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3Cr2W8V铝挤压模角裂失效分析 被引量:1
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作者 汪凌云 刘静安 曹登驹 《铝加工》 CAS 1990年第3期1-5,11,共6页
一、前言根据热挤压工作条件,制造铝合金热挤压模具应能满足以下要求:足够的高温强度和硬度;高的抗回火稳定性;抗高温氧化性;热耐磨性;足够的韧性,良好的淬透性;低的膨胀系数和良好的导热性。以前,在我国的铝加工行业普遍采用的模具材料... 一、前言根据热挤压工作条件,制造铝合金热挤压模具应能满足以下要求:足够的高温强度和硬度;高的抗回火稳定性;抗高温氧化性;热耐磨性;足够的韧性,良好的淬透性;低的膨胀系数和良好的导热性。以前,在我国的铝加工行业普遍采用的模具材料是3Cr2W8V钢。在生产中,模具失效主要有三种方式:裂纹、磨损和变形。裂纹尤以平模角裂表现最为严重。在某厂。 展开更多
关键词 挤压模角 r2W8V 失效分析 抗高温氧化性 回火稳定性 挤压 断口分析 残余奥氏体
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大长径比管坯挤压工艺数值模拟及试制
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作者 刘海江 雷丙旺 +4 位作者 胡永平 涂明金 任胜利 李媛媛 郭转云 《塑性工程学报》 CAS CSCD 北大核心 2023年第12期24-30,共7页
采用Deform-2D有限元软件对大长径比管坯挤压试制工艺进行了数值模拟。根据挤压模和挤压模套构建的不同挤压模角(入口锥角2α)与坯料不同的加热工艺参数组合建立模拟仿真模型,研究挤压过程中制品的温度场和速度场的分布规律,优化金属坯... 采用Deform-2D有限元软件对大长径比管坯挤压试制工艺进行了数值模拟。根据挤压模和挤压模套构建的不同挤压模角(入口锥角2α)与坯料不同的加热工艺参数组合建立模拟仿真模型,研究挤压过程中制品的温度场和速度场的分布规律,优化金属坯料挤压“死区”。数值模拟结果表明,随挤压模角的增加(100°、140°、180°),金属流经挤压模变形区P1、P2、P4、P5和P6点的速度波动范围从30~90 mm·s^(-1)扩大至5~150 mm·s^(-1);通过合理选择模角、提升金属流动均匀性、将挤压载荷控制在合理范围可以有效控制产品表面质量。在3.6×10^(4)t黑色金属垂直挤压机上一次性挤压试制成功,试制生产情况与模拟结果一致,经检测试件性能显著提高,材料利用率提升27%。 展开更多
关键词 挤压 挤压模角 大长径比 挤压
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Large-scale manufacturing of aluminum alloy plate extruded from subsize billet by new porthole-equal channel angular processing technique 被引量:2
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作者 石磊 杨合 +2 位作者 郭良刚 党利 张君 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第5期1521-1530,共10页
To manufacture plate by the combination of equal channel angular processing (ECAP) and porthole die extrusion techniques, a novel technique, namely portholes-equal channel angular processing (P-ECAP), was studied.... To manufacture plate by the combination of equal channel angular processing (ECAP) and porthole die extrusion techniques, a novel technique, namely portholes-equal channel angular processing (P-ECAP), was studied. Extrusion of AL6005A plate used for the bullet train plate was investigated by finite element method. The relevant porthole dies involving ECAP technique in channels were designed. Dimensional changes in the scrap part of the extrudate obtained after extrusion from the P-ECAP die, with different channel angles, were predicted. Effects of the channel angle and extrusion speed on the maximum temperature of the workpiece and other field variables were evaluated. At the channel angle of 160° of P-ECAP dies, the extrudate exhibited the optimal performance and the least amount of extrudate scrap was obtained. The optimal extrusion speed was 3-5 mm/s. Moreover, with the increase in ram speed from 1 to 9 mm/s, the peak extrusion load increased by about 49% and the maximum temperature was increased by about 70 ℃. The effective strain exhibited ascending trend in the comer of the ECAP deformation zone. In the solder seam and the side of die bearing of extrudate, the maximum principal stresses were tensile stress. 展开更多
关键词 subsize billet porthole die equal channel angular processing (ECAP) EXTRUSION
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Numerical and physical simulation of new SPD method combining extrusion and equal channel angular pressing for AZ31 magnesium alloy 被引量:6
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作者 张丁非 胡红军 +2 位作者 潘复生 杨明波 张钧萍 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第3期478-483,共6页
A new serve plastic deformation(SPD) including initial forward extrusion and subsequent shearing process(ES) was proposed.The influence of the ES forming on the grain refinement of the microstructure was researched.Th... A new serve plastic deformation(SPD) including initial forward extrusion and subsequent shearing process(ES) was proposed.The influence of the ES forming on the grain refinement of the microstructure was researched.The components of ES forming die were manufactured and installed to Gleeble1500D thermo-mechanical simulator.The microstructure observations were carried out on the as-extruded rods(as-received) and ES formed rods.From the simulation results,ES forming can increase the cumulative strain enormously and the volume fraction of dynamic recrystallization.From the physical modeling results,the microstructures can be refined. 展开更多
