High Strain Dynamics
Machinery, 43 County Rte 59, Phoenix, New York, 13135, United States, 1-10 Employees
Who is HIGH STRAIN DYNAMICS
Design Consulting, Engineering, Analysis, Material Selection & Testing High Strain Dynamics develops strong working relationships with clients, serving as a strategic technical partner to...
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- Headquarters: 43 County Rte 59, Phoenix, New York, 13135, United States
- Employees: 1-10
- Revenue: Under $1 Million
Industry: Machinery
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Frequently Asked Questions Regarding High Strain Dynamics
Answer: High Strain Dynamics's headquarters are located at 43 County Rte 59, Phoenix, New York, 13135, United States
Answer: High Strain Dynamics's official website is https://highstraindynamics.com
Answer: High Strain Dynamics's revenue is Under $1 Million
Answer: High Strain Dynamics has 1-10 employees
Answer: High Strain Dynamics is in Machinery
Answer: High Strain Dynamics contact info: Phone number: Website: https://highstraindynamics.com
Answer: Design Consulting, Engineering, Analysis, Material Selection & Testing High Strain Dynamics develops strong working relationships with clients, serving as a strategic technical partner to assist them with product development, material testing, and process optimization. Our engineering, consulting, and analytical services combined with rapid prototyping capability, advanced materials expertise, and in-house testing provide clients with the resources they need to drive innovation and bring new products to market. High Strain Dynamics capabilities currently focus on engineering services to support the development of products, materials and structures subjected to high strains or large deformations. To achieve this, our innovative staff is outfitted with the latest computer software for finite element analysis, solid modeling, composite failure analysis, composite constitutive modeling, composite micromechanics and numerical and symbolic computational analysis, all running on high performance multi-core Intel Xeon workstations. We excel at large deformation nonlinear analysis of composite structures, predicting buckling and post-buckling behaviors, predicting accurate stresses and strains and predicting failure. We are well versed in modeling the nonlinear elastic and viscoelastic behaviors of carbon fibers and their matrix materials in tension, compression and shear.
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