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Prediction of Hot Deformation Behavior of 7Mo Super Austenitic Stainless Steel Based on Back Propagation Neural Network
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作者 WANG Fan WANG Xitao +1 位作者 XU Shiguang HE Jinshan 《材料导报》 EI CAS CSCD 北大核心 2024年第17期165-171,共7页
The hot compression tests of 7Mo super austenitic stainless(SASS)were conducted to obtain flow curves at the temperature of 1000-1200℃and strain rate of 0.001 s^(-1)to 1 s^(-1).To predict the non-linear hot deformati... The hot compression tests of 7Mo super austenitic stainless(SASS)were conducted to obtain flow curves at the temperature of 1000-1200℃and strain rate of 0.001 s^(-1)to 1 s^(-1).To predict the non-linear hot deformation behaviors of the steel,back propagation-artificial neural network(BP-ANN)with 16×8×8 hidden layer neurons was proposed.The predictability of the ANN model is evaluated according to the distribution of mean absolute error(MAE)and relative error.The relative error of 85%data for the BP-ANN model is among±5%while only 42.5%data predicted by the Arrhenius constitutive equation is in this range.Especially,at high strain rate and low temperature,the MAE of the ANN model is 2.49%,which has decreases for 18.78%,compared with conventional Arrhenius constitutive equation. 展开更多
关键词 7Mo super austenitic stainless steel hot deformation behavior flow stress BP-ANN Arrhenius constitutive equation
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低温下(-213℃)补偿机构的设计 被引量:1
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作者 李冬冬 胡明勇 +1 位作者 吴海燕 赵金标 《红外技术》 CSCD 北大核心 2016年第8期659-665,共7页
为了满足光学平台在低温下(-213℃)的光学设计稳定性要求,本文设计了一种温度补偿结构,基于材料热膨胀系数随温度变化的原理对该结构进行了理论计算和实验验证。该结构通过控制螺栓的预紧力保证连接件可靠,并使殷钢板在低温下处于自由... 为了满足光学平台在低温下(-213℃)的光学设计稳定性要求,本文设计了一种温度补偿结构,基于材料热膨胀系数随温度变化的原理对该结构进行了理论计算和实验验证。该结构通过控制螺栓的预紧力保证连接件可靠,并使殷钢板在低温下处于自由伸缩状态;并利用在低温下因瓦合金变形极小补偿不锈钢变形带来的误差。其光学系统的在低温下的指标RMS≤?/10,?=632.8 nm。理论表明,在低温下因瓦合金的最大变形量为0.24884 mm,不锈钢的最大变形量为2.910 mm;实验结果表明:在常温和低温下用干涉仪测得的光学系统的面形精度分别为RMS=?/13、RMS=?/12,?=632.8 nm。在低温下能较好满足光学设计稳定性要求。 展开更多
关键词 低温(-213℃) 光学设计稳定性 温度补偿 不锈钢变形 螺栓预紧力 热膨胀系数
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Deformation behaviors of 21-6-9 stainless steel tube numerical control bending under different friction conditions 被引量:10
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作者 方军 鲁世强 +1 位作者 王克鲁 姚正军 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期2864-2874,共11页
For contact dominated numerical control(NC) bending process of tube, the effect of friction on bending deformation behaviors should be focused on to achieve precision bending forming. A three dimensional(3D) elastic-p... For contact dominated numerical control(NC) bending process of tube, the effect of friction on bending deformation behaviors should be focused on to achieve precision bending forming. A three dimensional(3D) elastic-plastic finite element(FE) model of NC bending process was established under ABAQUS/Explicit platform, and its reliability was validated by the experiment. Then, numerical study on bending deformation behaviors under different frictions between tube and various dies was explored from multiple aspects such as wrinkling, wall thickness change and cross section deformation. The results show that the large friction of wiper die-tube reduces the wrinkling wave ratio η and cross section deformation degree ΔD and increases the wall thinning degree Δt. The large friction of mandrel-tube causes large η, Δt and ΔD, and the onset of wrinkling near clamp die. The large friction of pressure die-tube reduces Δt and ΔD, and the friction on this interface has little effect on η. The large friction of bending die-tube reduces η and ΔD, and the friction on this interface has little effect on Δt. The reasonable friction coefficients on wiper die-tube, mandrel-tube, pressure die-tube and bending die-tube of 21-6-9(0Cr21Ni6Mn9N) stainless steel tube in NC bending are 0.05-0.15, 0.05-0.15, 0.25-0.35 and 0.25-0.35, respectively. The results can provide a guideline for applying the friction conditions to establish the robust bending environment for stable and precise bending deformation of tube bending. 展开更多
关键词 21-6-9 stainless steel tube FRICTION deformation behaviors numerical control bending finite element simulation
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