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1.
运用电子背散射衍射(EBSD)技术,对不同冷轧变形条件下再结晶IF钢板中的晶界特征分布和晶界连通性进行了研究。结果表明,增加冷轧变形量,有利于增加IF钢板中的小角度晶界(∑1),但对(∑3~∑29)重位点阵晶界的影响不大。低能特殊晶界(∑1~∑29)的增加有利于破碎IF钢板中的随机晶界网络,改善其晶界连通性。此外,IF钢板的晶界特征分布与其晶粒尺寸密切相关,小晶粒周围易出现低能特殊晶界,而大晶粒周围易出现高能随机晶界。  相似文献   

2.
运用电子背散射衍射(EBSD)技术对冷轧IF钢板的再结晶形核过程进行了研究。将冷轧IF钢板在再结晶初始温度进行退火处理以获得部分再结晶的显微组织,将退火试样经研磨和电解抛光后采取EBSD技术扫描获取晶粒取向信息,然后对退火试样的再结晶形核过程进行分析研究,提出了一种利用EBSD方法研究金属材料再结晶形核规律的新方法。  相似文献   

3.
以工业生产的含钛、铌和含钛的两种无间隙原子(IF)钢热轧钢板为试验材料,在实验室研究了冷轧压下率对两种IF钢的显微组织、力学性能和再结晶织构的影响。结果表明:在试验条件下,两种试验钢经不同冷轧压下率冷轧和720℃×5 h罩式退火后,再结晶完成,随着冷轧压下率的增加,晶粒变得细小均匀,退火后得到的织构也增强,并且织构类型有转向{111}织构的趋势;塑性应变比r90在压下率为70%时达到最大值,随着冷轧压下率的进一步增大,r90值减小;应变硬化指数n90值逐渐降低。最后提出工业生产中冷轧压下率最佳范围为70%~80%,可获得良好的深冲性能。  相似文献   

4.
研究了一种Ti—IF(Interstitial—free)钢在铁素体区热轧和退火过程中织构的变化.由于轧制过程摩擦的影响,热轧织构和退火织构在厚度方向上都有很大的差异.在钢板的表层,热轧织构的主要组分是{110}(001),退火后表层的铁素体晶粒没有发生再结晶,该组分转变为(001)(110);在试样的中心和1/4面,热轧织构组分主要是较弱的(111)//ND(板法向)织构和部分(110)//RD且在{001}(110)处最强;退火后中心面上的晶粒发生了完全再结晶,{001}组分转变为(111)//ND组分使(111)//ND织构成为唯一织构组分且在{111}(112)处最强.  相似文献   

5.
借助电子背散射衍射(EBSD)技术测量和计算了高强IF钢退火试样的取向分布函数(ODF)、织构组分的含量和7取向线强度。研究了{111}(112)和{111}010)织构组分的变化,分析了P、Ti对{111}面织构的影响机理。P的存在阻碍了位错的运动和晶界的迁移,进而使再结晶晶粒取向趋于一致,形成较尖锐的{111}面织...  相似文献   

6.
不同压下率低碳铝镇静钢板再结晶实验研究   总被引:1,自引:0,他引:1  
将不同冷轧压下率的低碳铝镇静钢进行不同保温温度和时间的退火再结晶实验研究,利用维氏硬度计、金相显微镜和X射线衍射仪研究了退火后试样的硬度、金相显微组织及织构的变化情况。结果表明:在相同的退火工艺制度条件下,随着冷轧压下率的增加,再结晶开始和结束温度降低,晶粒尺寸减小。当冷轧压下率升高到68%后,冷轧压下率的增加对再结晶晶粒细化的作用减弱,甚至没有细化作用;680℃保温退火时,一开始就发生了再结晶,基本不需要孕育期。随着保温时间的延长,晶粒均匀长大,晶粒饼形程度增加;退火温度由660℃升高到720℃时,{111}面有利织构增加,{100}面不利织构减少,720℃退火温度较为适宜。冷轧压下率为58%的试样在760℃退火时发生了二次再结晶对实验钢板的力学性能产生不利影响。  相似文献   

7.
深冲IF钢再结晶{111}纤维织构形成机制探讨   总被引:3,自引:0,他引:3  
为了探讨深冲IF钢再结晶织构与退火温度之间的关系及{111}再结晶织构形成机制,采用X射线衍射三维取向(ODF)和背散射电子衍射(EBSD)分析技术并结合金相组织观察,利用Gibbs-Thom son方程对冷轧IF钢在不同退火温度下的再结晶织构演变规律及形成机制进行研究.实验结果表明:随着退火温度的增加,再结晶量逐渐增多,γ纤维织构强度亦相应增强,同时,α纤维织构强度则逐渐降低;冷轧IF钢再结晶初期的织构转变主要发生在γ纤维织构之间.研究表明,再结晶核心的形成主要以"显微择优形核"为主,晶核的长大则主要以择优生长为主,而Σ重位点阵晶界在再结晶γ纤维织构形成过程中起着重要作用.  相似文献   

