in solid-phase固相中
catalyst in vapor-phase气相催化
leach in three-phase fluidized reactor三相流态化浸出
power in three-phase system三相系电力
catalytic hydrogenation in liquid-phase液相催化加氢
power measurement in three-phase systems三相功率测量
hot rolling in single-phase region单相区轧制
technical match in mid-phase中期技术跟进
Power in Three-phase Circuits三相电路的功率
The key results drawn from this study are as follows: Increasing temperatureand decreasing frequency accelerate crack growth rate;The crack growth rate of in-phase thermal-mechanical fatigue is much larger than that of out-phase thermal-mechanical fatigue and both of them are between the crack growth rates of 450℃isothermal and 990℃ isothermal tests; Load-hold also accelerates crack growth.
本研究主要结果如下:温度的升高和频率的降低均会加速裂纹扩展;同相位热/机械疲劳裂纹扩展速率大于反相位热/机械疲劳裂纹扩展速率,而且它们两者介于最大温度和最小温度的等温疲劳裂纹扩展速率之间;载荷保持加速裂纹扩展。
参考来源 - Ni