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951.
Feature-based design of progressive press tools 总被引:2,自引:0,他引:2
952.
F. Liu J. E. Tang T. Jonsson S. Canovic K. Segerdahl J. -E. Svensson M. Halvarsson 《Oxidation of Metals》2006,66(5-6):295-319
FIB, SEM and STEM/EDX were used to investigate X20 stainless-steel samples exposed to dry O2, or O2 containing 40% H2O, with a flow velocity of 0.5 cm/s or 5 cm/s, for 168 hr or 336 hr at 600°C. Thin protective Cr-rich (Cr,Fe)2O3 was maintained on the samples exposed to dry O2, even after 336 hr, and on the sample exposed to O2/H2O mixture with the low-flow velocity (0.5 cm/s) for 168 hr. The oxide scale formed in the latter environment contained less Cr, due to Cr loss through CrO2(OH)2 evaporation. Breakaway oxidation occurred on the samples exposed in high-gas-flow velocity for shorter time (168 hr) or in low-gas-flow velocity (0.5 cm/s) for longer time (336 hr). The breakaway scales featured a two-layered structure: an outward-growing oxide “island” consisting of almost pure hematite (α-Fe2O3), and an inward-growing oxide “crater” consisting of (Cr,Fe)3O4. The transition from a thin protective (Cr,Fe)2O3 scale to a non-protective thick scale on this martensitic/ferritic steel originated locally and was followed by rapid oxide growth, resulting in a thick scale that covered the whole sample surface. 相似文献
953.
Every car of the Volzhskii Automobile Plant consists of 1.6 (VAZ-2106) to 4.0 (VAZ-2110) kilograms of parts fabricated from powder materials. By the middle of 1996 the range of these parts (weighing from 1.5 to 600 g) consisted of 150 items. They are fabricated from powders based on iron and copper (119 and 31 items, respectively). Almost half of the iron-base powder parts are subjected to various kinds of surface treatment, namely, carburizing, cyaniding, gas nitriding, and steam oxide treatment. The present paper is devoted to the special features of chemical heat treatment (CHT) of parts produced from iron (steel) powder materials.Translated from Metallovedenie i Termicheskaya Obrabotka Metallov, No. 10, pp. 18–21, October, 1996. 相似文献
954.
M.M. Korsukova V.N. Gurin Y. Yu L.-E. Tergenius T. Lundstrm 《Journal of Alloys and Compounds》1993,190(2):185-187
Single crystals of the new phase TmAlB14 were grown using the high-temperature solution method. The crystal structure of TmAlB14 was refined from X-ray powder diffraction data using the Rietveld method. The structure is of MgAlB14-type with the space group Imma and unit cell parameters a = 5.8212(3) Å, B = 10.3837(2) Å and C = 8.1762(3) Å. The final, conventional R-valve and profile R-value are 0.031 and 0.064, respectively. The structure is characterized by a partial occupancy of both metal positions and a splitting of the thulium atomic position. 相似文献
955.
956.
A. V. Makarov R. A. Savrai V. M. Schastlivtsev T. I. Tabatchikova L. Yu. Egorova 《The Physics of Metals and Metallography》2007,104(5):522-534
The hardness and mechanical properties of the U10 steel (1.03 wt % C) with pearlite structures that were formed by isothermal decomposition at temperatures of 650°C (coarse-lamellar pearlite) and 500°C (fine-lamellar pearlite) as well as upon subsequent annealing of fine-lamellar pearlite at a temperature of 650°C for 10–300 min have been studied upon tensile tests. Fractures of the steel with different types of pearlite structure have been examined using scanning electron microscopy. The interrelation between the mechanical properties and the structural features and character of fracture has been analyzed for this steel with pearlite structures differing in the dispersity, morphology, and defect structure of cementite, and in the levels of solid-solution strengthening and microdistortions of the ferrite-constituent lattice. 相似文献
957.
A suitable alloying design for improving the punchability of nonoriented electrical steels containing 0.1 % Si was investigated.
The appropriate addition of sulfur to steels containing relatively high manganese content is very useful in obtaining good
punchability without detrimental effects on magnetic properties. 相似文献
958.
马氏体相变研究的进展和瞻望SCIEI 总被引:1,自引:0,他引:1
叙述马氏体相变研究的一些进展和瞻望,包括马氏体相变的定义,马氏体相变热力学,奥氏体状态对马氏体相变的影响,动力学,形核和长大,以及马氏体相变晶体学。 相似文献
959.
Titanium carbide nano-fiber was synthesized by self-propagating high temperature synthesis (SHS) method. The final products
after the SHS reaction were titanium carbide containing excess carbon and metallic titanium, which were removed by additional
leaching process. TEM observation revealed that the average diameter is about 20 nm. Neutron diffraction analysis was carried
out to study non-stoichiometric number of the titanium carbide. The non-stoichiometric numbers of the titanium carbide were
0.89–0.94. The Rietveld refinement of each patterns converged to good agreement (÷2=0.49–1.34). The formation mechanism of
the carbide is related to a liquid-solid reaction including the preferential diffusion process of carbon atom into liquid
titanium.
This article is based on a presentation made in the 2002 Korea-US symposium on the “Phase Transformations of Nano-Materials,”
organized as a special program of the 2002 Annual Meeting of the Korean Institute of Metals and Materials, held at Yonsei
University, Seoul, Korea on October 25–26, 2002. 相似文献
960.
Banding formation and eutectic lamellar growth in a directionally solidified Ni50Al20Fe30 alloy were investigated. It was found that the banding area consists of two layers. The first layer is a γ layer, while the
subsequent one is a γ layer. The composition of various phases around the banding area changes with the solidification process.
The banding is formed by two steps process and caused by factors such as the fractions during the sample growth process. It
was found that the band was found at relatively low growth rate. Therefore. this study indicates that increasing the growth
rate is an effective method to eliminate the band formation. Eutectic lamellae nucleate and grow again after the banding formation.
During the initial transition lamellar growth, the relationship between the square lamellar spacing, γ2, and the distance from, the banding, d, can be described by the following equation: γ2 = K [1-exp(A.d)] where K and A are constant. 相似文献