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1.
利用放电等离子烧结(SPS)技术制备了HA/Ti-24Nb-4Zr生物复合材料,研究了不同退火温度对复合材料显微组织和力学性能(抗压强度、屈服强度、屈强比、压缩弹性模量)的影响。结果表明,烧结态复合材料主要由β-Ti相、少量初生α-Ti相及HA相组成;随着退火温度的升高,复合材料基体中β-Ti相含量增多且晶粒逐渐长大,针状次生α-Ti相在晶界处和晶内不断析出,HA相结构和含量变化不大;与烧结态相比,不同退火温度处理后的复合材料强度和弹性模量先略微上升后下降,而塑韧性呈不断提高趋势;复合材料在850 ℃退火处理后,抗压强度、屈服强度、屈强比和压缩弹性模量值分别为1507 MPa、1270 MPa、0.84和42 GPa,塑韧性得到明显改善,作为生物医用植入材料具有潜在的应用前景。  相似文献   

2.
利用放电等离子烧结技术(SPS)制备了Ti-24Nb-4Zr-8Sn合金,研究了烧结温度对合金相对密度、显微组织及力学性能的影响。结果表明:在1000~1200℃烧结温度范围内合金具有较高的相对密度和抗压强度,合金主要由β-Ti相和Ti-Nb固溶体组成的混合基体及少量α-Ti相组成;随着烧结温度的升高,合金相对密度和抗压强度呈增大趋势,合金中α-Ti相向β-Ti相逐渐转变,同时合金中Ti-Nb固溶体含量越来越少,且尺寸减小;合金压缩弹性模量在58~61 GPa之间,受烧结温度变化影响较小。  相似文献   

3.
采用放电等离子烧结技术制备了Ti-35Nb-7Zr-XCPP生物复合材料,研究了焦磷酸钙(CPP)含量对复合材料致密度、微观结构、显微组织及其力学性能(压缩强度、压缩弹性模量)的影响。结果表明:复合材料组织主要由β-Ti相基体、少量残留α-Ti相及CPP相组成,CPP含量的增加会导致复合材料中残留α-Ti相含量增加,过高的CPP加入量会使得CPP发生分解现象;复合材料具有较低的压缩弹性模量(40~62 GPa)和较高的抗压强度(1000 MPa以上),显示了良好的力学相容性,过高的CPP加入量会导致复合材料压缩弹性模量出现明显增大现象,从而对复合材料力学相容性产生不利的影响。  相似文献   

4.
为了提高生物材料的生物活性并降低弹性模量,利用放电等离子烧结技术制备(Ti-35Nb-7Zr-5Ta)-15HA生物复合材料,研究不同烧结温度(950~1150℃)对复合材料相对密度、微观组织演变、力学性能及生物活性的影响。结果表明:随着温度的升高,复合材料相对密度从87.6%提高到97.5%;复合材料主要由β-Ti相、α-Ti相及陶瓷相,如Ti2O、CaZrO3、CaO、Ti5P3和Ca3(PO4)2等组成;复合材料的弹性模量为30~95 GPa、抗压强度为593~1978 MPa,而且随着烧结温度升高呈增大趋势;同时,在模拟体液中浸泡14 d后,复合材料表面能够获得类骨磷灰石,显示出良好的生物活性,但随着温度的升高,类骨磷灰石含量不断减少。因此,950℃下烧结的(Ti-35Nb-7Zr-5Ta)-15HA生物复合材料是潜在的良好的生物植入材料。  相似文献   

5.
利用放电等离子烧结(SPS)技术制备了中间致密、表面多孔的Ti-13Nb-13Zr梯度合金,研究了烧结温度(950~1200 ℃)对梯度合金组织演变、界面结合、表面孔隙特征、力学及体外矿化性能的影响。结果表明:随烧结温度的逐步上升,梯度合金中α-Ti相减少,β-Ti相增多,组织逐渐连续均匀分布,晶粒得到细化,中间基体与多孔层界面呈连续过渡且形成良好的冶金结合,表面多孔层孔隙率下降而平均孔径减小;梯度合金抗压强度值随烧结温度升高呈先增大后降低趋势,而弹性模量值变化不大;综合分析,烧结温度为1150 ℃时,制备的表面多孔梯度合金不仅具有良好的力学性能(抗压强度893MPa,弹性模量16GPa),而且具有适宜的孔隙参数(孔隙率34.7%,平均孔径340.9μm)及优异的类骨磷灰石形成能力与体外矿化性能。  相似文献   

