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INIS
wear
93%
speed
90%
surfaces
81%
modeling
76%
cryogenics
72%
manufacturing
64%
extrusion
63%
deposition
63%
fibers
60%
malaysia
55%
performance
49%
fiberglass
48%
friction
47%
3d printing
47%
friction factor
44%
design
44%
layers
42%
titanium alloys
40%
additives
40%
cutting
37%
orientation
36%
energy
35%
mechanical properties
35%
alloys
33%
scanning electron microscopy
33%
Material Science
Fused Deposition Modeling
100%
Polylactide
94%
Composite Material
92%
Three Dimensional Printing
85%
Surface (Surface Science)
73%
Glass Fiber
48%
Scanning Electron Microscopy
45%
Titanium Alloy
43%
Carbide
36%
Coefficient of Friction
33%
Delamination
29%
Impact Strength
28%
Tungsten
24%
Machining
24%
Surface Roughness
24%
Polyester
24%
Tensile Property
24%
Thermoplastics
23%
Ultimate Tensile Strength
23%
Wear Debris
21%
Engineering
Coefficient of Friction
88%
Fused Deposition Modeling
80%
Three Dimensional Printing
49%
Tribological Behavior
44%
Pin-on-Disc
32%
Strand
31%
Delamination
29%
Sliding Speed
27%
Sliding Condition
27%
Material Extrusion
27%
Tensiles
26%
Belts
24%
Cutting Force
24%
Fiber Content
24%
Tensile Property
24%
Sliding Distance
22%
Wear Debris
22%
Load Speed
21%
Ultimate Tensile Strength
21%
Experimental Result
21%