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1)  stress-activative flow
应力活化流动
2)  Flow Stress
流动应力
1.
Effects of Temperature on Flow Stress and Microstructure of TC11 Alloy at High Strain Rate;
变形温度对TC11合金流动应力及组织的影响
2.
Research on the flow stress model of titanium alloy TC4 during the cutting process;
钛合金TC4切削过程流动应力模型研究
3.
Research on flow stress model of high carbon steel;
高碳钢的流动应力模型研究
3)  flowing stress
流动应力
1.
Ferrite transformation region was determined for the deformation by measuring flowing stress and transformation behavior.
006%的超低碳钢在两相区变形的形变特征和规律;通过测定钢的流动应力和相变行为,得到了铁素体相变区间。
2.
Through a Gleeble-1500 simulator, the flowing stress curves of three aluminum alloys were experimentally determined at high temperatures at a constant speed with the effects of deforming temperatures, deforming speed and deforming degree .
采用Gleeble-1500热模拟试验机,测定了3种铝合金材料在高温下的流动应力,分析了应变速率、变形程度和 变形温度对流动应力的影响。
3.
The flowing stress curves of four copper alloys were experimentally determined at high temperatures with a Gleeble1500 simulator at a constant speed with the effects of deforming temperatutes,deforming speed and deforming degree analysed.
采用Gleeble 1500热模拟实验机,测定了4种铜合金材料在热态下的流动应力,分析了应变速率、变形程度及变形温度对流动应力的影响规律。
4)  flow activation energy
流动活化能
1.
The results showed that flow activation entropy increased by effective size gradation of filler and that flow activation energy increased too.
通过对不同温度下的聚丙烯填充复合体系剪切粘度的测定 ,以阿累尼乌斯公式对上述结果进行处理 ,发现经过合理的级配可以有效地提高填充复合体系的流动活化熵 ,同时体系的流动活化能将有所上升 ,从能量的角度上解释了以往发现的级配对聚合物复合材料体系粘度的降低作用的机理 。
2.
In addtion, the change tendency of the flow activation energy was discussed initially.
此外,还测定了相应流动活化能,并对其变化趋势进行了初步说明。
3.
The results show that the zero shear viscosity η 0 of the solution decreases with the increase of acetic acid content and temperature, the decrease of chitosan content and the prolonging of the storage time, that flow activation energy (Δ E η) and structural viscosity index (Δη) increase with the increase of chitosan content and the decrease of acetic acid content,that the addition .
流动活化能ΔEη和结构粘度指数Δη随壳聚糖含量的增加、乙酸含量的减少而增大。
5)  flow activation entropy
流动活化熵
1.
The results showed that flow activation entropy increased by effective size gradation of filler and that flow activation energy increased too.
通过对不同温度下的聚丙烯填充复合体系剪切粘度的测定 ,以阿累尼乌斯公式对上述结果进行处理 ,发现经过合理的级配可以有效地提高填充复合体系的流动活化熵 ,同时体系的流动活化能将有所上升 ,从能量的角度上解释了以往发现的级配对聚合物复合材料体系粘度的降低作用的机理 。
6)  Activation kinetics
活化动力学
补充资料:轧辊残余应力(见轧辊应力)


轧辊残余应力(见轧辊应力)
residual stresses in roll

zhagun eanyu yingli轧辊残余应力(residual stresses in roll)见礼辐应力。
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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