火炸药学报
火炸藥學報
화작약학보
CHINESE JOURNAL OF EXPLOSIVES & PROPELLANTS
2006年
5期
76-80
,共5页
张腊莹%刘子如%衡淑云%张林军%阴翠梅
張臘瑩%劉子如%衡淑雲%張林軍%陰翠梅
장석형%류자여%형숙운%장림군%음취매
物理化学%双基推进剂%动态力学分析%动态力学性能
物理化學%雙基推進劑%動態力學分析%動態力學性能
물이화학%쌍기추진제%동태역학분석%동태역학성능
physical chemistry%double-base propellant%DMA%dynamic mechanical property
用动态热机械分析仪测定了65℃下双基固体推进剂H01的老化性能.在低温段(-10~40℃),随老化时间的增加tanδ值有明显下降,β松弛峰也越来越明显.H01的α松弛的损耗角正切tanδ的峰温、动态柔量J′和J″的值以及动态模量E′和E″、动态柔量J′和J″主曲线的叠合垂直位移因子与老化时间存在一定规律.TG-DTG试验表明,随着老化时间的增加,试样在183℃时的质量损失逐渐减小,说明增塑剂含量随老化时间增加而减小.因此,除了因结构松弛造成的"物理老化"外,这是造成上述各力学损耗量随老化时间下降的又一主要原因.
用動態熱機械分析儀測定瞭65℃下雙基固體推進劑H01的老化性能.在低溫段(-10~40℃),隨老化時間的增加tanδ值有明顯下降,β鬆弛峰也越來越明顯.H01的α鬆弛的損耗角正切tanδ的峰溫、動態柔量J′和J″的值以及動態模量E′和E″、動態柔量J′和J″主麯線的疊閤垂直位移因子與老化時間存在一定規律.TG-DTG試驗錶明,隨著老化時間的增加,試樣在183℃時的質量損失逐漸減小,說明增塑劑含量隨老化時間增加而減小.因此,除瞭因結構鬆弛造成的"物理老化"外,這是造成上述各力學損耗量隨老化時間下降的又一主要原因.
용동태열궤계분석의측정료65℃하쌍기고체추진제H01적노화성능.재저온단(-10~40℃),수노화시간적증가tanδ치유명현하강,β송이봉야월래월명현.H01적α송이적손모각정절tanδ적봉온、동태유량J′화J″적치이급동태모량E′화E″、동태유량J′화J″주곡선적첩합수직위이인자여노화시간존재일정규률.TG-DTG시험표명,수착노화시간적증가,시양재183℃시적질량손실축점감소,설명증소제함량수노화시간증가이감소.인차,제료인결구송이조성적"물리노화"외,저시조성상술각역학손모량수노화시간하강적우일주요원인.
The aging properties of double-base propellant H01 under 65℃ were measured by a dynamic mechanical analyzer. In lower temperature range -10~40℃,the values of loss tangent tanδ decrease obviously and the peaks of β relaxation become more clear with increasing the aging time. The changes of the peak temperature of tanδ at α relaxation, values of dynamical compliances J′ and J″, and superposition vertical shift factors of master curves of storage modulus E′,loss modulus E″, J′ and J″ for DB propellant H01 with aging times are regular. The TG-DTG test results show that the mass-loss of samples at 183℃ decreased as the aging time increased, indicating that the contents of the plasticizer in DB propellant H01 decreased as the aging time increased. Therefore, it is shown that the decrease in the plasticizer must also be a main reason to lead to the decrease in above-mentioned "mechanical loss", except for the "physical aging" resulting from the structural relaxation.