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本文定義內(nèi)耗溫度譜上出現(xiàn)內(nèi)耗峰值時的溫度,簡稱內(nèi)耗峰溫,用符號TP表示。由圖1可看出,不同涂層厚度的樣品的內(nèi)耗峰溫值(TP)是不同的,內(nèi)耗峰溫(TP)隨著涂層厚度的升高逐漸向低溫移動。這可能是因為涂層越厚,涂層結(jié)構(gòu)中的缺陷的面積越多,產(chǎn)生能量耗散越大,在一定的應變振幅載荷下,涂層結(jié)構(gòu)越容易發(fā)生微滑移,使得內(nèi)耗峰弛豫過程的弛豫時間降低,最終導致內(nèi)耗峰溫降低。 In this paper, the temperature appeared internal friction peak defined as internal friction peak temperature, indicated by the symbol TI. As shown in Fig. 1, internal friction peak temperature of different thickness samples were different, and the peak temperature with increasing thickness of the sample to move gradually shift to a lower temperature, which may be due to the thicker the sample, the more the defect area and more prone to micro-slip under a certain strain load, so that relaxation time of internal friction peak was reduced, resulting in lower peak temperature. |

版主 (文壇精英)
| In this paper, the temperature appeared at internal friction peak was defined as internal friction peak temperature(TP). As shown in Fig. 1, sample internal friction peak temperature of various thickness were different, and the peak temperature ,with increasing thickness of the sample ,moved gradually to a lower temperature. These might be the thicker sample has more defect area ,is more prone to micro-slip under a certain strain load, reduced the relaxation time of internal friction peak , and add up to a lower peak temperature. |

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