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1.
The microstructure, mechanical and magnetic properties of Zr–x (8, 9, 10, wt.%)Nb–4Sn alloys were investigated to obtain novel Zr-based alloy with low Young’s modulus and magnetic susceptibility for biomedical implants. After homogenization annealing, hot forging and solution annealing, Zr–8Nb–4Sn, Zr–9Nb–4Sn and Zr–10Nb–4Sn alloys were composed of β+α″ phase, β+α″ phase, β+ω phase, respectively. The temperature at which the α" and ω phase were transformed into β phase during the heating process was about 200 ​°C, and the phase transformation temperature decreased with the increase of Nb element. Among all the Zr–x (x ​= ​8,9,10)Nb–4Sn(wt.%) alloys, Zr–9Nb–4Sn alloy had the lowest Young's modulus of 46.6 ​GPa and the low magnetic susceptibility of 1.294 ​× ​10−6 cm3g−1, which has a good application prospect for biomedical applications.  相似文献   
2.
铝锡轴承合金对大型载重汽车、坦克、高速汽车、拖拉机等的高速高压柴油机的发展有重要的意义。提高铝锡合金的耐摩擦磨损性能可节省大量能源并延长零件的使用寿命,如何取得具有优良的耐摩擦磨损的铝锡合金成为研究的重点。本文介绍了提高铝锡合金的耐摩擦磨损性能的措施及其影响因素,总结铝锡合金中锡元素含量改变、合金元素的添加、热处理与制备工艺的改变对铝锡合金的显微组织以及耐摩擦磨损性能的影响。  相似文献   
3.
Microarc oxidation(MAO)electrolysis plasma deposition was used to prepare Al_2O_3coatings on Ti-45Al-8.5 Nb alloys to improve high temperature oxidation resistance.The surface and cross-section morphologies before and after high-temperature oxidation,the chemical composition,and the phase identification of the coatings were investigated by scanning electron microscopy(SEM),electron probe microanalyses(EPMA),and X-ray diffraction(XRD).The results show that Al_2O_3coatings with a thickness of approximately 8μm can be obtained on the Ti-45Al-8.5 Nb alloys by MAO for 600 s.The samples with the Al_2O_3coatings exhibited better high-temperature oxidation resistance.A minimal weight gain of only 0.396 g/m~2after 100 h oxidation at 900°C was observed for the coatings formed with a deposition voltage of 400 V and using a duty cycle of 3%.The deposition mechanism of the Al_2O_3coatings and the effect of the MAO parameters are also described.  相似文献   
4.
The as-cast and heat-treated microstructures and mechanical properties of the AZ91 magnesium alloys with and without minor Sc addition were investigated and compared in this paper. The results indicated that adding0.15–0.45 wt% Sc to the as-cast AZ91 alloy not only could modify and refine the Mg_(17)Al_(12) phase but also suppress the formation of the Mg_(17)Al_(12) phase. At the same time, the grains of the Sc-containing as-cast AZ91 alloys were also effectively refined. As a result, the mechanical properties at room temperature(RT) for the Sccontaining as-cast AZ91 alloys were effectively improved. In addition, adding 0.15–0.45 wt%Sc to the AZ91 alloy promoted the formation of the continuous precipitates(CP) during the aging treatment in spite of that the formation of the discontinuous precipitates(DP) was simultaneously suppressed. Accordingly, the Sc-containing as-aged AZ91 alloys obtained the relatively higher mechanical properties at RT than the as-aged AZ91 alloy.  相似文献   
5.
磨粒和抛光垫为化学机械抛光(CMP)提供了重要的机械磨削作用。为了探讨磨粒和抛光垫对铝合金化学机械抛光的磨削作用,研究了不同种类磨粒和抛光垫对材料去除率和表面形貌的影响。结果表明:在pH=12-13时,氧化铝抛光液去除率(MRR)为910nm/min,远大于二氧化硅与氧化铈抛光液,且获得较为理想光滑表面。3种不同抛光垫抛光后的铝合金表面,呢子抛光垫表面将不会出现划痕与腐蚀点,表面粗糙度较低为10.9nm。随着氧化铝浓度的增加,材料去除率(MRR)和表面粗糙度(Ra)均增加。当氧化铝含量为4wt%时,抛光垫使用呢子抛光垫适宜铝合金化学机械抛光,在获得高去除率的同时铝合金表面精度高。  相似文献   
6.
