Effect of Recrystallization on the Structure and Properties of Rolled Sections from Structural and Bearing Steels Under Thermal Deformation Treatment

2021 ◽  
Vol 62 (9-10) ◽  
pp. 543-549
Author(s):  
I. N. Kunitskaya ◽  
Ya. I. Spektor ◽  
A. V. Klimov ◽  
V. E. Ol’shanetskii
2019 ◽  
Vol 61 (7-8) ◽  
pp. 472-477
Author(s):  
I. N. Kunitskaya ◽  
Ya. I. Spektor ◽  
A. V. Klimov ◽  
V. E. Ol’shanetskii

2021 ◽  
Vol 2131 (5) ◽  
pp. 052023
Author(s):  
A Kirichek ◽  
S Silantyev ◽  
S Fedonina ◽  
A Yashin

Abstract Preliminary experimental studies of the possibility of increasing the microhardness of the surface layer of the material by the method of wave thermodeformational hardening on the example of austenitic steel class 12X18H10T are carried out. Comparative studies on the hardening of the material with and without heating were also carried out. The possibility of a significant increase in the maximum microhardness in the range from 25 to 50% at a depth of up to 0.6 mm, depending on the hardening mode, in comparison with the deformation treatment in the “cold” state is established. The area of technological modes providing the maximum increase of microhardness in the surface layer is revealed, in particular, the temperature of the treated surface should be in the range from 200°C to 400°C. At the same time, the achieved microhardness values exceed the initial one by 1.8…2.2 times, depending on the processing modes. It is also found that when choosing rational processing modes, the combined wave thermal strain hardening can significantly increase the hardening depth to 4.2 mm of the surface layer compared to the initial state. To establish the possibility of improving the performance of combined processing requires additional research.


2021 ◽  
Vol 1037 ◽  
pp. 329-334
Author(s):  
G.N. Gavrilov ◽  
Vladimir V. Galkin ◽  
Anatoly D. Ryabcev ◽  
Artem A. Generalov ◽  
Evgeny O. Bazhenov

The development and introduction of new nickel-based heat-resistant alloys with a special combination of an increased complex of physicomechanical properties is a priority task for modern materials science.


Author(s):  
O. V. Sych ◽  
S. V. Korotovskaya ◽  
E. I. Khlusova ◽  
N. S. Novoskoltsev

In this work, the kinetics of the growth of austenite grains upon heating, the features of the processes of dynamic and static recrystallization occurring at various temperature-deformation modes of plastic deformation are investigated. Phase transformations have been studied during continuous cooling of hotdeformed austenite in low-alloy “Arc”-steel with a yield point of at least 420 MPa. The studies carried out made it possible to determine the thermal deformation parameters that ensure the formation of a finely dispersed homogeneous ferrite-bainitic structure, on the basis of which technological recommendations for industrial production were developed and sheet products were manufactured. Presented are the structure and properties of sheet metal from shipbuilding “Arc”-strength category 420 MPa.


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