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141.
近年来,Mg基非晶合金以低密度、高非晶形成能力等优点受到人们越来越多的关注。介绍了Mg基非晶合金的发展现状和现有的合金体系,综述了其力学性能的优势,指出了其应用过程中存在的问题。对其作为生物医用材料应用进行了探讨,并对今后发展进行了展望。  相似文献   
142.
用单辊法制备的宽20 mm,厚25μm的Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9和Fe_(73.5)Ni_(0.3)Cu_1Nb_3Si_(14.2)B_8合金带材,绕制成外径为40 mm,内径为25 mm的环型磁芯,然后将磁芯在不同的温度下进行退火处理,研究了微量Ni元素添加对合金带材的晶化行为以及对横向磁场退火后的非晶/纳米晶磁芯的软磁性能的影响。结果表明:与Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9合金带材相比,添加微量Ni元素的Fe_(73.5)Ni_(0.3)Cu_1Nb_3Si_(14.2)B_8合金带材的一级起始晶化温度Tx1和一级晶化峰温度Tp1降低,其二级起始晶化温度Tx2和二级晶化峰温度Tp2升高,两级起始晶化温度之间的差值ΔTx增大;与横向磁场退火后的Fe_(73.5)Cu_1Nb_3Si_(13.5)B_9非晶/纳米晶磁芯相比,横向磁场退火后的Fe_(73.5)Ni_(0.3)Cu_1Nb_3Si_(14.2)B_8非晶/纳米晶磁芯的起始磁导率μi和饱和磁感应强度Bs减小,矫顽力Hc增大;当测试频率f和最大磁感应强度Bm不变时,有效幅值磁导率μa增大,比总损耗Ps和矫顽力Hc减小;当测试频率f不变时,电感Ls和品质因数Q增大;当励磁电流I不变时,感应电动势E大。  相似文献   
143.
研究警车高性能防弹防护材料应用技术,尝试采用石墨烯改性的方式对陶瓷及铝合金的强度、韧性性能进行了改性提升,利用石墨烯改性材料制备了复合防弹板,并进行了实弹射击试验,研究了防弹警车应用可行性.试验结果表明,石墨烯改性可以有效提高陶瓷的断裂韧度,以及铝合金的强度及弹性模量.经53式7.62 mm穿甲弹三次射击,靶板无穿透,用石墨烯改性陶瓷制备的防弹装甲板,可有效降低材料密度,大幅度提高防弹性能,对车辆防弹性能及轻量化技术研究具有一定的参考价值.  相似文献   
144.
In this work, polyvinylpyrrolidone(PVP) coated Mg_(95)Ni_5 nano-composites were prepared by hydriding combustion synthesis(HCS) plus wet mechanical milling(WM) with tetrahydrofuran(THF) and donated as WM-x wt% PVP(x = 1, 3, 5 and 7) respectively. The phase compositions, microstructures and dehydriding property, as well as the co-effect of PVP and THF were investigated in detail. XRD results showed that the average crystal size of MgH_2 in the milled Mg_(95)Ni_5 decreased from 23 nm without PVP to 18 nm with 1 wt% PVP. The peak temperature of dehydrogenation of MgH_2 in the milled Mg_(95)Ni_5 decreased from 293.0 ℃ without THF to 250.4 ℃ with THF. The apparent activation energy for decomposition of MgH_2 in WM-7 wt% PVP was estimated to be 66.94 kJ/mol, which is 37.70 kJ/mol lower than that of milled Mg_(95)Ni_5 without THF and PVP. PVP and THF can facilitate the refinement of particle size during mechanical milling process. Attributed to small particle sizes and synergistic effect of PVP and THF, the composites exhibit markedly improved dehydriding properties.  相似文献   
145.
