GILLIS et al., 1963 - Google Patents
Deformation of case-bonded solid-propellant grains under axial and transverse acceleration loadsGILLIS et al., 1963
- Document ID
- 15773107837800789501
- Author
- GILLIS G
- PARR C
- Publication year
External Links
- 230000001133 acceleration 0 title description 2
Similar Documents
Publication | Publication Date | Title |
---|---|---|
GILLIS et al. | Deformation of case-bonded solid-propellant grains under axial and transverse acceleration loads | |
FOURNEY et al. | Calculation of maximum pressure stresses in solid propellant rocket grains using photoelastic data | |
SHINNAR et al. | Research on mechanism of ignition of solid rocket propellants | |
BRITTON | Behavior of solid propellant grains subject to cyclic loading | |
AGOSTON et al. | Acoustic admittance of burning solid propellant surface- combustion instability | |
DICKINSON et al. | Combustion in solid propellant rocket engines(Canadian combustion research on solid propellants for rocket engines, including erosive and unstable burning) | |
MATHIS | Discussion of hypergolic propellants including a basic definition, properties and the structure of phosphorous hypergols | |
LIU | High speed data on detonation and instability phenomena in solid propellant combustion chamber | |
BROWNLEE et al. | Instability of nonlinear axial combustion in solid propellant rocket motors | |
HART | Acoustic amplification and attenuation by burning solid propellants- combustion instability | |
SMITH | Mechanical behavior of solid propellants subjected to small oscillating deformations- combustion instability | |
JAFFE et al. | Study of the sensitivity of rocket propellants to shock and other reactions to evaluate necessary safety precautions | |
STALEY | Discussion of safety regulations in the manufacture of solid-propellant rocket fuels | |
BARRERE et al. | Combustion instabilities in liquid propellant rockets(Conflicting experimental results on combustion instabilities in liquid propellant rockets, including frequency instability, to aid in acoustic type instability) | |
KAUFMAN et al. | Importance of complete mission analysis for evaluating rocket propellant effectiveness, noting the limitations of the figure-of-merit | |
PARR | Axial acceleration of viscoelastic propellant grains of complex cross section, determining shear stresses and displacement | |
ISAACSON et al. | Effect of chamber pressure on the burning rate of a composite, double-base, solid propellant rocket motor | |
IWAMA | Calculation of theoretical performance and various thermodynamic data of the hydrazine-chlorine- trifluoride hypergolic propellant system | |
LAWHEAD | Transient method of measuring acoustic impedance of solid propellant- combustion instability | |
WALSH | Relationship between knock ratings of fuels and their molecular structure | |
OSBORN | Problems of burning in solid and liquid propellant rocket engines, with a review of studies of unstable combustion | |
CHENG | Survey of five years research on the problem of combustion instability in solid-propellant rocket motors | |
DORLEAC | Structure of solid-propellant rockets and resistance of rocket motor cases under pressure | |
OPPENHEIM et al. | Numerical solution of the equations determining the detonation wave structure, assuming steady one-dimensional flow and perfect behavior of reactant and products | |
HORTON | Measurement of oscillatory burning in solid propellant combustion zone- combustion instability |