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INIS
devices
86%
fluids
85%
sensors
81%
velocity
80%
validation
80%
manufacturing
79%
curves
78%
design
75%
surfaces
74%
additives
65%
3d printing
63%
simulation
62%
applications
48%
cutting
46%
roughness
46%
data
46%
errors
46%
cost
46%
comparative evaluations
43%
speed
42%
capillaries
41%
metals
39%
sheets
36%
evaluation
36%
people
36%
hardness
36%
heat treatments
36%
steels
36%
range
36%
computer codes
34%
bone joints
33%
algorithms
31%
dies
31%
reduction
30%
shape
30%
variations
28%
levels
27%
weight
27%
values
26%
optimization
25%
cam
24%
retention
24%
prediction
24%
modeling
23%
depth
22%
machining
22%
transport
21%
plastics
21%
water
20%
dimensions
20%
Keyphrases
Inertial Sensors
81%
Gait
63%
3D Printing
63%
Fluid Velocity
54%
Characteristic Curve
54%
Additive Manufacturing
45%
Microdevice
39%
Microfluidics
39%
Sheet Metal
36%
Capillarity
36%
Gait Pattern
28%
Quadriceps
28%
Punching
27%
Taguchi Method
27%
Cutting Speed
27%
Knee
24%
Coefficient of Determination
22%
Thermal Treatment
22%
Footwear
22%
Capillary-driven
21%
Sheet Metal Cutting
20%
Forming Process
18%
Curved Microchannel
18%
Plastic Deformation
18%
Martensitic Steel
18%
Bike Frame
18%
AISI P20
18%
Mechanical Forming
18%
Mountain Bike
18%
Maximum Absolute Errors
18%
Knee Osteoarthritis
18%
Channel Geometry
18%
Capillary
18%
Safety Factor
18%
Concave Structure
18%
Convex Shape
18%
Cutting Parameters
18%
Rapid Test
18%
Water Velocity
18%
Generative Design
18%
Mechanical Properties
18%
Algorithmic Prediction
18%
Milling Process
18%
ANOVA Method
18%
Speeding Behavior
18%
Weight Reduction
18%
Metalworking
18%
Working Time
18%
Theory of Constraints
18%
ANSYS
18%
Engineering
Microchannel
100%
Three Dimensional Printing
59%
Additive Manufacturing
40%
Fluid Velocity
37%
Inertial Sensor
36%
Capillarity
31%
Heat Treatment
27%
Cutting Speed
27%
Mechanical Property
27%
Gait Cycle
24%
Punching
18%
Surface Quality
18%
Plastic Deformation
18%
Martensitic Stainless Steel
18%
Biomechanical Analysis
18%
Metal Cutting
18%
Cutting Section
18%
Cutting Parameter
18%
Mechanical Press
18%
Cutting Force
18%
Aluminum
18%
Characteristic Curve
18%
Flow Speed
18%
Fluid Flow
18%
Mixers (Machinery)
18%
Hardness
18%
Mean Square Error
18%
Tensiles
18%
Retention System
18%
Microfluidic Device
16%
Manufacturing Cost
15%
Computer Aided Manufacturing
15%
Least Squares Method
15%
Yield Point
13%
Flow Velocity
13%
Fluid Dynamics
12%
Channel Geometry
12%
Radial Depth
12%
Fluid Movement
10%
Time Analysis
10%
Manufacturing Process
10%
Potential Application
9%
Research Work
9%
Computerised Numerical Control
9%
Machining Parameter
9%
Physical Model
9%
Finite Element Process
9%
Theoretical Value
9%
Machining Time
9%
Pneumatic Device
9%