Crash- / Automotive Applications |
|
Title |
Author(s) |
Affiliation |
|
CAE Simulations for Passive Safety focused on the Porsche Cayenne – The Transition to New Technologies |
Schelkle, E.
Klamser, H.
|
Dr. Ing. h. c. Porsche AG |
|
How to Develop a Five Star Car by using LS-DYNA |
Malcusson, R.
|
Saab Automobile AB |
|
The Development of the new XJ Jaguar in Advanced Aluminium; Opportunities and Challenges |
Zeguer, T.
|
Jaguar Cars |
|
Consideration of Manufacturing Effects to Improve Crash Simulation Accuracy |
Böttcher, C.-S.
Frik, S.
|
Adam Opel AG |
|
Integration of Simulation in the Development Process |
Brockmann, J.
|
Faurecia Autositze GmbH & Co. KG |
|
Safety Analyses of the New ACTROS Cabines According to ECE-R29/02 |
Raich, H.
|
DaimlerChrysler AG |
|
The Evaluation of Crashworthiness of Vehicles with Forming Effects |
Kim, H.
Hong, S
|
Kia Motors
Korea Advanced Institute of Science and Technology |
|
Validation of New Train Railway Rolling Stock using Finite Element Analysis |
Ricketts, B.
|
Bombardier Transportation UK Ltd. |
|
Strength Analysis of Seat Belt Ancorage According to ECE R14 and FMVSS 210 |
Hessenberger, K.
|
DaimlerChrysler AG |
|
Improving the Roadside Safety with Computational Simulations |
Vesenjak, M.
Ren, Z.
|
University of Maribor |
|
Recent Developments in Virtual Digital Tire Modeling |
Fukushima, T.
Oshita, F.
|
Nissan
Japan Research Institut |
|
Reasons for Scatter in Crash Simulation Results |
Thole, C.-A.
Liguan, M.
|
FhG-SCAI Fraunhofer Inst. Algorithmen und wissenschaftl. Rechnen |
|
LS-DYNA on MPP Platforms, Experience and Practical Recommendations |
Jankowski, U.
|
TECOSIM GmbH |
|
LS-DYNA on Linux-Cluster at EDAG – Use Case |
Hanlon, J. U.S.
Platz, B.
|
EDAG Engineering+Design AG
Teraport GmbH |
|
Impact Performance of Flexible Guardrail Systems using LS-DYNA |
Sennah, K.
Samaan, M.
Elmarakbi, A.
|
Ryerson University |
|
Occupant / Pedestrian Safety / Airbag |
|
Title |
Author(s) |
Affiliation |
|
Recent Advances in THUMS: Development of Individual Internal Organs, Brain, Small Female, and Pedestrian Model |
Oshita, F.
M. Iwamoto, K. Omori
H. Kimpara,I .Watanabe,K. Miki
J. Hasegawa
|
Japan Research Institut
Toyota Central LABToyota Motor Corp. |
|
FTSS Dummy Models update |
Huang, York
|
FTSS First Technology Safety Systems |
|
Development of the 50th Percentile Hybrid III Dummy Model |
Kan, C.-D.
Marzougui, D.
Bedewi, N.
|
George Washington University, NHTSA |
|
FAT Dummy Models for Side Impact |
Franz, Uli
Schuster, Peter
Schmid, Werner
|
DYNAmore GmbH |
|
Development and Validation of Numerical Pedestrian Impactor Models |
Frank, T.
Kurz, A.
Pitzer, M.
Söllner, M.
|
DaimlerChrysler AG
Lasso Ing. ges. mbH
PENG GmbH
Dr. Ing. h. c. F. Porsche AG |
|
Crash Simulation in Pedestrian Protection |
Dörr, S.
Chladek, H.
|
IHF GmbH |
|
Finite Element Models for European Testing, a Side Impact Barrier to WG-13 and Pedestrian Impactors WG17 |
Dutton, T.
|
ARUP |
|
Simulation of FMVSS 202 using LS-DYNA Implicit |
Patwardhan, V.
Sambamoorthy, B.
Halder, T.
|
Lear Corporation |
|
Biomechanical Analysis of Whiplash Injuries; Women are not Scaled Down Men |
Mordaka, J.
Gentle, C. R.
|
Nottingham Trent University |
|
Numerical and Experimental Study on Fracture of Chute Structure at Deployment of Invisible Passenger Side Airbag |
Kangwook, L.
|
Hyundai Mobiles |
|
Application of MADYMO Occupant Models in LS-DYNA/MADYMO Coupling |
Happee, R.
