在键合剂含量相同的情况下,制备温度是影响包覆效果的主要因素。
On the condition of the same percentage composition of LBA-603, the preparation temperature is the primary factor which affects the coating effect.
扩链剂的存在不是键合剂MAPO提高丁羟推进剂伸长率的必要条件。
The existence of any extender is not necessary for increasing the elongation of HTPB propellants by bonding agent MAPO.
引入适当的交联剂、扩链剂及键合剂可使GAP推进剂力学性能达到较高的水平。
By adding proper crosslinking agent, chain extender and bonding agent, the mechanical properties of GAP based propellants can be tailored to a higher level.
引入适当的交联剂、扩链剂及键合剂可使GAP推进剂力学性能达到较高的水平。
By adding proper crosslinking agent, chain extender and bonding agent, the mechanical properties of GAP based propellants can be tailored to a higher...
研究了键合剂BS、交联剂JC、固化剂、粘合剂分子量和官能度等因素对推进剂力学性能的影响。
Effects of bonding agent BS, cross-linking agent JC, curing agent, binder molecular weight and functionality on mechanical properties of the propellants were studied.
采用化学分析、红外分析、差热分析等手段,研究了HTPB和784两种粘合剂对键合剂效能的影响。
The influence of prepolymers (HTPB and 784) on the function of the bonding agent were also studied by chemical analysis, DTA, IRelc.
结果表明,键合剂改善RDX/HTPB推进剂力学性能的主要原因在于它们改善了RDX颗粒与HTPB粘结剂基体间的界面粘结效能。
The results show that primary action of bonding agent improving RDX/HTPB propellant mechanical property was bonding agent improving interface adhesive effect of RDX grain to HTPB binder.
结果表明,键合剂的效能与键合剂和粘合剂的互溶性、粘合剂的链段结构、粘合剂的活性基团和固化剂的反应速度及它们的相互作用等方面,有强烈的相关性。
The results have shown that the function of the bonding agent has a strong correlation with miscibility between the bonding agent and the binder, chain structure of th...
耦合剂以一官能基B1与触媒或触媒载体键结,并以 一官能基B2与质子传导离子高分子键结。
Using function group B1, the couplant binds catalyst or carrier of catalyst; and using function group B2 the couplant binds ion macromolecules of proton conduction.
其中步骤(b)中的耦合剂以一官能基b 1与触媒键结,并以一官能基b 2与高分子氟化物键结。
In step (2), the couplant USES a function group B1 to bond to catalyst, and USES a function group B2 to bind to high molecular fluoride.
其中步骤(b)中的耦合剂以一官能基b 1与触媒键结,并以一官能基b 2与高分子氟化物键结。
In step (2), the couplant USES a function group B1 to bond to catalyst, and USES a function group B2 to bind to high molecular fluoride.
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