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1.
在480~750℃条件下,模拟罩式退火,利用光学显微镜、X射线衍射和金相显微硬度计研究了冷轧Ti-IF超深冲钢晶粒结构的变化,通过取向密度函数分析了再结晶过程织构演变规律。研究表明:冷轧Ti-IF超深冲钢的再结晶温度约为630℃,再结晶过程能够在660℃条件下2 h之内完成;冷轧后该钢主要有4种织构,分别是{001}〈110〉、{111}〈110〉、{111}〈112〉和{112}〈110〉;在退火再结晶过程中,{111}逐渐转变为γ-{111},当退火温度升至720℃时,{001}〈110〉和{112}〈110〉转变为纤维织构γ-{111},最终{111}〈110〉和{111}〈112〉成为主要织构类型。  相似文献   

2.
 采用金相显微镜和X射线衍射仪对CSP(Compact Strip Production)稀土板热轧、冷轧及退火3个阶段的组织和织构进行了检测和分析,并结合文献讨论了稀土板组织织构的演变规律。结果表明:稀土冷轧板以{223}<110>、{001}<110>、{112}<110>为主要织构,退火后形成了以{223}<110>和{111}<110>为主的再结晶织构,织构密度均达8. 5以上,{223}<110>和{111}<110>取向差为10°。稀土板开始再结晶需要的温度较高,并且再结晶完成需要的时间较长。再结晶初期织构变化比后期小。试验稀土板退火后{111}/{001}值极大,{111}<011>织构与{111}<211>织构密度差约为6。  相似文献   

3.
冯岩青  王福明 《特殊钢》2012,33(6):39-42
研究了IF钢(/%:0.005C、0.02Si、0.16Mn、0.011P、0.004S、0.042Als、0.061Ti、0.003 1 N)0.8 mm冷轧板在500~800℃退火时的再结晶组织及织构,采用X射线衍射技术结合微观组织观察分析了IF钢罩式退火过程中{111}再结晶织构形成机制和显微组织演变规律。结果表明,随退火温度的升高,再结晶数量逐渐增多,640℃为实验钢实际再结晶温度,同时{111}再结晶织构强度亦逐渐增大,{111}取向的晶粒主要在再结晶过程中形成,并在{111}取向晶粒长大过程中,γ纤维织构之间也发生相互转化,主要由{111}〈112〉织构转变为{111}〈110〉织构。  相似文献   

4.
《特殊钢》2017,(6)
06Cr13不锈钢(/%:0.03C,0.45Si,0.22Mn,0.020P,0.002S,12.20Cr)3.5mm热轧板经11道次冷轧成0.375 mm冷轧板。利用CCT-AV-Ⅱ模拟退火实验机研究了800~925℃退火对06Cr13不锈钢冷轧板的织构组分和力学性能的影响。结果表明,随着退火温度的升高,深冲性能有利的{111}织构组分含量上升,而不利组分{001}110,{114}110,{112}110,{112}111和{110}110含量总和下降;在875℃退火时,{111}110与{111}112织构组分含量的差值最大,{111}织构的均匀性最差;06Cr13不锈钢的强度和延伸率在875℃退火后表现出很明显的各向异性。综合分析,该06Cr13不锈钢冷轧板的适合退火温度为(850±10)℃。  相似文献   

5.
Ti、Nb对超低碳Cr18铁素体不锈钢冷轧板再结晶织构的影响   总被引:1,自引:0,他引:1  
研究了添加Ti、Nb对超低碳Cr18铁素体不锈钢冷轧板再结晶织构的影响。试验结果表明,Nb单稳定化和Ti、Nb双稳定化的冷轧板试样在850℃下,随退火保温时间的延长,{111}面织构取向密度增加,而Ti单稳定的冷轧板在退火2min时{111}面织构取向密度值达到最大,然后随保温时间延长{111}面织构密度下降。Ti、Nb双稳定化的冷轧板经退火360s后得到最大的{111}<112>织构取向密度强度,Nb单稳定化Cr18不锈钢冷轧板再结晶织构{111}取向密度低于其它两种钢。  相似文献   

