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Mikhaylov, S. B.
Старший научный сотрудник, Candidate of Sciences
Head Engineer
,
Department of Metallurgical Science
1996 …
2022
每年的科研成果
综述
指纹
网络
科研成果
(17)
相似简介
(12)
如果您在 Pure 中进行了任何更改,将很快在这里可见。
指纹
深入其中 Сергей Борисович Михайлов 为活跃的研究主题。这些主题标签来自此人的成果。它们共同形成唯一的指纹。
分类
加权
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Технические дисциплины и материаловедение
Abrasion
16%
Atoms
33%
Austenite
98%
Bismuth
43%
Carbon steel
42%
Cathodoluminescence
61%
Chromium
25%
Chromium steel
39%
Cooling
44%
Corrosion
24%
Crystal lattices
24%
Crystallization
42%
Decoding
69%
Elastic moduli
27%
Electrodes
12%
Electrons
32%
Ferrite
45%
Fluxes
39%
Gases
12%
Hardening
21%
Heating
63%
Iron alloys
44%
Lattice constants
24%
Martensite
23%
Martensitic transformations
43%
Metals
45%
Microhardness
16%
Nickel
22%
Oils
20%
Oxides
27%
Phase transitions
97%
Photoluminescence
52%
Physical properties
29%
Pipe
24%
Plasticity
15%
Polymorphism
20%
Shielding
23%
Single crystals
37%
Steel
56%
Temperature
51%
Thermal effects
23%
Thermal expansion
16%
Thermoplastics
32%
Wear resistance
15%
Weldability
27%
Welds
51%
Wire
41%
X ray diffraction analysis
20%
Физика и астрономия
abrasives
19%
alloying
20%
annealing
38%
austenite
90%
carbon
42%
casing
18%
cast alloys
38%
casts
33%
chemical composition
25%
chromium
56%
chromium steels
47%
contraction
31%
corrosion
35%
crystal lattices
16%
crystallization
47%
decoding
39%
diffraction
17%
ferrites
52%
grade
43%
graphite
27%
heat treatment
51%
heating
16%
high strength
100%
iron alloys
38%
learning
35%
magnetic properties
22%
martensite
15%
martensitic stainless steels
22%
matrices
17%
microstructure
17%
nickel
35%
oils
58%
phase transformations
71%
phenotype
46%
physical properties
29%
process heat
23%
quenching
26%
room temperature
16%
steel structures
21%
temperature
16%
thermal expansion
18%
water
18%
wear resistance
17%
weldability
23%
welded joints
44%
welding
16%
wire
36%
Химические соединения
Ambient Reaction Temperature
12%
Amount
6%
Application
10%
Behavior as Electrode
16%
Carbon Atom
5%
Carbon Dioxide
8%
Cathodoluminescence
43%
Chemical Transformation
47%
Cooling
57%
Crystal Lattice Parameter
52%
Crystallization
49%
Dimension
24%
Dissipative Structure
26%
Electron Particle
35%
Gas
25%
Heat Treatment
9%
Industry
23%
Iron Alloy
47%
Iron Atom
37%
Linear Expansion
50%
Martensitic Transformation
49%
Metal
51%
Metallic Material
41%
Microhardness
35%
Microstructure
14%
Orbital
26%
Oxide
17%
Phase Transition Temperature
12%
Photoluminescence
24%
Plastic Property
37%
Plate Like Crystal
25%
Pressure
18%
Resistance
20%
Shear Modulus
42%
Single Crystalline Solid
23%
Strength
6%
Thermal Expansion
34%
Wear
45%
X-Ray Diffraction
32%
Young's Modulus
34%