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71.
72.
Zen Sumin 《中南工业大学学报(英文版)》1997,(1)
TherearethreeproblemsinTi--Alalloyforging:(1)Crystallinestructuredefects;(2)Highresistanceofdeformation;(3)Deepscratchesonthediescausedbytheforgedpiece.Thenewshort--hollow--rapiddieforgingtechniquewassuccessfullyusedinTCg,TCll,andTi679Ti--Alalloydieforging,andsolvedalltheseproblems.1THEPRINCIPLESOFSHORT~HOLLOWRAPIDDIEFORGING1.1ThePrincipleofShortDiesAccordingtotherelationsbetweentheforgingpressureandthepress--downshortages(seeFig.1),whenthepress--downshortagesarelessthan… 相似文献
73.
Xigui Song Xiufang BIAN Xiaogang Qi Xiangfa Liu Junyan Zhang Baopei Wang Limin Zhu 《北京科技大学学报(英文版)》2004,11(1)
To obtain the finer primary silicon crystals, the proprietary Al-P master alloy was adopted to modify the eutectic Al-Si alloys and the most suitable modification process was made in the experiments. The SEM (Scanning Electron Microscope) and DSC (Differential Scanning Calorimeter) analysis indicate that the Al-P modifier has more advantages over Cu-P and Fe-P modifier in easily addition, no elemental alteration and less undercooling of primary silicon′s solidification, which suggests the Al-P master alloy is an effective modifier of eutectic Al-Si alloys. 相似文献
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76.
高能球磨LaNi5-34%(质量分数)Mg的相组成与热稳定性能 总被引:1,自引:0,他引:1
采用X射线衍射仪(XRD)、扫描电子显微镜(SEM)、差热分析(DTA)等方法研究了高能球磨及热处理等对新型合金LaNi5-34%(质量分数)Mg的相组成、形貌及热稳定性能等的影响。结果表明:经100r/min球磨100h及190r/min球磨100h后,样品由La、Mg、Ni等非晶。微量的晶体Ni和MgNi2相组成,所得粉末的形状大多为规则的球形或近球形,其颗粒直径范围为0.05~33.0μm。球磨样品具有较好的室温活化特性,其最大电化学放电容量为460mAh/g。该样品经763K保温35d后,得到热稳定性较好的具有纳米尺度的MgNi2、Mg2Ni、Mg2NiLa三相组织,其平均晶粒直径为21.3nm。 相似文献
77.
铜及铜合金中铅的形态与热加工 总被引:2,自引:1,他引:2
文章描述了铅在双相铜合金中的存在形态及在热加工过程中的变化形为。讨论了含铅双相铜合金的热加工过程产生"热脆"的机理,为合理地选择和制定热加工工艺提出了相应的措施。 相似文献
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Continuous cast (CC) AA5182 Al alloy with the precipitation of Mg2Al3 and of MnAl6 was cold rolled to 70% reduction and then isothermally annealed in a salt bath at three temperatures (316, 343, and 371 °C) for different times. Texture evolution during recrystallization was investigated. It was found that the recrystallization textures of the material with intense Mg2Al3 precipitation along the grain boundaries exhibited weaker Cube, Goss and R/β fiber components than those of the material with the more uniform fine MnAl6 precipitates. The opposite was true in the cold rolled condition, i.e. the material with MnAl6 precipitation had weaker Cube, Goss, and R/β fiber components in the cold rolled condition than the material with intense Mg2Al3 precipitation. Thus, recrystallization textures of material with Mg2Al3 precipitation were weaker than material with MnAl6 precipitation. This is due to the fact that large Mg2Al3 particles favor the nucleation of randomly oriented grains. When subjected to formability tests, the material with prior Mg2Al3 precipitation displayed a lower anisotropy in tensile yield strength, ultimate tensile strength, elongation, and strain hardening exponent than material with prior MnAl6 precipitation. This is in accord with the texture results which indicated that the recrystallization textures of material with an initial Mg2Al3 precipitation were closer to those of a perfectly random sample than those of material with an initial MnAl6 precipitation. On the other hand, the elongation and Olsen values were lower and the surface quality after bending tests was worse for material with Mg2Al3 precipitation. This is due to the non-uniform distribution of Mg2Al3 particles which precipitated primarily along the grain boundaries and caused an earlier formation and coalescence of the microvoids around the grain boundary precipitates. The forming limit diagrams (FLD) correlated well with the tensile, Olsen and bending results. 相似文献
80.
Bukhanovskii V. V. Borisenko V. A. Kharchenko V. K. Mamuzic I. 《Strength of Materials》2004,36(2):195-202
Experimental data on the short-term strength and plasticity of niobium alloy 5VMTs of the system Nb–W–Mo–Zr in its initial state, after annealing, and with a silicide-ceramic protective coating obtained by testing in vacuum, an inert atmosphere, and in air in the temperature range from 290 to 2270 K are analyzed. The process of microcrack initiation and propagation in the protective coating and matrix is investigated in high-temperature static tension. The limiting plastic strain values have been established at which the composite retains its load-carrying capacity in high- temperature aggressive and oxidizing gas atmospheres. 相似文献