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1.
采用 X 射线衍射和室温拉伸方法研究了冷轧变形和固溶处理对 Ti-26Nb-4Zr 合金板材的织构和力学性能的影响.研究发现,50%冷轧时形成了{001}<uvw>织构,随着冷变形量的增加,逐渐形成了{121}<111>和{001}<110>混合织构,<110>方向由与轧制方向垂直转到与轧制方向平行.800℃固溶处理后,随着变形量的增加,{111}<110>再结晶织构形成并逐渐增强,但<110>方向始终保持与轧制方向平行.由于加工硬化及晶粒细化的作用,导致随着变形量增加,冷轧板材的强度逐渐提高,塑性降低.固溶处理后,由于发生再结晶,使得板材的塑性相比冷轧态明显提高.  相似文献   

2.
超纯铁素体不锈钢的组织、织构及深拉伸性能   总被引:2,自引:0,他引:2  
重点研究了冷轧压下率对冷轧、再结晶织构的影响.结果表明:当终轧温度为750℃时,热轧带退火后以{111}再结晶织构为主.随着冷轧压下量的增加,γ织构减弱,α织构增强,{111}再结晶织构明显增强.当冷轧压下率为84%时,{111}再结晶组分的体积分数达到64.5%,退火板的平均塑性应变比(-R)高达1.69,平面各向异性(ΔR)仅为-0.17,深拉伸性能优良.  相似文献   

3.
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   

4.
对无取向硅钢常化态板材经过异步轧制,轧制速比为1.06,经过一次冷轧到0.5 mm厚,压下率为77.3%,并在保护气氛下进行再结晶退火,考察了异步冷轧织构和再结晶织构形成及演变.常化态板材的初始织构组分以{110}和{113}织构为主,异步冷轧织构主要是由α织构和γ织构组成,快慢辊侧的织构类型没有变化,但慢辊侧α织构和γ织构的取向密度明显高于快辊侧;再结晶退火后α织构取向密度明显减弱,而γ织构的变化主要是{111}〈110〉织构组分的取向密度减弱,{111}〈112〉织构组分的取向密度加强.  相似文献   

5.
2.0 mm厚双辊铸轧Fe-2.8%Si-0.8%Al硅钢带坯进行直接冷轧和退火,研究了不同冷轧压下率样品的形变与再结晶织构特征.形变织构主要由α(110//RD),γ(111//ND)和λ(001//ND)纤维织构组分构成,其取向密度峰值分别位于{001}110,{111}110和{001}110~210.随压下率提高(40%~90%),各主要形变织构组分增强,压下率为60%时,剪切带特征最显著.再结晶织构包含Goss({110}001),Cube({001}100),λ,{113}361和{111}112等织构组分.随压下率提高,再结晶机制由剪切带形核主导转变为形变带和晶界形核主导,导致再结晶Goss组分减弱,而{113}361,Cube,λ以及{111}112再结晶织构组分增强.  相似文献   

6.
以两种合金成分的相变诱导塑性钢为实验对象,先利用热模拟试验机确定其热轧及热处理参数后,经过热轧、冷轧工艺并连续退火,研究其力学性能。金相组织及宏观织构的特征。实验结果表明,Cr元素可以稳定低温奥氏体,降低贝氏体形成温度,使贝氏体的孕育期延长,增加最终组织中的贝氏体及残余奥氏体的体积分数;Cr元素的添加还增强了试验钢的力学性能,添加了Cr元素的2#钢强度和塑性均比没有添加的1#钢要高;两种成分的TRIP钢织构情况相似,主要组分包括:{332}纤维织构,{110}<001>组分和{112}<110>组分,可见Cr元素在提高钢板强度增加延伸率的同时,并没有损害钢板的成形性能。  相似文献   

7.
X-ray diffraction (XRD) was employed to analyze the texture evolution of commercial pure (CP) Ti during cold rolling and recrystallization annealing. The texture components were measured by electron backscattered diffraction (EBSD) after recrystallization annealing. The CP Ti tends to form a texture with the basal pole tilted 30°-40° away from the normal direction toward the transverse direction. The texture of the initial hot-rolled plate can be classified into three kinds, i.e., the pyramid texture (1013)[5230] and (2021)[1015], the basal plane texture (0001)[2110], and the stronger prism texture (1120)[0001]. After cold rolling and annealing (700℃, 60 min), the main texture components are the cold-rolled texture (1125)[1123] and the recrystallized texture (1013)[5230]. The texture (2021)[1015] is inherited from the texture of the initial hot-rolled plate with the decrease of orientation density gradually. The volume contents of the cold-rolled texture {2115} <0110> and the recrystallized texture {1013} <1210> are calculated by EBSD. After recrystallization annealing, the specimen is rich in the recrystallized texture and inherits some of texture components from the cold-rolled texture. When the annealing time is prolonged, the anisotropic value decreases.  相似文献   

