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high entropy alloy (võtmesõna)
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aasta
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Toon andmeid..
autor
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TTÜ struktuuriüksus
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märksõna
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seeria-sari
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tema kohta
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võtmesõna
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Tühista
Kirjeid leitud
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Ekspordi
ekspordi kõik päringu tulemused
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Bibliokirje
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reasta
autor kasvavalt
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1
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Crack formation and control in an AlCoCrFeNi high entropy alloy fabricated by selective laser melting
Wei, Shuimiao
;
Ma, Pan
;
Fang, Yacheng
;
Zhang, Zhiyu
;
Yang, Zhilu
;
Shi, Xuerong
;
Prashanth, Konda Gokuldoss
3D Printing and Additive Manufacturing
2024
/
p. E628 - E637
https://doi.org/10.1089/3dp.2022.0142
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artikkel ajakirjas EST
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artikkel ajakirjas ENG
2
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Electron beam melting of (FeCoNi)86Al7Ti7 high-entropy alloy
Peng, Cong
;
Jia, Yandong
;
Liang, Jian
;
Xu, Long
;
Wang, Gang
;
Mu, Yongkun
;
Sun, Kang
;
Ma, Pan
;
Prashanth, Konda Gokuldoss
Journal of alloys and compounds
2023
/
art. 170752
https://doi.org/10.1016/j.jallcom.2023.170752
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artikkel ajakirjas EST
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artikkel ajakirjas ENG
3
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Evolution of microstructure and mechanical properties of LM25–HEA composite processed through stir casting with a bottom pouring system
Chinababu, Mekala
;
Krishna, Nandivelegu Naga
;
Sivaprasad, Katakam
;
Prashanth, Konda Gokuldoss
;
Bhaskara, Eluri
Materials
2022
/
art. 230
https://doi.org/10.3390/ma15010230
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artikkel ajakirjas EST
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artikkel ajakirjas ENG
4
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Microstructure evolution and tensile property of high entropy alloy particle reinforced 316 L stainless steel matrix composites fabricated by laser powder bed fusion
Zhang, Xinqi
;
Yang, Dongye
;
Jia, Yandong
;
Wang, Gang
;
Prashanth, Konda Gokuldoss
Journal of alloys and compounds
2023
/
art. 171430
https://doi.org/10.1016/j.jallcom.2023.171430
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artikkel ajakirjas EST
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artikkel ajakirjas ENG
5
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Selective laser melting of AlCoCrFeMnNi high entropy alloy : effect of heat treatment
Fang, Yacheng
;
Ma, Pan
;
Wei, Shuimiao
;
Zhang, Zhiyu
;
Yang, Dongye
;
Yang, Hong
;
Wan, Shiguang
;
Prashanth, Konda Gokuldoss
;
Jia, Yandong
Journal of materials research and technology
2023
/
p. 7845-7856
https://doi.org/10.1016/j.jmrt.2023.09.121
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artikkel ajakirjas EST
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artikkel ajakirjas ENG
6
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Selective laser melting of in-situ CoCrFeMnNi high entropy alloy : effect of remelting
Karimi, Javad
;
Kollo, Lauri
;
Rahmani Ahranjani, Ramin
;
Ma, Pan
;
Jia, Yandong
;
Prashanth, Konda Gokuldoss
Journal of Manufacturing Processes
2022
/
p. 55-63
https://doi.org/10.1016/j.jmapro.2022.09.056
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artikkel ajakirjas EST
/
artikkel ajakirjas ENG
7
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Solution combustion synthesis of MnFeCoNiCu and (MnFeCoNiCu)3O4 high entropy materials and sintering thereof
Aydinyan, Sofiya
;
Kirakosyan, Hasmik
;
Sargsyan, Armen
;
Volobujeva, Olga
;
Kharatyan, Suren
Ceramics International
2022
/
p. 20294-20305 : ill
https://doi.org/10.1016/j.ceramint.2022.03.310
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artikkel ajakirjas EST
/
artikkel ajakirjas ENG
8
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Subtle change in the work hardening behavior of fcc materials processed by selective laser melting
Sokkalingam, Rathinavelu
;
Sivaprasad, Katakam
;
Singh, Neera
;
Muthupandi, Veerappan
;
Ma, Pan
;
Jia, Yandong
;
Prashanth, Konda Gokuldoss
Progress in additive manufacturing
2022
/
p. 453-461
https://doi.org/10.1007/s40964-022-00301-x
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artikkel ajakirjas EST
/
artikkel ajakirjas ENG
9
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Unusual deformation substructure and strain hardening in an additively manufactured CoCrFeMnNi high entropy alloy under high-velocity impact loading
Chen, Hongyu
;
Yang, Xiaofeng
;
Gu, Dongdong
;
Liu, Yang
;
Yang, Shengze
;
Chen, Xiyu
;
Kosiba, Konrad
;
Chen, Yufei
;
Du, Junhang
;
Prashanth, Konda Gokuldoss
Journal of Material Science and Technology
2025
/
p. 35-51
https://doi.org/10.1016/j.jmst.2025.02.087
artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Kirjeid leitud 9, kuvan
1 - 9
võtmesõna
273
1.
