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Forming and Springback Prediction of Strips Under Multi-square Punch Concave Forming Process Considering Partial-unloading Effects
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作者 LIANG Qi-yu ZHANG Long ZHU Ling 《船舶力学》 EI CSCD 北大核心 2024年第12期1953-1969,共17页
To further investigate the forming mechanism and springback characteristics of strips under multi-square punch forming (MSPF) considering partial-unloading effects, a series of concave form ing tests of strips are con... To further investigate the forming mechanism and springback characteristics of strips under multi-square punch forming (MSPF) considering partial-unloading effects, a series of concave form ing tests of strips are conducted on the MSPF machine. This paper aims to reveal the physical mecha nism of the elastic-plastic deformation in the MSPF process considering the effect of the forming ap proaches, and derive appropriate mathematical interpretations. The theoretical model is firstly estab lished to analyse the concave forming mechanism and springback characteristics of the strip, and its accuracy is then validated by experimental data. The forming history and load evolutions are depicted to explore the required forming capacity through the proposed analytical method. Besides, the paramet ric studies are carried out to discuss their effects on the springback of the strip. The results suggest that the deformation paths of the strip are influenced by the forming approach, and the springback of the strip in convex forming is larger than that in concave forming. 展开更多
关键词 multi-square punch forming(MSPF) follower load elastic-plastic deformation partial unloading springback prediction
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Springback analysis of 6016 aluminum alloy sheet in hot V-shape stamping 被引量:14
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作者 MA Wei-ping WANG Bao-yu +2 位作者 XIAO Wen-chao YANG Xiao-ming KANG Yi 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第3期524-535,共12页
Springback behavior of 6016 aluminum alloy in hot stamping was investigated by a series of experiments under different conditions using V-shape dies and a finite element model which was validated reliable was used to ... Springback behavior of 6016 aluminum alloy in hot stamping was investigated by a series of experiments under different conditions using V-shape dies and a finite element model which was validated reliable was used to further elucidate the springback mechanism. The effects of initial blank temperature, blank-holding force, die closing pressure and die corner radius were studied. It is found that springback decreases remarkably as the initial blank temperature rises up to 500 °C. The springback also reduces with the increase of die holding pressure and the decrease of die corner radius. Under different initial temperatures, the influence of blank-holding force is distinct. In addition, the bending and straightening of the side wall during the stamping process is found to interpret the negative springback phenomenon. 展开更多
关键词 springback hot stamping 6016 aluminum alloy V-shape stamping
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Springback prediction of TC4 titanium alloy V-bending under hot stamping condition 被引量:8
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作者 YANG Xiao-ming DANG Li-ming +2 位作者 WANG Yao-qi ZHOU Jing WANG Bao-yu 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第9期2578-2591,共14页
In this paper,the springback of TC4 titanium alloy under hot stamping condition was studied by means of experiment and numerical analysis.Firstly,an analytical model was established to predict the V-shaped springback ... In this paper,the springback of TC4 titanium alloy under hot stamping condition was studied by means of experiment and numerical analysis.Firstly,an analytical model was established to predict the V-shaped springback angleΔαunder the stretch-bending conditions.The model took into account of blank holder force,friction,property of the material,thickness of the sheet and the neutral layer shift.Then,the influence of several process parameters on springback was studied by experiment and finite element simulation using a V-shaped stamping tool.In the hot stamping tests,the titanium alloy sheet fractured seriously at room temperature.The titanium alloy has good formability when the initial temperature of the sheet is 750–900°C.However,the springback angle of formed parts is large and decreases with increasing temperature.The springback angleΔαdecreased by 50%from 0.5°to 0.25°,and the angleΔβdecreased by 46.7%from 1.5°to 0.8°when the initial temperature of sheet increased from 750°C to 900°C.The springback angle of titanium alloy sheet increases gradually with the increase of the punch radius,because of the increase of elastic recovery,the complex distribution of stress,the length of forming region and the decreasing degree of stress.Compared with the simulation results,the analytical model can better predict the springback angleΔα. 展开更多