The hydrogen storage of(TiZr_(0.1))_xCr_(1.7-y)Fe_yMn_(0.3)(1.05x1.2,0.2y0.6)alloys,prepared by Ar plasma arc melting,were investigated by X-ray diffraction,pressure-composition-temperature(PCT).The results indicated that all(TiZr_(0.1))_xCr_(1.7-y)Fe_yMn_(0.3)(1.05≤x≤1.2,0.2≤y≤0.6)alloys were determined as C14-type Laves phase,the cell parameters a,c and unit cell volume of(TiZr_(0.1))xCr_(1.1)Fe_(0.6)Mn_(0.3)(1.05≤x≤1.2)alloys increased with increasing the(TiZr)super-stoichiometry from 1.05 to 1.2,and the value of a/c almost unchanged.The hydrogen absorption and desorption plateau pressure decreased from 5.6,4.4–2.6,2.2 MPa with the increase of(TiZr)super-stoichiometry from 1.05 to1.2 at 274 K respectively,and the hydrogen desorption plateau pressure decline was not obvious when the(TiZr)super-stoichiometry exceeded 1.15.The(TiZr_(0.1))_(1.1)Cr_(1.1)Fe_(0.6)Mn_(0.3)alloy had the best comprehensive properties about the maximum and reversible hydrogen storage capacity was 1.79 and 1.45 wt%respectively.The cell parameters a,c and unit cell volume of(TiZr_(0.1))_(1.1)Cr_(1.7-y)Fe_yMn_(0.3)(0.2≤y≤0.6)alloys increased as the ratio of Fe/Cr content decreased.The hydrogenation and dehydrogenation plateau pressure decreased from 4.5,3.4–1.0,0.9 MPa respectively and the maximum hydrogen storage capacity increased from 1.79 to 2.0 wt%as the Fe content reduced from 0.6 to 0.2 at274 K.The maximum and the reversible hydrogen storage capacity were about 2.0 and 1.65 wt%as the ratio of Fe/Cr was 0.13(ie,(TiZr_(0.1))_(1.1)Cr_(1.5)Fe_(0.2)Mn_(0.3)alloy),its relative molar enthalpy of dissociation hydrogen was24.30 kJ/mol H_2.  相似文献   
146.
The microstructure and mechanical properties of Ti-3.5Al-5Mo-6V-3Cr-2Sn-0.5Fe high strength titanium alloy sheets prepared by unidirectional cold rolling and two-step cross cold rolling were investigated. Results showed that the β phase grains were refined significantly by cold rolling followed by solution treatment for a short time.Compared to unidirectional cold rolling, the short time solution treatment after two-step cross rolling could significantly reduce the non-uniformity of the microstructure of the alloy sheets. After aging treatment at 550 ℃,the anisotropy of the mechanical properties still existed in the unidirectional rolled sheets, and the tensile strength was highest along the rolling direction. After solution and aging treatment, the anisotropy of the mechanical properties of the two-step cross rolling process sheet was not obvious than unidirectional cold rolling,and alloy had good strength and plasticity matching.  相似文献   
147.
采用仿生法在Mg-3Zn-0.5Sr合金表面制备涂层,通过SEM,EDS和XRD分析表征涂层形貌和结构;采用电化学实验和浸泡腐蚀实验来研究涂层对合金降解速率的影响;采用生物毒性实验验证有无涂层Mg-3Zn-0.5Sr合金的毒性等级.实验结果表明:在Mg-3Zn-0.5Sr合金表面可以沉积致密的羟基磷灰石(HA)涂层,厚度约为30~40μm,HA涂层可以有效地降低Mg合金的降解速率;在体积分数为25%的有无涂层合金浸提液中培养细胞4d,细胞相对增值率均超过100%,有无涂层合金的细胞毒性均为0级.  相似文献   
148.
A small amount of cerium (below 1.0 wt%) addition to AZ91 alloy have been investigated on the hot tearing susceptibility (HTS) at a cooling rate of 1.5Ks?1. The HTS increased to a maximum value with a cerium addition of 0.6 wt% and then decreased to a stable status as cerium was gradually added. Due to high chemical activity, cerium into the melts can react with aluminum to form an Al11Ce3 intermetallic compound. X–ray diffraction results also confirmed the existence of Al11Ce3. The Al11Ce3 increased with the presence of the needle-like and block morphology. As cerium levels increased, the amount of Mg17Al12 decreased. The variations between Mg17Al12 and Al11Ce3 resulted in a similar normal distribution of the HTS in AZ91 alloy. The findings were further verified through the microstructure evolution and the surface morphology of fracture.  相似文献   
149.
A liquid-nitrogen-cooling friction stir spot welding (C-FSSW) technology was developed for welding AZ31 magnesium alloy sheets. The liquid-nitrogen cooling degraded the deformability of the welded materials such that the width of interfacial cracks increased with increasing cooling time. The grain size of the stirred zone (SZ) and the heat-affected zone (HAZ) of the C-FSSW-welded joints decreased, whereas that of the thermomechanically affected zone (TMAZ) increased with increasing cooling time. The maximum tensile shear load of the C-FSSW-welded joints welded with a cooling time of 5 or 7 s was larger than that of the friction stir spot welding (FSSW)-welded joint, and the tensile shear load decreased with increasing cooling time. The microhardness of the C-FSSW-welded joints was greater than that of the FSSW-welded joint. Moreover, the microhardness of the SZ and the HAZ of the C-FSSW-welded joints increased, whereas that of the TMAZ decreased, with increasing cooling time.  相似文献   
150.
<正>The journal of"Progress in Natural Science:Materials International(PROG NAT SCI-MATER)"sponsored and organized by both Chinese Materials Research Society(C-MRS)and Inter national Union of Materials Research Societies(IUMRS)started to publish  相似文献   
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