AnalySwift

AnalySwift http://analyswift.com/software-trial/ Typically, this reduction is from many hours to several seconds, and it can be done on a typical laptop computer.

AnalySwift offers accurate and efficient simulation software for modeling composites materials and structures, allowing users to achieve 3D FEA accuracy at the efficiency of simple engineering models. AnalySwift is a leading provider of efficient, high-fidelity simulation software for the simulation of composite materials and structures. Our tools, SwiftComp and VABS, are well suited to provide yo

u with a competitive advantage through cutting-edge technology for multiscale, multiphysics structural and micromechanics modeling. Utilizing technology licensed from Purdue University, Georgia Tech, and Utah State University, AnalySwift offers you the best compromise between efficiency, accuracy, and versatility for multiscale, multiphysics modeling of composite materials and structures. For instance, VABS (slender structures) and SwiftComp save engineers several orders of magnitude in design cycle time compared to detailed finite element analysis (FEA), without a loss of accuracy. This allows engineers to reduce design cycle and time to market, design earlier in the process, and handle more complex models, ultimately, lowering costs and increasing confidence in quality.

AnalySwift is pleased to participate as a sponsor, presenter, and exhibitor at ASME's 4th Annual Aerospace Structures, S...
06/08/2026

AnalySwift is pleased to participate as a sponsor, presenter, and exhibitor at ASME's 4th Annual Aerospace Structures, Structural Dynamics, and Materials Conference (SSDM) this week in Long Beach, California. Please visit the AnalySwift booth to get a signed copy of Dr. Wenbin Yu's new book, Multiscale Structural Mechanics.

AnalySwift CTO, Dr. Wenbin, will be available to sign copies of his book, Multiscale Structural Mechanics: Top-Down Modeling of Composite Structures Using Mechanics of Structure Genome. Published in January 2026, the book will be available for sale and author signature at AnalySwift's booth. The book presents a practical, unified approach to multiscale composites modeling—bridging micromechanics and structural mechanics with clarity and rigor.

In addition to sponsoring and exhibiting at SSDM, AnalySwift Senior Research Scientist, Dr. Su Tian, will be presenting his research on the topic of AI-Assisted Modeling, Simulation, and Design Optimization of Composite Slender Structures. The presentation will be on Monday, June 8, at 10:15 AM PDT.

About ASME's SSDM Conference

ASME's 4th Annual Aerospace SSDM Conference gathers aerospace structures, structural dynamics, and materials engineers and researchers from industry, academia, and government agencies to discuss technical advancements in this growing sector. The program is designed to not only showcase the latest research but also encourage meaningful dialogue in a dynamic setting.

The in-person event will take place at the Hilton Long Beach in Long Beach California, USA, June 8-10, 2026. AnalySwift has sponsored this event since its inception in 2023, and we look forward to meeting future partners and collaborators, including academic partners for the popular SBIR/STTR (small business innovative research) program. We encourage attendees to visit us at the AnalySwift booth and watch technical presentations by the AnalySwift team.

SSDM Program Tracks include:
Structures - The Structures Track contains a wide range of topics in the broad area of aerospace structures, which are individually organized by leading researchers in the corresponding field.

Structural Dynamics - The Structural Dynamics Track contains research topics of responses of flexible aircraft and components under various dynamic loads from different disciplines

Materials - The Materials Track covers many traditional topics on fatigue and fracture, mechanics, computational materials, nanomaterials, manufacturing, and experimental characterization as well as emerging fields within materials.

WEST LAFAYETTE, Ind. – AnalySwift is pleased to participate as a sponsor, presenter, and exhibitor at ASME’s 4th Annual Aerospace Structures, Structural Dynamics, and Materials Conference (SSDM) this week in Long Beach, California. Additionally, AnalySwift CTO, Dr. Wenbin, will be available to s...

Penn State has been advancing iVABS for design-to-production of composite rotorcraft blades.  The university is incorpor...
03/31/2026

Penn State has been advancing iVABS for design-to-production of composite rotorcraft blades. The university is incorporating manufacturing constraints into the design process to enable more realistic blades.

Penn State has been using AnalySwift’s VABS simulation software as well as the open source iVABS tool to improve the manufacturability of composite rotor blades used for helicopters, air mobility, and other rotorcraft. The work is part of the Penn State Vertical Lift Research Center of Excellence (VLRCOE), a premier research and education hub at Penn State dedicated to advancing vertical lift technologies—such as helicopters, drones, and VTOL systems—in key areas like aeromechanics, flight dynamics, propulsion, acoustics, and survivability.