Al0.1CoCrFeNi high-entropy alloy
2.
high entropy alloy
3.
high-entropy alloy
4.
high‐entropy alloy
5.
eutectic high entropy alloys
6.
eutectic high-entropy alloys
7.
high entropy alloys
8.
high-entropy alloys
9.
refractory high entropy alloys (RHEAs)
10.
dual-phase medium-entropy alloy
11.
dual-phase high-entropy alow
12.
high entropy
13.
high entropy intermetallics
14.
high entropy MAX phase
15.
High entropy oxide
16.
high-entropy materials
17.
high-entropy MAX phase
18.
high-entropy nanocomposites
19.
alloy systems and alloy development
20.
High-Pressure High-Temperature Spark Plasma Sintering
21.
Cross-Entropy method
22.
cumulative entropy
23.
Deng entropy
24.
enthalpy-entropy compensation
25.
entropy
26.
extra entropy flux
27.
fractional differential entropy
28.
fractional joint/conditional differential entropy
29.
fractional relative entropy
30.
information entropy
31.
Rényi entropy
32.
Shannon entropy
33.
spectral entropy
34.
weighted generalized cumulative past entropy
35.
von Neumann entropy
36.
հigh-entropy alloys
37.
Al alloy
38.
Al‐12Si alloy
39.
Al-20Si alloy
40.
al-based alloy
41.
Al-Cu alloy
42.
Al–Cu alloy
43.
alloy
44.
alloy desig
45.
Al-si alloy
46.
AlSi10Mg Alloy
47.
AlSi12 alloy
48.
AlSi40 alloy
49.
AlSi7Mg0.3 alloy
50.
Al-Si-Cu-Mg alloy
51.
Al-Si-Fe-Cu-Mg alloy
52.
Al-Zn-Mg-Cu alloy
53.
Al–Zn–Mg–Cu alloy
54.
aluminum alloy
55.
cobalt–chromium–molybdenum alloy
56.
composite alloy
57.
copper alloy
58.
cryogenic chemically complex alloy
59.
Cu-15Ni-8Sn alloy
60.
Cu–15Ni–8Sn alloy
61.
Cu-based alloy
62.
Fe-alloy binder
63.
Fe-based alloy
64.
Fe-based amorphous alloy
65.
Fe-Ni alloy
66.
LM25 alloy
67.
low-alloy steel
68.
magnesium alloy
69.
magnetic alloy
70.
Mg–Ag-based alloy
71.
mo alloy
72.
Ni-based alloy
73.
nickel-titanium alloy
74.
nikel-based self-fluxing alloy
75.
novel Al-Si alloy
76.
pulsed analog alloy grading
77.
self-fluxing alloy
78.
shape memory alloy
79.
Ti-35Nb-7Zr-5Ta alloy
80.
Ti40Nb alloy
81.
Ti64-xMo alloy
82.
Ti6Al4V alloy
83.
Ti-6Al-4V alloy
84.
TiC/Ti-alloy composites
85.
Ti-Nb alloy
86.
Ti-Nb-Zr alloy
87.
titanium alloy
88.
tungsten heavy alloy
89.
W-Ag pseudo-alloy
90.
β-Ti alloy
91.
γ-TiAl alloy
92.
bimodal high-density polyethylene (HDPE) PE100
93.
C. high temperature corrosion
94.
effect of high bide
95.
high
96.
high boost converter
97.
high cell mass production
98.
high context and low context cultures
99.
high current applications
100.
high cycle fatigue
101.
High Cycling Stability
102.
high efficiency
103.
High efficiency conversion
104.
high electricity consumption
105.
high energy ballmilling
106.
high energy milled activation
107.
high energy milling
108.
High energy physics
109.
high frequency instability
110.
high frequency link
111.
high frequency link conversion
112.
high frequency link converters
113.
high frequency link DC-AC converter
114.
high gain boost converter (HGBC)
115.
high gain dc/dc converter
116.
High gain step up DC-DC converter
117.
high heating rate
118.
high impedance faults
119.
high level DD (HLDD)
120.
high level synthesis
121.
high nonlinear
122.
high penetration of renewable energy sources (RESs)
123.
high percentage of wind power
124.
high performance computing
125.
