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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Metal science and heat treatment 8 (1966), S. 438-440 
    ISSN: 1573-8973
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Conclusions 1. The dynamic elastic modulus of the alloys investigated subjected to thermomechanical treatment depends very little on the degree of preliminary plastic deformation. 2. The hardness, the yield strength, and particularly the elastic limit of the alloys after quenching, deformation, and tempering increase with increasing degrees of preliminary plastic deformation. 3. The ultimate strength of the 36NKhT Yu alloy remains almost unchanged, while that of the 42NKhT Yu and 36NKhT YuM8 alloys increases with increasing degrees of preliminary plastic deformation. 4. The relative elongation of the alloys after quenching, deformation, and tempering decreases with increasing degrees of preliminary plastic deformation. 5. Thermomechanical treatment consisting of quenching, cold plastic deformation, and tempering is a promising process for improving the properties of spring alloys, particularly in the case of articles which do not require a high degree of plasticity during manufacturing.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-8906
    Source: Springer Online Journal Archives 1860-2000
    Topics: Electrical Engineering, Measurement and Control Technology
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Metallurgist 17 (1973), S. 153-155 
    ISSN: 1573-8892
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Type of Medium: Electronic Resource
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  • 4
    Electronic Resource
    Electronic Resource
    Springer
    Metal science and heat treatment 10 (1968), S. 809-811 
    ISSN: 1573-8973
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Conclusions 1. It was found that maraging steels N18K9M5T and Kh12N10D2TB have a high elastic limit, low elastic hysteresis, and high heat resistance, which are better than those of spring alloys Br. BNT 1.9, 36NKhTYu, and 36NKhTYuM8. Thus, they appear to be the best materials available for elastic elements. 2. The optimal quenching conditions were established for the two steels, guarangteeing a fine-grained structure and high elastic properties after aging. Steel N18K9M5T should be quenched from 820–840°C and steel Kh12N10D2TB from 870°C, with holding 30 min, cooling in air, and cold treatment 1 h at −70°C. 3. The elastic limit of steels N18K9M5T and Kh12N10D2TB reaches the highest values after aging at 450\dgC for 4 and 6 h respectively. At higher aging temperatures local \ga\ar\gg transformations occur, sharply reducing the elastic limit. 4. Aging of these maraging steels occurs in two stages at 400\2-500\dgC. The abrupt change in the properties in the initial stage is due to simultaneous recovery and segregation of alloing elements on dislocations. The properties change evenly in the second stage, due to the diffusion of atoms to relatively longer distances and the precipitation of coherent particles of excess phases.
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  • 5
    Electronic Resource
    Electronic Resource
    Springer
    Metal science and heat treatment 21 (1979), S. 319-323 
    ISSN: 1573-8973
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Type of Medium: Electronic Resource
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  • 6
    Electronic Resource
    Electronic Resource
    Springer
    Metal science and heat treatment 27 (1985), S. 443-447 
    ISSN: 1573-8973
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Conclusions 1. On the creep curve of specimens, like on the creep curve of aneroid barometers, we can distinguish two stages: nonsteady and steady-state creep. 2. Producing a field of residual deformations in the specimens by means of preliminary loading makes it possible to reduce the creep rate at the steady-state stage. 3. The greater the residual deformation at the initial loading is, the lower is the creep rate at its steady-state stage. 4. With rising test temperature the steady-state creep rate somewhat increases, and when σo increases, it decreases. 5. Increased creep stress σc with the same initial residual stress σo leads to increased steady-state creep rate.
    Type of Medium: Electronic Resource
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  • 7
    Electronic Resource
    Electronic Resource
    Springer
    Metallurgist 18 (1974), S. 840-842 
    ISSN: 1573-8892
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Type of Medium: Electronic Resource
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  • 8
    Electronic Resource
    Electronic Resource
    Springer
    Metal science and heat treatment 12 (1970), S. 836-838 
    ISSN: 1573-8973
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Type of Medium: Electronic Resource
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  • 9
    Electronic Resource
    Electronic Resource
    Springer
    Metal science and heat treatment 12 (1970), S. 106-111 
    ISSN: 1573-8973
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Conclusions 1. The addition of a surface-active element (magnesium) increases the dispersity and uniformity of the structure, reducing the average grain size of the α-solid solution and the inclusions of excess plases in quenched beryllium bronzes. 2. Microalloying of beryllium bronzes B2 and BNT1.9 with magnesium substantially improves their strength characteristics (elastic limit, relaxation resistance, cyclic strength) as the result of suppression of the discontinuous decomposition mechanism and the uniform strengthening of both the bulk and grain boundary areas. The best strength characteristics of beryllium bronzes were attained with 0.1$ Mg. 3. The newly developed compositions, alloyed with Mg, are designated BNT1.9Mg and B2Mg. The optimal heat treatment for these alloys is quenching from 770°C and aging at 320°C for 6h. 4. Commercial trials of the new beryllium bronzes showed that elastic elements of these bronzes have better combinations of basic properties than those of the standard compositions.
    Type of Medium: Electronic Resource
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  • 10
    Electronic Resource
    Electronic Resource
    Springer
    Metal science and heat treatment 14 (1972), S. 406-409 
    ISSN: 1573-8973
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Conclusions 1. Additional alloying of alloy 70NKhBMYu with tungsten and increasing the chromium content produced new nonmagnetic spring alloys 70NKhBMVYu and 60NKhBMVYu with a high heat resistance and corrosion resistance in media based on concentrated nitric acid. 2. Alloys 70NKhBMVYu and 60NKhBMVYu have a high plasticity (δ=30–42%) after quenching to γ solid solution, which makes it possible to manufacture tape and wire from them and also elastic sensing elements of complex shape. After tempering for 750° for 5 h the alloys have a high strength, and particularly the elastic limit (σ0.005=110−128 kg/mm2), as well as satisfactory relaxation resistance up to 550–600°. 3. The alloys are hardened during tempering due to the decomposition of the supersaturated solid solution with precipitation of finely dispersed phase of the Ni3Nb type with a fcc lattice. 4. Tests of the new alloys as materials for elastic sensing elements of the membrane type indicate that the alloys can be used at operating temperatures up to 550°C.
    Type of Medium: Electronic Resource
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