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1.
通过剪切旋压试验,研究了旋压温度(910℃和1000℃)和减薄率(0、10%和30%)对Ti-22Al-25Nb合金显微组织的影响,探讨了旋压过程中的显微组织演化规律。结果表明:Ti-22Al-25Nb(原子数分数)合金旋压组织主要由α2相、B2相和O相组成,在旋压过程中,B2晶粒沿旋轮进给方向被拉长,且伴随有动态再结晶现象发生;温度主要影响Ti-22Al-25Nb合金中α2相与O相的尺寸和形貌,随着旋压温度的升高,O相片层逐渐变短并粗化,α2相趋向等轴化;变形量主要影响α2相体积分数与O相形貌,随着减薄率的增大,α2相体积分数逐渐减少,O相从片层状转变为短棒状。因此,Ti-22Al-25Nb合金剪切旋压过程中不仅发生晶粒变形与动态再结晶现象,更涉及复杂的相变行为,组织控制困难。  相似文献   

2.
研究了近α型钛合金TG6经α+β两相区热加工的盘锻件在600℃长时暴露过程中的显微组织演变及其对热稳定性的影响。结果表明:经600℃/100h和600℃/300h长时高温暴露后,TG6钛合金的室温拉伸强度略有提高,其增幅在5%左右,而其拉伸塑性显著降低,塑性保持率小于50%,拉伸断口趋于平直化,且存在梯田状台阶和二次裂纹等,表现为显著的解理断裂特征。在600℃高温长时暴露过程中,TG6钛合金中的显微组织变化主要有在基体组织中的共格有序α2相析出及硅化物析出。随着高温暴露时间的延长,TG6钛合金的显微组织逐渐趋于稳定,拉伸性能的变化也相应趋缓。α2相析出促进了拉伸变形时位错滑移的平面化及变形不均匀,是热稳定性下降的主要原因;而硅化物析出协同促进位错滑移集中化,是热稳定性下降的次要因素。  相似文献   

3.
Primary solidification phase and lamellar orientation are investigated in Ti-45Al-7Nb alloy at very high ratio of temperature gradient to growth rate (G/v) by a liquid-metal-cooled directionally solidified method. It shows that Ti-45Al-7Nb alloy solidifies with primary α phase. Longitudinal (parallel to growth direction) microstructure shows that α dendrites in solid-liquid mushy zone are discontinuous and transverse microstructure of α dendrites is worm-like feature. Growth direction of α phase is about 80° away from〈0001〉α direction, and close to〈1120〉α direction. The corresponding lamellar orientation is aligned at the angle of about 10° to growth direction, which is consistent with α-dendrite growth direction according to Blackburn orientation relationship. Therefore, due to the altered growth direction of α phase, the lamellar orientation in Ti-45Al-7Nb alloy is controlled at the G/v ratio of 5×109 K·sm-2.  相似文献   

4.
The damage and fracture in hot spinning of titanium alloy is a very complex process under the combined effects of microstructure evolution and stress state. In this study, their dependences on processing parameters were investigated by an integrated FE model considering microstructure and damage evolution, and revealing the effects of microstructure and stress states on damage evolution. The results show that the inner surface of workpiece with the largest voids volume fraction is the place with...  相似文献   

5.
将TA15和Ti_2AlNb合金粉末以不同比例预混,采用激光熔化沉积工艺,制备出40%TA15+60%Ti_2AlNb,50%TA15+50%Ti_2AlNb,60%TA15+40%Ti_2AlNb(质量分数)3种比例的合金薄壁,分析了薄壁的成分、组织及力学性能。结果表明:3种沉积薄壁的成分分布均匀,合金由α相、α2相及β/B2相组成,针状α相和α2相呈网篮状分布在初生β/B2晶粒内部;3种合金的抗拉强度分别为1108 MPa,1071 MPa,1105 MPa,断裂伸长率分别为3.0%,2.2%,3.8%;拉伸断口可见沿α2相撕裂产生的撕裂棱,断裂方式均为准解理断裂。  相似文献   

