功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2014年
18期
18001-18005
,共5页
简科%王军%王浩%王应德
簡科%王軍%王浩%王應德
간과%왕군%왕호%왕응덕
聚碳硼烷%先驱体转化%乳液法%碳化硼靶丸
聚碳硼烷%先驅體轉化%乳液法%碳化硼靶汍
취탄붕완%선구체전화%유액법%탄화붕파환
polycarborane%precursor conversion%emulsion method%boron carbide target
激光驱动惯性约束点火是实现核聚变的最有效途径之一,靶丸的设计与制备技术一直是激光惯性约束聚变研究中的核心技术。综述了目前靶丸材料体系的研究现状,重点介绍了理论计算十分有利于点火实验的纯B4 C空心微球靶丸。最后,对 B4 C 空心微球靶丸的制备成型工艺进行了展望。
激光驅動慣性約束點火是實現覈聚變的最有效途徑之一,靶汍的設計與製備技術一直是激光慣性約束聚變研究中的覈心技術。綜述瞭目前靶汍材料體繫的研究現狀,重點介紹瞭理論計算十分有利于點火實驗的純B4 C空心微毬靶汍。最後,對 B4 C 空心微毬靶汍的製備成型工藝進行瞭展望。
격광구동관성약속점화시실현핵취변적최유효도경지일,파환적설계여제비기술일직시격광관성약속취변연구중적핵심기술。종술료목전파환재료체계적연구현상,중점개소료이론계산십분유리우점화실험적순B4 C공심미구파환。최후,대 B4 C 공심미구파환적제비성형공예진행료전망。
Ignition by laser driven inertial confinement fusion was one of the most effective way to achieve nucle-ar fusion.Design and preparation technology of the target have always been the core technology in the study of laser driven inertial confinement fusion.In this paper,the current status of the target material was reviewed. The simulation results show that using pure B4 C hollow microspheres as the target was very conducive to the ignition experiment.At last,the fabrication of B4 C microspheres was offered in order to meet the demands of target.