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本文采用等离子喷涂和电沉积两种工艺在Fe基体上沉积Zn涂层,研究了界面微观组织结构和涂层厚度对阻尼和模量的影响,并对电沉积Zn/Fe涂层系统进行了热处理,进一步研究了元素扩散对阻尼的影响。 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. |
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wxqtjw: 金币+20, 翻译EPI+1, ★★★★★最佳答案 2014-07-23 23:30:07
真强必胜: 金币+1, good 2014-07-23 20:06:12
wxqtjw: 金币+20, 翻译EPI+1, ★★★★★最佳答案 2014-07-23 23:30:07
| 试改为: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为了避免与上文中的重复,也可选用这个) were promoted(conducted/applied选一个你喜欢的就行) to explore the influence of elements diffusion on damping after electro-deposition Zn/Fe coating system was heat treated. |

2楼2014-07-23 16:43:06
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wxqtjw: 金币+5 2014-07-23 23:30:10
wxqtjw: 金币+5 2014-07-23 23:30:10
| 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. |
3楼2014-07-23 20:55:12














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