1) natural failure stress
内禀断裂应力
2) breaking stress
断裂应力
1.
Analysis on the breaking stress of sucker rod and avoidable measures in Guangbei Area of Bamianhe Oilfield;
八面河油田广北区抽油杆断裂应力分析与防治
3) fracture stress
断裂应力
1.
Effects of notch opening angle on local cleavage fracture stress;
缺口夹角对细观解理断裂应力的影响
2.
In the case of the limited level density of the material surface energy, the fracture stress and the calculation formula of the engineering damage were studied.
本文研究考虑损伤时材料的断裂应力 ,推导出了在表面能密度有限的情况下 ,损伤断裂应力的计算公
3.
The local cleavage fracture stress a, was measured.
结果表明:加载速率较低时,断裂应力较高;加载速率较高时,断裂应力较低。
4) stress rupture
应力断裂
5) cohesive fracture
内聚力断裂
6) intrinsic coercivity
内禀矫顽力
1.
03 ) 7 permanent magnets with high Cu, low Fe, fit Zr, little z had room temperature intrinsic coercivity H ci 1?830.
0 3) 7永磁体的室温内禀矫顽力Hci为 183 0 。
2.
The high intrinsic coercivity Nd10.
0)的增加使粘结磁体的内禀矫顽力JHc线性增加,每0。
3.
The highest room temperature intrinsic coercivity iHc is achieved at more than 2 400 kA/m for z=7.
合金z值对内禀矫顽力温度系数影响显著,其中z=6。
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