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991.
Conclusions The results of laboratory and production experiments showed that the main condition for providing the necessary combination of properties of two-phase ferritic-martensitic steels (high tensile strength, low yield strength, high plasticity and work hardenability) is obtaining the specified quantity of the hardening phase (martensite) in the structure (20–28% M to obtain t 550 MPa or 10–18% M for t 450 MPa). The specified ratio of the structural constituents under conditions of mass production of two-phase ferritic-martensitic steels may be guaranteed only with the use of steels containing carbon and alloy elements within the necessary limits and also with strict observance of the heat-treatment cycle. Without the use of metallographic measurements as the criteria for obtaining the optimum structural condition in addition to the required values of strength and plasticity it is necessary to use the 0.2/t ratio, which must not be greater than 0.5–0.6 with the absence of yield points on the tensile curve (without special temper rolling).As the result of the combination of work done in the Central Scientific-Research Institute of Ferrous Metallurgy together with plants of the Ministries of Ferrous Metallurgy and of the Automobile Industry at present the production is being introduced and experimental production lots of heat-treated two-phase steels of the following types with guaranteed mechanical properties are being supplied:At the Novolipetsk Metallurgical Combine cold-rolled 0.7–2.0-mm sheet of 06KhG(S)Yu and 06G2SYu steels with 0.2 = 260–320 MPa, t 550 MPa, 4 30%, and 0.2/t 0.5–0.6.At the Cherepovets Metallurgical Combine hot-rolled 2–6-mm sheet of 09G2(S) steel with 0.2 = 260–320 MPa, t 550 MPa, 4 25%, and 0.2/t 0.5–0.6.At the Beloretsk Metallurgical Combine (billets melted and rolled at the Cherepovets Metallurgical Combine) heat-treated cold-drawn wire up to 10.5 mm in diameter of 06KhGR steel with 0.2 250 MPa, t 530 MPa, and 10 30%.For successful development of the production and use of two-phase ferritic-martensitic steels the combined work of the designers of machine building plants on determination of the most effective types of parts, of engineers on correction of the method taking into consideration the specifics of the properties of two-phase ferritic-martensitic steels, and of users on determining the service properties of parts of these steels is necessary. The fulfillment of such a combination of work will make possible th timely formulation of the further work of the metallurgical industry and determination of the required volume and product range of rolled products of two-phase ferritic-martensitic steels.I. P. Bardin Central Scientific-Research Institute of Ferrous Metallurgy. Translated from Metallovedenie i Termicheskaya Obrabotka Metallov, No. 11, pp. 25–29, November, 1984. 相似文献
992.
Predicting phase equilibrium,phase transformation,and microstructure evolution in titanium alloys 总被引:3,自引:0,他引:3
Y. -Z. Wang N. Ma Q. Chen F. Zhang S. L. Chen Y. A. Chang 《JOM Journal of the Minerals, Metals and Materials Society》2005,57(9):32-39
Phase transformation and microstructural evolution in commercial titanium alloys are extremely complex. Traditional models
that characterize microstructural features by average values without capturing the anisotropy and spatially varying aspects
may not be sufficient to quantitatively define the microstructure and hence to allow for establishing a robust microstructure-property
relationship. This article discusses recent efforts in integrating thermodynamic modeling and phase-field simulation to develop
computational tools for quantitative prediction of phase equilibrium and spatiotemporal evolution of microstructures during
thermal processing that account explicitly for precipitate morphology, spatial arrangement, and anisotropy. The rendering
of the predictive capabilities of the phase-field models as fast-acting design tools through the development of constitutive
equations is also demonstrated.
For more information, contact Y.-Z. Wang, Department of Materials Science & Engineering, Ohio State University, 2041 College
Road, Columbus, OH 43221, USA; (614) 292-0682; fax (614) 292-1537; e-mail wang.363@osu.edu. 相似文献
993.
994.
V. V. Kuznetsov L. M. Skibina I. N. Loskutnikova Yu. E. Alekseev 《Protection of Metals》2001,37(1):31-34
It is shown that the strongest deceleration of the electrodeposition of cadmium in inhibited media is observed in the domain of loosening the structure of a mixed solvent (0.45 x
2 0.25) when the molecular adsorption of organic solvent on Cd is maximum. The process is maximally facilitated in the domain of ordering the acetonitrile's (AN) structure (0.9 x
2 0.75), where perchlorate anions dominate at the cathode surface. Crown-ester exhibits maximum inhibition effect under the conditions of preferential adsorption of its molecules, i.e., in the domain of the prevalence of the nonaqueous component in the mixture (x
2 0.95). 相似文献
995.
Yu. V. Grdina L. T. Gordeeva L. G. Timonina N. R. Zifferman 《Metal Science and Heat Treatment》1967,9(2):85-86
Conclusions In alloys of the Ti–Cu system we found the Ti3Cu phase at a concentration of 25 at % Cu formed at 1000°C by the peritectic reaction L+Ti3Cu.Siberian Metallurgical Institute. Translated from Metallovedenie i Termicheskaya Obrabotka Metallov, No. 2, pp. 10–11, February, 1967. 相似文献
996.
Silicon - In this paper, a dielectric modulated dual material gate TFET (DM-DMG_TFET)based biosensor is proposed. In order to detect various biomolecules, a nanogap cavity is formed by the... 相似文献
997.
Mansour N. Ben Djeridi W. Mir L. El 《Journal of Inorganic and Organometallic Polymers and Materials》2021,31(11):4360-4371
Journal of Inorganic and Organometallic Polymers and Materials - Nanoporous carbon matrix was prepared by the sol–gel process from pyrogallol-formaldehyde (PF) mixtures in water using picric... 相似文献
998.
Trykov Yu. P. Trudov A. F. Stepanishchev I. B. 《Metal Science and Heat Treatment》2002,44(11-12):524-528
The structure and mechanical properties of bimetallic joints of the same and different types, i.e., iron and steels St3, 45, and 85, are studied after explosion welding and subsequent heating. The cladding and the base layer have a thickness of 2.5 and 12 mm, respectively. It is shown that bending of explosion-welded joints from same-type and different-type steels is accompanied by an anomalous phenomenon of local softening of the near-weld zone in the region of residual deformation with degree ε = 2 – 9%. 相似文献
999.
Grigoriev O.N. Panasyuk A.D. Brodnikovskyy M.P. Podchernyaeva I.O. Melakh L.M. Yurechko D.V. Vedel D.V. Kozak I.V. 《Powder Metallurgy and Metal Ceramics》2022,60(9-10):626-634
Powder Metallurgy and Metal Ceramics - Hot pressing was used to produce compact ceramic samples with the following composition (wt.%): 60 ZrB2 + 20 SiC + 20 (Al2O3 + 32 t-ZrO2). The tetragonal... 相似文献
1000.
Semiatin S. L. Levkulich N. C. Payton E. J. Pilchak A. L. 《Metallurgical and Materials Transactions A》2022,53(11):3823-3826
Metallurgical and Materials Transactions A - A heat-treatment method to develop a coarse-α-particle size in Ti–6Al–4V with a fully-globular (equiaxed) microstructure was developed.... 相似文献