6.
以酒钢CSP工艺DC04冷轧汽车板为原料,通过实验室模拟退火工艺,采用OM、EBSD、ODF技术,研究退火工艺对其组织和织构特征的影响。结果表明,DC04汽车板退火组织为铁素体和少量渗碳体,575℃退火1h再结晶开始,730℃退火1h后再结晶较为充分,并随着退火时间的延长,铁素体晶粒长大。不同压下率的DC04冷轧板和退火板中,主要织构均为bcc金属中典型的α(<110>//RD)纤维织构和γ(<111>//ND)纤维织构。随着压下率增加,{111}<112>织构的取向密度明显大于{111}<110>织构的取向密度。730 ℃退火后,低压下率67%的退火板织构中有微弱的{001}<110>取向,但随着压下率增大,这种织构逐渐消失,而形成较强的{111}<112>、{111}<110>有利织构。增加变形量有利于获得有利的{111}织构而抑制不利{001}织构的生成,从而提高DC04的深冲性能。  相似文献   

7.
无取向电工钢冷轧及退火织构的演变   总被引:1,自引:0,他引:1  
运用不同冷轧、退火工艺的实验及ODF分析方法,分析了电工钢50W600的热轧织构、冷轧织构及再结晶织构的演变.研究表明:热轧带几乎是随机织构,α线非常弱;随着冷轧变形量的提高,晶粒在α线取向附近聚集程度不断提高,变形81%时,{001}《110》和{112}《110》取向密度分别为12和14.随退火温度升高和保温时间延长,α线的取向密度下降,{001}《110》和{112}《110》取向密度急剧降低,γ线{111}《112》密度显著增加,晶粒取向绝大多数聚集在γ线{111}《112》取向附近.通过控制冷轧及退火工艺,可有利于发展高{100}织构组分的冷轧无取向电工钢.  相似文献   

8.
对无抑制剂取向硅钢不同压下率下初次再结晶退火后的显微组织、宏观织构和微观织构进行了研究.结果表明,冷轧板织构主要为α取向线{001}<110>、{112}<110>和{111}<110>织构以及γ取向线{111}<110>织构.初次再结晶退火后,α取向线织构减弱,织构主要为γ取向线{111}<112>织构.随冷轧压下率的增加,冷轧和初次再结晶织构强度增加.当压下率为88%时,初次再结晶退火后 Goss 织构和{111}<112>织构强度最高,最有利于发生二次再结晶.EBSD 分析显示,Goss 取向晶粒大多与{111}<112>取向晶粒相邻.提高冷轧压下率,Goss取向晶粒和{111}<112>取向晶粒都增加,Goss 取向晶粒偏离理想取向角度减少.  相似文献   

9.
《稀土》2015,(4)
在实验室模拟了某钢厂罩式退火工艺,利用金相显微镜、洛氏硬度计、XRD衍射仪和透射电镜研究了稀土低碳钢冷轧板第二相粒子的析出行为对组织织构演变的影响。退火后成品板为饼形晶粒,退火过程中{001}110织构逐渐减弱,{111}织构逐渐增强且在成品板中保留一定量的{112}110织构。退火过程中有Fe3C析出且对组织织构演变影响较小,稀土元素在650℃时依附于Fe3C上析出,起到了稀土元素的微合金化作用,Al N在600℃以上析出,促使再结晶晶粒定向长大对饼形晶粒的形成有重要的作用,热力学及动力学计算表明退火过程中Mn S没有析出,其对组织织构演变影响极小。  相似文献   

