HuLi-shuang, HuShuang-qi, CaoXiong, SunJian-bing. Initiationcapacityofaspecialshapeboosterpellet[J]. Explosion And Shock Waves, 2013, 33(2): 207-211. doi: 10.11883/1001-1455(2013)02-0207-05
Citation:
|
HuLi-shuang, HuShuang-qi, CaoXiong, SunJian-bing. Initiationcapacityofaspecialshapeboosterpellet[J]. Explosion And Shock Waves, 2013, 33(2): 207-211. doi: 10.11883/1001-1455(2013)02-0207-05
|
HuLi-shuang, HuShuang-qi, CaoXiong, SunJian-bing. Initiationcapacityofaspecialshapeboosterpellet[J]. Explosion And Shock Waves, 2013, 33(2): 207-211. doi: 10.11883/1001-1455(2013)02-0207-05
Citation:
|
HuLi-shuang, HuShuang-qi, CaoXiong, SunJian-bing. Initiationcapacityofaspecialshapeboosterpellet[J]. Explosion And Shock Waves, 2013, 33(2): 207-211. doi: 10.11883/1001-1455(2013)02-0207-05
|
Initiationcapacityofaspecialshapeboosterpellet
More Information
- Corresponding author:
HuLi-shuang
- Publish Date:
2013-03-25
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Abstract
Theappearanceofinsensitiveammunitionhascreatednewrequirementsfortheboosterpelletsofthedetonationtrain.
Traditionalcylindricalboosterpelletshavemuchdifficultyinmeetinginsensitiveammunitionsdemandofreliabledetonation.
Thedesigntheoryofhigh-effect-boostercharge
structure,initiationprocess,initiationforce,andthehighoutputoflittlequantity,offerscientific
supportforthedevelopmentofinsensitiveammunitionintechnique.So,aspecialboosterpelletwas
designedthroughthecombineduseofshockinitiationtheory,effectivechargetheory,shapedcharge
effectaswellascornereffecttheory.Theinitiationcapacityofthespecialboosterpelletwasstudied
byusingthevaried-compositionmethodandaxialsteeldentmethodofmaincharge.Theresultsshow
thattheinitiationcapacityofthespecialboosterpelletisbetterthanthatofthecylindricalboosterpellet.
Theinitiationcapacityofthespecialboosterpelletisaffectedbytheareaeffectcoefficientandincreaseswiththeincreaseoftheareaeffectco
fficient.Thespecialboosterpelletcanmeetthedemands
oftheinsensitiveammunition.
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References
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Proportional views
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