In this lecture, the High and Low-velocity impact phenomenon is investigated. The lecture duration is more than ten hours and during that, twenty different models are simulated based on the research paper as a reference for the material. We define the proper material model for each part for instance in the lecture for silicon carbide Johnson-Holmquist model and also ductile damage couple with the equation of state. Ductile and shear damage, Johnson-Cook hardening, and damage for metal like steel and aluminum. Low and High-velocity impact of the deformable or rigid body on the concrete structure. CFRP, Aluminum foam panel under impact condition by using crushable foam and Hashin’s damage criterion. Simulation steel projectile impact on the Acrylonitrile butadiene styrene(ABS) material and many other materials and models. All part of the lecture is a step-by-step tutorial A to Z. The lecture contains twenty titles and you can check them below. Each part contains cae, inp, step by step English video, and papers
Simulation oblique high-velocity impact of an aluminum rod to the silicon-carbide target in Abaqus
Simulation of low energy impact on the RC beam and residual displacement investigation in Abaqus
Simulation low-velocity impact on the CFRP-AL Foam-CFRP panel in Abaqus
Simulation high-velocity impact of the steel rod to the composite panel(Steel-Ceramic-AFRP) in Abaqus
Simulation steel projectile impact on the Acrylonitrile butadiene styrene(ABS) plate in Abaqus
Simulation repeated impact of the rigid body to the steel box in Abaqus
Simulation Steel bullet impact on the composite panel(Aluminum-Epoxy glue-Aluminum Foam) in Abaqus
Simulation high-velocity impact of the steel projectile on the composite panel(Steel-Concrete-Epoxy glass) in Abaqus
Simulation low-velocity impact on reinforced concrete beam in Abaqus-Damage investigation
Low-velocity impact behavior of RC slab strengthening with CFRP strips in Abaqus
Simulation high-velocity impact of a ceramic target with Johnson–Holmquist material model
Perforation mechanics of aluminum protective plates subjected to impact by a projectile in ABAQUS
Simulation low-velocity impact to the hybrid corrugated core sandwich structure in Abaqus
Simulation ball impact to the net in Abaqus by using Fluid Cavity procedure
Simulation Rigid body impact to the sandwich panel(Al-Epoxy-Glass) in Abaqus
Simulation and Analysis of Ballistic Impact in ABAQUS-Thermal analysis
Simulation rigid impact on CFRP plates in Abaqus
Simulation high-velocity impact failure of aluminum honeycomb sandwich panels in Abaqus
Numerical investigations of S-Glass/Polyester composite laminate plate under low energy impact
Numerical simulation modeling of high-velocity impact applied to reinforced concrete panel
The cost for this lecture contains Twenty separated models step by step more than ten hours duration is Seventy-Six Euros. You can use a PayPal account, a Visa, or a Master card for the payment.
Before payment, send me an email to this address: karampourp@gmail.com