8.
对热变形AZ31镁合金的显微组织、晶粒尺寸分布、平均晶粒尺寸、再结晶晶粒数目以及变形织构随退火时间的变化进行了定量分析,研究了不同热变形量AZ31镁合金在503 K的等温退火行为。结果表明:热变形AZ31镁合金的细晶组分随着退火时间的延长不断降低,退火过程按退火温度可分为孕育、再结晶急速长大和晶粒正常长大三个阶段,且各阶段的其长短几乎不受变形程度的影响。变形形成的微观织构在整个退火过程中几乎没有变化,说明热变形镁合金在退火过程中没有新核形成,即为连续静态再结晶。  相似文献   

9.
利用X射线三维取向分布函数(ODF)方法和金相方法分别对加磷强化的高强IF钢沿厚度方向织构和显微组织的不均匀性及其变化规律进行了研究。结果表明:该高强IF钢板厚度中心层的γ纤维织构强度及体积分数最高,其次为1/4厚度层,最弱为表层;钢板的显微组织则由表层大小不均匀的晶粒逐渐转变为中心层大小非常均匀的等轴晶粒;这种织构和显微组织沿厚度方向的不均匀现象是由于在轧制过程中钢板的变形不均匀性所造成的。  相似文献   

10.
目的 研究轧制压下量为67%的纯钨板在退火过程中的再结晶行为.方法 对67%变形量纯钨板在1250℃下进行等温退火实验,运用电子背散射衍射技术获得了变形态和退火态的显微组织与织构,量化了其晶粒尺寸、纵横比以及主要纤维织构的体积分数,分析了变形态组织中潜在晶核的信息.在此基础上,对再结晶前后的显微组织和织构进行了对比分析.结果 温轧后纯钨板的组织中包含了潜在的再结晶晶核,W67在1250℃下退火过程中以较快速度发生了不连续静态再结晶.结论 随着退火时间的增加,再结晶晶粒的尺寸逐渐增大,但其纵横比基本保持不变.在再结晶过程中,θ纤维织构和α纤维织构有所增加,而γ纤维织构明显减少.  相似文献   

11.
Microstructure and microtexture analyses have been made of three aluminium alloys after annealing alone and after concurrent straining and annealing, and simulative models of microstructure/microtexture evolution processes have been formulated. Both experimental and modelling results are presented as boundary misorientation distributions. For each alloy, the results show that annealing alone does not significantly alter the boundary misorientation distribution, while concurrent straining and annealing (up to a strain of 0.5) decreases the fraction of low-angle boundaries. To understand the mechanisms by which concurrent straining and annealing alter the boundary misorientation distribution, three simulative models of microstructure/microtexture evolution during concurrent straining and annealing have been formulated. Application of the models to experimentally determined initial microstructure/microtexture states shows that the boundary sliding (sub)grain rotation model decreases the fraction of low-angle boundaries, the dislocation glide (sub)grain rotation model increases the fraction of low-angle boundaries, and the (sub)grain neighbour switching model has a modest effect on the boundary misorientation distribution. A combination of the boundary sliding (sub)grain rotation model and the (sub)grain neighbour switching model most closely reproduces the boundary misorientation distributions found experimentally.  相似文献   

12.
The recrystallization texture in grain oriented silicon steel sheets, which were annealed at different primary annealingtemperatures with and without an electric field, was investigated. An automated electron backscattered diffraction(EBSD) technique was used to analyze the recrystallization texture. It was found that recovery and application ofelectric field in primary annealing lead to an increase of {001} component and a decrease of {111} component afterannealing at 900℃. The development of recrystallization texture can be explained in terms of the effects of electricfield and primary annealing temperature on recovery.  相似文献   

13.
研究了超快速退火对一种冷轧变形量为94.2%的Nb+Ti-IF钢的微观组织和织构的影响。结果表明:超快速退火(升温速度为300℃/s)提高了钢的再结晶完成温度,整个再结晶退火可在短至0.41 s内完成。与普通退火(升温速度为20℃/s)后钢的再结晶组织相比,超快速退火处理后晶粒平均尺寸由12.98μm细化到10.12μm,晶粒长大速度由~3μm/s提高到~23μm/s,且再结晶晶粒内存在大量缠结位错。在极短时间内,超快速退火再结晶织构仍以均匀、锋锐的{111}//ND有利深冲性能的γ织构为主,且避免了其它α织构的生成,有利于使退火板具有良好的成形性能。  相似文献   