This work has been done under AnalySwift's Academic Partner Program (APP), which offers participating universities no-cost licenses of engineering software programs VABS and SwiftComp so students, researchers, and faculty can leverage the tools in their academic research.

“The optimization of rotor blade design plays a critical role in improving overall rotorcraft performance,” said Jiwoo Song, who is pursuing a PhD degree in aerospace engineering at Penn State. “Recent advancements in computational toolchains, such as iVABS, enable rapid exploration of design spaces while satisfying prescribed performance objectives. The goal of the project is to achieve a design-to-production capability by developing a drastically more manufacturing-aware iVABS blade design framework. Looking ahead, this project aims to move beyond virtual optimization into physical realization, with plans to fabricate a composite rotor blade in collaboration with the Penn State Applied Research Laboratory, validating the computational design process through experimental testing.”

University incorporating manufacturing constraints into the design process to enable more realistic blades West Lafayette, Indiana (USA) – AnalySwift, LLC, a provider of efficient high-fidelity modeling software for composites, announced today that Penn State has been participating in its Acade...

CompositesAI was one of 33 finalists in JEC Composites Innovation Award competition. AnalySwift congratulates all the te...
02/27/2026

CompositesAI was one of 33 finalists in JEC Composites Innovation Award competition.

AnalySwift congratulates all the teams who made the finals list for the 2026 JEC Composites Innovation Award. The company is excited to have its CompositesAI selected as one of the 33 finalists in 11 categories. We extend our thanks to JEC and the jury for this recognition. CompositesAI, a platform jointly developed by AnalySwift and Purdue University, was selected as one of three finalists in the Digital, AI & Data category. Created in 1998, the JEC Composites Innovation Award program aims to identify, promote, and reward the most innovative composite solutions worldwide.

CompositesAI is an AI-powered expert system that consolidates certified composites knowledge and simulation tools via LLMs. It combines the authority of leading experts with the precision of simulation software, enabling domain experts to build custom AI agents without AI expertise.

"Advanced composites enable lighter, high-performance structures, but decades of accumulated knowledge remain fragmented across documents, software tools, and experts’ tacit experience," said Dr. Wenbin Yu, AnalySwift CTO and the Milton Clauser Professor of Aeronautics and Astronautics at Purdue University. "CompositesAI addresses this by creating an AI-powered expert system that unifies static data (papers, standards, reports), dynamic data (simulation tools, physics-based or machine-learned), and tacit engineering insight. The platform provides sourced, explainable, traceable answers to natural-language queries, while linking prompts directly to physics-based or machine-learning simulations. The growing corpus will support a composites-specific foundational model."

Key benefits of CompositesAI:
- Consolidate all composites expert knowledge
- Democratize expert knowledge using chat interface
- Enable simulation tools for entire supply chain
- Leverage all public composites knowledge and tools
- Intelligentize proprietary knowledge via AI

Those interested are welcome to sign up for a free account at CompositesAI.com. More details can be found from the CompositesAI workshop at 2025 ASC conference (in linked article). An article about the collaboration and launch of CompositesAI and the award information can be found in linked article. Dr. Yu will be available at JEC 2026 to discuss CompositesAI, simulation of composites, and his now book at the Innovation Planet 6 D 119. His new book, Multiscale Structural Mechanics: Top-Down Modeling of Composite Structures Using Mechanics of Structure Genome with Wiley (January 2026), presents a practical, unified approach to multiscale composites modeling—bridging micromechanics and structural mechanics with clarity and rigor.

https://analyswift.com/2026/02/compositesai-one-of-33-finalists-in-jec-composites-innovation-award-competition/

AnalySwift congratulates all the teams who made the finals list for the 2026 JEC Composites Innovation Award. The company is excited to have its CompositesAI selected as one of the 33 finalists in 11 categories. We extend our thanks to JEC and the jury for this recognition. CompositesAI, a platfor...

AnalySwift CTO, Dr. Wenbin Yu, has published a book introducing his new, top down approach to multiscale structural mech...
02/18/2026

AnalySwift CTO, Dr. Wenbin Yu, has published a book introducing his new, top down approach to multiscale structural mechanics.