Janssen, A.J.
Fraterman E.
Monster, J.W.
|
TNO Automotive Delft |
|
On Airbag Simulation in LS-DYNA with the Use of the Arbitrary Eulerian Method |
Fokin, D.
Fredriksson, L.
Lokhande, N.
|
Altair Engineering GmbH |
|
*MAT_GAS_MIXTURE, A New Gas Mixture Model for Airbag Applications |
Olovsson, L.
|
Livermore Software Technology Corp. |
|
Prediction of Occupant Injury in an Out-Of-Position Impact Using the Fluid Structure Interaction Capabilities in LS-DYNA |
Marklund, P.
Pipkorn, B.
|
Engineering Research Nordic AB
Autoliv Research AB |
|
Material |
|
Title |
Author(s) |
Affiliation |
|
The Application of the Damage and Fracture Material Model to Crashworthiness Evaluations for Aluminum cars |
Tsuchida, T.
Yamamoto, S.
Isomura, K.
|
Toyota Motor Corp. |
|
Strain Rate Dependent Micro-mechanics Based Composite Material Model |
Tabiei, A.
Ivanov, I.
|
University of Cincinnati |
|
A Simplified approach for the simulation of rubber under dynamic loading |
Du Bois, Paul
|
Consultant |
|
Implementation and Validation of the J-H2 Ceramic Material Model in LS-DYNA |
Cronin, D. S.
McIntosch, G.
Kaufmann, C.
Bui, K., Berstad, T.
|
University of Waterloo |
|
Application of Configurational Forces in Finite Element Simulations |
Kolling, S.
Ackermann, D.
|
DaimlerChrysler AG |
|
On Constitutive Equations for Elastomers and Elastomeric Foams |
Feng, W. W.
Hallquist, J. O.
|
Livermore Software Technology Corp. |
|
Improved Plasticity and Failure Models for Extruded Mg-Profiles in Crash Simulations |
Oberhofer, G.
Lanzerath, H.
Wesemann, J.
Hombergsmeier, E
|
MATFEM Partnerschaft Gese & Oberhofer
EADS Corporate Research Center |
|
Implementation of a Material Model for TRIP Steels in LS-DYNA and Comparison with Test Results |
Hilding, D.
Scheding, E.
|
Engineering Research Nordic AB
Avesta Polaroit AB |
|
A new plasticity model for a nitrogen alloyed steel at high strain rates regime-implementation into LS-DYNA |
Adoum, M. Terrier, J.-M.
Fréchard, S.
Rondot, F.
Lichtenberger, A.
|
CRIL Technology
French-German Research Institut, Saint-Louis |
|
Modeling of Foams using MAT 83 – Preparation and Evaluation of Experimental Data |
Serifi, E.
Hirth, A.
Matthaei, S.
Müllerschön, H.
|
University of Stuttgart
DaimlerChrysler AGDYNAmore GmbH |
|
Metal Forming |
|
Title |
Author(s) |
Affiliation |
|
Stress Analysis of Connector PIN Produced by Reverse Stamping Process |
Won, Y.-H.
|
LG-Cable Ltd. |
|
Finite Element Analysis of Stresses Due to Normal and Sliding Contact Conditions on an Elastic Surface |
Ram, A.
Danckert, J.
Faurholdt, T.
|
University of Aalborg |
|
New Trends in Sheet Metal Forming |
Buchert, J.
Harrison, D. K.
DeSilva, A. K. M.
Bauer, H.
|
Aalen University of Applied Science |
|
Simulation of the forming process of metal-plastic-metal sheets |
Borg, R.
|
Engineering Research Nordic AB |
|
High Lights of DYNAFORM 5.0 for 2003 |
Tang, A.
|
eta Engineering Technology Associates |
|
Application of Dynamic Explicit in the Simulation of Superplastic Forming |
Samekto, H.
Roll, K.
|
University of Stuttgart
DaimlerChrysler AG |
|
Forming to Crash Simulation in Full Vehicle Models |
Cafolla, J.
Hall, R. W.
Norman, D. P.
McGregor, I. J.
|
Corus Automotive Engineering |
|
Influence of The Effect of Strain Rates on Springback in Aluminium 2024 |
Kulkarni, P.
Prabhakar, S.
|
Cessna Aircraft Company |
|
New Developments at the forming Simulation of Hydroforming Processes |
Keigler, M.
Mihsein, M.
Bauer, H.
