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1)  self-healing minefield
自修复雷场
1.
The results indicate that the self-healing minefield has powerful self-healing capacity,and the probability that a lane is clear of mines is minimal even by multi-time breaching.
应用JAVA语言对雷场的自修复能力进行了仿真,结果显示扫雷后通道仍被封锁;同时,对不同跳跃标准和跳跃距离的组合进行了研究,结果表明:自修复雷场有极强的自修复能力,经多次扫雷,雷场中一条通道被完全清除的概率较小,且探测距离和跳跃距离增大时,一条通道被完全清除的概率明显降低。
2)  field repairing
现场修复
3)  self-repair
自修复
1.
Analog measueament of fracture feature of capsuling self-repairing smart composites;
微胶囊自修复智能复合材料断裂特性的模拟实验研究
2.
Research progress in microcapsule with self-repair composite;
自修复聚合物材料用微胶囊的研究进展
3.
Study on the policy for self-repair of smart materials and structures;
智能材料结构自修复的策略研究
4)  automatic restoration
自修复
1.
In order to study the automatic restoration action for wear of nano-TiO2 and the influence of frictional condition on automatic restoration,the repairing action to worn steel surface of nano-TiO2 as an addtive in 350SN oil was tested using an HQ-1 wear machine.
为研究纳米TiO2的磨损自修复作用及摩擦条件对修复的影响,将纳米TiO2作为添加剂加入350 SN基础油中,采用HQ-1环块摩擦磨损试验机考察了纳米TiO2对磨损表面的修复作用,在不同载荷、转速、修复时间条件下进行了磨损试验,以质量变化及粗糙度变化来评价添加剂的修复效果。
2.
In order to study the influence of load,slide velocity on automatic restoration capability of nanometer zinc powder that added to 350SN lubricating oil.
在HQ-1摩擦磨损实验机上进行自修复实验,考察了载荷、转速、修复时间对纳米Zn添加剂自修复性能的影响。
3.
In order to study the influence of load,slide velocity and restoration time on automatic restoration capability of composite nanometer MgO/SiO2 additive that added to 350SN lubricating oil.
以纳米MgO/SiO2作为添加剂,在HQ-1摩擦磨损实验机上进行自修复实验。
5)  self-repairing
自修复
1.
Research on Wear-self-repairing Nanometer Tin Lubricating Coating;
磨损自修复纳米锡润滑涂层的研究
2.
Preparation and tribological performances of nano-Cu self-repairing additive;
纳米铜自修复添加剂的制备及其摩擦学性能
3.
Experiment and research on permeable crystallization self-repairing performance of concrete;
混凝土的渗透结晶自修复试验与研究
6)  self-healing
自修复
1.
Microcapsule used for self-healing polymer material;
自修复聚合物材料用微胶囊
2.
Research developments of microcapsule type self-healing polymer composite materials;
微胶囊型自修复聚合物复合材料研究进展
补充资料:自修
①学生在规定时间或课外自己学习:晚自修。②自己选择学业学习:自修法语。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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