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高温合金强化
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  “高温合金强化”译为未确定词的双语例句
     INVESTIGATION ON THE STRENGTHENING ACTION OF INTERMETALLICS IN HIGH TEMPERATURE ALLOYS
     金属间化合物对高温合金强化机理的研究
短句来源
     A New Method for Strengthening Wrought Superalloys: micro-alloying with Phosphorus and Boron
     一种新的变形高温合金强化方法——磷硼微合金复合强化
短句来源
     It is shown that dis-persion hardenings is an effective strengthening method of high-temperature alloys.
     结果表明,弥散强化是一种有效的高温合金强化方法。
短句来源
  相似匹配句对
     OXIDE DISPERSION STRENGTHENED SUPERALLOYS
     氧化物弥散强化高温合金
短句来源
     ON THE STRENGTHENING OF NICKEL-BASE SUPERALLOYS
     镍基高温合金强化
短句来源
     insist nicety;
     强化准确;
短句来源
     Nb high temperature alloys are generally used.
     Nb高温合金
短句来源
     Strengthening the Production of SSP
     过磷酸钙生产的强化
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A theoretical model in the prediction of high-temperature creep rate of dispersion-strengthened alloy was proposed. Theoretical calculations were made under high-tempera-ture creep rate in four Al alloy states: stable dispersion particles (P), solubility particles(Pd), solubility and coarsing particles (PdC) and pure Al metal (M) by means of this mod-el. The effects of temperature ranging from 0. 58Tm to 0.70Tm and stress ranging from 3.5×10~(-4) E to 1.0×10~(-2) E on creep rate were examined in these alloy...

A theoretical model in the prediction of high-temperature creep rate of dispersion-strengthened alloy was proposed. Theoretical calculations were made under high-tempera-ture creep rate in four Al alloy states: stable dispersion particles (P), solubility particles(Pd), solubility and coarsing particles (PdC) and pure Al metal (M) by means of this mod-el. The effects of temperature ranging from 0. 58Tm to 0.70Tm and stress ranging from 3.5×10~(-4) E to 1.0×10~(-2) E on creep rate were examined in these alloy states. It is shown that dis-persion hardenings is an effective strengthening method of high-temperature alloys.

本文提出了预测弥散强化合金高温蠕变速度的模型。用此模型对第二相粒子分别为热稳定粒子(P)、溶解颗粒(Pd)、溶解并粗化颗粒(PdC)、以及纯Al(M)等4种Al合金的高温蠕变速度ε进行了理论计算。讨论了0.58T_m到0.70T_m(T_m为基体的熔点温度)的温度范围和3.5×10~(-4)E到1.O×10~(-2)E(E为基体的杨氏模量)的应力范围对这些合金状态的高温蠕变速度ε的影响。结果表明,弥散强化是一种有效的高温合金强化方法。

 
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