6.
分别采用最大m值法和恒应变速率法对Ti-4.5Al-3V-2Fe-2Mo合金(SP700钛合金)板材进行超塑拉伸,研究了755~785℃、0.1~0.005s-1及不同方向的单向条件下其超塑拉伸变形行为和典型件的超塑成形行为及力学性能。结果表明:SP700钛合金具有优异的低温超塑性,采用最大m值法在45°方向、775℃变形后,获得3110%的最高延伸率,变形诱发晶粒长大使SP700钛合金抵抗颈缩的能力增加。受双向拉应力作用的锥形件,在755℃具有最优的超塑成形工艺性,锥形件高度可达到100mm,并且晶粒尺寸无明显变化。经33%超塑变形量的试样室温力学性能略高于无变形试样,其室温抗拉强度和延伸率平均值分别达到1027MPa和16.8%。  相似文献   

7.
铝合金的电弧增材制造过程中因持续热积累而引起组织分布不均匀和溶质偏析,导致其性能各向异性。针对这一问题,设计了TiB2纳米颗粒添加铝合金的钨极氩弧(Tungsten inert gas,TIG)增材制造工艺。在电弧增材制造过程中,通过表面预涂层的方式将纳米TiB2颗粒添加到试样中,对比研究了纳米TiB2颗粒不同质量分数对AlSi5合金微观组织的影响。结果表明,随着TiB2质量分数的增加,AlSi5合金的微观组织不均匀性得到明显改善,1.5%TiB2的添加使AlSi5合金的晶粒尺寸从226μm减小到85.6μm,且引起(110)和(112)基面上的织构明显减弱,最大取向密度呈下降的趋势;与无颗粒添加的AlSi5增材试样相比,颗粒添加后的沉积层硬度与弹性模量均得到显著提高,硬度值从879MPa增加到1253MPa,弹性模量从81.9GPa增加到88.3GPa。  相似文献   

8.
进行了普通退火态和双重退火态激光增材制造TA15钛合金显微组织观察和力学性能试验。试验结果表明:普通退火态为细片层α+β超细网篮组织,双重退火态为端部带根须状形貌的初生α相+超细β转变组织构成的特种双态组织;普通退火态激光增材制造TA15钛合金极限强度、屈服强度和疲劳极限均优于双重退火态;双重退火态激光增材制造TA15钛合金具有较好的塑性和优异的断裂韧性。  相似文献   

9.
在温度950~1150℃、应变速率0.001~1 s–1及工程应变50%条件下,利用Gleeble-3500TM热模拟试验机对挤压态喷射成形GH738合金进行热压缩实验,研究合金的流变应力,建立合金热变形本构关系,利用EBSD分析合金组织演变。结果表明:合金流变应力随温度的升高和应变速率的减小而降低,在相同变形条件下,具有细晶组织特征的挤压态喷射成形GH738合金峰值流变应力低于粗晶组织的铸锻GH738合金;挤压态喷射成形GH738合金热变形激活能为651.08 kJ·mol–1,GH738合金的热变形激活能随着初始平均晶粒尺寸的减小而升高;形变温度的升高使挤压态喷射成形GH738合金初始被拉长的晶粒逐渐演变为等轴再结晶晶粒,在1000℃以上获得完全动态再结晶组织,再结晶组织随形变温度的进一步升高发生长大。  相似文献   

10.
对GH4169合金进行近等温锻造试验,结果表明:近等温锻造GH4169合金微观组织和拉伸性能对温度场敏感高,对变形量和应变速率不敏感,有利于GH4169合金近等温加工成形.  相似文献   

11.
In order to study the effect of laser peening on microstructures and properties of Ti Al alloy, Ti Al alloy samples were treated by Nd:YAG laser system with the wavelength of 1064 nm,pulse-width of 18 ns, and pulse-energy of 0–10 J. Surface micro-hardness, roughness, and microstructural characteristics were tested with micro-hardness tester, roughness tester and scanning electron microscope. Residual stress and pole figures were tested with X-ray diffraction and its high-temperature stability was analyzed. The experimental results show that surface micro-hardness increases by up to 30%, roughness increases to 0.37 lm, compressive residual stress increases to 337 MPa, and local texture and typical lamellar microstructure are generated. Residual stress, micro-hardness, and(002) pole figures tests are conducted, compressive residual stress value drops from 337 MPa to 260 MPa, hardness value drops from 377 HV_(0.2) to 343 HV_(0.2), and the(002)poles shift back to the center slightly. Laser peening improves microstructure and properties of Ti Al alloy significantly.  相似文献   