8.
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   

9.
应用铁素体区热轧工艺开发超低碳热轧深冲板   总被引:8,自引:2,他引:6  
研究了铁素体轧制工艺条件对一种Ti-IF钢的性能,特别是深冲性能的影响.采用铁素体区润滑轧制和高温卷取,r值最高为1.38,延伸率达到50%以上.而奥氏体轧制条件下r值低于1.0.织构分析证实在润滑轧制条件下,强的{111}再结晶织构沿厚度方向较均匀分布,剪切织构较弱,而在无润滑轧制条件下,{111}再结晶织构很弱,并且形成了较强的{110}剪切织构.为获得具有良好深冲性能的热轧板,要求加热温度在1 100-1 150℃之间,终轧温度在750-800℃之间, 卷取温度大于650℃.  相似文献   

10.
横向预拉伸对17%Cr超纯铁素体不锈钢表面抗皱性的影响   总被引:1,自引:0,他引:1  
以17%Cr超纯铁素体不锈钢的冷轧退火板为原料,研究了3%、6%、9%和12%横向预拉伸(即拉伸方向垂直于板材轧向)变形对其冲压成形表面抗皱性的影响。采用电子背散射衍射技术及X射线衍射技术探究了横向预拉伸前后板材内部织构取向和晶粒团簇的演变规律。结果表明,横向预拉伸9%后实验钢板表面抗皱性获得较大提高。由于在退火、横向预拉及纵向拉伸后{001}取向晶粒含量均非常少,因此基于厚向塑性应变比差异的Chao起皱机理不适用实验钢,而基于平面剪切应变的Takechi模型能较好地解释实验结果。在横向预拉伸后,由于γ纤维织构晶粒簇的宽度降低、方向整体偏转,使得板材抗皱性得到提高。  相似文献   

11.
比较了一步冷轧和二步冷轧对铁素体不锈钢深冲性能和织构的影响.结果显示,采用一步冷轧(冷轧压下率90%)后,获得了高的平均r值(rm=1.92),且45°方向的r值要大于轧向和横向的r值,导致了材料的Δr呈负值(Δr=-0.31);在总压下率一定的情况下,采用二步冷轧后,薄板的平均r值变化不大(rm=1.90),但材料的平面各向异性很小(Δr=0.14).对两种工艺的再结晶织构分析表明,一步冷轧后薄板生成了强烈的γ织构,但是织构的峰值明显偏离了{111}轴,位于{223}〈582〉处;二步冷轧后薄板则生成了均匀的γ再结晶织构.  相似文献   

12.
通过金相组织观察、透射电子显微镜(TEM)及显微硬度测试,研究冷轧变形量为95%的Ta-7.5%W合金箔材在1 050,1 200和1 360℃退火时的组织和性能变化,并采用取向密度函数(ODF)分析在此过程中其织构演变规律.对其实验结果进行研究发现:冷轧态Ta-7.5%W合金硬度为HV 300,经1 360℃退火后硬度迅速减小,说明此时合金已发生回复再结晶.轧制后的Ta-7.5%W合金箔材具有各向异性,在轧面∥{111}取向上形成位错胞亚结构,在轧面∥{100}取向上形成了形变带,冷轧态的主要织构为{001}〈110〉,{112} 〈110〉和{110}〈110〉织构;在1 200℃退火时,在轧面∥{111}取向上,再结晶通过亚晶界迁移、亚晶长大形核,而在轧面∥{100}取向上,主要是通过亚晶转动、聚合形核;{001}〈110〉织构增强,{112}〈110〉织构减弱;在1 360℃退火时,{001}〈110〉织构急剧减弱,{111}〈112〉织构增强.  相似文献   

13.
Controlling the texture of tantalum sheets is of critical importance to fabricate good sputtering targets. In the present study two tantalum sheets were produced by clock rolling to 70% thickness reduction in 1 or 2 cycles. The results show that the stored energy and grain subdivision within the {111} grains {<111>//normal direction (ND)} after 1 cycle are significantly higher than those after 2 cycles, leading to fast recrystallization kinetics and strong {111} recrystallized texture upon annealing. Simulations with Taylor model indicate that shear strain occurred on more slip systems in the 2-cycle sample, which could explain the formation of cell blocks in {111} grains.  相似文献   

14.
In accordance with experimental results about the annealing microstructure and texture of cold-rolled deepdrawing sheet based on the compact strip production (CSP) process, a two-dimensional cellular automation simulation model, considering real space and time scale, was established to simulate recrystallization and grain growth during the actual batch annealing process. The simulation results show that pancaked grains form during recrystallization. {111} advantageous texture components become the main parts of the recrystallization texture. After grain growth, the pancaked grains coarsen gradually. The content of {111} advantageous texture components in the annealing texture increases from 55vol% to 65vol%; meanwhile, the contents of {112}〈110〉 and {100}〈110〉 texture components decrease by 4% and 8%, respectively, compared with the recrystallization texture. The simulation results of microstructure and texture evolution are also consistent with the experimental ones, proving the accuracy and usefulness of the model.  相似文献   

