Effect of austenisation temperature on bainite transformation below martensite starting temperature
نویسندگان
چکیده
منابع مشابه
Temperature cycling and the rate of the bainite transformation
There is a novel range of steels under development, based on bainite forming at exceptionally low temperatures. The advantage of suppressing the transformation temperature is that incredibly fine platelets of bainitic ferrite are generated which are only 20–40 nm in thickness. This makes the steel strong and in combination with the austenite that is retained, gives a useful range of properties ...
متن کاملCritical Assessment : Martensite – Start Temperature for the γ → ε Transformation
It is increasingly important in the context of high–manganese steels of the kind that lead to twinning–induced plasticity to be able to estimate the temperature at which ε–martensite forms when austenite is cooled. We find that the thermodynamic method used in similar calculations for α martensite cannot in many cases be implemented because of apparently imprecise thermodynamic data, a conclusi...
متن کاملVery strong low temperature bainite
Bainite has been obtained by heat treatment at temperatures as low as 125°C in a high carbon, high silicon steel. This has had the effect of greatly re® ning the microstructure, which is found to have a strength in excess of 2.5 GPa together with an ability to ̄ ow plastically before fracture. Such properties have never before been achieved with bainite. In this paper metallographic details are ...
متن کاملVery Strong, Low–Temperature Bainite
During the course of our research on the quantitative design of steels [1,2], an exciting discovery was made, in which carbide–free bainite was obtained by transformation at incredibly low temperatures, as low as 125 ◦C [3]. To put this into context, the random jump distance of an iron atom at that temperature is only 10 m over a period of three weeks. The consequence of the low transformation–...
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ژورنال
عنوان ژورنال: Materials Science and Technology
سال: 2019
ISSN: 0267-0836,1743-2847
DOI: 10.1080/02670836.2019.1631946