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1)  bimaterial
双材料
1.
Numerical computation of SIFs for bimaterial-interfacial crack by meshless method;
双材料界面裂纹应力强度因子的无网格分析
2.
Boundary Element Method for Elastoplastic Bimaterial Interface Crack Problems;
弹塑性双材料界面裂纹问题的边界元法
3.
Calculation of stress singularityof plane bimaterial V-notches with rolling edges
滚动楔形边双材料平面V形切口应力奇性指数的计算
2)  Bi-material
双材料
1.
The bi-wheel conform cladding technology,for different billet could entry the chamber through the wheel,make it possible that setting an interim lamination between the bi-material,which is difficult to cladding,and thus expanding the scope of bi-materil cladding.
该方法在双材料成形方面的应用前景展望。
2.
Based on the basic equation of the plane elasticity problem, the analytical solution is presented for a bi-material superposed cantilever beam subjected to a concentrated force at the free end by using the stress function method.
本文基于平面弹性力学的基本方程,采用应力函数法,推导出了双材料叠合悬臂梁在自由端受集中力作用时的解析解,该解析解可退化为已有的单材料悬臂梁在自由端受集中力作用时的解析解。
3)  dissimilar material
双材料
1.
Semi-weight function method is developed to solve the plane problem of two bonded dissimilar materials containing a crack along the bond.
 应用半权函数法求解双材料界面裂纹的平面问题· 由平衡方程、应力应变关系、界面的连续条件以及裂纹面零应力条件推导出裂尖的位移和应力场,其特征值为lambda及其共轭· 设置特征值为lambda的虚拟位移和应力场,即界面裂纹的半权函数· 由功的互等定理得到应力强度因子KⅠ和KⅡ以半权函数与绕裂尖围道上参考位移和应力积分关系的表达式· 数值算例体现了半权函数法精度可靠、计算简便的特点·
4)  double-phase material
双相材料
1.
Based on the theory of X-ray stress measurement, a method of measurement and representation for the inter-phase stress of double-phase material was established.
基于X射线应力测量原理,建立了一种双相材料相间内应力的测量与表征方法。
5)  double layer material
双层材料
6)  double negative media
双负材料
1.
Performance improvement of microstrip antenna using double negative media;
用双负材料改善微带天线阻抗带宽
补充资料:2,2-双氯甲基-三亚甲基-双[双(2-氯乙基)磷酸脂]
CAS:38051-10-4
分子式:C13H24Cl6O8P2
中文名称:2,2-双氯甲基-三亚甲基-双[双(2-氯乙基)磷酸脂]

英文名称:2,2- bis(chloromethyl)-trimethylene bis[bis(2-chloroethyl)phosphate]
phosphoric acid, 2,2-bis(chloromethyl)-1,3-propanediyl tetrakis(2-chloroethyl)
2,2-bis(chloromethyl)trimethylene bis(bis(2-chloroethyl)phosphate)
2,2-bis(chloromethyl)-1,3-propanediyltetrakis(2-chloroethyl)phosphate
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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