High Performance DSC (HPer DSC)
126.
high performance liquid chromatography (HPLC)
127.
high power density
128.
high pressure grinding rolls
129.
high pressure liquid chromatography procedure
130.
high pressure torsion
131.
High Pressure Torsion Extrusion
132.
high pressure torsion extrusion (HPTE)
133.
high reliability
134.
high reliability leadership
135.
high reliability management
136.
high reliability organizations
137.
high school
138.
high school student
139.
high schools
140.
high speed boat
141.
high speed craft (HSC)
142.
high speed machining
143.
high speed measurement
144.
high step up/down
145.
high step-down conversion ratio
146.
high step-up
147.
high step-up converters
148.
high step-up power converter
149.
high strength
150.
high strength self-compacting concrete
151.
high strength steels
152.
high surface area carbon
153.
high switching frequency
154.
high tech industries
155.
High technologies park HTP
156.
high technology
157.
high temperature
158.
high temperature corrosion
159.
high temperature electrolysis
160.
high temperature fatigue
161.
high temperature fuel cells
162.
high temperature impact-abrasion
163.
high temperature oxidation
164.
high temperature tribology
165.
high temperature wear
166.
high temperatures
167.
high throughput sequencing
168.
high toxicity population (HTP)
169.
high viscosity
170.
high voltage
171.
High voltage circuit breaker
172.
high voltage direct current (HVDC)
173.
high voltage engineering
174.
high voltage gain
175.
high voltage power converters
176.
high-assurance cryptography
177.
high-cooked cheese
178.
high-density apolipoprotein A
179.
high-density lipoprotein cholesterol
180.
high-dimensional
181.
high-dimensional data
182.
high-energy astrophysics
183.
high-energy ball milling
184.
high-fat
185.
high-fidelity simulator
186.
high-frequency data
187.
high-frequency impacts
188.
high-frequency link converter
189.
high-frequency machine modeling
190.
high-frequency model
191.
high-frequency sensor
192.
high-frequency transformer
193.
high-frequency transformers
194.
high-frequency transients
195.
high-gain non-inverting buck-boost converter
196.
high-intensity interval training
197.
high-k oxides
198.
high-level control fault model
199.
high-level control faults
200.
high-level decision diagram
201.
high-level decision diagrams
202.
high-level decision diagrams (HLDD) synthesis
203.
High-level Decision Diagrams for Modeling Digital Systems
204.
high-level expert group on AI
205.
high-level fault coverage
206.
high-level fault model
207.
high-level fault simulation
208.
high-level functional fault model
209.
high-level synthesis
210.
High-Level Synthesis (HLS)
211.
high-level synthesis for test
212.
high-level test data generation
213.
high-penetration renewable energy
214.
high-penetration renewable energy sources (RESs)
215.
high-performance computer systems
216.
high-performance computing systems
217.
high-performance computing systems, Information processing
218.
high-performance liquid chromatography
219.
high-performance liquid chromatography-diode array detector-mass spectrometer
220.
high-performance photocathode
221.
high-performance ports
222.
High-Performance Work Systems
223.
high-precision levelling
224.
high-pressure annealing
225.
high-pressure processing
226.
high-pressure solidification
227.
high-pressure torsion
228.
high-pressure torsion (HPT)
229.
high-priority NIDS alert
230.
high-resolution
231.
high-resolution (HR)-PWM
232.
high-resolution biostratigraphy
233.
high-schools
234.
high-spatial resolution
235.
high-speed
236.
high-speed camera
237.
high-speed craft
238.
high-speed design
239.
high-speed MAS (magic angle spinning)
240.
high-speed planing crafts
241.
high-speed railway
242.
high-speed serial link test
243.
high-speed temperature scanner
244.
high-speed temperature scanner (HSTS)
245.
high-speed thermogravimetric analysis
246.
high-strength wastewater
247.
high-stress abrasion
248.
high-Tc superconductors
249.
high-tech industry
250.
high-temperature
251.
high-temperature ceramic superconductors
252.
high-temperature deformation behavior
253.
high-temperature differential thermal analysis (HDTA)
254.
high-temperature microelectronics
255.
high-temperature synthesis (SHS)
256.
high-temperature tribology
257.
high-temperature wear
258.
high-throughput
259.
high-throughput analysis
260.
high-vacuum evaporation
261.
high-velocity air-fuel (HVAF) spraying
262.
high-voltage techniques
263.
high-κ dielectrics
264.
isolated high step-up converter
265.
logic level and high level BDDs
266.
low-context and high-context
267.
self-propagating high temperature synthesized (SHS)
268.
Self-Propagating High-Temperature Synthesis
269.
ultra high
270.
ultra High gain boost converter (UHGBC)
271.
ultra high step-up
272.
Utsira High
273.
very high-resolution numerical modelling
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