1) loading cycle
装载循环
2) cyclic load
循环加载
1.
In order to investigate and compare the ultimate load-carrying capacity,hysteretic behavior and dynamic characteristics of welded and bolted steel frames;6 single-span two-story steel frames were tested under cyclic loading.
为了探讨、比较焊接和螺栓连接钢框架的极限承载能力、滞回性能及动力特性,本文进行了6榀1∶2比例的单跨双层钢框架循环加载试验和动力特性测试,其中焊接、端板螺栓连接、角钢螺栓连接钢框架各两榀。
3) cyclic loading
循环加载
1.
Research on shear behavior of reinforced concrete beams under cyclic loading;
循环加载对钢筋混凝土梁抗剪性能影响研究
2.
3-D constitutive relation for rock joints during cyclic loading;
岩体结构面三维循环加载本构关系
3.
Constitutive model for soils under the condition of cyclic loading;
循环加载条件下土的应力路径本构模型
4) cyclic loading
循环载荷
1.
Fatigue failure of rubber composite under cyclic loading;
橡胶复合材料在循环载荷下的疲劳损伤特性
2.
Space-time evolution rules study of acoustic emission locations in rock under cyclic loading;
循环载荷作用下岩石声发射时空演化规律
3.
Experimental research on the acoustic emission characteristic of sandstone under the different experimental condition of cyclic loading;
循环载荷作用时不同实验条件下砂岩的声发射特征实验研究
5) cyclic load
循环载荷
1.
Nonlinear finite element analysis on seismic behavior of two kinds of slabs under cyclic load;
循环载荷作用下两类楼板抗震性能的非线性有限元分析
2.
Experimental study on composite slabs under cyclic load;
循环载荷作用下组合楼板的试验研究
3.
In order to study the elas to plastic response of the beam to column welded connection under the seismic load and improve the earthquake resistant performance of welded joint,the non linear FEM analysis of "H" and "Dog Bone" Type of welded connection under the simulating seismic cyclic load was carried out by utilizing the ANSYS programming package.
为了研究建筑钢结构梁柱焊接接头在地震作用下的弹塑性响应 ,提高焊接接头的抗震性能 ,采用大型有限元软件ANSYS对建筑钢结构中比较常见的H形梁柱焊接接头和“狗骨式”焊接接头在模拟地震循环载荷作用下进行了弹塑性有限元分析 ,得到了梁端加载点的载荷 -位移滞回曲线和节点焊接接头的等效应力分布。
补充资料:高加浓铀燃料循环
分子式:
CAS号:
性质:反应堆中使用235U加浓度>90%的铀作燃料,由于235U的临界质量小,浓缩铀燃料装量少,堆芯功率密度高。核潜艇用压水堆、利用钍的高温气冷堆和高中子通量反应堆均利用高加浓铀作燃料。高加浓铀在生产时消耗大量分离功,成本很高。乏燃料元件必须处理以回收未用完的235U。高加浓铀是核武器原料,一般不易得到,限制了高加浓铀燃料循环的应用。
CAS号:
性质:反应堆中使用235U加浓度>90%的铀作燃料,由于235U的临界质量小,浓缩铀燃料装量少,堆芯功率密度高。核潜艇用压水堆、利用钍的高温气冷堆和高中子通量反应堆均利用高加浓铀作燃料。高加浓铀在生产时消耗大量分离功,成本很高。乏燃料元件必须处理以回收未用完的235U。高加浓铀是核武器原料,一般不易得到,限制了高加浓铀燃料循环的应用。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条