Dissertation > Excellent graduate degree dissertation topics show

The Theory Calculation of Detonation Parameters for Industrial Explosive

Author: ZhengHengWei
Tutor: GuoZiRu
School: Anhui University of Technology
Course: Engineering Mechanics
Keywords: Industrial explosives Detonation parameter equation of state
CLC: TQ560.1
Type: Master's thesis
Year: 2009
Downloads: 181
Quote: 1
Read: Download Dissertation

Abstract


Investigation on detonation parameter of commercial explosives and quantificational characterization of detonation is of considerable significance in formation of new commercial explosives, blasting application, and improvement of blasting effects. In this paper, mass-momentum-energy equations under one-dimensional Chapman-Jouguet(C-J) hypothesis and Abel Covolume equation of state (EOS) is adopted to structure model of mathematics. The detonation parameters of commercial explosives was calculated and compared results with experimental datum. The primary research works and conclusion is following.Based on the hydrodynamic theory of detonation and the Gibbs free energy minimization principle, the detonation parameters of the industrial explosives was calculated .This paper attempts to use of the Abel Covolume equation of state. According to the literature, a table comparing the theoretical value with experimental datum by Cooke, we can see that the amended the Abel Covolume equation of state has a very good match at a range ofρ=0. 85g/cm3~ρ=3 g/cm3[1] . In the daily works , we used of the industrial explosives density falls within the scope of this one. Therefore , adopting the Abel Covolume equation to calculate the detonation parameter of commercial explosives is feasibility of state theoretically.we need to receive numerical value of the balanceable system of detonation products. When we want to Calculate the detonation parameters of industrial explosives, However, receiving numerical value of the balanceable system is a complex process. Therefore, we require the computer to calculate the program. In order to satisfy the requirements to simple program and the accurate result, this paper select the advanced object-oriented programming language that the Microsoft Visual Basic 6.0 to frame.This author calculated the numerical value of the balanceable system of detonation products of two kind of gases explosives and eight kind of the agglomerate explosives Analyzing the results of calculated and Comparing of calculated results with experimental value and literature’s value, The compare indicate that the calculated results is fit to the experimental value and literature’s value.Thus proved the Abel Covolume equation of state applicable to the calculation of commercial explosives’s detonation parameters, and the program of this paper has a accuracy and reasonable data .

Related Dissertations

  1. Rearch of the Cosmological Term and Universe Solutions in the Five-Dimensional,P159
  2. Calculation on Vapor-Liquid Phase Equilibrium in Separation Process of Natural Gas,TE642
  3. The Mass-radius Relation of Rotating Neutron Star under Color Superconductivity Phase and Latent Heat from Spin One Color Superconductivity Phase Transitions,P145.6
  4. Study on the Solubility of Gases in Biodegradable Poly (Lactic Acid),O631.3
  5. Study on Guidance Methods of Fly-by Approaching Observation of Space Target,V448.2
  6. Primary explosive detonation properties of BNCP,TQ560.1
  7. Research on the Explosion of Type Ⅱ Supernova,P145.3
  8. Prediction of Vapor-Liquid Equilibrium by HVOS-PR-MLUNIFAC Group Contribution Model,O642
  9. Theoretical Study of Bose-Einstein Condensation and Structure-preserving Computation,O469
  10. Research and Design of the Key Technologies on the Small Diameter Industrial Explosive Tube Packaging Line,TP278
  11. The Study of Supercritical Carbon Dioxide Induced Swelling and Retrograde Vitrification of Amorphous Polymer,O631.3
  12. ADRC -based two-wheeled self- balancing robot,TP242
  13. Near-field non-contact underwater explosion ship antiknock properties of novel protective structure,U661.43
  14. New high-energy powder formulation of industrial explosives,TQ564.42
  15. Shock Wave Equation of State and the Stability of High-pressure Phase of Enstatite,O521.2
  16. Study on Properties of Protoneutron Stars,P145.6
  17. The heat correction and for Si_3N_4 nature of the general equation of state,O52
  18. The Study of Dynamic Property of Bose-Einstein Condensation,O414.2
  19. Columnar liquid crystal state equation,O753.2
  20. Optimal Excitation Control System Design and Simulation,TP273.1

CLC: > Industrial Technology > Chemical Industry > Explosives industry, match industry > General issues. > Basic theory
© 2012 www.DissertationTopic.Net  Mobile