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金属间化合物超塑性是近十几年开展的研究课题。Superplasticity in intermetallics has been researched in the past decade.
铝合金棒材经这一方法处理后,可呈现出良好的超塑性能。After treatment in this way, the aluminium alloy bars present a good superplasticity.
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现已公认超塑性是陶瓷中一种很有潜力的变形工艺。It is now recognized that superplasticity is a potential deformation process in ceramics.
研究表明,材料的超塑性与其显微组织关系密切。It was showed that the superplasticity of materials are closely related to its microstructure.
本文对硬状态LF6铝合金板材的超塑性进行了研究。Tn this paper the superplasticity of cold-rolled sheet metal of LF6 aluminium alloy was studied.
实验结果表明,等温热反挤压工艺可使铝基复合材料获得超塑性。The experiment results show that Al-matrix composites appear better superplasticity in IHIE state.
在高应变速率条件下,LY12铝合金具有较好的超塑性和室温性能。In higher strain-rate condition, LY12 alloy has good superplasticity and room temperature properties.
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采用该方法对TC6合金进行高温拉伸实验,研究其超塑性性能。The superplasticity of TC6 alloy was studied by adopting this method in high temperature tensile test.
本论文是宋玉泉教授关于塑性与超塑性总体研究的一个组成部分。This dissertation is a part of the overall researches on plasticity and superplasticity of CAMS. Song Yuquan.
粗晶LC4合金在适当的变形温度及速度条件下具有一定的超塑性。The coarse crystalline LC4 alloy appear superplasticity under the proper deformation temperature and velocity.
自1934年超塑性现象被发现,一直以其特殊的塑性变形机制而备受关注。Since superplasticity was discovered in 1934, much attention has been paid to its special deformation mechanisms.
研究了镁合金ZK40经等通道挤压1道次和4道次后的超塑性和微观组织。The superplasticity and microstructure of magnesium alloy ZK40 processed by ECAP for 1 and 4 passes were investigated.
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讨论了变应变速率模式液压机载荷和超塑性锻造影响参数的关系。And discuss influence of hydraulic press loading in change speed rate pattern and superplasticity forging on parameters.
研究指出,直接由铸造的锌铝共析合金进行超塑性处理,也可以得到超塑性。It was found that the superplasticity was also obtained directly by superplastic treatment of the cast Zn-Al eutectoid alloy.
为研究陶瓷基层状复合材料的超塑性能,对其超塑拉深成形过程进行了有限元模拟。In order to investigate the superplasticity of ceramic matrix laminated composite, the superplastic deep-drawing process was simulated by FEM.
本文对钛合金超塑性研究和应用进行了综述,并对钛合金超塑性的发展方向进行了展望。In this paper, the recent research progress and application of superplasticity of titanium alloys are reviewed and their development trend is forecasted.
探讨了显微组织、超塑性性能与变形制度间的关系,从而为制定和调整生产工艺提供了理论指导。The relation among the microstructure, superplasticity and deformation system are researched, thus offering guidance for designing or adjusting production process.
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工业牌号超高强铝合金LC9经过两种不同方式的预处理后,在一定的温度和应变速率范围内呈现出良好的超塑性。Through two methods of pretreatment, the industrial superhigh strength aluminium alloy LC9 showed good superplasticity in certain range of temperature and strain rate.
粗晶LC4合金在较低温度和较高应变速率条件下,因能产生有效的再结晶细化,而呈现出一定的超塑性。The coarse crystalline LC4 alloy exhibit some superplasticity under lower temperature and higher strain rate, because it can create effective recrystallization refinement.
空洞是超塑性变形过程中必然产生的一种结构形态,对材料的超塑性有重要影响,对空洞数量的测量具有实际意义。Cavitation is a structure in the process of superplastic deformation , it has an important influence to superplasticity of the material, so the number of cavitation measurement is meaningful.