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Electromagnetic Hopkinson Rod Electromagnetic Loading Section

Project Category: Impact Dynamics · electromagnetic loading · scientific research test equipment

Project Overview

For the high strain rate mechanical properties of materials and dynamic impact response research needs, Xi'an Star Hualang Technology Co., Ltd.Electromagnetic Hopkinson Rod Electromagnetic Loading SectionThe design, processing and manufacturing of the electromagnetic Hopkinson rod test system provides core loading components.

The loading section adopts modular design and can be configured according to different test systems and loading directions.Uniaxial, biaxial and triaxial electromagnetic Hopkinson bar test systemto provide loading conditions for multi-directional, high strain rate dynamic mechanics experiments.

The project focuses on the structural layout, conductive components, insulation structure, installation interface and overall assembly of the electromagnetic loading section for targeted design, through the integration of mechanical structure and electromagnetic functional components, to meet the requirements of scientific research tests on structural reliability, repeated installation and system adaptability.

Related products have been appliedNorthwestern Polytechnical University and other universities and research institutionsExperimental study of impact dynamics.

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Main Features

Adaptation of single-axis, double-axis and three-axis systems

The loading module can be combined and configured according to the configuration of the test system, which can serve the research of single-direction and multi-direction dynamic loading, and provide the hardware basis for the high strain rate experiment under the complex stress state of biaxial and triaxial.

Modular electromagnetic loading structure

The independent loading module is designed, which can be configured according to the space layout, loading direction and installation mode of the Hopkinson rod system, which is convenient for system integration, installation and replacement.

Collaborative design of electromagnetic and mechanical structures

Around the electromagnetic loading function, the conductor structure, insulation components, mechanical support and external interface are designed as a whole, and the integration of electromagnetic function and mechanical bearing structure is realized in the limited structure space.

Scientific Research Experiment for Impact Dynamics

It can be applied to the study of material behavior under high strain rate response, dynamic mechanical properties, impact load and complex stress state, and provide key loading components for the new multi-axis Hopkinson bar test system.

Application Directions

electromagnetic Hopkinson bar | split Hopkinson bar | high strain rate mechanics | dynamic mechanical properties | impact dynamics | biaxial dynamic loading | triaxial dynamic loading | multiaxial complex stress test

Service Content

Scheme Design | Structural Design | Electromagnetic Loading Module Design | Insulation Structure Design | Engineering Drawing | Parts Processing | Parts Assembly | System Adaptation

Application unit

Product has been appliedNorthwestern Polytechnical University and other universities and research institutesThe relevant impact dynamics experimental research provides supporting technical support for the construction of electromagnetic and multi-axis Hopkinson rod test equipment.

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