关键词 titanium alloy hot stamping springback FE modelling analytical model
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Springback analysis and strategy for multi-stage thin-walled parts with complex geometries 被引量:4
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作者 WANG Yao LANG Li-hui KAN Peng 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第7期1582-1593,共12页
Springback of a SUS321 complex geometry part formed by the multi-stage rigid-flexible compound process was studied through numerical simulations and laboratory experiments in this work.The sensitivity analysis was pro... Springback of a SUS321 complex geometry part formed by the multi-stage rigid-flexible compound process was studied through numerical simulations and laboratory experiments in this work.The sensitivity analysis was provided to have an insight in the effect of the evaluated process parameters.Furthermore,in order to minimize the springback problem,an accurate springback simulation model of the part was established and validated.The effects of the element size and timesteps on springback model were further investigated.Results indicate that the custom mesh size is beneficial for the springback simulation,and the four timesteps are found suited for the springback analysis for the complex geometry part.Finally,a strategy for reducing the springback by changing the geometry of the blank is proposed.The optimal blank geometry is obtained and used for manufacturing the part. 展开更多
关键词 springback model complex GEOMETRY MULTI-STAGE rigid-flexible COMPOUND process
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Effect of bending temperatures on the microstructure and springback of a TRIP steel sheet 被引量:3
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作者 Natthasak Pornputsiri Kannachai Kanlayasiri 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2020年第5期980-987,共8页
Transformation-induced plasticity(TRIP)steel possesses high strength and formability,enabling the use of a thinner gauge material and allowing for the fabrication of complex shapes.In this research,we measured the eff... Transformation-induced plasticity(TRIP)steel possesses high strength and formability,enabling the use of a thinner gauge material and allowing for the fabrication of complex shapes.In this research,we measured the effect of bending temperatures on the microstructure and air-bending springback angle of TRIP steel at temperatures from 25 to 600C.Real-time in situ X-ray diffraction and scanning electron microscopy were used for pre-and postbending analysis.As the prebending temperature increased from 25C to 600C,the retained austenite(RA)volume fraction decreased,and the RA transformed to bainite at temperatures above 400C.The springback angle was positively correlated with the prebending RA volume fraction,with the smallest springback angle achieved at 400C.Additionally,the springback angle was positively correlated with the bending angle,because the RA transformation ratio contributed to increased strain hardening.Further microstructure analysis revealed that the RA became elongated in the tension direction as the bending temperatures increased. 展开更多
关键词 TRIP steel In situ X-ray diffraction Phase transformation Bending temperature springback Air-bending test
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Thermal-mechanical and springback behavior of dual-phase steel at warm temperatures 被引量:2
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作者 LIN Qi-quan WANG Zhen-zhu +2 位作者 DONG Wen-zheng BU Gen HUANG Jin-shan 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1895-1905,共11页
For non-quenchable dual-phase(DP)steel sheet,the warm forming process can effectively reduce the amount of springback,and the mechanical parameters that influence its elastic and inelastic recovery to decrease exhibit... For non-quenchable dual-phase(DP)steel sheet,the warm forming process can effectively reduce the amount of springback,and the mechanical parameters that influence its elastic and inelastic recovery to decrease exhibit a strong temperature dependence,especially under cyclic loading conditions.In this paper,the monotonic and cyclic loading tests of DP980 steel sheets are conducted at the temperatures ranging from 25℃ to 500℃.The temperature-dependent flow stress,nonlinear elastic recovery,and Bauschinger effect are investigated.The results demonstrate that both the elastic modulus and Bauschinger effect show an exponential law with pre-strain,and decrease with the increase of forming temperature,while there will be an abnormal phenomenon of rebound due to the influence of dynamic strain aging effect.Meanwhile,a linear relationship between the Bauschinger effect and inelastic strain is observed at various temperatures,and the weight of the Bauschinger effect in the total strain reduces with temperature increasing,which indicates that the springback is dominated by linear elastic recovery.Furthermore,the U-draw bending tests are carried out to clarify the influence of Vickers hardness distribution and martensite size effect on the springback behavior. 展开更多
