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Dr Yi Nie
Assistant Professor in Intelligent Manufacturing
CBI Intelligent Manufacturing Centre
Advanced Intelligent Manufacturing Research Group
Email
YI-NIE
nottingham.edu
cn
h-index
347
Scopus Citations
6
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2010
2024
Research activity per year
Overview
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Research output
(20)
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Dive into the research topics where Yi Nie is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Engineering & Materials Science
Selective laser sintering
100%
Bone
86%
Scaffolds
70%
Tissue engineering
51%
Lasers
43%
Optical fibers
39%
Hydroxyapatite
33%
Die casting
31%
Microstructure
27%
Motion control
26%
Polymer melts
26%
Structural design
24%
Powders
22%
Fabrication
21%
Structural optimization
20%
Needles
19%
Gas heating
19%
Heating
18%
Phosphates
18%
Temperature
18%
Electric heating
17%
Polyvinyl alcohols
17%
Air
16%
Structural analysis
16%
Preheating
14%
Multiphase flow
14%
Compressibility
14%
Fourier transform infrared spectroscopy
14%
Scanning electron microscopy
13%
Surface tension
13%
Channel flow
13%
Extrusion
13%
Defects
13%
Two phase flow
12%
Computational fluid dynamics
12%
Porosity
12%
Packaging
11%
Polarization-maintaining fiber
11%
Mechanical properties
11%
Fibers
10%
Pipe
10%
Software engineering
10%
Microcracks
9%
Acoustic impedance
9%
Gases
9%
Cermets
8%
Temperature control
8%
Optical devices
8%
Hot Temperature
8%
Numerical models
8%
Chemical Compounds
Sintering
52%
Microstructure
29%
Mandrel
20%
Heating System
18%
Melatonin
16%
Porosity
14%
Lactose
13%
Jet
13%
Extrusion
12%
Phosphate
10%
Magnesium Atom
10%
Bone Substitute
8%
Cladding
8%
Flow
8%
Bioceramic
8%
Fiber
8%
Simulation
8%
Alcohol
7%
Intratracheal
6%
Needle Like Crystal
6%
Compression Strength
6%
Crystallization
6%
Brittleness
6%
Scanning Electron Microscopy
6%
Ceramic
5%
Biomaterial
5%
Shape
5%
Glass Property
5%
Physics & Astronomy
heaters
36%
tapering
28%
couplers
26%
bones
25%
heating
17%
optical fibers
13%
phosphates
12%
fibers
12%
microstructure
10%
microcracks
9%
performance
8%
fabrication
8%
optimization
8%
platforms
7%
sintering
7%
needles
6%