Hall, R.
|
Aalen University of Applied Science |
|
More Realistic Virtual Prototypes by Means of Process Chain Optimization |
Gantner, P.
Harrison, D. K.
DeSilva, A. K. M.
Bauer, H.
|
Aalen University of Applied Science |
|
Virtual Die Tryout of Miniature Stamping Parts |
Yang, M.-C.
Tsai, T.-C.
|
Metal Industries R&D Center |
|
Sheet Metal Forming in a Virtual Reality Environment using LS-DYNA and Neural Networks |
Gokhale, A.
|
University of Wichita |
|
Manufacturing Simulation of an Automotive Hood Assembly |
Galbraith, C.
Thomas, D.
|
Metal Forming Analysis Corp. |
|
A Method for Modifying the Forming Tool Geometry in Order to Compensate for Springback Effects |
Jernberg, A.
|
Engineering Research AB |
|
LS-DYNA Environment |
|
Title |
Author(s) |
Affiliation |
|
CAE Data Management and Quality Assessment of LS-DYNA Crash Models using V-CESS |
Eick, M.
Seybold, J.
Fredriksson, L.
|
Altair Engineering GmbH |
|
Automating LS-DYNA Simulation Processes using SOFY/RADE |
Ulrich, D.
|
Sofy GmbH |
|
scFEMod – The New Preprocessor for Efficient Assembly and Model Validation |
Sommer, O.
|
science+computing ag |
|
Platform and LS-DYNA, solutions for design & simulation – today and tomorrow |
Slominsky, M.
Reichert, C.
|
Platform Computing GmbH |
|
CAE Process Support by MIDAS and MEDINA |
Sattler, M.
Westhäußer, M.
Finkel, A.
|
T-Systems |
|
Bringing Static-, Dynamic- and Crash Analysis closer together |
Reza, S.
|
MSC.Software GmbH |
|
Virtual Reality in Crash-Simulation |
Birk, F.
|
3Dims |
|
Improving Productivity by Immersion and Interaction – A New Approach in CAE |
Rößler, A.
|
ICIDO |
|
Drop Test / Impact |
|
Title |
Author(s) |
Affiliation |
|
Numerical Modelling of Impacts on Ski Safety Nets |
Adoum, M.
Lapoujade, V.
|
CRIL Technology |
|
Numerical Investigations of a Projectile Impact on a Textile Structure |
Schweizerhof, K.
Blankenhorn, G.
Finckh, H.
|
DYNAmore GmbH
University of Karlsruhe
University of Stuttgart |
|
Optimization of a Cockpit Structure according to ECE-R 21 Regulation |
Walter, M.
Chladek, H.
|
IHF GmbH |
|
Examples’ Manual for *User_Loading Option |
Adoum, M
Lapoujade, V.
|
CRIL Technology |
|
Structural Design Review of LCD-TV Module by Impact Analysis |
Choi, S.
Lee, J.-G.
|
Samsung Electronics Co. |
|
The Relation Between Initial Yaw and Long Rod Projectile Shape After Penetration an Oblique Thin Plate |
Arad, M.
Touati, D.
Latovitz, I.
|
IMI, Israel Military Industries |
|
LS-DYNA Application to Calculate Loads Causing Critical Damages of Container for FM Transportation |
Roubtsov, B.
Abramov, A.
Voikina, O.
Komarov, A. Serbin, V.
|
Strela
Strela |
|
Numerical Simulation of a Flight Recorder’s; Protective Case Penetration Resistance Test |
Ryabov, A.
Romanov, V.
Kukanov, S.
Roschihmarov, D.
|
Sarov Open Computing Center |
|
New Developments |
|
Title |
Author(s) |
Affiliation |
|
Current and future Developments in LS-DYNA – I |
Hallquist, J. O.
|
Livermore Software Technology Corp. |
|
Current and future Developments in LS-DYNA – II |
Hallquist, J. O.
|
Livermore Software Technology Corp. |
|
Recent New Developments in Contact Mechanics |
Wriggers, P.
K. Fischer
A. Rieger
|
University of Hanover
Continental AG |
|
LS-DYNA Applications in Shipbuilding |
Le Sourne, H.
Besnier, F.
Couty, N.
Legarve, H.
|
Principa Marine
DCN Ingénierie |
|
Implicit Functionality in LS-DYNA v970 |
Maker, B.
Grimes, R.
