2020AIP conference proceedingsOpen access

Unified form EOS for detonation products based on relationship between initial density and detonation velocity

Shiro Kubota, Tei Saburi, Kunihito Nagayama

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Abstract

It is well known that detonation velocity and loading density of high explosive exhibits linear relationship for various explosives. Using this linear relationship, in a previous paper we proposed EOS for detonation products which could applied to arbitrary initial density without changing parameter set. This paper reports the results of applying the proposed method to RDX, PETN and TNT.

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It is well known that detonation velocity and loading density of high explosive exhibits linear relationship for various explosives. Using this linear relationship, in a previous paper we proposed EOS for detonation products which could applied to arbitrary initial density without changing parameter set. This paper reports the results of applying the proposed method to RDX, PETN and TNT.

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Available abstract

It is well known that detonation velocity and loading density of high explosive exhibits linear relationship for various explosives. Using this linear relationship, in a previous paper we proposed EOS for detonation products which could applied to arbitrary initial density without changing parameter set. This paper reports the results of applying the proposed method to RDX, PETN and TNT.

Key concepts: Detonation, Explosive material, Detonation velocity, Mechanics, Materials science, Deflagration to detonation transition, Linear relationship, Set (abstract data type)

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