1) J-joint
丁形接头
2) convex concave joints
丙丁接头
1.
The characteristic of the contact action is deeply investigated, and with an exemple of convex concave joints in one pontoon bridge, two kinds of contact finite element model are established.
深入考察接触行为的特点 ,并以舟桥纵向连接件丙丁接头为例 ,建立了两种接触计算模型。
2.
The convex concave joints is a type of important joint components in military pontoon bridge.
用大型通用计算机程序对我军舟桥装备中的一种重要连接件——丙丁接头的疲劳抗力进行了计算机仿真 ,得到其 S- N曲线 ,并与试验结果进行了对比 ,两者吻合较好 ,取得满意结果 ,为军用桥梁钢构件抗疲劳设计提供了有效便捷的手段。
3) a tee piece
丁字接头
4) T joint
T形接头
1.
T joints fatigue strength improving by hybrid heat treatment process after tungsten inert-gas arc remelting;
基于TIG电弧重熔的焊后复合处理工艺改善T形接头疲劳强度的研究
2.
Microstructure and properties of T joint by EBW-brazing hybrid welding;
电子束焊—钎焊复合焊T形接头组织性能分析
3.
Influence of welding sequence of subsection welding on residual stress of T joint;
分段焊的焊接顺序对T形接头残余应力场的影响
5) joint shape
接头形式
1.
Analyze welding process method and joint shape of C and D seam of pre ssure vessels;
压力容器C、D类焊缝接头形式及施焊工艺分析
6) T-joint
T形接头
1.
Temperature and stress distribution of multi-pass welded T-joint was simulated using ABAQUS codes.
应用ABAQUS软件,对多道焊T形接头的温度场和应力场进行了数值模拟。
2.
The principle of fusion-through welding of metal, fusion-through welding technology of T-joint and its application in aviation & aerospace industries are introduced in this paper.
对金属熔透焊原理以及T形接头熔透焊技术进行了介绍,并列举了其在航空航天工业中的应用情况。
补充资料:丙丁
丙丁
丙丁 古人用十干以纪日,丙丁即丙日与丁日。丙丁属火,火分阴阳。丙为阳火,内应手太阳小肠经,故小肠经旺于丙日;丁为阴火,内属手少阴心经,故心旺于丁日。《素问·脏气法时论》:“心主夏,手少阴、太阳主治,其日丙丁。”
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