10.
研究了27.5 mm热轧板的初始组织(热轧态,850℃退火、950℃退火)对冷轧态和870℃退火的0.5mm冷轧无取向硅钢50W600薄板(/%:0.004C、0.33Si、0.38Mn、0.099P、0.007S、0.32Al)织构演变的影响。结果表明,经冷轧后冷轧板织构中{100}〈011〉和{112}〈110〉织构密度明显增大,末退火热轧板轧成的冷轧板织构密度较退火热轧板轧成的冷轧板强;经未退火热轧板冷轧成的薄板再结晶退火后的织构中主要为{100}〈011〉、{110}〈011〉和{111}〈112〉,退火热轧板冷轧成的薄板再结晶退火后的织构除{100}〈011〉和{110}〈011〉外还有密度较强的高斯织构。  相似文献   

11.
 Texture inhomogeneity usually takes place in ferritic stainless steels due to the lack of phase transformation and recrystallization during hot strip rolling, which can deteriorate the formability of final sheets. In order to work out the way of weakening texture inhomogeneity, conventional hot rolling and warm rolling processes have been carried out with an ultra purified ferritic stainless steel. The results showed that the evolution of through-thickness texture is closely dependent on rolling process, especially for the texture in the center layer. For both conventional and warm rolling processes, shear texture components were formed in the surface layers after hot rolling and annealing; sharp α-fiber and weak γ-fiber with the major component at {111}<110> were developed in both cold rolled sheet surfaces, leading to the formation of inhomogeneous γ-fiber dominated by {111}<112> after recrystallization annealing. In the center layer of conventional rolled and annealed bands, strong α-fiber and weak γ-fiber textures were formed; the cold rolled textures were comprised of sharp α-fiber and weak γ-fiber with the major component at {111}<110>, and inhomogeneous γ-fiber dominated by {111}<112> was formed after recrystallization annealing. By contrast, in the centre layer of warm rolled bands, the texture was comprised of weak α-fiber and sharp γ-fiber, and γ-fiber became the only component after annealing. The cold rolled texture displayed a sharp γ-fiber with the major component at {111}<112> and the intensity of γ-fiber close to that of α-fiber, resulting in the formation of a nearly homogeneous γ-fiber recrystallization texture in the center layer of the final sheet.  相似文献   

12.
采用背散射衍射技术(EBSD)研究了3.13 mm热轧板的冷轧压下量(65%~80%)和再结晶退火温度(660~780℃)对0.64~1.10 mm Ti-IF钢冷轧板(/%:0.02C、0.01Si、0.10Mn、0.013P、0.011S、0.064 Ti、0.028Al、0.002 0N)的织构和成型性能应变硬化指数(n)、塑性应变比(r)的影响。结果表明,Ti-IF钢冷轧板在冷轧压下率为75%时{111}织构含量最大,成型性能最佳;在740℃以下再结晶退火时材料{111}<110>织构含量高,高于740℃时材料{111}<112>织构含量高;在660~780℃再结晶退火随温度增高,材料{111}织构含量增加,成型性能提高。  相似文献   

13.
 The effects of hot rolling and cold rolling parameters on texture and r (plastic strain ratio) value of high strength ultra low carbon bake hardening (ULC-BH) steels are studied with orientation distribution function (ODF) structural analysis method. After hot rolling, the high strength ULC-BH steel sheet has weak γ-fiber with uniform orientation distributions, and weak α-fiber, of which {445}<110> component forms a high intensity peak at coiling temperature of 750 ℃. After cold rolling, both {111}<110>-{111}<112> intensity on the γ-fiber and {111}-{112}<110> intensity on the α-fiber enhanced. As a result of substitutional solute elements Mn and P being added to the steel, strong {112}<110> deformation texture component is observed on α-fiber, especially at 80% cold rolling reduction, and this leads to the strong {111}<112> recrystallization texture after annealing. The increase of cold rolling reduction shifts the maximum intensity on the γ-fiber from {111}<112> to {111}<113>. After annealing, a very strong γ-fiber is obtained, with intensity peak at {111}<112> component when cold rolling reduction reaches 80%. Increasing coiling temperature and cold rolling reduction improve γ-fiber intensity and r value, resulting in good deep drawability.  相似文献   

