any given grade, every step of the heat treating process— including stress relief, preheating, austenitizing, quenching, deep freeze/cryogenic treatment and multiple tempers—must be done exactly correct. Absolute control of both process and equipment variability is one of many reasons why vacuum processing (Fig. 1) is popular in tool steel heat treatment [1].

The selection of any tool steel depends on a combination of factors including component design, application end use and performance expectation. For any given application (Fig. 2) the goal of heat-treating is to develop the ideal microstructure to help achieve the proper balance of desired properties (Table 1) namely hot (red) hardness, wear resistance, deep hardening and/or toughness.

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