TY - JOUR
T1 - The use of inverse gas chromatography (IGC) to determine the surface energy of RDX
AU - Yunjun, Luo
AU - Meina, Du
PY - 2007/12
Y1 - 2007/12
N2 - The surface properties of RDX play an important role in enhancing mechanics performances of the propellants and explosives. In this work, thereby, inverse gas chromatography (IGC) using various probe liquids as the medium was used to determine the surface energy components of RDX containing both dispersive and polar components, which were acquired respectively from neutral probe liquids (such as n-hexane, n-heptane, n-octane) and polar probe liquids (such as chloroform, benzene, methanol). The results show that RDX located in different column temperatures has difference in the surface energy and possesses more surface energy when there is high temperature. The calculated formula of the total surface energy with temperature is: γsT= - 82.16+ 0.35577, and it is also found that dispersive, polar, electron acceptor, and electron donor components of RDX are γsLW= - 53.29 + 0.25607, γsAB= - 28.57 + 0.098897, γs+= - 25.82 +0.089437, and γs -= -7.932 + 0.027437, respectively. These results demonstrate that the dispersive component is the primary part of the total surface energy, and RDX has an acid performance.
AB - The surface properties of RDX play an important role in enhancing mechanics performances of the propellants and explosives. In this work, thereby, inverse gas chromatography (IGC) using various probe liquids as the medium was used to determine the surface energy components of RDX containing both dispersive and polar components, which were acquired respectively from neutral probe liquids (such as n-hexane, n-heptane, n-octane) and polar probe liquids (such as chloroform, benzene, methanol). The results show that RDX located in different column temperatures has difference in the surface energy and possesses more surface energy when there is high temperature. The calculated formula of the total surface energy with temperature is: γsT= - 82.16+ 0.35577, and it is also found that dispersive, polar, electron acceptor, and electron donor components of RDX are γsLW= - 53.29 + 0.25607, γsAB= - 28.57 + 0.098897, γs+= - 25.82 +0.089437, and γs -= -7.932 + 0.027437, respectively. These results demonstrate that the dispersive component is the primary part of the total surface energy, and RDX has an acid performance.
KW - Dispersive component
KW - Electron acceptor component
KW - Electron donor component
KW - Inverse gas chromatography
KW - Polar component
KW - RDX
KW - Surface energy
UR - https://www.scopus.com/pages/publications/38049101303
U2 - 10.1002/prep.200700049
DO - 10.1002/prep.200700049
M3 - Article
AN - SCOPUS:38049101303
SN - 0721-3115
VL - 32
SP - 496
EP - 501
JO - Propellants, Explosives, Pyrotechnics
JF - Propellants, Explosives, Pyrotechnics
IS - 6
ER -