1) Superconductive critical transition
超导临界转变
2) the ultracritical rotation speed
超临界转速
3) supercritical operation
超临界运转
4) supercritical transformation
超临界相变
1.
In this paper, we examine the influence of the nonsingular stress terms on the toughness enhancement of smallscale supercritical transformation ceramics.
采用近似方法研究应力非奇异项对小范围相变条件下超临界相变陶瓷韧性增值的影响。
5) Super-Critical Generator
超超临界转子
6) Superconducting transition
超导转变
1.
5 at ambient temperature and decreases abruptly to half of the normal state value when the temperature is below the superconducting transition temperature of the YBa2Cu3O7-δ.
5左右,当温度降到超导转变温度以下时(液氮温度-196℃)摩擦因数大幅度降低,YBa2Cu3O7-δ超导态摩擦因数是正常态值的一半,实验直接证明了电子激励对摩擦能量耗散的作用。
2.
They observed the friction dropped abruptly when the temperature was cooled to the superconducting transition temperature(T_c=7.
1986年起J·Krim等利用石英晶体微天平(QCM)研究镀在石英晶体上铅膜和其上流动的气体的摩擦,发现当温度到达铅的超导转变温度(T_c=7。
3.
35 at the ambient temperature and decreases abruptly to half of the normal state value when the temperature is below the superconducting transition temperature of Bi1.
35,当温度降到超导转变温度以下时(液氮温度-170℃)摩擦系数大幅度降低,Bi1。
补充资料:正常(超导)—超导(正常)转变
正常(超导)—超导(正常)转变
transitionfromnormal(superconducting)statetosuperconducting(normal)state
一般指在常压下改变温度到Tc时,物质的电阻从R>0(R=0)的正常态(超导态)到R=0(R>0)的超导态(正常态)的转变。无磁场时这种转变属二级相变。
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