关键词 warm forming dual-phase steel springback behavior nonlinear elastic recovery Bauschinger effect
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Improvement of springback prediction of wide sheet metal air bending process
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作者 李建 赵军 +1 位作者 孙红磊 马瑞 《Journal of Central South University》 SCIE EI CAS 2008年第S2期310-315,共6页
Accurate springback prediction of wide sheet metal air bending process is important to improve product quality and ensure the precision in dimension. The definition of elastic limit bend angle was proposed. Based on c... Accurate springback prediction of wide sheet metal air bending process is important to improve product quality and ensure the precision in dimension. The definition of elastic limit bend angle was proposed. Based on cantilever beam elastic deforming theory, the geometrical parameters of forming tools, sheet thickness and the material yielding strain were derived and validated by the finite element method (FEM). Employing the degree of elastic limit bend angle, the equation for springback prediction was constructed, the results calculated fit well with experimental data. Especially for the small bend angle, the predicted results by equation were applied to conduct the springback prediction and compensation in industries and give closer correlation to the experimental data than those calculated by engineering theory of plastic bending. 展开更多
关键词 ELASTIC LIMIT BEND ANGLE springback prediction ELASTIC recovery FINITE element method
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右后柱加强板拉深成形优化预测模型的建立 被引量:4
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作者 赵磊 刘克素 +2 位作者 冯玉慈 刘全坤 王成勇 《合肥工业大学学报(自然科学版)》 CAS CSCD 北大核心 2011年第7期1001-1006,共6页
拉深是板料冲压成形的关键工艺,也是最复杂的成形工艺之一。文章将正交试验、人工神经网络和遗传算法结合起来,对板料的成形工艺参数进行优化,建立板料成形工艺参数的优化设计模型,并利用该优化模型最终获得满意的厚度最大变薄率和回弹量。
关键词 拉深 正交试验 人工神经网络 遗传算法 回弹量
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304不锈钢O形环回弹量的预测模型研究 被引量:4
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作者 陈洪军 蔡力勋 《机械强度》 CAS CSCD 北大核心 2009年第3期443-447,共5页
对304不锈钢多种截面尺寸的O形环短管试样进行多级压扁回弹试验及O形环力学行为的有限元分析。根据量纲分析原理,确定影响回弹量的五个独立变量。发现压缩比在4%至21%之间时压缩比与回弹比及几何构型参量与回弹比之间的线性律,在此基础... 对304不锈钢多种截面尺寸的O形环短管试样进行多级压扁回弹试验及O形环力学行为的有限元分析。根据量纲分析原理,确定影响回弹量的五个独立变量。发现压缩比在4%至21%之间时压缩比与回弹比及几何构型参量与回弹比之间的线性律,在此基础上提出基于几何效应的TSM-Ⅰ和TSM-Ⅱ回弹量预测模型,由试验结果及有限元结果确定304不锈钢的TSM-Ⅰ和TSM-Ⅱ回弹量预测模型参数,两类模型均有较高预测精度。 展开更多
关键词 304不锈钢 O形环 回弹量 预测模型 塑性 量纲分析 接触分析
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柔性石墨密封环压缩回弹特性试验研究与公式拟合 被引量:3
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作者 赵亚飞 王旭东 +2 位作者 励行根 李征 李炎军 《推进技术》 EI CAS CSCD 北大核心 2023年第8期176-181,共6页
为了获得柔性石墨密封环的压力与变形的通用关联关系公式,搭建了柔性石墨密封性能试验台,对三种不同尺寸的柔性石墨环进行了压力变形试验。通过对试验数据的分析,获得了柔性石墨环的压缩回弹特性规律。研究结果表明,截面尺寸对柔性石墨... 为了获得柔性石墨密封环的压力与变形的通用关联关系公式,搭建了柔性石墨密封性能试验台,对三种不同尺寸的柔性石墨环进行了压力变形试验。通过对试验数据的分析,获得了柔性石墨环的压缩回弹特性规律。研究结果表明,截面尺寸对柔性石墨密封环的压缩回弹性能影响较大,公称内径的影响几乎可以忽略。通过对试验数据进行拟合,建立了柔性石墨环结构参数与压力、变形等多参数之间的关联关系公式,并得到了验证。 展开更多
关键词 柔性石墨 试验研究 压缩量 回弹量 结构参数 公式拟合
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φ12.2 m×11.0 m大型磨机法兰弯曲成形工艺的研究
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作者 孙统辉 张瑞华 张鹏豪 《热加工工艺》 北大核心 2023年第11期163-166,共4页
对特大型磨机法兰弯曲的模具结构、工艺性进行了对比分析。通过调节支撑轮间距和限位支撑高度可以实现不同曲率半径的法兰弯曲。试制中发现上模中心与坯料表面在弯曲过程中有逐步分离现象,由三点弯曲演变为四点弯曲是造成弯曲法兰最终... 对特大型磨机法兰弯曲的模具结构、工艺性进行了对比分析。通过调节支撑轮间距和限位支撑高度可以实现不同曲率半径的法兰弯曲。试制中发现上模中心与坯料表面在弯曲过程中有逐步分离现象,由三点弯曲演变为四点弯曲是造成弯曲法兰最终曲率半径偏差较大的根本原因;压下量的确定必须考虑回弹量和上模分离间隙等关键参数,对理论值必须进行补偿修正。 展开更多
关键词 法兰 弯曲 回弹量 压下量
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拉伸量对拉弯成形回弹的影响机理
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作者 韩飞 户全超 徐根 《塑性工程学报》 CAS CSCD 北大核心 2022年第12期20-26,共7页
针对不锈钢型材拉弯,基于ABAQUS软件研究了拉伸量和不同拉伸量分配方式对回弹的影响机理。首先,通过仿真实验,分析了不同拉伸量下卸载前后圆弧截面上应力的分布情况。然后,在拉伸量相同的条件下,对4种拉伸量分配方式下的回弹差异进行了... 针对不锈钢型材拉弯,基于ABAQUS软件研究了拉伸量和不同拉伸量分配方式对回弹的影响机理。首先,通过仿真实验,分析了不同拉伸量下卸载前后圆弧截面上应力的分布情况。然后,在拉伸量相同的条件下,对4种拉伸量分配方式下的回弹差异进行了机理分析。结果表明,随着拉伸量增加,截面上应力分布差值逐渐减小,从而使回弹量减小,且卸载后残余应力减小。在拉伸量相同时,不同分配方式导致截面上产生不同程度的塑性变形,从而使回弹产生差异。当拉伸量为3%时,截面未完全进入塑性拉伸变形,此时4种拉伸量分配方式中前期分配拉伸量较小的线性递增产生的回弹最小。当拉伸量为5%时,截面完全进入塑性拉伸变形,此时前期分配拉伸量较大的均匀拉伸产生的回弹最小。 展开更多
关键词 拉弯成形 回弹 分配方式 数值模拟 拉伸量
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