Engineering
Glulam
45%
Joints (Structural Components)
41%
Glulam Beam
32%
Failure Mode
31%
Seismic Performance
27%
Flexural Behavior
22%
Test Result
21%
Rod
17%
Rotational
15%
Elevated Temperature
15%
Phenol Formaldehyde
15%
Shear Walls
15%
Tapping (Threads)
15%
Column Connection
15%
Creep
15%
Experimental Investigation
15%
Bearing Capacity
13%
Finite Element Modeling
12%
Displacement Response
11%
Stiffness Degradation
10%
Compression Strength
10%
Poplar Wood
10%
Compressive Strength
10%
Mechanical Performance
9%
Steel Bar
9%
Experimental Result
9%
Mechanical Property
8%
Load Capacity
8%
Rotational Stiffness
8%
Flexural Stiffness
8%
Lateral Stiffness
7%
Carbon Fibre Reinforced Polymer
7%
Mechanical Resistance
7%
Steel Rebar
7%
Thermal Comfort
7%
Model Test
7%
Ultimate Tensile Strength
7%
Urea-Formaldehyde Adhesive
7%
Composite Connection
7%
Resorcinol-Formaldehyde Adhesive
7%
Building Performance
7%
Increasing Temperature
7%
Cyclic Loads
7%
Good Agreement
7%
Larger Cross
7%
Lateral Force
7%
Dynamic Response
7%
Bending Moment
7%
Structural Model
7%
Damage Analysis
7%
Material Science
Timber
100%
Density
39%
Shear Strength
36%
Bearing Capacity
34%
Creep Property
30%
Composite Material
24%
Surface (Surface Science)
24%
Steel Rebar
22%
Creep
22%
Compressive Strength
20%
Fire Resistance
18%
Urea
18%
Elastic Moduli
16%
Reinforced Plastic
15%
Flexural Strength
13%
Critical Micelle Concentration
12%
Wood
10%
Phase Composition
9%
Finite Element Method
8%
Scanning Electron Microscopy
8%
Structural Vibration
7%
Carbon Fiber
7%
Composite Particle
7%
Bending Moment
7%
Modal Analysis
7%
Silicate
7%
Shear Loads
7%
Morphology
7%
Heat Resistance
5%