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By Bo Song, Dan Casem, Jamie Kimberley

ISBN-10: 3319411314

ISBN-13: 9783319411316

ISBN-10: 3319411322

ISBN-13: 9783319411323

Dynamic habit of fabrics, quantity 1: Proceedings of the 2013 Annual convention on Experimental and utilized Mechanics, the 1st quantity of 8 from the convention, brings jointly contributions to this crucial region of study and engineering.  the gathering offers early findings and case reviews on basic and utilized features of Experimental Mechanics, together with papers on:

 

General Dynamic fabric Properties

Novel Dynamic checking out Techniques

Dynamic Fracture and Failure

Novel checking out Techniques

Dynamic habit of Geo-materials

Dynamic habit of organic and Biomimetic Materials

Dynamic habit of Composites and Multifunctional Materials

Dynamic habit of Low-Impedance materials

Multi-scale Modeling of Dynamic habit of Materials

Quantitative Visualization of Dynamic habit of Materials

Shock/Blast Loading of Materials

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Additional resources for Dynamic Behavior of Materials, Volume 1: Proceedings of the 2016 Annual Conference on Experimental and Applied Mechanics

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5 mm (3/8 in) Fig. 3). Specimens from the cold rolled Nitronic steels were sectioned in directions parallel and perpendicular to the rolling direction (Fig. 1). The etchants used for metallographic study were in-house developed chemical solutions. They were consisted of Aqua Regia and Glyceregia, a variation of Aqua Regia with 10 ml glycerol. The etching time was determined by trial error until the microstructure was clearly observed in the microscope. 5 show microphotographs of all Nitronic steels examined using a metallographic microscope.

Once the specimen is loaded, an elastic tensile wave propagates through the transmitter bar to the free end and reflects back toward the end where the specimen is attached. The force in the specimen is determined by measuring the wave in the transmitter bar. 1 Specimen Geometry and Material Tests at the high strain rates require specimens with a short gage length, and in order to eliminate possible effects of the specimen geometry on the results, the gage section geometry of the specimens used in the quasi-static tests is the same.

4 in. in width. 125 in. 001 1/s and 1 1/s tension tests, the tension specimen is glued into adapters by using Loctite Ablestik 2106 T Bipax adhesive and the assembly is pinned into universal joint to prevent any bending that may happen on the specimen. The assembly with universal joint is shown in Fig. 2a. 001 1/s using frame rate of 15 frames per second. 3D DIC is used to measure the full field strain change in the gage section of the specimen. For strain rate of 1 1/s tension tests, specimen is patterned in both gage section and side surface.

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Dynamic Behavior of Materials, Volume 1: Proceedings of the 2016 Annual Conference on Experimental and Applied Mechanics by Bo Song, Dan Casem, Jamie Kimberley


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