Dr. Yu, AnalySwift CTO and Milton Clauser Professor of Aeronautics and Astronautics at Purdue University, has published a new book, Multiscale Structural Mechanics: Top-Down Modeling of Composite Structures Using Mechanics of Structure Genome with Wiley (January 2026). The book represents a practical, unified approach to multiscale composites modeling—bridging micromechanics and structural mechanics with clarity and rigor.

This unified and rigorous approach to modeling composite structures is grounded in the concept of the Structure Genome. It integrates micromechanics and structural mechanics through the Mechanics of Structure Genome (MSG), enabling multiscale constitutive modeling for general anisotropic and heterogeneous materials—without relying on the limiting assumptions found in traditional methods.

The book introduces readers unfamiliar with vectors and tensors, continuum mechanics, micromechanics, and structural mechanics to the basics of each of these topics. It goes on to bridge the gap between micromechanics and structural mechanics, offering readers multiscale structural models that remain as simple as classical engineering models but with the accuracy expected of more complex theories capturing microstructural details.

Designed for both newcomers and experienced practitioners, the book covers:
- A concise intro to vectors, tensors, continuum mechanics, and classical structural models
- In-depth discussion on MSG and its application to beams, plates, shells, and 3D solids
-A full bridge between micromechanics and structural mechanics
- Use of calculus of variations and variational asymptotic methods for composite modeling
- Guidance to construct efficient, high-fidelity composite models
- Insights on stress and failure analysis of composite laminates

Whether you’re a graduate student in aerospace or mechanical engineering, or a researcher/engineer working with composite materials, this book is a powerful resource for modeling complex structures with engineering-level simplicity and precision.

Links to get the book to explore how multiscale thinking is reshaping composite structures are found in the article. It can be ordered on Amazon, Wiley, and Amazon Canada. Signed copies of the book will additionally be available for purchase at the ASME SSDM Conference June 8-10 2026, in Long Beach, California. AnalySwift is a Platinum Sponsor of ASME’s 4th Annual Aerospace Structures, Structural Dynamics, and Materials Conference (SSDM).

https://analyswift.com/2026/02/analyswift-cto-publishes-book-introducing-new-top-down-approach-to-multiscale-structural-mechanics/

AnalySwift, a leader in simulation software for advanced materials and structures, is pleased to be a Platinum Sponsor o...
02/09/2026

AnalySwift, a leader in simulation software for advanced materials and structures, is pleased to be a Platinum Sponsor of ASME's 4th Annual Aerospace Structures, Structural Dynamics, and Materials Conference (SSDM). The in-person event will take place at the Hilton Long Beach in Long Beach California, USA, June 8-10, 2026.

AnalySwift has sponsored this event since its inception in 2023, and we look forward to meeting future partners and collaborators, including academic partners for the popular SBIR/STTR (small business innovative research) program. We encourage attendees to visit us at the AnalySwift booth and watch technical presentations by the AnalySwift team.

SSDM 2026: ASME Aerospace Structures, Structural Dynamics, and Materials Conference

A new publication on fatigue delamination in composites by AnalySwift and collaborators is now available. AnalySwift is ...
01/29/2026

A new publication on fatigue delamination in composites by AnalySwift and collaborators is now available.

AnalySwift is excited to share the latest journal paper by Senior Research Scientist Dr. Liang Zhang and collaborators on machine learning–aided cohesive zone modeling (CZM) for fatigue delamination. The paper was published in the Mechanics of Advanced Materials and Structures on January 18, 2026.

"The proposed CZM accurately captures high-cycle, mixed-mode fatigue delamination and can be directly calibrated from experimental G–N and crack growth rate data," said Dr. Zhang. "By integrating machine-learning surrogates into the calibration workflow, the approach reduces the required number of full finite-element simulations by about 90%, delivering major efficiency gains while maintaining accuracy."

"These advancements are particularly relevant to industries and applications involving composite durability and fatigue life prediction, including aerospace structures, defense systems, automotive composites, wind energy, and other high-performance composite applications," continued Dr. Zhang.

Collaborators include Dr. Xin Liu, Dr. Su Tian, Dr. Zhenyuan Gao, Dr. Robert A. Haynes, and Dr. Wenbin Yu.

Those interested can read the paper at the following link:

The objective of this paper is to develop a machine learning (ML)-aided cohesive zone model (CZM) for fatigue delamination. A viscodamage model is implemented in a string-based cohesive zone modeli...

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