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institution

Forbes Hospital

United States

2 papers here4 citations across 2
fields
  • cond-mat.mtrl-sci1
  • cond-mat.soft1
ROR 05a55tn50OpenAlex

affiliations via OpenAlex

most citedCrack Face Contact Modeling is Essential to Predict Crack-Parallel Stresses

2 citations

researchers with a paper here
  • Kaushik Dayal2
  • Carlos Mora‐Corral1
  • Carmel Majidi1
  • Daniel Katusele1
  • George A. Gazonas1
  • Maryam Hakimzadeh1
  • Noel J. Walkington1
  • Pradeep Sharma1
collaborating institutions
  • Carnegie Mellon UniversityUS2 papers
  • Pasadena City CollegeUS2 papers
  • CECOM Software Engineering CenterUS1 paper
  • DEVCOM Army Research LaboratoryUS1 paper
  • Institute of Mathematical SciencesIN1 paper
  • Johns Hopkins MedicineUS1 paper
  • Johns Hopkins UniversityUS1 paper
  • Johns Hopkins University Applied Physics LaboratoryUS1 paper
  • United States Department of the ArmyUS1 paper
  • Universidad Autónoma de MadridES1 paper
  • University of BaltimoreUS1 paper
  • University of HoustonUS1 paper

2 papers

cond-mat.soft2025★ 2 cited

Soft Electromechanical Elastomers Impervious to Instability

Daniel Katusele, Carmel Majidi, Kaushik Dayal +1

Soft dielectric elastomers that can exhibit extremely large deformations under the action of an electric field enable applications such as soft robotics, biomedical devices, energy…

cond-mat.mtrl-sci2025★ 2 cited

Crack Face Contact Modeling is Essential to Predict Crack-Parallel Stresses

Maryam Hakimzadeh, Noel Walkington, Carlos Mora-Corral +2

Phase-field fracture models provide a powerful approach to modeling fracture, potentially enabling the unguided prediction of crack growth in complex patterns. To ensure that only…

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