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1.
13Cr超级马氏体不锈钢热压缩变形行为与组织演变   总被引:1,自引:0,他引:1       下载免费PDF全文
通过Gleeble-3500热模拟试验机对13Cr超级马氏体不锈钢进行单道次压缩变形试验,系统研究变形温度在950~1150 ℃、应变速率为0.001~10 s-1条件下的热变形行为。利用双曲正弦模型建立了13Cr超级马氏体不锈钢的流变应力本构方程,求得试验钢的热变形激活能为412 kJ/mol,并基于动态材料模型(DMM)理论绘制了材料的热加工图,得出材料的最佳热变形工艺参数窗口为:变形温度1032~1072 ℃,应变速率0.039~0.087 s-1。组织演变结果表明,试验钢在高变形温度和低应变速率的条件下,容易发生动态再结晶。当应变速率一定时(0.01 s-1),变形温度从950 ℃升到1050 ℃,动态再结晶的体积分数从18.7%升高到60.1%,组织的再结晶程度提高,晶粒均匀细小;当变形温度一定时(1050 ℃),随着应变速率的降低,动态再结晶的晶粒长大粗化。  相似文献   

2.
为了探究0.30C-Cr-W渗氮轴承钢的最佳动态再结晶条件和热变形机理,利用Gleeble3800热模拟试验机对试验钢进行了等温热压缩模拟试验,试验变形温度为750~1050 ℃,应变速率0.01~10 s-1,变形量60%。结果表明,峰值应力随变形温度的降低和应变速率的升高而增大,在应变速率为0.01∼0.1 s-1,变形温度为950~1050 ℃时,发生明显动态再结晶;具有双曲正弦函数型的本构方程能较好地描述0.30C-Cr-W渗氮轴承钢的流变行为;0.30C-Cr-W渗氮轴承钢的形变激活能为442.022 kJ/mol。基于动态材料模型和流变应力数据建立了热加工图。通过热加工图及微观组织的观察确定了变形温度950∼1050 ℃,应变速率0.01∼0.15 s-1为最佳热变形条件;变形温度750∼950 ℃,应变速率1.2∼10 s-1为流变失稳区。  相似文献   

3.
利用蔡司显微镜和Nano Measurer金相分析软件,研究了不同加热温度下新能源汽车用高Nb-Ti无取向硅钢显微组织的演变规律,并利用ICP-MS对不同加热温度下Nb、Ti的固溶量进行检测分析;然后采用热模拟方法研究了热轧过程中试验钢的再结晶行为。结果表明:随着加热温度升高,试验钢的晶粒尺寸增加明显,而Nb、Ti的固溶量仅略有增加。当加热温度为1230 ℃、变形温度分别为1100、1050、1000 ℃时,在应变速率0.1 s-1、变形量30%和应变速率1 s-1、变形量80%的条件下单道次压缩后的试验钢均未发生动态再结晶行为,而在应变速率为1 s-1、变形量为40%的条件下,在1100 ℃及1050 ℃单道次压缩后再保温30 s以上时有静态再结晶行为发生,显微组织大部分为等轴晶粒,但是在1000 ℃变形单道次压缩后再保温50 s的显微组织仍以未再结晶的长条晶粒为主。  相似文献   

4.
王帅  赵阳  邵国华  陈礼清 《轧钢》2021,38(6):42-47
利用MMS-200热模拟试验机对一种中碳高硅弹簧钢进行了单道次热压缩试验,研究了该钢在变形温度为900~1 100 ℃及应变速率为0.1~10 s-1条件下的热变形行为,建立了应变补偿的Arrhenius流变应力预测模型。结果表明,应变速率和变形温度对该弹簧钢的奥氏体动态再结晶过程有显著影响。当变形速率为0.1、5、10 s-1时,在所有变形温度下均发生奥氏体动态再结晶;当变形速率为1 s-1且变形温度超过950 ℃时,奥氏体发生动态再结晶,其热变形激活能为445.5 kJ/mol。通过对真应力的预测值与试验值的对比,得出应变补偿Arrhenius模型具有准确性和预测性,其相关系数为0.976,平均相对误差为4.73%。  相似文献   

