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1.
研究了挤压温度和挤压比对Ti-6Al-4V钛合金挤压型材显微组织、织构及力学性能的影响.挤压温度在相变点Tβ以上150~350℃、挤压比λ为25~85范围内时,型材动态再结晶均已完成,形成均匀的魏氏组织.型材的晶粒随挤压温度的降低和挤压比的提高而细化.型材织构在挤压比较低(λ=25)时强度较弱且为随机分布;当挤压比增加时,织构增强并有形成(1219)面纤维织构的趋势;当挤压比提高至85时,形成完整的(1219)面纤维织构.由于织构与晶粒细化的共同作用,使不同挤压条件下得到的Ti-6Al-4V钛合金型材综合力学性能比较稳定,即强度差异均不大于35 MPa,且延伸率和断面收缩率差值均不超过3%.  相似文献   

2.
挤压变形对AZ31镁合金组织和性能的影响   总被引:35,自引:0,他引:35  
采用500T挤压机试验研究了挤压变形对AZ31镁合金组织和性能的影响。结果表明,挤压变形AZ31镁合金组织以绝热剪切条纹和细小的α再结晶等轴晶为基本特征。挤压变形可显著地细化镁合金晶粒并提高镁合金的力学性能。随挤压比的增大,晶粒细化程度增加,晶粒尺寸由铸态的d400μm减小到挤压态的d12μm(min);强度、硬度随挤压比的增大而增大,延伸率在挤压比大于16时呈单调减的趋势。  相似文献   

3.
采用先进电子背散射衍射(EBSD)技术,深入研究了冷轧工艺变化和道次间退火处理对工业纯钛板材微观组织和织构演变的影响规律。通过对比不同一次冷轧变形量样品经退火和二次冷轧加工后的EBSD取向分布图、取向差角分布图和极图得知,一次冷轧产生的孪晶对退火再结晶晶粒尺寸及晶粒取向(织构)产生重要的影响,进而又影响二次冷轧的变形组织和织构特征,使二次冷轧变形孪晶的生成受到一定程度的抑制,孪晶分数随着轧制变形量的提高呈现先升高后降低的规律,同时会降低二次冷轧组织中{0001}基面织构组分。  相似文献   

4.
通过楔形铸坯直接轧制和带有中间坯补热工序的大道次变形量热轧实验,研究了铸坯直接轧制、大道次变形量以及中间坯补热工序对奥氏体组织演变的影响,并与常规热轧工艺进行了对比.结果表明:随铸坯压下率增加,变形后奥氏体晶粒尺寸逐渐细化.与铸坯再加热轧制工艺相比,当压下率为48%,53.6%和66.7%时,铸坯直接轧制工艺的奥氏体晶粒较为粗大,压下率为72.3%时,其变形组织更为细小均匀.与常规工艺相比,粗轧阶段大道次变形量促进奥氏体再结晶;中间坯补热工序提高了奥氏体晶粒尺寸均匀化程度.  相似文献   

5.
镁合金作为轻金属材料的代表,在电子、交通和航空航天等领域有着广阔的应用前景。然而镁合金仍存在强度低、延展性差和耐蚀性差等缺点,改善镁合金的强塑性已成为拓宽镁合金在工业应用的中的首要问题。本文利用超声辅助半固态搅拌法成功制备了TiC纳米颗粒增强低合金化Mg–2Zn–0.8Sr–0.2Ca基复合材料,并且对铸态复合材料进行热挤压变形,系统研究了挤压对其显微组织及力学性能的影响。结果表明,在较低的挤压温度或挤压速率下,复合材料动态再结晶的体积分数和再结晶晶粒尺寸有所降低。挤压条件为200°C, 0.1 mm/s时,复合材料中出现了晶粒尺寸约0.3 μm的细晶组织。挤压后的复合材料呈现强基面织构,当挤压温度从200℃增加到240℃时,基面织构强度随之增加。挤压条件为200°C,0.1 mm/s时复合材料的抗拉强度达480.2 MPa,屈服强度为462 MPa。对其强化机制进行理论计算表明相比与其他强化机制,细晶强化对强度的贡献最大。通过分析三种挤压后的纳米复合材料断裂行为,表明其断裂方式为韧脆混合型断裂。  相似文献   

