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        記憶
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          memory
            The Study of Constrained Phase Transformation of TiNi Shape Memory Alloy in Smart Composite
            機敏復合材料中TiNi形狀記憶合金約束態相變研究
        短句來源
            The Constitutive Relations of Shape Memory Alloys and Its Composites
            形狀記憶合金及其復合材料的本構關系
        短句來源
            The Study of Microstructure and Phase Transformation Behavior of TiNi Shape Memory Alloy Thin Film
            TiNi形狀記憶合金薄膜顯微結構及相變行為研究
        短句來源
            Studying of the Transformation and the Relevant Effects in the Cu-based Shape Memory Alloys
            銅基形狀記憶合金中的相變及其相關效應的研究
        短句來源
            The Study of Transformation Behavior of NiTi Shape Memory Alloy Thin Films
            NiTi形狀記憶合金薄膜的相變行為研究
        短句來源
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          “記憶”譯為未確定詞的雙語例句
            Study on Radiation Crosslinking and Shape-memory Effects of Polycaprolactone
            聚己內酯的輻射交聯與形狀記憶效應研究
        短句來源
            STRESS-STRAIN BEHAVIOUR AND MICROSTRUCTURE OF NiTi SHAPE-MEMORY ALLOY
            NiTi形狀記憶合金的應力-應變行為及其顯微組織特征
        短句來源
            The production techniques,applications and research directions of shape-memory alloys
            記憶合金的制造、應用及研究方向
        短句來源
            Behavior of Shape-memory Cu-Al-Ni Alloy under Thermal and Stress Cyclings
            Cu-Al-Ni形狀記憶合金在熱與應力循環下的行為
        短句來源
            Structure and Property of Shape-memory CuZnAl Alloy
            CuZnAl形狀記憶合金的組織和性能
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          memory
        This paper studies the finite element method for some nonlinear hyperbolic partial differential equations with memory and dampling terms.
              
        These results show LiAlTiO4-700(H) has better memory and selectivity of ion exchange, and higher capacity of ion exchange for Li+.
              
        Shape-memory and biocompatibility properties of segmented polyurethanes based on poly(L-lactide)
              
        The shape-memory properties and biocompatibility of PLA-PUs were examined.
              
        Therefore, this kind of polyurethane can be used for implanted medical devices with shape memory requirements.
              
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        Commercial metals Were used for preparing Cu-Zn-Al shape memory

        本文論述了利用工業純金屬來制備Cu—Zn—Al形狀記憶合金。研究了該合金的熱彈性馬氏體以及可逆形狀記憶效應。薄片試樣在25℃和70℃之間熱循環時,能反復地自動變彎和伸直,經1000次熱循環,其偏轉角幾乎不變,而且,在某一溫度范圍內,對溫度很敏感。表明該合金適于作熱敏元件。

        The modifications of martensitic transformation and the shape memory effect of Cu-32.23%Zn-1.84%Al alloy have been studied. A thin plate-like elastic martensite is found after the alloy quenched into cooling medium of higher temperatures, namely, of smaller T_q—M_s. In addition, the butterfly-like bursting martensite may be partly formed after quenched under lower temperatres of T_q—M_s greater.The transformation into bursting martensite increases in amount with the decrease of quenching temperature, and it...

        The modifications of martensitic transformation and the shape memory effect of Cu-32.23%Zn-1.84%Al alloy have been studied. A thin plate-like elastic martensite is found after the alloy quenched into cooling medium of higher temperatures, namely, of smaller T_q—M_s. In addition, the butterfly-like bursting martensite may be partly formed after quenched under lower temperatres of T_q—M_s greater.The transformation into bursting martensite increases in amount with the decrease of quenching temperature, and it will be completed till—70℃.Experimental results indicated that the shape memory effect of the alloy is only related to the transformation behaviour. The martensite of the thin plate-like, other than of the butterfly-like bursting mode, has such effect. The growth and disappearance of induced martensite plates under bending stress have been also directly observed by the optical microscope.

        本文研究了Cu-32.23% Zn-1.84%Al合金的馬氏體轉變和形狀記憶效應。結果發現,合金在溫度較高的冷卻介質中淬火時(即|T_q-M_s|較小),可獲得薄片狀的彈性馬氏體;而在溫度較低的冷卻介質中淬火時(|T_q-M_s|較大),除薄片狀馬氏體外,還出現部分蝴蝶狀的爆發型馬氏體。隨淬火冷卻介質溫度下降,爆發型馬氏體量增大,至-70℃時全部為爆發型馬氏體。試驗確定,形狀記憶效應僅與薄片狀馬氏體的行為有關,而爆發型馬氏體沒有形狀記憶效應。用光學顯微鏡直接觀察了合金在彎曲時應力誘發馬氏體的增長和消失過程。

        The martensite morphology and the shape memory effect of the Cu-10.10% A1-4.51%Zn-3.76%Mn-0.39%Ni aUoy have been studied. It was shown that the martensite formed on cooling is of the spear type of self-accommodating configuration, but the stress-induced martensite is of the sheet type. These two morphologies are thermoelastic martensites having good shape memory effect. Experimental results indicate that the air-cooled and hot-rolled specimens have the best shape memory property with the maximum recovery ratio...

        The martensite morphology and the shape memory effect of the Cu-10.10% A1-4.51%Zn-3.76%Mn-0.39%Ni aUoy have been studied. It was shown that the martensite formed on cooling is of the spear type of self-accommodating configuration, but the stress-induced martensite is of the sheet type. These two morphologies are thermoelastic martensites having good shape memory effect. Experimental results indicate that the air-cooled and hot-rolled specimens have the best shape memory property with the maximum recovery ratio greater than 95%. Martensite obtained by rapid quenching has a slightly lower shape memory effect and a higher recovery temperature. Burst-type martensite occasionally appears when the specimen is cooled directly into liquid nitrogen. Preliminary energy dispersive spectrum analysis has shown that the Mn content of the burst type martensite is slightly lower than that of other morphologies.

        本文研究了Cu-10.10%Al-4.51%Zn-3.76%Mn-0.39%Ni合金的馬氏體形態和形狀記憶效應。結果表明,合金在冷卻時形成的馬氏體呈矛頭狀自協作形態,應力誘發形成的馬氏體為細條狀。這兩種形態馬氏體均為熱彈性型,具有良好的記憶性能。試驗確定,空冷和熱軋態試樣的記憶性能最佳,最大恢復率可達95%以上。急冷淬火獲得的馬氏體記憶效應略低且恢復溫度較高。直接淬入液氮時,偶有爆發型馬氏體出現,初步的能譜分析表明,爆發型馬氏體的含Mn量較低。

         
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