6.
利用放电等离子烧结技术制备NiTi/表面多孔Ti梯度合金,研究不同烧结温度对梯度合金微观组织、表面孔隙特征、力学性能及体外生物活性的影响及机理。结果表明:随着烧结温度的升高,梯度合金组织由NiTi、α-Ti、Ni、Ti_2Ni、Ni_3Ti混合相逐渐转变为单一NiTi和α-Ti相,内外层界面形成良好冶金结合,表面孔隙率和平均孔径呈缓慢减小趋势;同时抗压强度值快速增大而弹性模量值变化不大;1000℃制备的梯度合金不仅具有良好的表面孔隙特征(孔隙率35.8%、平均孔径423μm)、较高的抗压强度(632 MPa)、较低的弹性模量(9 GPa)及优异的超弹性行为(超弹性恢复应变4%),而且体外生物活性显著提高。  相似文献   

7.
利用放电等离子烧结技术(SPS)制备Ti-29Nb-13Ta-4.6Zr(TNTZ)合金,研究烧结温度对合金致密度、显微组织及力学性能的影响。结果表明:在950~1150℃烧结温度范围内合金具有较高的致密度和抗压强度,合金由β-Ti相与Ti-Nb-Ta-Zr固溶体形成的混合基体组织及少量未熔化的Nb、Ta、Zr金属颗粒组成。随着烧结温度的升高,合金致密度和抗压强度呈增大趋势,合金中混合基体组织尺寸越来越大且不断融合联结,难熔金属颗粒数量越来越少且尺寸越来越小。合金压缩弹性模量在58~60GPa之间,说明具有良好的力学相容性,烧结温度变化对其影响较小。  相似文献   

8.
利用放电等离子烧结技术(SPS)制备了Ti-35Nb-7Zr-5Ta合金,研究了烧结温度对合金致密度、显微组织及力学性能的影响。结果表明:在950~1150℃烧结温度范围内合金主要由β-Ti相和Ti-Nb-Ta-Zr固溶体组成的混合基体及少量未熔化的Nb、Ta金属颗粒组成,并且合金具有较高的致密度和抗压强度;随着烧结温度的升高,合金中混合基体组织尺寸越来越大且不断融合联结,Nb、Ta金属颗粒数量越来越少且尺寸越来越小,同时合金致密度和抗压强度呈增大趋势;所制备的合金压缩弹性模量值在50~57 GPa之间,具有良好的力学相容性,烧结温度变化对其影响较小。  相似文献   

9.
利用放电等离子烧结技术制备了基体为NiTi、表面为多孔NiTi的生物医用梯度合金,研究了烧结温度对梯度合金的微观结构、显微组织演变、表面孔隙特征及力学性能的影响。结果表明:随着烧结温度升高,合金由Ti、Ni、Ti_2Ni、Ni_3Ti混合相逐渐演变为以NiTi相为主及少量残留Ti_2Ni、Ni_3Ti相组成的组织,基体与多孔层界面处裂纹及缺陷逐渐减少并形成稳定的冶金结合,内外层晶粒不断细化,但过高的烧结温度会导致多孔层孔隙融合连通,使得梯度结构遭到破坏,同时表面多孔层孔隙率与平均孔径呈缓慢减小趋势;合金压缩弹性模量随烧结温度升高变化不明显,而抗压强度呈显著增大趋势。与块体NiTi合金及多孔NiTi合金相比,所制备梯度合金不仅具有良好的界面结合和表层孔隙特征、较高的抗压强度及较低的弹性模量,还具有优异的超弹性性能。  相似文献   

