TY - JOUR
T1 - Influence of a nanomaterial on propellant and the function of a nanomaterial for increasing the service life of a gun barrel
AU - Song, Qiuzhi
AU - Duo, Yingxian
PY - 2011/9
Y1 - 2011/9
N2 - In order to increase the service life of a gun barrel, a method of modifying powder by adding a nanomaterial to the propellant was applied. The design idea of the nanocomposite was introduced. Taking a kind of double-base ball propellant as a research object, a method of adding the nanomaterial to the propellant was presented. Also, the influence of the nanomaterial on a propellant's manufacturing process, interior ballistics, anti-erosion capability, combustion completion, and combustion capability were researched. A propellant with the nanomaterial which satisfied interior ballistic performance was prepared. Then, the barrel life of two caliber rifles was tested by using the propellant with the nanomaterial and the standard propellant in a high-temperature environment (50°C), a low temperature environment (-45°C) and a normal temperature (20°C) environment, respectively. Lastly, the test results and phenomenon were analyzed. It was proven that the anti-erosion of the propellant with the nanomaterial was improved, and the service life of the gun barrel was prolonged.
AB - In order to increase the service life of a gun barrel, a method of modifying powder by adding a nanomaterial to the propellant was applied. The design idea of the nanocomposite was introduced. Taking a kind of double-base ball propellant as a research object, a method of adding the nanomaterial to the propellant was presented. Also, the influence of the nanomaterial on a propellant's manufacturing process, interior ballistics, anti-erosion capability, combustion completion, and combustion capability were researched. A propellant with the nanomaterial which satisfied interior ballistic performance was prepared. Then, the barrel life of two caliber rifles was tested by using the propellant with the nanomaterial and the standard propellant in a high-temperature environment (50°C), a low temperature environment (-45°C) and a normal temperature (20°C) environment, respectively. Lastly, the test results and phenomenon were analyzed. It was proven that the anti-erosion of the propellant with the nanomaterial was improved, and the service life of the gun barrel was prolonged.
KW - Erosion
KW - Life test of gun barrel
KW - Nanomaterial
KW - Propellant
KW - Service life of gun barrel
UR - http://www.scopus.com/inward/record.url?scp=81355123677&partnerID=8YFLogxK
U2 - 10.3969/j.issn.1006-7043.2011.09.014
DO - 10.3969/j.issn.1006-7043.2011.09.014
M3 - Article
AN - SCOPUS:81355123677
SN - 1006-7043
VL - 32
SP - 1173
EP - 1178
JO - Harbin Gongcheng Daxue Xuebao/Journal of Harbin Engineering University
JF - Harbin Gongcheng Daxue Xuebao/Journal of Harbin Engineering University
IS - 9
ER -