Mechanical properties of Al-Fe-Ni eutectic alloys have been investigated based on the nominal mass fraction of eutectic phase,and the added Fe/Ni mass ratio.The X-Ray diffraction,scanning electron microscopy equipped with energy dispersive spectroscopy and transmission electron microscope have been used to identify phase composition,characterize microstructure and crystal structure of Al_9FeNi phase,respectively.The results demonstrate that the nominal mass fraction of eutectic phase control the presence of primary phase.The tensile strength slightly increases,and the ductility deteriorates sharply as the volume fraction of primary phase increases.The Fe/Ni mass ratio has the profound effect on the microstructures(i.e.,size and shape) of primary phase.When the Fe/Ni ratio is approaching to 1,the primary phase becomes rod-like shape,which can enhance the ductility of alloys over the flake-like phase.The increasing cooling rate can effectively reduce the eutectic grains size and primary phase fraction,and further significantly improve mechanical properties of the alloys.  相似文献   
7.
This article reports the effects of stirring speed and T6 heat treatment on the microstructure and mechanical properties of Al-2024 alloy synthesized by a rheocasting process. There was a decrease in grain size ofα-Al particles corresponding to an increase in stirring speed. By increasing the stirring speed, however, the globularity of matrix particles first increased and then declined. It was also found that the hardness, compressive strength, and compressive strain increased with the increase of stirring speed. Microstructural studies revealed the presence of nonsoluble Al15(CuFeMn)3Si2 phase in the vicinity of CuAl2 in the rheocast samples. The required time for the solution treatment stage was also influenced by stirring speed;the solution treatment time decreased with the increase in stirring speed. Furthermore, the rheo-cast samples required a longer homogenization period compared to conventionally wrought alloys. Improvements in hardness and compres-sive properties were observed after T6 heat treatment.  相似文献   
8.
对300℃时Mg-Zn-Ce系富镁侧化合物的成分特征、结构和相平衡关系进行了研究.结果表明,Mg-Zn-Ce富镁角存在一个Mg12Ce的二元置换固溶体(Mg,Zn)12Ce,还存在一个三元线性化合物(Mg,Zn)11Ce(τ相).(Mg,Zn)12Ce中Zn的范围为0~7.3%(原子分数),其晶体结构为体心四方晶格.三元线性化合物τ相含Zn为8.5%~43.5%(原子分数),其晶体结构为C底心正交晶格.(Mg,Zn)12Ce和τ相均与α(Mg)存在稳定的两相平衡,且在Mg-Zn-Ce系富镁角还存在三相平衡Mg+(Mg,Zn)12Ce+τ.  相似文献   
9.
采用末端淬火和腐蚀浸泡方法研究了淬火速率对Al-5Zn-3Mg-1Cu铝合金厚板剥落腐蚀性能的影响,结合金相显微镜、透射电镜和扫描透射电镜微观组织表征对影响机理进行了分析和探讨.Al-5Zn-3Mg-1Cu铝合金的剥落腐蚀性能随淬火速率的减小(2 160℃/min→100℃/min)而下降,腐蚀等级由P级变为ED级,最大腐蚀深度从15μm增加至530μm.淬火速率减小导致晶界析出相数量增加,其中Zn,Mg元素含量上升,无沉淀析出带宽化,是剥落腐蚀性能下降的主要原因.  相似文献   
10.
针对轴承钢失效形式主要为疲劳破坏的问题,对中碳铬钨渗氮轴承钢进行旋转弯曲疲劳(RBF)试验及分析。分析轴承钢经调质处理(880 ℃+540 ℃)后的组织,再经RBF试验后疲劳断口和渗氮处理的作用,还分析了非金属夹杂物对轴承钢RBF的影响,构建了非金属夹杂物深度和尺寸对中碳铬钨渗氮轴承钢RBF极限强度影响的模型。实验结果表明:试验钢调质处理后,组织为回火索氏体,主要析出M6C型和M23C6型碳化物,力学性能优良,RBF极限强度达到729 MPa;疲劳源分为表面缺陷和内部非金属夹杂物,表面缺陷主要包括非金属夹杂物脱落形成的凹坑以及机加工留下的刀痕,非金属夹杂物主要为镁铝酸盐;轴承钢在NH3渗氮气氛中560 ℃恒温保持25 h,渗氮层厚度达360 μm以上,渗氮工艺合适。研究结果对中碳铬钨渗氮轴承钢的发展及其疲劳性能的提高有一定的参考价值。  相似文献   
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