14.
采用电子背散射衍射技术检测了三种薄钢板试样的晶粒尺寸统计分布规律,并测定了取向成像图和取向分布函数图,统计了各织构晶粒所占比率以及晶粒取向差分布状况。分析了晶粒大小统计分布状况对微观织构形成的影响。结果表明:晶粒尺寸分布越集中,越利于增加{111}∥ND有利织构的含量;取向成像图和取向分布函数图所分析的织构结果是一致的,晶粒取向差分布状况与织构特征的形成有一定的对应关系。  相似文献   

15.
目的 揭示晶粒尺寸对多道次高温交叉轧制AZ31镁合金板材组织和力学性能的影响规律及机制.方法 通过对不同初始晶粒尺寸的镁合金板材进行高温交叉轧制变形及热处理,获得不同状态的镁合金板材,采用金相显微分析、X射线衍射(XRD)分析及室温拉伸实验等手段研究镁合金板材的晶粒组织(形态、尺寸、取向)及力学性能.结果 经过多道次交...  相似文献   

16.
碳锰钢中有亚微米和微米两种晶粒尺寸的铁素体,在亚临界时效热处理中具有不同的晶粒长大行为.亚微米尺寸的铁索体在亚临界时效热处理中逐渐长大,材料的硬度逐渐降低;与亚微米尺寸的铁索体不同,微米尺寸的铁素体在亚临界热处理中具有很高的稳定性,晶粒尺寸和材料的硬度基本保持不变.铁素体晶粒的长大行为与晶粒的表面能和晶粒中的第二相有关.  相似文献   

17.
The present study was carried out to evaluate the microstructures and mechanical properties of severely deformed Ni-30Cr alloys. Cross-roll rolling (CRR) was introduced as a severe plastic deformation (SPD) process. Ni-30Cr alloy sheets were cold rolled to 90% thickness reduction and subsequently annealed at 700 °C for 30 min to obtain the recrystallized microstructure. Electron back-scattered diffraction (EBSD) was introduced to analyze grain boundary character distributions (GBCDs). The application of CRR to the Ni-30Cr alloy effectively enhanced grain refinement through heat treatment; consequently, the average grain size was significantly refined from 33 μm in the initial material to 0.6 μm. This grain refinement directly improved the mechanical properties, in which yield and tensile strengths significantly increased relative to those of the initial material. We systematically discuss the grain refinement and accompanying improvement in mechanical properties in terms of the effective strain imposed by CRR relative to conventional rolling (CR).  相似文献   

18.
The effect of thermal annealing on shot-peened Type 304 stainless steel has been examined using electron backscatter diffraction (EBSD) and X-ray diffraction (XRD). The objective was to evaluate the potential for surface property control by grain boundary engineering. The near surface microstructure of shot-peened material showed a gradual change of the grain boundary character distribution with depth. Twin (Σ3) and higher order twin grain boundaries (Σ9, Σ27) identified closer to the shot-peened surface had significant deviations from their optimum misorientation. The subsequent application of annealing treatments caused depth-dependent changes of the near surface microstructure, with variations in grain size, low Σ CSL grain boundary populations and their deviation from optimum misorientation. Microstructure developments were dependent on the applied heat treatment, with the near surface microstructures showing similarities to microstructures obtained through bulk thermo-mechanical processing. Shot peening, followed by annealing, may therefore be used to control the near surface microstructure of components.  相似文献   

19.
崔桂彬  鞠新华  尹立新  孟杨  温娟 《材料导报》2018,32(Z1):423-427
借助电子背散射衍射(EBSD)技术对超低碳IF钢铁素体晶粒尺寸的表征方法进行了研究与探讨。结果显示,对于具有较强织构的IF钢来讲,铁素体晶粒显示以5°为晶内最大取向差进行晶粒尺寸的测量与统计更为准确,与金相法显示的晶界轮廓基本吻合。利用该表征方法测量晶粒尺寸,不仅可以给出晶粒尺寸的平均值、最大值和最小值,还可以给出晶粒尺寸分布图。  相似文献   

20.
Experimental data on microstructural (crystalline volume fraction, grain size) and magnetic (coercive field) properties in amorphous and nanocrystalline Fe73.5-x(Co0.5Ni0.5)xSi13.5B9Nb3Cu1 alloy ribbons (x = 2.5, 5 and 10) are presented. Nanocrystalline structure was developed by annealing the precursor amorphous ribbons by current annealing (CA) and stress-current-annealing (SA). Microstructural analysis of the treated ribbons using X-ray Diffraction showed a high content of amorphous phase in the bulk. In addition, substantial changes in the crystalline state such as grain size of the samples annealed at different conditions were observed. The alloy composition also affects greatly the grain size,: increasing the (Co,Ni) content leads to higher values of the average grain size. The evolutions of the coercive field with the two kinds of thermal treatment were analysed, allowing us to conclude that the addition of (Co,Ni) tends to reduce the magnetic softness character of the original material, while the treated SA samples show higher coercivities higher than those treated without by CA.  相似文献   

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