Flow Stress
- 网络流动应力
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Research on flow stress model of high carbon steel
高碳钢的流动应力模型研究
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A Influence of the Metal Flow Stress Model to FEM Numerical Simulation
金属材料流动应力模型对有限元仿真结果的影响
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The steady flow stress equations were established by regression analysis .
通过回归分析,建立了该合金高温塑性变形时稳态流变应力的半经验方程。
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Analysis and Modeling of Flow Stress of 40 Cr Steel
40Cr钢流变应力的分析及模拟
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Prediction of Flow Stress for Low-Carbon Steel in Low Temperature Region
低碳钢低温区流变应力的预测
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Analysis on Factors of Flow Stress of Aluminum Alloy during Hot Compression
热压缩铝合金LY12流变应力的影响因素分析
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The flow stress was strongly influence by the grain size .
晶粒尺寸强烈影响合金的强度。
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However the high temperature and flow stress make the hot working very difficult .
而钛合金热变形温度高、流动应力大,给钛合金热加工带来很大困难。
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Uniform flow stress stability , low speed when the more obvious ;
流量均匀压力稳定,低转速时更为明显;
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The Numerical Simulation of Decreasing Flow Stress Scale Effect
流动应力下降尺度效应的数值模拟
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The flow stress decreased with the decrease of density .
此外,塑性流动应力随着密度的降低而下降。
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An Mathematical Model of Flow Stress for Hot Strip Mill
热轧碳钢流动应力的数学模型
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Statistical Model for Calculating Flow Stress of Material
计算流动应力的一种生产统计模型
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Flow Stress Characteristics and Constitutive Equation at High Temperature for 7050 Aluminum Alloy
铝合金7050高温流变应力特征及本构方程
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A Study of the Distribution of Flow Stress of 20 ~ # Carbon Steel Pipe
20~碳钢管道流变应力不确定性分布的试验研究
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All parameters used in the flow stress models were calculated based on the testing data .
采用建立的流动应力模型计算实验条件下的流动应力,计算结果与实验结果吻合较好。
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And the flow stress decreased with increasing temperature and decreasing strain rate .
流变应力随温度的升高和应变速率的减小而急剧降低;
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The flow stress of alloy structural steels at high temperature and high strain rate
高温高速下合金结构钢流动应力研究
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Prediction of metal flow stress by neural network
基于神经网络的金属变形抗力预测
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Study on the Mathematical Model of Flow Stress of Nonferrous under Cold forming
有色金属冷变形流动应力的数学模型
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Prediction of Material Flow Stress in Warm Forging with BP Neural Network
利用BP神经网络预测材料温锻流动应力
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The influence of temperature and strain rate on the flow stress of tantalum
温度与应变率对钽流动应力的影响
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Study on Al-Fe-V-Si alloys high temperature deformation and flow stress
Al-Fe-V-Si耐热铝合金高温形变及流变应力研究
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The flow stress drop increases with temperature decreasing or strain rate increasing .
高应变速率(10s~(-1))时易发生不连续屈服现象,应变速率和温度越高,峰值流动应力下降幅度越大。
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The pivotal factor of predicting rolling force is flow stress .
影响轧制力的主要因素是材料的流动应力。
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Behavior of Flow Stress of 2091 Al Li alloy During Hot Compression
热压缩2091Al-Li合金的流变应力行为
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Flow Stress Behavior and Dynamic Recrystallization of 3104 Aluminum Alloy
3104铝合金的流变应力行为与动态再结晶
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The flow stress increased with increasing strain rates and decreased with increasing temperature .
结果表明:7050铝合金热压缩变形中发生了明显的动态回复与动态再结晶,流变应力随应变速率的增加而增加,随温度的增加而降低;
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Flow Stress Prediction With Dynamic BP Networks and Mathematical Models in Hot Rolling
运用动态BP网络和数学模型预测热轧变形抗力
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Feature of Flow Stress of 2519 Aluminum Alloy During Hot Compressive Deformation
热压缩2519铝合金流变应力特征