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solution annealing temperature
相关语句
  固溶处理温度
     With the retrogression time prolonged, the tensile strength of the alloy gradually decreases while the elongation ratio a little increases. (3) For the studied Al-12.lZn-2.27Mg-2.4Cu-0.2Ag-0.15Zr alloy, its solution annealing temperature can be increased due to small addition of Ag.
     3.对于研究用Al-12.1Zn-2.27Mg-2.4Cu-0.2Ag-0.15Zr合金,向合金中添加微量Ag可以提高合金的固溶处理温度,使残留的粗大相在更高的固溶温度下较充分固溶。
短句来源
     EFFECT OF SOLUTION ANNEALING TEMPERATURE ON CORROSIVE WEAR BEHAVIOUR OF DUPLEX STAINLESS STEEL IN SULPHURIC ACID MEDIUM
     固溶处理温度对双相不锈钢在硫酸介质中腐蚀磨损行为的影响
短句来源
  相似匹配句对
     solution.
     溶液进行对照。
短句来源
     T's solution.
     T解集中不出现空集;
短句来源
     Annealing Properties of Lyoprotectant Solution
     冻干保护剂溶液低温退火特性的研究
短句来源
     On the Solution of the Traveling Salesman Problem with Simulated Annealing
     用模拟退火算法求解旅行商问题
短句来源
     DETERMINISTIC ANNEALING
     确定性退火技术
短句来源
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  solution annealing temperature
The ordering of theβ phase was too rapid to be suppressed during quenching from the solution annealing temperature.
      


The effects of composition and solution-annealing temperature on microstructure and mechanical properties of austenitic stainless steel 1Cr17Mn9Ni4N were studied with the purpose of enhancing the mechanical properties of the steel and the strength in particular. The results show that the microstructure of the steel solutionannealed in the region of 1 0001 125 ℃ is fully austenitic. The strength decreases and the ductility increases slightly with increasing nickel and manganese content....

The effects of composition and solution-annealing temperature on microstructure and mechanical properties of austenitic stainless steel 1Cr17Mn9Ni4N were studied with the purpose of enhancing the mechanical properties of the steel and the strength in particular. The results show that the microstructure of the steel solutionannealed in the region of 1 0001 125 ℃ is fully austenitic. The strength decreases and the ductility increases slightly with increasing nickel and manganese content. Nitrogen strongly enhances the strength of the steel at a rate of 5 MPa per 001 % additional nitrogen, but its effect on ductility is not significant. The results indicate that the steel containing 008 %012 % of C, 165 %175 % of Cr, 80 %90 % of Mn, 35 %42 % of Ni, and 022 %028 % of N exhibits high strength and ductility after solutionannealing in 1 0501 100 ℃, and the yield strength and ultimate tensile strength of the steel at room temperature can reach the level of 400 MPa and 800 MPa, respectively.

为提高1Cr17Mn9Ni4N钢固溶处理后的力学性能(特别是钢的强度),研究了化学成分及固溶处理温度对其组织和性能的影响。结果表明,1000~1125℃固溶处理后,该钢的组织为单相奥氏体。在标准成分范围内,随着镍、锰含量的增加,该钢的强度降低,塑性有所改善。氮明显提高该钢的强度。根据试验结果,每增加0 01%的氮钢的室温强度可提高大约5MPa,且塑性基本上不受影响。当合金成分(质量分数,%)控制在C0 08~0 12、Cr16 5~17 5、Ni3 5~4 2、Mn8 0~9 0、N0 22~0 28时,1Cr17Mn9Ni4N钢经1050~1100℃固溶处理后强度较高、塑性好,室温强度σ0 2和σb可分别达到400MPa和800MPa。

The effect of small addition of silver on a high-zinc super-high strength Al-Zn-Mg-Cu aluminum alloy was investigated. The mechanical properties of the investigated alloys with or without silver addition undergoing different heat treatment were tested by tensile test. Using transmission electronic microscope (TEM), scanning electronic microscope (SEM) and its energy dispersive spectrometry (EDS), the microstructures of both alloys were analyzed. The results show that small addition of silver promotes the formation...

The effect of small addition of silver on a high-zinc super-high strength Al-Zn-Mg-Cu aluminum alloy was investigated. The mechanical properties of the investigated alloys with or without silver addition undergoing different heat treatment were tested by tensile test. Using transmission electronic microscope (TEM), scanning electronic microscope (SEM) and its energy dispersive spectrometry (EDS), the microstructures of both alloys were analyzed. The results show that small addition of silver promotes the formation of coarse constituent particles within the alloy and consumes hardening alloying elements of Zn and Mg, which may decrease the mechanical properties of the alloy. When the same solid-solution heat treatment and ageing process are employed to the silver-bearing alloy and the silver-free one, the tensile strength of the former alloy at peak-aged condition is decreased by about 40MPa compared to the latter. However, the solution annealing temperature can be increased due to small addition of Ag. When the silver-bearing alloy is solutionized on a higher temperature and aged subsequently, the remained coarse particles in its microstructure can be solutionized into the matrix more sufficiently, and thus makes the alloy obtain a same level of the tensile strength as the silver-free one at peak-age hardening, while its elongation ratio slightly decreases. During ageing, trace addition of Ag enhances the formation of metastable phases and stablizes GP zones and metastable phases to a higher temperature. However, small addition of Ag prolongs the ageing time reaching the peak-age hardening for the studied alloy.

探讨了添加微量Ag对高 Zn超高强 Al Zn Mg Cu合金微观组织和力学性能的影响。采用力学拉伸实验、能谱分析、扫描电镜和透射电镜等手段对不同热处理方式的合金进行了分析。结果表明: 向合金中添加微量Ag会促进粗大相的形成, 消耗合金元素Zn、Mg, 对合金力学性能不利。在采用相同的固溶时效工艺时, 加Ag合金的抗拉强度降低了近40 MPa。但另一方面, Ag可以提高合金的固溶处理温度, 使残留的粗大相在更高的固溶温度下较充分固溶, 降低Ag对合金力学性能的不利影响。采用高温固溶处理后, 加Ag合金T6态抗拉强度与不加Ag合金相当, 但塑性有所下降。在时效过程中, 微量Ag会促进过渡相的形成, 并提高GP区和过渡相的稳定性, 但使合金到达峰值的时间延长。

 
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