15.
Single cold rolling and double cold rolling were applied to hot rolled strips with different reduction ratios. The evolutions of { 100}, { 111} and Goss face texture during double rolling were investigated by comparing the orientation distribution function (ODF) of the double rolled sample with that of the single rolled one. The double cold rolling texture is characterized by a higher γ-texture and a lower α-texture, and the { 111}〈112〉 component is improved remarkably. Based on the TEM observation and mechanical properties test, it is found that the reduction ratio assignment significantly affects the texture variation, as-annealing microstructures, and properties of the double cold rolled samples. These results may provide a theoretical guide for the industrial production of double cold rolled IF steel.  相似文献   

16.
将薄带连铸技术引入因瓦合金的制备流程,利用金相显微镜、XRD、EBSD、微观硬度计、拉伸实验机等设备,围绕薄带连铸因瓦合金的组织织构演化及力学性能开展研究.结果表明:在钢液过热度较高的条件下,因瓦合金凝固组织以粗大的柱状奥氏体晶粒为主,织构为强烈的λ纤维织构(<100>//ND).冷轧过程中形成大量的变形亚结构,使硬度(HV)由铸态的165提高至230~240,冷轧织构以典型的铜型织构(112<111>)及S型织构(123<634>)为主.0.7mm厚冷轧板经900℃退火10min,形成包含大量退火孪晶的再结晶组织,织构较漫散,其屈服强度、抗拉强度和断后延伸率分别达293MPa,433MPa和33.4%,与传统流程制备的0.7mm厚因瓦合金的性能相当.  相似文献   

17.
磁场退火对无取向硅钢再结晶织构和组织的影响   总被引:1,自引:0,他引:1  
为了研究磁场退火对金属材料的再结晶织构和晶粒尺寸的影响,对冷轧无取向硅钢薄板进行了普通退火以及0.1,6和12 T下的磁场退火,磁场沿轧向施加.研究表明,磁场退火显著影响再结晶织构的取向密度和晶粒尺寸,且与磁感应强度成非线性关系.磁场退火增强有利的η(〈001〉∥RD)和{100}织构,减弱不利的γ(〈111〉∥ND)织构,该效应在6 T磁场下较显著;再结晶晶粒尺寸在6 T磁场退火时较大,普通及12T磁场退火时居中,0.1 T磁场退火时较小.从磁场降低晶界可动性和提供与取向相关的附加晶界迁移驱动力的角度,分析了磁场作用机制.  相似文献   

18.
对含有单一柱状晶的409L铁素体不锈钢连铸坯,采用不同终轧温度的热轧工艺,由常规热轧转变为温轧,再经过相同后续工艺;较低终轧温度的成品获得了较高rm值和较低△r值.终轧温度的降低使组织演变发生变化:热轧和冷轧组织中晶界和晶内剪切带增多,变形组织被细化、硬化,尤其是中心层附近的粗大带状晶粒;两者的增多又增加了退火过程中的...  相似文献   

19.
冷轧钢板变形织构的理论模拟   总被引:1,自引:0,他引:1  
采用取向分布函数法研究了钢板中的轧制织构。其中以{110}<111>滑移系滑移为基本变形机制,利用Sachs,Taylor,RC和PC等模型对轧制织构进了理论模拟。这些理论模型可以再现体心立方金属冷轧过程中晶粒取向在{112}<110>,{111}<110>,{111}<112>及{001}<110>附近的聚集过程。分析表明{110}<111>滑移系的滑移是体心立方金属十分重要的变形机制,适当参考  相似文献   

20.
The effect of particle size distribution on the microstructure, texture, and mechanical properties of Al–Mg–Si–Cu alloy was investigated on the basis of the mechanical properties, microstructure, and texture of the alloy. The results show that the particle size distribution influences the microstructure and the final mechanical properties but only slightly influences the recrystallization texture. After the pre-aging treatment and natural aging treatment (T4P treatment), in contrast to the sheet with a uniform particle size distribution, the sheet with a bimodal particle size distribution of large constituent particles and small dispersoids exhibits higher strength and a somewhat lower plastic strain ratio (r) and strain hardening exponent (n). After solution treatment, the sheet with a bimodal particle size distribution of large constituent particles and small dispersoids possesses a finer and slightly elongated grain structure compared with the sheet with a uniform particle size distribution. Additionally, they possess almost identical weak recrystallization textures, and their textures are dominated by CubeND {001}<310> and P {011}<122> orientations.  相似文献   

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