5.
根据Gleeble-3500热模拟试验机测量30CrNi3MoV钢的真应力-真应变曲线,系统研究了应变速率为0.01、0.1 s-1时钢材的动态再结晶行为,并构建了其动态再结晶模型。结果表明:30CrNi3MoV钢在高温小应变速率下更容易发生动态再结晶,其热变形激活能为328.2 kJ/mol;通过加工硬化率随流变应力变化曲线(θ-σ)的拐点确定临界应变,可得动态再结晶临界应变方程为εc=0.001 22Z0.175;构建的动态再结晶体积分数及其平均晶粒尺寸模型能够较好地预测试验钢的动态再结晶体积分数及其晶粒尺寸;当应变速率为0.1 s-1、变形温度为1050 ℃时,试验钢的晶粒最细小、均匀,平均晶粒尺寸约为19.9 μm。  相似文献   

6.
为研究微合金元素Nb对高碳合金钢动态再结晶行为的影响,利用Gleeble-3500热模拟试验机进行单道次压缩试验,测定了高碳合金钢在变形温度为950~1150 ℃、应变速率为0.01~5 s-1的流变应力曲线,利用Zeiss光学显微镜观察了奥氏体动态再结晶晶粒形态,通过回归计算获得了相应的再结晶激活能,建立了热变形方程。结果表明:较高的变形温度和较低的应变速率有利于含铌高碳合金钢发生动态再结晶;含铌高碳合金钢的动态再结晶晶粒尺寸随着变形温度的升高而增大,当变形温度为1050 ℃时,含铌高碳合金钢已大量出现动态再结晶晶粒;0.040%铌加入到高碳合金钢中,在应变速率为0.1 s-1,变形温度为1150 ℃时推迟了钢的动态再结晶开始时间约2.23 s,动态再结晶形变激活能增加了52.26 kJ/mol。  相似文献   

7.
伦建伟  刘伟  杨洋  郭诚 《锻压技术》2021,46(3):216-220
为了研究35CrMoV钢的高温变形行为,借助Gleelble 3800型热模拟试验机,在应变速率为0.01~10 s-1、变形温度为950~1150℃的条件下进行轴向单道次高温压缩试验,并根据试验结果绘制35CrMoV钢的流动应力-应变曲线。分析研究了变形温度、应变速率对流动应力的影响,计算了变形激活能Q及参数n、A、α的取值。试验结果表明:35CrMoV钢在950~1150℃进行压缩试验时,存在动态再结晶和动态回复两种流动应力-应变关系,当应变速率为0.01和0.1 s-1时,其流动应力-应变曲线主要表现为动态再结晶型;当应变速率为1和10 s-1时,其流动应力-应变曲线主要表现为动态回复型。在试验条件下获得35CrMoV钢的平均变形激活能Q为310.433 kJ·mol-1,建立了用于描述35CrMoV钢流动应力、应变速率和变形温度三者之间关系的本构方程。  相似文献   

8.
采用热模拟试验法研究了变形温度(340~500℃)和应变速率(0.01~25 s-1)对均匀化态Mg-6Gd-1.2Y-0.53Zr合金动态再结晶(DRX)临界应变及体积分数的影响,通过构建热加工图优化了其热加工工艺参数范围。结果表明,在0.01~1 s-1的低应变速率下,该合金的动态再结晶(DRX)临界应变量随变形温度的升高而升高,而在10~25 s-1高应变速率下,DRX临界应变量随变形温度的升高而略微下降。应变速率及变形温度的升高都使DRX体积分数增大,在500℃、25 s-1条件下,合金的动态再结晶体积分数最高,达90.0%。根据构建的热加工图,当变形量在30%~80%之间时,较佳的热加工工艺区间为400~500℃、0.01~1 s-1以及420~500℃、10~25 s-1。在10~25 s-1应变速率下,当变形量为10%~80%时,合金最适宜的变形温度为460~500℃。  相似文献   

9.
采用Thermecmastor-Z热模拟试验机研究了试验钢在800~1150 ℃、应变速率0.01~10 s-1的热压缩变形行为,并观察变形后显微组织。基于试验数据分析,确定了试验钢在奥氏体区的热变形方程,建立试验钢在0.8真应变下的热加工图。结果表明:试验钢的流变应力和峰值应变随变形温度的升高而减小;试验钢在奥氏体区的热变形激活能为385.91 kJ/mol。根据试验钢功率耗散及流变失稳判据确定最佳热加工工艺参数为热变形温度范围1050~1150 ℃和应变速率0.01~0.1 s-1。在该范围内,试验钢发生完全动态再结晶,功率耗散系数为17%~32%。  相似文献   

