Forming Analysis Package in Abaqus
Introduction to Metal Forming Analysis Metal forming is a key manufacturing process where metal is plastically deformed into a desired shape without material removal. Instead of cutting, material is reshaped by applying external forces through tools such as dies, punches, and rollers. Common metal forming processes include forging, extrusion, rolling, drawing, bending, drilling, composite forming, […]
Bolt Analysis Package in Abaqus

Introduction to Bolt Analysis and Simulation Bolts are among the most common fastening elements in engineering, used to join parts in machinery, structures, and vehicles. Although they may seem simple, bolts are often critical for safety and reliability, failure of a single bolt can cause entire systems to fail. To ensure performance, engineers use bolt […]
Biomechanics Package

Biomechanics package This course provides a comprehensive exploration of biomechanics applied to orthopedic and dental contexts, with a focus on the mechanical principles that govern biological tissues and medical devices. Students will engage with a series of practical, simulation-based examples that bridge theoretical concepts with real-world applications in clinical engineering. The curriculum is structured to […]
Soil Analysis package

Introduction to Soil Analysis package Welcome to this comprehensive course tailored for civil and geotechnical engineers, as well as professionals with a foundational understanding of soil mechanics and foundation engineering. This program offers an immersive journey into the intricate world of geotechnical analysis and modeling. Designed to enhance your technical expertise, the course covers a […]
Underwater and Underground Explosions Simulation and Analysis Package

Introduction to Underwater and Underground Explosions: Simulation and Analysis 1. Overview Explosions occurring in confined or dense media such as water and soil differ significantly from those in the air. The interaction between the explosive energy and the surrounding medium creates complex physical phenomena involving shock wave propagation, fluid-structure interaction, and material deformation. Understanding and […]
Steel and Concrete Beam Analysis Package

Introduction to Steel and Concrete Beam Analysis and Simulation Steel and concrete beams are fundamental structural elements in civil and structural engineering, widely used in bridges, buildings, and industrial structures. Their analysis is crucial to ensure safety, serviceability, and cost efficiency in construction. Since beams primarily resist bending, shear, and axial forces, engineers must accurately […]
JH2 and JHB brittle damage package

JH2 and JHB JH2 (Johnson Holmquist II) and JHB (Johnson Holmquist Beissel) material models. These are specialized constitutive models used in computational mechanics (often in hydrocode simulations like ABAQUS, LS-DYNA, AUTODYN, CTH, etc.) for representing the response of brittle materials (e.g., ceramics, glass, rocks, concrete) under large strains, high strain rates, and high pressures. This […]
FSI and CFD Analysis Package

Introduction to Fluid-Structure Interaction (FSI) Fluid-Structure Interaction (FSI) refers to the mutual interaction between a fluid (liquid or gas) and a solid structure. In an FSI system, the motion or deformation of the structure affects the flow of the fluid, and conversely, the fluid’s pressure and forces affect the structural response. This bidirectional coupling makes […]
Earthquake and Seismic Analysis Package

Introduction to Earthquake and Seismic Analysis An earthquake is the sudden release of energy stored in the Earth’s lithosphere, causing seismic waves that shake the ground. These events are usually triggered by the movement of tectonic plates along faults, volcanic activity, or other stress accumulations in the Earth’s crust. Depending on their magnitude and depth, […]
DEM and SPH Analysis Package

Introduction to DEM and SPH Analysis The Discrete Element Method (DEM) and Smoothed Particle Hydrodynamics (SPH) are powerful numerical methods used to simulate and analyze systems involving discrete particles, fluid flows, and their interactions with solid structures. These methods have become essential tools in engineering, geomechanics, materials science, and Multiphysics research. This package includes 20 […]