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Titlebook: Shock Waves and High-Strain-Rate Phenomena in Metals; Concepts and Applica Marc A. Meyers,Lawrence E. Murr Book 1981 Plenum Press, New York

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书目名称Shock Waves and High-Strain-Rate Phenomena in Metals
副标题Concepts and Applica
编辑Marc A. Meyers,Lawrence E. Murr
视频video
图书封面Titlebook: Shock Waves and High-Strain-Rate Phenomena in Metals; Concepts and Applica Marc A. Meyers,Lawrence E. Murr Book 1981 Plenum Press, New York
描述The scientific understanding of high-velocity deformation has advanced substantially during the past decade. On the one hand, the framework for a theory explaining the metallurgical effects of shock waves is beginning to take shape; on the other hand, the technological applications of high strain-rate processes have found their way into industries in countries around the world. Ex­ plosive cladding, welding, forming, compaction and consolidation, cutting, and hardening, in addition to high energy-rate deformation processes using other energy sources, are some of the topics of contemporary technological importance. Metallurgical effects are of the utmost importance in both the scientific understanding of the phenomena involved, and in the successful development and utilization of the associated applications. The international conference upon which this book is based had as its major objectives the acceleration of progress in the field of high-strain rate deformation and fabrication, including applications, by providing a forum for the exchange of state-of-the­ art information on the metallurgical effects of high strain-rate deformation and fabrication; and the organization of this i
出版日期Book 1981
关键词copper; cutting; development; fabrication; information; magnetic properties; material; mechanisms; metals; ni
版次1
doihttps://doi.org/10.1007/978-1-4613-3219-0
isbn_softcover978-1-4613-3221-3
isbn_ebook978-1-4613-3219-0
copyrightPlenum Press, New York 1981
The information of publication is updating

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An Improved Technique for Determining Dynamic Material Properties Using the Expanding Ringitive uniaxial material property data. The procedure is to monitor the kinematics of a uniformly expanding ring. The stress-strain-strain rate response of the ring material can then be calculated from the ring equation of motion and the recorded data.
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Deformation Mechanisms of Impact-Loaded Tungsten Sinter Materialsor of such materials has been investigated under hypervelocity impact conditions. Several types of projectiles have been fired into semi-infinite steel targets at impact velocities between 1000 m/s and 2100 m/s. A special shape factor has been defined in order to characterize the amount of deformati
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Some Metallurgical Aspects of the Dynamic Expansion of Shells explosives. Two main types of rupture have been observed: a very ductile one, sometimes by chisel-point (e.g. in copper or aluminum alloys) and a brittle one associated with adiabatic shear bands (in uranium and titanium alloys). For these two types of rupture we have reviewed the different theorie
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