Method of obtaining spherical converging shock wave
A shock wave and spherical technology, applied in the field of explosion and shock dynamics, can solve problems such as difficult to produce more accurate spherical shock waves, difficult to use conventional test techniques, high energy test costs, etc., to achieve easy implementation, simple experimental conditions, and overcome control difficult effect
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Publication Date
- 2017-02-15
Smart Images

Figure 1 
Figure 2
Abstract
Description
technical field
[0001] The invention belongs to the technical field of explosion and impact dynamics, and in particular relates to a method for obtaining spherical converging shock waves. Background technique
[0002] Inertial confinement nuclear fusion, supernova explosion, nuclear engineering and other fields all involve the dynamics of spherical shock wave convergence, and there are still many difficult problems to be studied in the evolution of the material interface and the interaction mechanism. At present, the main methods for directly generating spherical converging shock waves are:
[0003] 1) Based on spherical shell-shaped explosives, the method of synchronous ignition on the outer spherical surface.
[0004] 2) A method based on direct simultaneous ignition of explosive premixed substances on the inner wall of a spherical container.
[0005] 3) Method based on multi-channel laser convergent impact.
[0006] Among the above methods, 1) and 2) both involve diffi...
Examples
Embodiment Construction
[0031] Specific embodiments of the present invention are given below in conjunction with the accompanying drawings to describe the technical solution of the present invention in detail.
[0032] The present invention is a kind of method that obtains spherical converging shock wave, and the specific embodiment of the present invention is to adopt figure 1 An experimental system is shown for the new method of obtaining spherical converging shock waves. The ultra-high pressure plane-to-spherical converging shock wave generation system used includes: combustible gas mixture 1, experimental container 2, spherical sample 3, synchronous ignition device 4, detonation wave generation area 5, detonation wave convergence area 6, observation equipment 7, Plane detonation wave 8, cone-spherical detonation wave 9, hemispherical detonation wave 10 and spherical converging shock wave 11. The combustible gas mixture 1 can be hydrogen-oxygen gas mixture. The sectional view of the experimental...