10.
本工作的目的是研究原生牙齿的梯度力学性能,制备聚合物渗透陶瓷网络(PICN)复合材料,模拟天然牙的力学行为。采用纳米压痕法测定了牙釉质和牙本质的弹性模量和维氏硬度。结果表明,原生牙齿的力学性能具有梯度特性。树脂填充部分烧结硅铝酸钠、氧化铝和氧化锆的力学性能有很大差异。通过逐步改变陶瓷组分,实现了力学性能的梯度变化。一种是纳米玻璃相硅铝酸钠/微米α氧化铝层合复合材料。陶瓷坯体的烧结温度为700℃,保温时间分别为2、4和6 h。对复合材料的抗弯强度、断裂韧性、弹性模量和硬度进行了测试,结果表明:硅铝酸钠/微米α氧化铝复合材料的弹性模量和硬度呈现梯度特性。另一种是3Y-TZP/微米α氧化铝层合复合材料。坯体烧结温度分别为1150和1200℃,保温时间为2h。其弹性模量和硬度均呈现梯度特性。SEM观察表明,过渡区形成了相互咬合的网络结构。与普通均质材料不同,本研究制备的复合材料具有各向异性。因此,复合材料的力学性能更接近于原生牙齿。  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.
吴玉梅  熊晓云  靳蓉  孙敬民  杨林  罗晓星 《金属学报》2005,10(10):1100-1103
目的: 观察本实验室合成的一种治疗阿尔茨海默氏症(AD)的药物(1-二甲基磷酰基-2, 2, 2 -三氯)-乙基-1-醇烟酸醋(NMF),对体外培养的皮层神经细胞活性的影响以及对海人藻酸(KA)所致的神经损伤的保护作用。方法: 采用体外培养皮层神经元的方法,解剖分离 15 d胚胎小鼠皮层神经细胞, 接种于 96孔板,48 h 后加药并培养 72 h,以 MIT 法 观察 NMF 对小鼠皮层神经细胞活性的影响;同时将接种于 24 孔板的细胞预先给予 NMF,d 3 时加或不加KA处理后,以台盼蓝染色鉴别并计数死、活细胞,可得出细胞的存活率。结果: NMF 明显促进胎鼠皮层神经元活性,其中 NMF1、0. 1、10nmol·L-1促进神经元活性增殖率分别高达 34.7%、37.4%、36. 7%, NMF 明显促进正常胎鼠皮层神经元存活卒,与对照组比较,10nmol·L-1 NMF 对皮层神经元的存活率分别提高 39.3%、73.5%。 NMF能显著 对抗 KA 所致的神经元损伤,与 KA 损伤组相比, NMF0.1、10、10nmol·L-1对损伤皮层神经元的保护率分别为 77.30%、80.10%、84.15%。结论: NMF 明 显促进胎鼠皮层神经元的洁性、提高正常皮层神经元,的存活卒,并能有效地保护KA所致的神经元损伤,提示 NMF 是一种很有潜力的治疗 AD 的药物。  相似文献   

14.
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   

15.
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   

16.
Coherent second phase often exhibits anisotropic morphology with specifi c orientations with respect to both the second and the matrix phases. As a key feature of microstructure, the morphology of the coherent particles is essential for understanding the second-phase strengthening eff ect in various industrial alloys. This letter reports anisotropic growth of coherent ferrite from austenite matrix in pure iron based on molecular dynamics simulation. We found that the ferrite grain tends to grow into an elongated plate-like shape, independent of its initial confi guration. The fi nal shape of the ferrite is closely related to the misfi t between the two phases, with the longest direction and the broad facet of the plate being, respectively, consistent with the best matching direction and the best matching plane calculated via the Burgers vector content(BVC) method. The strain energy calculation in the framework of Eshelby's inclusion theory verifi es that the simulated orientation of the coherent ferrite is energetically favorable. It is anticipated that the BVC method will be applicable in analysis of anisotropic growth and morphology of coherent second phase in other phase transformation systems.  相似文献   

17.
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   

18.
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   

19.
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   

20.
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   

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