12.
《中国航空学报》2021,34(8):131-142
As-cast beryllium-aluminum (Be-Al) alloy exhibits a coarse microstructure with pore defects due to a large solidification interval, greatly limiting its mechanical properties. In this research, the relationship between laser surface remelting process and microstructure and hardness of as-cast Be-Al-Sc-Zr alloy was established. The experimental results demonstrated that a pore-free refined microstructure of remelted layer was obtained by controlling the parameter of effective laser energy input. The microstructure of as-cast Be-Al-Sc-Zr alloy consisted of equiaxed grains with Al phase forming a continuous frame wrapping Be phase, which was significantly refined in the remelted zone (from 25 μm to 2 μm). The Vickers hardness in the remelted zone (approximately 210 HV) was approximately 3 times that of as-cast Be-Al-Sc-Zr alloy. Analysis of the Vickers hardness and the Be phase size showed a good agreement with a Hall-Petch equation. In addition, transmission electron microscopy (TEM), auger electron spectroscopy (AES) and X-ray diffraction (XRD) analysis evidenced that Sc and Zr elements formed a single blocky phase Be13(Scx,Zr1-x), which was also greatly refined from 8 μm to 1.5 μm in the remelted zone. The results obtained in this study indicate that the laser surface remelting allowed refining the microstructure and further strengthening the Vickers hardness of Be-Al-Sc-Zr alloy.  相似文献   

13.
骆俊廷  赵静启  杨哲懿  刘卫鹏  张春祥 《航空学报》2021,42(12):424693-424693
通过热压缩实验构建了TA15合金的热变形真应力-应变曲线,以此为基础分别建立了合金双相区及单相区温度区间的热变形本构方程;基于热压缩试样动态再结晶的统计数据建立了TA15合金的动态再结晶模型。借助Deform提供的二次开发功能实现相关数学模型的程序化,制定正交实验方案,实现了TA15合金多向锻造变形的微观组织仿真。通过正交实验分析得出各项因子的影响对象及强弱差异,提出了双相区及单相区温度区间内的多向锻造最佳因子组合。建立了TA15合金多向锻造变形微观组织的BP (Back Propagation)神经网络预测模型,将预测结果与有限元仿真结果进行比较,结果表明两种方法的预测结果基本一致,但神经网络具备有限元仿真难以实现的良好细节预测能力,能更为细致地实现对微观组织分布状态的划分。  相似文献   

14.
TA15 钛合金等温局部加载各加载区的组织和性能   总被引:1,自引:0,他引:1       下载免费PDF全文
研究了不同加载方式下TA15钛合金方坯先加载区、过渡区和后加载区的组织和力学性能。结果表明:只采用局部加载时,先加载区和后加载区的室温和高温性能优于过渡区的性能,各区的持久性能差别不大;采用先局部后整体的加载方式时,过渡区的室温和高温性能优于其他两个加载区,但过渡区的持久性能明显较差。只采用局部加载时,各区的组织性能优于先局部后整体加载时各区的组织性能。  相似文献   

15.
变形条件对GH169合金的流动应力和显微组织的影响   总被引:2,自引:0,他引:2  
唐浩  罗子健  郭乃成 《航空学报》1989,10(7):369-378
 根据热加工模拟试验,GH169合金高温下的流动应力值比合金结构钢高得多,而且加工硬化明显。变形条件对其流动应力和显微组织有较大影响。在一定条件下,即使变形温度较高,也可获得细晶组织,变形后采用迅速冷却可细化晶粒。对于GH169合金可通过形变热处理有效地控制其显微组织。  相似文献   