关键词 magnesium alloy serve plastic deformation dynamic recrystallization microstructures refinement
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Severe plastic deformation of commercially pure aluminum using novel equal channel angular expansion extrusion with spherical cavity 被引量:3
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作者 Xiao-xi WANG Xiang ZHANG +2 位作者 Xin-yu JING Jun-chi YUAN Wei SONG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第10期2613-2624,共12页
Equal channel angular expansion extrusion with spherical cavity(ECAEE-SC)was introduced as a novel severe plastic deformation(SPD)technique,which is capable of imposing large plastic strain and intrinsic back-pressure... Equal channel angular expansion extrusion with spherical cavity(ECAEE-SC)was introduced as a novel severe plastic deformation(SPD)technique,which is capable of imposing large plastic strain and intrinsic back-pressure on the processed billet.The plastic deformation behaviors of commercially pure aluminum during ECAEE-SC process were investigated using finite element analysis DEFORM-3D simulation software.The material flow,the load history,the distribution of effective strain and mean stress in the billet were analyzed in comparison with conventional equal channel angular extrusion(ECAE)process.In addition,single-pass ECAEE-SC was experimentally conducted on commercially pure aluminum at room temperature for validation,and the evolution of microstructure and microhardness of as-processed material was discussed.It was shown that during the process,the material is in the ideal hydrostatic stress state and the load requirement for ECAEE-SC is much more than that for ECAE.After a single-pass ECAEE-SC,an average strain of 3.51 was accumulated in the billet with homogeneous distribution.Moreover,the microstructure was significantly refined and composed of equiaxed ultrafine grains with sub-micron size.Considerable improvement in the average microhardness of aluminum was also found,which was homogenized and increased from HV 36.61 to HV 70.20,denoting 91.75%improvement compared with that of the as-cast billet. 展开更多
关键词 severe plastic deformation equal channel angular expansion extrusion with spherical cavity(ECAEE-SC) numerical simulation strain accumulation grain refinement
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Forward hot extrusion forming process of 4-lobe aluminum alloy helical surface rotor
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作者 XIA Feng LI Hui +4 位作者 LIU Hou-gen ZHAO Bei-bei ZHANG Zhao-qiang LU Di-hua CHEN Jian-qiang 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第9期2307-2317,共11页
The 4-lobe aluminum alloy helical surface rotors are widely applied in industry,such as superchargers.Generally,the conventional manufacturing processes of aluminum alloy helical surface are time consuming and costly.... The 4-lobe aluminum alloy helical surface rotors are widely applied in industry,such as superchargers.Generally,the conventional manufacturing processes of aluminum alloy helical surface are time consuming and costly.To make the manufacturing processes more flexible and economical,the forward hot extrusion process is proposed to form the 4-lobe aluminum alloy helical surface rotors.In this work,we implement both simulations and experiments to the forming process of the helical surface,of which the material is 6063 aluminum alloy.The forward hot extrusion process is simulated with finite element method in DEFORM-3D.Based on the simulation method,the influences of different extrusion parameters,such as extrusion temperature,extrusion speed and extrusion ratio,on the extrusion process are studied.According to the numerical simulation results,the optimal case is chosen to carry out the experiment.Furthermore,the experimental results show that the surface is smooth;the toothed fill is full;the twist angle in the length direction is evenly distributed;the value of twist angle is roughly in line with the design angle,which is mainly due to the modified die structure,having a positive and significant effect on the increment of twist angle.Therefore,the twist angle has an increase of about 76%,which verifies the modified die structure. 展开更多
关键词 6063 aluminum alloy helical surface forward hot extrusion twist angle die structure
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