10.
利用MMS-300型热力模拟试验机对含硼钒微合金钢及不含硼的钒微合金钢在900~1100 ℃变形温度及0.1~10 s-1应变速率条件下进行了单道次热压缩试验,测定了其真应力-真应变曲线,研究了变形温度和应变速率及加入微量硼对试验钢的动态再结晶行为的影响,并采用回归分析法确定了两种试验钢的热变形激活能,建立了试验钢的热变形方程,得出了热变形过程中峰值应变与Z参数之间的关系。结果表明,含硼及不含硼试验钢在0.01、0.1 s-1的低应变速率和900~1100 ℃的变形温度下均发生动态再结晶,两种试验钢的激活能分别为284.9、287.7 kJ/mol,峰值应变与Z参数之间呈线性关系;加入微量硼后,使钒微合金钢动态再结晶激活能和峰值应力稍微降低,对动态再结晶有所促进。  相似文献   

11.
In as-welded state, each region of 2219 aluminum alloy TIG-welded joint shows diff erent microstructure and microhardness due to the diff erent welding heat cycles and the resulting evolution of second phases. After the post-weld heat treatment, both the amount and the size of the eutectic structure or θ phases decreased. Correspondingly, both the Cu content in α-Al matrix and the microhardness increased to a similar level in each region of the joint, and the tensile strength of the entire joint was greatly improved. Post-weld heat treatment played the role of solid solution strengthening and aging strengthening. After the post-weld heat treatment, the weld performance became similar to other regions, but weld reinforcements lost their reinforcing eff ect on the weld and their existence was more of an adverse eff ect. The joint without weld reinforcements after the post-weld heat treatment had the optimal tensile properties, and the specimens randomly crack in the weld zone.  相似文献   

12.
After nearly two years' tense construction, the first phase of industrialized base of Shenyang Research Institute of Foundry (SRIF), located at the Tiexi Casting and Forging Industrial Park in the west of Tiexi District, has now been completed and formally put into operation.  相似文献   

13.
Institute of Process Engineering, Chinese Academy of Sciences, China, has proposed a method for oxidative leaching of chromite with potassium hydroxide. Understanding the mechanism of chromite decomposition, especially in the potassium hydroxide fusion, is important for the optimization of the operating parameters of the oxidative leaching process. A traditional thermodynamic method is proposed and the thermal decomposition and the reaction decomposition during the oxidative leaching of chromite with KOH and oxygen is discussed, which suggests that chromite is mainly destroyed by reactions with KOH and oxygen. Meanwhile, equilibrium of the main reactions of the above process was calculated at different temperatures and oxygen partial pressures. The stable zones of productions, namely, K2CrO4 and Fe2O3, increase with the decrease of temperature, which indicates that higher temperature is not beneficial to thermodynamic reactions. In addition, a comparison of the general alkali methods is carried out, and it is concluded that the KOH leaching process is thermodynamically superior to the conventional chromate production process.  相似文献   

14.
The effect of isochronal heat treatments for 1h on variation of damping, hardness and microstructural change of the magnesium wrought alloy AZ61 was investigated. Damping and hardness behaviour could be attributed to the evolution of precipitation process. The influence of precipitation on damping behaviour was explained in the framework of the dislocation string model of Granato and Lücke.  相似文献   

15.
The Lanthanum-doped bismuth ferrite–lead titanate compositions of 0.5(Bi LaxFe1-xO3)–0.5(Pb Ti O3)(x = 0.05,0.10,0.15,0.20)(BLxF1-x-PT) were prepared by mixed oxide method.Structural characterization was performed by X-ray diffraction and shows a tetragonal structure at room temperature.The lattice parameter c/a ratio decreases with increasing of La(x = 0.05–0.20) concentration of the composites.The effect of charge carrier/ion hopping mechanism,conductivity,relaxation process and impedance parameters was studied using an impedance analyzer in a wide frequency range(102–106Hz) at different temperatures.The nature of Nyquist plot confirms the presence of bulk effects only,and non-Debye type of relaxation processes occurs in the composites.The electrical modulus exhibits an important role of the hopping mechanism in the electrical transport process of the materials.The ac conductivity and dc conductivity of the materials were studied,and the activation energy found to be 0.81,0.77,0.76 and 0.74 e V for all compositions of x = 0.05–0.20 at different temperatures(200–300 °C).  相似文献   