Ashcraft, C.
|
Livermore Software Technology Corp. |
|
Using LS-DYNA for Heat Transfer |
Shapiro, A.
|
Livermore Software Technology Corp. |
|
Implicit Analysis using LS-DYNA |
Grimes, R.
|
Livermore Software Technology Corp. |
|
Simulation of Full-Scale Seismic-Resistant Structural Frame Tests Using LS-DYNA 960 Implicit Solver |
Field, C. J.
|
Ove Arup & Partners California Ltd. |
|
LS-DYNA Beam Element Cross Section Integration – An Assessment |
Schwer, L.
|
Schwer Engineering & Consulting Services |
|
Stabilized DSG Elements – A New Paradigm in Finite Element Technology |
Bischoff, M.
Koschnick, F.
Bletzinger, K.-U.
|
University of Munich |
|
Aerospace / Fluid-Structure Interaction |
|
Title |
Author(s) |
Affiliation |
|
Jet Engine Fan Blade Containment using Two Alternate Geometries |
Carney, K.
Pereira, M.
Revilok, D.
Matheny, P.
|
NASA Glenn Research Center
Florida Turbine Technology |
|
The Use of LS-DYNA Fluid-Structure Interaction to Simulate Fluid-Driven deformation in the Aortic Valve |
Howard, I.C.
Burriesci, G.
Carmody, C.J.
Patterson, E.A.
|
University of Sheffield
Sorin Biomedica Cardio
MG Bennett & Associates Ltd
University of Sheffield |
|
Modern Field Code Cluster of Fluid Dynamics and Structure Mechanics with Meta-Computing Grids for Safety and Environment Research Studies |
Rehm, W.
Wang, B.
Binninger, B.
Nae, C.
|
Forschungszentrum Jülich
Universität Aachen
University of Bucharest, Romania |
|
Fluid-Structure Interaction in LS-DYNA: Industrial Applications |
Souli, M.
Olovsson, L.
|
Livermore Software Technology Corp. |
|
Optimization |
|
Title |
Author(s) |
Affiliation |
|
Shape Adaptive Airfoils for Turbomachinery Applications: Simulation and Optimization |
Müller, T.
Lawerenz, M.
|
University of Kassel |
|
Crashworthiness Optimization in LS-OPT: Case Studies in Metamodeling and Random Search Techniques |
Stander, N. Roux, W.J.
Giger, M. Redhe, M.
Federova, N.
Haarhoff
|
Livermore Software Technology Corp.
University of Linkoping
Snezhinsk Institute of Physics an Technology
University of Pretoria |
|
System indentification and design optimization of “noisy” structural problems: Probabilistic and Deterministic Fundamentals |
Stander, N
Roux, W.
|
Livermore Software Technology Corp. |
|
Geometry Optimization with LS-DYNA using Stochastic Methods |
Höfer, C.
Sakaryali, C.
|
EASI Engineering GmbH |
|
MPP / Linux-Cluster / Hardware |
|
Title |
Author(s) |
Affiliation |
|
Considerations for LS-DYNA Efficiency in the SGI IRIX and Linux Environments with a NUMA System Architecture |
Posey, S.
Meng, N.
|
Silicon Graphics |
|
Performance of LS-DYNA on hpcLine Linux Clusters |
Altmeyer, K.
|
Fujitsu Siemens Computers GmbH |
|
A Correlation Study Between MPP LS-DYNA Performance and Various Interconnection Networks |
Lin, Y.-Y.
|
Hewlett-Packard Company |
|
Itanium – A Viable Cost-Effective Technology for Crash Simulation |
Hillcoat, A.
|
Hewlett-Packard Ltd. |
|
Recent Developments of LS-DYNA Computation in Sun Microsystems |
Roh, Y.-S.
Fong, H.
|
Sun Microsystems, Inc. |
|
Porting LS-DYNA to AMD Opteron |
Rintala, D.
Jessel, D.
|
AMD – Advanced Micro Devices |
|
Performance of LS-DYNA on NEC-Clusters and new highend SMP-Systems |
Findling, A.
|
NEC Europe GmbH |
|
How to make LS-DYNA run faster |
Li, G.
Zais, J.
|
IBM CAE Application Team |
|
Comparative Performance of InfiniBand Architecture and Giga Ethernet Interconnets on Intel Itanium 2 Architecture-based Clusters |
Jonsson, L.
Magro, W.
|
Intel Americas, Inc. |
|
The New Paradigm Shift for High-Performance Computing |
Cornelius, H.
|
Intel GmbH |
|
Linux Cluster – Computer Power Out of the Box |
Schlagenhauf, H.
|
science + computing ag |
|
|
|
|
|