14.
退火温度制度对CSP流程冷轧深冲板性能和织构的影响   总被引:1,自引:0,他引:1  
������������������������ֲĵ�һ��������¹��գ�2006���ϰ����ҹ���������������������(�����б�������������)�ﵽ13��������ܴﵽ3500��t[1]��CSP(compact strip production)�Ƕ����̹��յ�һ�֣����еͳɱ�����Ч�ʵ��ŵ㣬����ϴ������CDCM���Լ�����¯�˻�BA�����������ӣ����CSP-CDCM-BA���������߿��������߸���ֵ�ĵ�̼���壬�о޴�ijɱ����ƺ�Ч�����ơ���������CSP�����봫ͳ����������������������̡������ƶȡ����ƹ����Լ�����ڴ�������ϵĴ����ٶȵȷ���������������,���Ŀǰ��������Ͷ���ı����������в��������봫ͳ���ղ�Ʒ�൱�����������ְ�[2]���Դ�ͳ�����������������08Al��IF�ֵ��˻����Ѿ������˴����о�����[3,4]��������CSP���̹�ԭ�ϵ���Ӳ��Ϊ�����о����˻��¶��ƶȶԳ�Ʒ�����ܡ���֯��֯����Ӱ�죬������������������{111}��110��֯����{111}��112��֯��ȡ��ֲ��ܶȲ��γɵ����⡣  相似文献   

15.
 利用电子背散射衍射技术,研究了冷轧后亚稳态奥氏体不锈钢301L的退火织构和晶界特征,分析了不同冷轧退火温度对织构和晶界特征的影响。结果表明,冷轧退火后奥氏体不锈钢301L的织构主要由Copper{112}<111>,Brass{110}<112>,Goss{110}<001>和S{123}<634>组成,并且随着退火温度的升高,织构强度逐渐减弱,重位点阵晶界Σ3晶界含量明显增加,其他重位点阵晶界含量没有明显变化。  相似文献   

16.
试验用390 MPa级IF钢(/%:0.005C,0.04Si,0.35Mn,0.095P,0.005S,0.030Nb,0.016Ti,0.036Alt)0.8 mm冷轧板由4 mm热轧板冷轧生产。研究了连续退火温度780~820℃对该IF钢组织、织构和力学性能的影响。结果表明,当连续退火温度由780℃提高至820℃时,IF钢的屈服和抗拉强度分别由282 MPa和432 MPa降至249 MPa和405 MPa,伸长率A50和塑性应变比rm分别从37.2%和1.45提高到41.7%和1.84,具有较好的深冲性能;但随退火温度升高,平面各向异性指数△r由0.44提高到0.65,铁素体晶粒尺寸增大,组织均匀变差,同时变形织构{112}<110>变弱,有利织构{111}<110>增强,{001}<110>变弱,综合考虑退火温度控制在820℃左右为宜。  相似文献   

17.
 High-energy synchrotron diffraction offers great potential for experimental study of recrystallization kinetics. An experimental design to study the recrystallization mechanism of interstitial-free (IF) steel was implemented. The whole annealing process of cold-rolled IF steel with 80% reduction was observed in situ using high-energy X-ray diffraction (HEXRD). The results show how the main texture component of IF steel change, i. e. the α [<110>∥rolling direction (RD)] fiber texture decreases and the γ [<111>∥normal direction (ND)] fiber texture increases. The important part of the α fiber texture is that both the {100}<011> and {112}<011> texture decrease at the beginning of recrystallization. The γ fiber texture increases at the early stage of recrystallization which stems from the increase of {111}<112>. Nevertheless, the {111}<110> does not change after recrystallization. The dynamic evolution of the main texture components {100}<011>, {112}<011>, {111}<112> and {111}<110> is given by in-situ HEXRD.  相似文献   

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