6.
通过对型材微观组织的观察及维氏硬度、晶间腐蚀和剥落腐蚀等的测试,研究了退火温度对5A06挤压型材组织及性能的影响。结果表明,随着退火温度的升高,晶粒发生了回复、再结晶和晶粒长大三个阶段。当退火温度达到175 ℃时,型材发生低温回复,硬度变化不大,耐蚀性较差;在225~325 ℃退火,型材发生完全再结晶,硬度变化较明显,耐蚀性得到改善;当退火温度高于325 ℃时,晶粒长大,硬度略降低,耐蚀性变差。结合5A06挤压型材组织及性能研究可知,确定退火温度为225~325 ℃。  相似文献   

7.
Q550D超低碳贝氏体钢的微观组织模拟   总被引:1,自引:1,他引:0  
摘要: 利用Q550D超低碳贝氏体钢的热压缩试验数据建立了动态再结晶模型及元胞自动机模型,通过有限元软件DEFORM 3D对试样热变形过程的微观组织演变过程进行了模拟.结果表明:在变形温度为1 150 °C条件下,当应变速率为0.05 s-1时,热变形过程中的试样微观组织发生了动态再结晶现象,晶粒尺寸得到细化;在变形温度为1 050 °C条件下,当应变速率不断增大时,奥氏体动态再结晶的晶粒尺寸减小;模拟结果与试验结果较吻合.  相似文献   

8.
采用不同异速比对AZ31镁合金板材进行异步轧制,并将轧后样品进行显微组织和X射线衍射分析,研究异速比对镁合金板材组织和织构转变的影响. 结果表明:异速比的变化对晶粒形貌影响较大但晶粒细化效果不明显;当异速比为2.800时,板材内出现了长条晶粒;快速辊侧{0002}基面织构强度高于慢速辊侧,且板材两侧表面{0002}晶面的偏转方向相反;异速比对基面织构的强度影响显著,随着异速比的增大,基面织构的强度先增加后下降. 这种特殊的织构变化与异步轧制过程中沿厚度方向引入的剪切变形有关.  相似文献   

9.
对AZ31镁合金进行多道次等径角轧制,并分析其微观组织、宏观织构和室温力学性能.结果表明,随着轧制道次的增加,板材的晶粒组织出现交替细化与粗化的现象,并直接影响板材后续退火组织的大小和均匀性.由于累积剪切变形的作用,等径角轧制后板材的基面织构明显弱化.七道次等径角轧制后基面极轴出现沿轧向分离,板材屈服强度降低约54%,而伸长率提高约43%.基面织构弱化和晶粒细化是等径角轧制板材塑性提高的主要原因.  相似文献   

10.
采用光学显微镜、扫描电子显微镜(scanning electron microscope,SEM)、能谱仪(energy dispersive spectrometer,EDS)、电子万能实验机等测试分析手段,研究了不同微量元素对汽车防撞梁挤压型材组织、强度及弯曲性能的影响。研究结果表明:1#试样中Mn的质量分数为0.50%~0.60%、Fe的质量分数为0.16%,其受拉应力侧再结晶层厚度为110.52 μm,基体中粗大杂质相尺寸最大,亚微米级相最少,弯曲后试样断裂;2#试样中Mn的质量分数为0.40%~0.50%、Fe的质量分数为0.20%,其为再结晶组织,弯曲后型材表面产生严重橘皮后开裂;3#试样中Mn的质量分数为0.60%~0.70%,Fe的质量分数为0.11%,其受拉应力侧无再结晶层,杂质相尺寸最小、亚微米级相最多,弯曲后型材表面光滑,未产生开裂。EDS结果显示,合金基体中的杂质相主要为硬脆的AlFeMnSi和富Si初生相。  相似文献   

