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本文采用等離子噴涂和電沉積兩種工藝在Fe基體上沉積Zn涂層,研究了界面微觀組織結(jié)構(gòu)和涂層厚度對(duì)阻尼和模量的影響,并對(duì)電沉積Zn/Fe涂層系統(tǒng)進(jìn)行了熱處理,進(jìn)一步研究了元素?cái)U(kuò)散對(duì)阻尼的影響。 In this paper, it was studied the effect of interface microstructure and coating thickness on damping and modulus by the use of plasma spray process and electro-deposition technology to deposit the Zn coating onto the Fe substrate and also studied the influence of elements diffusion on damping after electro-deposition Zn/Fe coating system was heat treated. |

金蟲(chóng) (著名寫(xiě)手)
| 試改為:The effects of interface microstructure and coating thickness on damping and modulus (by) using plasma spray process and electro-deposition technology to deposit the Zn coating onto the Fe substrate were studied in this paper, and further studies(researches為了避免與上文中的重復(fù),也可選用這個(gè)) were promoted(conducted/applied選一個(gè)你喜歡的就行) to explore the influence of elements diffusion on damping after electro-deposition Zn/Fe coating system was heat treated. |

至尊木蟲(chóng) (知名作家)
Translator and Proofreader
| The effects of interface microstructure and coating thickness on damping and modulus were studied in this paper by utilization of plasma spray process and electro-deposition technology to deposit the Zn coating onto the Fe substrate. In addition, the influence of elements diffusion on damping was further explored after treatment of electro-deposition Zn/Fe coating system with heat. |
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