16.
《中国航空学报》2022,35(3):475-483
TC21 titanium alloy, as an important metal to fabricate the aircraft structural components, has attracted great attentions recently. A TC21 titanium alloy with widmanstätten structure was isothermally compressed. Based on the microstructure observation, the evolution of initial β grain, Grain Boundary α phase (αGB), lamellar α and interlayered β was systematically investigated. The results showed that, with the increasing of height reduction, the αGB underwent an evolution process from bending/kinking to breaking inducing the corresponding blurring of initial coarse β grain outline. Meanwhile, a significant phase transformation from α to β took place at the terminations of broken αGB. The evolution of lamellar α and interlayered β in the colony was closely related to their deformation compatibility. In the α colony, the interlayered β experienced a larger deformation amount than lamellar α. The higher distortion energy promoted the occurrence of Dynamic Recovery (DRV) and Dynamic Recrystallization (DRX) to generate many Low Angle Boundaries (LABs) and High Angle Boundaries (HABs) in interlayered β, which induced an apparent grain refinement of β phase. On the contrary, the lower distortion energy and low deformation temperature suppressed the occurrence of DRV/DRX and restrained the globularization of lamellar α. Furthermore, the microstructure observation clearly revealed that the shearing separation mechanism dominated the evolution of the α phase from lamellar to short bar-like morphology.  相似文献   

17.
快速无损伤的测量正交宏观对称的六方晶系多晶体材料织构特征,在材料学方面成了亟待解决的难题。通过建立晶粒取向分布函数、多晶材料等效弹性常数和超声波在材料近表面的传播特征三者的关系,来确定晶粒取向分布函数的五个织构系数W200,W220,W400,W420,W440,构建极图并分析材料的宏观织构特征。其中,采用的两种波型分别是:小角度临界值纵波和瑞利波,而超声波传播特征主要以研究相速度在材料主平面上随传播角度的变化为主。对圆饼状TA19钛合金锻件进行了测量分析,结果显示:单一方向的声速C扫图可以反映出TA19钛合金锻件各位置的织构差异;圆饼状TA19钛合金锻件在以圆心为中心的不同半径的圆周处有着不同的织构特征;五个织构系数分别反映出圆饼状TA19钛合金锻件不同位置处的织构差异,尤其W220,W420,W440三位织构系数差异更为明显。  相似文献   

18.
采用不同工艺参数对TA15钛合金进行电子束焊接,通过观察焊缝形貌、测量其形状参数研究了焊接接头形貌的变化规律,并分析了焊接接头组织。结果表明:增大电子束流时,熔深、半熔深熔宽、焊缝宽度都增大,焊缝横截面的形状从"钉形"转变为"钟罩形";增大焊接速度,对焊缝形状影响不大,熔深、半熔深熔宽及焊缝宽度均减小,深宽比先增大后减小;聚焦电流的增大对熔深作用较明显,半熔深熔宽及焊缝宽度变化不大;扫描幅值的增加使焊缝熔深减小,半熔深熔宽增大。靠近母材的热影响区组织与母材组织相近,主要由初生等轴状α相及转变β相组成,并出现针状(α+β);靠近熔合线的组织由α相和针状(α+β)相构成,并出现α'马氏体;熔合区组织由α'组成,熔合线周围柱状晶垂直于焊缝中心生长,并在焊缝中心形成单列或多列的等轴状晶。  相似文献   

19.
研究了LF6铝合金超塑性变形中的显微组织变化及断口形貌特征。试验结果证明空洞主要在三角界处形核。变形量增加,空洞不断长大,同时有新的空洞产生。晶界滑动是引起空洞长大的主要原因。合金有高的应变速率敏感性,能抑制空洞沿横向晶界的扩展和连接。仅在变形后期,空洞才因试样薄弱处局部应力的增加沿横向晶界大范围扩展连接,并导致合金断裂。变形过程中晶粒的长大和伸长会促使空洞的形核。文中给出了合金超塑性变形断裂的物理模型。  相似文献   

20.
研究AA 7055-T7751板材不同厚度层的力学性能,并采用电子背散射衍射(EBSD)、透射电子显微镜(TEM)、小角度X射线散射(SAXS)等分析技术研究板材不同厚度层的微观组织。结果表明:从板材表层到厚度中心,再结晶程度从69%下降到19.1%,亚晶粒尺寸从10μm减小到2μm;板材厚度中心主要为轧制型织构,远离中心层其含量逐渐减少,板材表层主要为剪切型织构;板材主要强化相为盘状η'相,其盘面半径为3.7 nm,厚度为1~3 nm,与基体的共格应变约为0.0133;板材不同厚度层沿轧制方向的拉伸屈服强度近似呈线性变化:σ_y=-38.7S+604.8(0≤S≤1)。  相似文献   

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