11.
通过对6005A合金铸锭均匀化制度和挤压工模具结构进行调整,来改善挤压制品的晶粒组织结构,进而达到提高6005A铝合金汽车梁挤压制品的力学性能及稳定性的目的。试验结果表明,适当调整铸锭均匀化制度以及减少模具工作带长度,对减轻挤压制品再结晶层厚度有明显作用,即当铸锭均匀化制度调整到510 ℃、保温6 h,降低模具工作带长度至3 mm时,可明显降低挤压型材制品再结晶层厚度,使型材组织更加均匀细小。型材T6状态下屈服强度由274 MPa提升到298 MPa,抗拉强度由291 MPa提升到313 MPa,断后伸长率则由9%提升到15%,达到稳定辊弯加工成形性的目的。  相似文献   

12.
采用铸锭冶金工艺,制备不同钪含量的Al-Cu-Mg-Ag合金.通过金相显微镜、扫描电镜、透射电镜、晶间腐蚀及剥落腐蚀等实验方法,研究钪对Al-5.3Cu-0.8Mg-0.6Ag合金的组织和腐蚀性能影响.结果表明:添加0.3%~0.5% Sc可明显细化铸态合金的晶粒,平均晶粒尺寸从300 μm降低到60 μm,而添加0.1%~0.3% Sc有助于提高挤压态合金抗腐蚀性能.但当添加0.5% Sc时,合金中形成粗大的Al3(Sc, Zr)稀土化合物相,导致合金的抗蚀性能降低.  相似文献   

13.
In this study, effects of initial orientation on microstructure evolution and mechanical properties of AZ31 Mg alloy sheets via accumulated extrusion bonding(AEB) was systematically studied. The samples with RD and TD parallel to extrusion direction(ED) were labeled as RED and TED, respectively. RD and TD pieces alternately stacked was named as RTED. The results revealed that under three-dimensional compressive stress, {10-12} tensile twinning dominated the first stage deformation in container. ...  相似文献   

14.
The as-cast Mg–6Li–4Zn-xMn alloys were prepared and extruded at 280 ​°C with an extrusion ratio of 25:1. The effects of Mn content on the microstructure and mechanical properties of Mg–6Li–4Zn-xMn alloys were investigated in this study. The XRD results show that Mg–6Li–4Zn–xMn alloys consisted of α-Mg (hcp) ​+ ​β-Li (bcc) duplex structured matrix, MgLi2Zn and Mn phases. The grains of the extruded Mg–6Li–4Zn–xMn alloys were refined by dynamic recrystallization during the extrusion process. The EBSD results show that the extruded alloys had basal textures. The grain size of the extruded alloys decreased while the basal texture was strengthened with the increasing Mn addition. The TEM results show that a large amount of nanoscale Mn precipitates existed in the extruded Mg–6Li–4Zn–1.2Mn alloy, which can effectively inhibit the dynamic recrystallized (DRXed) grains growth during the hot extrusion and is beneficial to the improvement of mechanical properties. Mg–6Li–4Zn–1.2Mn alloy in this research possesses the best mechanical properties with the ultimate tensile strength and yield strength of 321 ​MPa, 250 ​MPa, respectively.  相似文献   

15.
Microstructure,texture and mechanical properties of Mg-5 Zn-0.3 Y-0.2 Ce alloys with the addition of trace xCa(x=0,0.3,0.6 wt%) were systematically investigated in this work.The results revealed that more secondary eutectic phases and smaller grain size of as-cast microstructure could be found with increasing Ca content.After hot extrusion,the Ca-free alloy showed a uniformly recrystallized grain structure,while the Ca-containing alloys possessed a bimodal grain structure composed of fine dynamic recrystallized(DRXed) grains with a size of several microns and un-recrystallized coarse grains.EBSD analysis showed that the three extruded alloys had a fiber texture of(0001) basal plane aligned with the extrusion direction.Texture intensity of the DRXed region was weaker than the deformed region.The extruded alloy with the addition of 0.6 wt% Ca exhibited the highest yield strength of 321 MPa due to the smallest DRXed grain size,the deformed region with strong basal texture and dense nanosized precipitates.  相似文献   

