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[求助]
漢譯英,求潤色,謝謝大家
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為了方便分析(忽略涂層和涂層/界面處的缺陷影響,故而未分析等離子涂層結(jié)構(gòu))界面元素擴(kuò)散對阻尼性能的影響,研究了電沉積鎳涂層在不同頻率下的阻尼溫度效應(yīng)。 從公式(3)可以看出,涂層結(jié)構(gòu)的阻尼性能不僅與涂層的厚度有關(guān),還與涂層結(jié)構(gòu)中的層間界面的滑移有關(guān)。通常認(rèn)為元素擴(kuò)散需要更高的溫度和低的頻率,而滑動則需要高的應(yīng)變振幅,但它們均是可能的能量吸收機制。 In order to conveniently analyse (Ignoring the defects in coating and the interface between coating and substrate and therefore not analyzing plasma coating structure), the damping temperature dependence of the electro-deposition coated sample in different frequencies was studied. As can be seen from Eq. (3), the damping of coating system is not only about the coating thickness, but it is all about the slip in interface within coating. In general, element diffusion and interface slip are possible energy absorption mechanism [3, 10]. [ Last edited by wxqtjw on 2013-6-13 at 20:01 ] |

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In order to conveniently analyze (as the influence of the defects in coating and coating/interface was ignored, the plasma coating structure was not analyzed) effects of interface element diffusion on the damping performance, the damping temperature dependence of the electro-deposition coated samples in different frequencies was studied. As can be seen from Eq. (3), the damping of coating system is not only affected by the coating thickness, but also by the slip in the interfaces within the coating. Generally, the diffusion of elements requires higher temperatures and low frequencies, while slip requires high strain amplitude, but both are possible energy absorption mechanism [3, 10]. |

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