16.
The orientation relationships(ORs)between the martensite and the retained austenite in low-and medium-carbon steels after quenching–partitioning–tempering process were studied in this work.The ORs in the studied steels are identified by selected-area electron diffraction(SAED)as either K–S or N–W ORs.Meanwhile,the ORs were also studied based on numerical fitting of electron backscatter diffraction data method suggested by Miyamoto.The simulated K–S and N–W ORs in the low-index directions generally do not well coincide with the experimental pole figure,which may be attributed to both the orientation spread from the ideal variant orientations and high symmetry of the low-index directions.However,the simulated results coincide well with experimental pole figures in the high-index directions{123}_(bcc).A modified method with simplicity based on Miyamoto’s work was proposed.The results indicate that the ORs determined by modified method are similar to those determined by Miyamoto’method,that is,the OR is near K–S OR for the low-carbon Q–P–T steel,and with the increase of carbon content,the OR is closer to N–W OR in medium-carbon Q–P–T steel.  相似文献   

17.
This work was to reveal the residual stress profile in electron beam welded Ti-6Al-4V alloy plates(50 mm thick) by using finite element and contour measurement methods.A three-dimensional finite element model of 50-mmthick titanium component was proposed,in which a column–cone combined heat source model was used to simulate the temperature field and a thermo-elastic–plastic model to analyze residual stress in a weld joint based on ABAQUS software.Considering the uncertainty of welding simulation,the computation was calibrated by experimental data of contour measurement method.Both test and simulated results show that residual stresses on the surface and inside the weld zone are significantly different and present a narrow and large gradient feature in the weld joint.The peak tensile stress exceeds the yield strength of base materials inside weld,which are distinctly different from residual stress of the thin Ti-6Al-4V alloy plates presented in references before.  相似文献   

18.
Silicon carbide nanoparticle-reinforced nickel-based composites(Ni–Si CNP),with a Si CNPcontent ranged from1 to 3.5 wt%,were prepared using mechanical alloying and spark plasma sintering.In addition,unreinforced pure nickel samples were also prepared for comparative purposes.To characterize the microstructural properties of both the unreinforced pure nickel and the Ni–Si CNPcomposites transmission electron microscopy(TEM) was used,while their mechanical behavior was investigated using the Vickers pyramid method for hardness measurements and a universal tensile testing machine for tensile tests.TEM results showed an array of dislocation lines decorated in the sintered pure nickel sample,whereas,for the Ni–Si CNPcomposites,the presence of nano-dispersed Si CNPand twinning crystals was observed.These homogeneously distributed Si CNPwere found located either within the matrix,between twins or on grain boundaries.For the Ni–Si CNPcomposites,coerced coarsening of the Si CNPassembly occurred with increasing Si CNPcontent.Furthermore,the grain sizes of the Ni–Si CNPcomposites were much finer than that of the unreinforced pure nickel,which was considered to be due to the composite ball milling process.In all cases,the Ni–Si CNPcomposites showed higher strengths and hardness values than the unreinforced pure nickel,likely due to a combination of dispersion strengthening(Orowan effects) and particle strengthening(Hall–Petch effects).For the Ni–Si CNPcomposites,the strength increased initially and then decreased as a function of Si CNPcontent,whereas their elongation percentages decreased linearly.Compared to all materials tested,the Ni–Si CNPcomposite containing 1.5% Si C was found more superior considering both their strength and plastic properties.  相似文献   

19.
A new method was introduced to achieve directional growth of Sn crystals. Microstructures in liquid(Pb)/liquid(Sn) diffusion couples were investigated under various static magnetic fields. Results show that the β-Sn crystals mainly reveal an irregular dendritic morphology without or with a relatively low static magnetic field(B0.3 T). When the magnetic field is increased to 0.5 T, the β-Sn dendrites close to the final stage of growth begin to show some directional character. With a further increase in the magnetic field to a higher level(0.8–5 T), the β-Sn dendrites have an enhanced directional growth character, but the dendrites show a certain deflection. As the magnetic field is increased to 12 T, the directional growth of the β-Sn dendrites in the center of the couple is severely destroyed. The mechanism of the directional growth of the β-Sn crystals and the deflection of the β-Sn crystals with the application of static magnetic field was tentatively discussed.  相似文献   

20.
韩磊 《腐蚀与防护》2015,36(1):84-90,94
综述了常见的电化学噪声数据处理方法,介绍了直流趋势剔除、统计分析、快速傅立叶变换(FFT)法计算功率谱密度(PSD)以及小波变换处理电化学噪声信号的基本过程,并阐释了各种数学处理及所得参数的物理意义。  相似文献   

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