16.
Texture evolution in extruded and hot-rolled Al-Mg-Li aeronautical alloys during in-situ tension was investigated by using electron backscattered diffraction (EBSD). A field emission scanning electron microscope (FE-SEM) and a MICROTEST-5000 tensile stage were used to carry out in-situ tension tests and observations. The crystallographic texture of the extruded sample changed from weak cube texture {001}〈100〉 to texture {018}〈081〉 during tension fracture. However, strong Brass {110}〈112〉 in the hot-rolled sample was modified into a mixture texture component of Brass {110}〈112〉 and S {123}〈634〉 during tension fracture. Texture evolution in the two samples during tension can be explained by the rotation of grain orientation.  相似文献   

17.
热变形对超高强度管线钢组织及变形抗力的影响   总被引:2,自引:0,他引:2  
运用光学显微镜和电子显微镜对不同热变形条件下组织、析出相进行观察与分析.研究结果表明:在1020℃奥氏体再结晶区轧制时,Nb,Ti以复相形式诱导析出,对组织细化产生一定影响.在保证积累压下量不变的情况下,奥氏体未再结晶区采用大压下量、少道次的轧制工艺对热变形奥氏体晶粒尺寸影响不大,对晶内变形带、亚结构和最终组织形貌及尺寸起到一定的作用.同时分析了再结晶轧制温度及未再结晶区轧制规程对变形抗力的影响  相似文献   

18.
对新型变形镁合金Mg-6%Zn-1%Mn铸锭在320、360、420℃等不同温度下进行挤压实验,成型后实施不同热处理,并分析不同状态下合金的微观组织和力学性能.结果表明:在320~420℃条件下,该合金能实现平稳地挤压成型并完成动态再结晶.挤压温度越低,再结晶晶粒越细小,挤压棒材性能越好.高温(420℃)挤压成型,动态再结晶越易进行,且再结晶晶粒越均匀,更有利于后期通过热处理改善合金性能.  相似文献   

19.
Al-Mg alloys are an important class of non-heat treatable alloys in which Mg solute and grain size play essential role in their mechanical properties and plastic deformation behaviors.In this work,a cyclical continuous expanded extrusion and drawing(CCEED)process was proposed and implemented on an Al-3Mg alloy to introduce large plastic deformation.The results showed that the continuous expanded extrusion mainly improved the ductility,while the cold drawing enhanced the strength of the alloy.With the increased processing CCEED passes,the multi-pass cross shear deformation mechanism progressively improved the homogeneity of the hardness distributions and refined grain size.Continuous dynamic recrystallization played an important role in the grain refinement of the processed Al-3Mg alloy rods.Besides,the microstructural evolution was basically influenced by the special thermomechanical deformation conditions during the CCEED process.  相似文献   

20.
利用背散射电子衍射微织构分析技术及X射线衍射织构分析技术,结合对取向硅钢薄带再结晶各阶段退火板磁性能的分析,系统研究了其形变再结晶过程中的组织及织构演变。结果表明,薄带内原始高斯晶粒取向发生绕TD轴向{111}<112>的转变,同时晶粒取向还表现出绕RD轴的附加转动,这种附加转动及其导致的表层微弱立方形变组织可为再结晶立方织构的形成提供核心。退火各阶段样品磁性能的变化对应了{110}-{100}<001>有益织构及其他织构的强弱转变以及再结晶晶粒不均匀程度的变化,综合织构类型及晶粒尺寸的变化推断发生了二次及三次再结晶过程。升温过程再结晶织构演变主要体现了织构诱发机制,也即与基体存在绕<001>轴取向关系的晶粒长大优势结合高斯织构的抑制效应发挥作用;而在高温长时间保温后三次再结晶过程,{110}低表面能诱发异常长大发挥主要作用使得最终得到锋锐的高斯织构。  相似文献   

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