变形激活能,deformation activation energy
1)deformation activation energy变形激活能
1.The deformation activation energy of 377 kJ/mol in (α+β) region and 648 kJ/mol in β region was calculated.测试了其真应力-真应变曲线,建立了本构方程,并求出变形激活能,双相区为377kJ/mol,β相区为648kJ/mol。
2.The hot-deformation activation energy and corresponding stress exponent were calculated.0s-1、变形温度为150~500℃条件下的流变应力行为进行了研究,计算了变形激活能及相应的应力指数,建立了峰值流变应力方程。
3.The deformation activation energy 132kJ/mol and the corresponding stress ex.结果表明,合金的流变应力随应变速率的增大而增大,随温度的升高而降低;在给定的变形条件下,计算出合金的变形激活能为132kJ/mol,应力指数为6。
2)activation energy of deformation形变激活能
1.The results show that the activation energy of deformation is connected with deformation condition,and it increases with the increase of strain rate.结果表明:形变激活能与变形条件相关,随着应变速率的增加而增加;Avrami指数m同样与变形条件有关;对实验数据进行回归分析后建立的Ti微合金钢动态再结晶的特征应变、特征应力、动力学以及稳定状态晶粒尺寸的数学模型精度较高。
3)thermal deformation activation energy热变形激活能
4)deformation activation energy热变形激活能
1.In the present study,the hot deformation activation energy is 190 kJ/mol and the st.2,其热变形激活能Q为190kJ/mol。
2.In the present study,the hot deformation activation energy is 183kJ·mol-1 and the stress exponent is 5 during the hot compression deformation of AZ80 magnesium alloy.本实验条件下,AZ80镁合金热压缩变形时的应力指数n为5,其热变形激活能Q为183 kJ。
3.The hot deformation activation energy of TiB2/6351 composites during hot deformation is 170.33,其热变形激活能Q为170。
5)activation energy热变形激活能
1.The hot deformation activation energy Q of SAE9310 steel is 416.1~10 s-1范围内,试验钢均会发生动态完全再结晶;测得9310钢的热变形激活能Q值为416。
2.The hot deformation activation energy Q of AF1410 steel is 430.当变形速率为10s-1时,其变形温度高于1373K,才会发生完全动态再结晶;AF1410钢的热变形激活能Q值为430。
6)thermally activated deformation热激活变形
1.The thermally activated deformation and dynamic strain aging(DSA)of Zr-4 were investigated by stress relaxation experiments in a broad temperature range.采用应力松弛实验研究了Zr-4合金的热激活变形与动态应变时效现象。
英文短句/例句

1.Relationship Between Hot Activation Forming Behavior and Phenomenological Constitutive of 7075 Aluminum Alloy7075铝合金的热激活变形行为与唯象本构关系
2.THERMALLY ACTIVATED DEFORMATION AND DYNAMIC STRAIN AGING OF Zr-4 ALLOY DURING STRESS RELAXATIONZr-4合金应力松弛过程中的热激活变形与动态应变时效
3.Effect of Heat Stress on NO and NOS Levels in the Serum of Dairy Cows热应激奶牛血清NO浓度和NOS活力的变化
4.Study on the Cold-Hot Deformation and Laser Thermal Fatigue of IN718 and 1100 Aluminum Alloy;IN718和1100铝合金冷热变形及激光热疲劳研究
5.Research on Laser Bending Mechanism and Forming Process Plan for 3D Curved Plates;激光热变形机理及复杂曲面板材热成形工艺规划研究
6.Design of MEMS Deformable Micro-Mirror for Compensating Thermally Induced Aberration of Laser Diode-Pumped Solid-State Laser用于激光二极管抽运固体激光器热畸变补偿的MEMS微变形镜设计
7.Synthesis of Nano TiC Powder by Mechanical Activation Assisted Carbothermal Reduction and Phase Evolution机械激活-碳热还原合成纳米TiC粉末及相演变
8.Study of diffusion energy of strain quantum well with thermal annealing热退火中应变量子阱的扩散激活能的研究
9.Study of Temperature Distribution and Deformation of the End-face in End-Pumped DPL端面抽运激光晶体热形变及温度场分布研究
10.Study on Thermal Deformation in High Energy Laser and Transmission System高能激光器及其发射系统的热变形研究
11.The Research on Thermal Deformation Measurement for Mechanical Part by Laser Speckle Pattern Interferometry;激光散斑干涉法测量机械零件热变形的研究
12.Effect of Thermal Deformation on the Laser Mode Distribution of Plano-Concave Resonator with A Gaussian-Reflectivity Mirror腔镜热变形对高斯镜平凹腔激光场模式的影响
13.Weld whose heat resource is the laser, also owns the advantage such as low heat input and small heat deform.以激光为热源的焊接同样也可以得到低热输入、变形量极少的效果。
14.Finite Element Analysis of the Welding Temperature Profiles and Thermal Distortion in Laser +GMAW Hybrid Welding Process;激光+GMAW复合热源焊接温度场和热变形的有限元分析
15.heat settability热定形性,热变定性
16.Study on Morphology Change and Apoptosis of Human Endothelial Cells under Heat Shock;热刺激条件下血管内皮细胞的形态变化及凋亡研究
17.Research on Laser Spot Welding and Numerical Simulation of Thermal Distortion about Fibre Coupler;光纤耦合器激光点焊研究及其热变形的数值模拟
18.Simplified Method for Thermal Distortion of End-Pumped Laser Crystal with Circular Cross-Section端面抽运圆截面激光晶体热变形量的简便求解方法
相关短句/例句

activation energy of deformation形变激活能
1.The results show that the activation energy of deformation is connected with deformation condition,and it increases with the increase of strain rate.结果表明:形变激活能与变形条件相关,随着应变速率的增加而增加;Avrami指数m同样与变形条件有关;对实验数据进行回归分析后建立的Ti微合金钢动态再结晶的特征应变、特征应力、动力学以及稳定状态晶粒尺寸的数学模型精度较高。
3)thermal deformation activation energy热变形激活能
4)deformation activation energy热变形激活能
1.In the present study,the hot deformation activation energy is 190 kJ/mol and the st.2,其热变形激活能Q为190kJ/mol。
2.In the present study,the hot deformation activation energy is 183kJ·mol-1 and the stress exponent is 5 during the hot compression deformation of AZ80 magnesium alloy.本实验条件下,AZ80镁合金热压缩变形时的应力指数n为5,其热变形激活能Q为183 kJ。
3.The hot deformation activation energy of TiB2/6351 composites during hot deformation is 170.33,其热变形激活能Q为170。
5)activation energy热变形激活能
1.The hot deformation activation energy Q of SAE9310 steel is 416.1~10 s-1范围内,试验钢均会发生动态完全再结晶;测得9310钢的热变形激活能Q值为416。
2.The hot deformation activation energy Q of AF1410 steel is 430.当变形速率为10s-1时,其变形温度高于1373K,才会发生完全动态再结晶;AF1410钢的热变形激活能Q值为430。
6)thermally activated deformation热激活变形
1.The thermally activated deformation and dynamic strain aging(DSA)of Zr-4 were investigated by stress relaxation experiments in a broad temperature range.采用应力松弛实验研究了Zr-4合金的热激活变形与动态应变时效现象。
延伸阅读

大坝内部变形观测(见水工建筑物变形观测)大坝内部变形观测(见水工建筑物变形观测)  daba neibubianxing guanCe大坝内部变形观测见水工建筑物变形观测。