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CuCrZr銅合金高溫階梯疲勞與循環(huán)塑性行為研究
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常州大學(xué) 機械與軌道交通學(xué)院

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國家自然科學(xué)基金面上項目(52075050);江蘇省自然科學(xué)(BK20201448)


Study on Step Fatigue and Cyclic Plastic Behavior of CuCrZr Copper Alloy at High Temperature
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Affiliation:

School of Mechanical Engineering and Rail Transit,Changzhou University

Fund Project:

The National Natural Science Foundation of China(52075050); Natural Science Foundation of Jiangsu Province(BK20201448)

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    摘要:

    本文對CuCrZr銅合金在300℃和400℃開展了階梯疲勞試驗研究,從循環(huán)應(yīng)變幅、平均應(yīng)變、平均應(yīng)變率和能量耗散率等方面研究其循環(huán)塑性行為。研究發(fā)現(xiàn),CuCrZr銅合金的循環(huán)軟硬化特征以及棘輪效應(yīng)受到溫度與循環(huán)應(yīng)力的共同作用,溫度越高,更易發(fā)生循環(huán)軟化現(xiàn)象,同時棘輪效應(yīng)也更加顯著?;趯uCrZr銅合金高溫拉伸斷裂能與高溫階梯疲勞總耗散能的對比發(fā)現(xiàn),兩者均與溫度相關(guān),因此將高溫拉伸斷裂能作為溫度補償參數(shù),提出了一種基于能量法的線性損傷疲勞壽命預(yù)測模型,對CuCrZr銅合金高溫階梯疲勞壽命進行了預(yù)測。最后,基于斷口分析分析了CuCrZr銅合金與溫度相關(guān)的失效機理:在較低的溫度下容易發(fā)生疲勞裂紋失效,而隨著溫度的升高,更易發(fā)生棘輪應(yīng)變累積的韌性失效。

    Abstract:

    In this paper, the step fatigue test of CuCrZr copper alloy at 300°C and 400°C was carried out, and the cyclic plasticity behavior was studied from the aspects of cyclic strain amplitude, average strain, average strain rate and energy dissipation rate. It is found that the cyclic soft hardening characteristics of CuCrZr copper alloy and the ratchet effect are affected by the combination of temperature and cyclic stress, and the higher the temperature, the more prone to cyclic softening, and the ratchet effect is more significant. Based on the comparison between the high temperature tensile fracture energy of CuCrZr copper alloy and the total dissipative energy of high temperature ladder fatigue, both are related to temperature, so the high temperature tensile fracture energy is used as a temperature compensation parameter, and a linear damage fatigue life prediction model based on energy method is proposed, and the fatigue life of CuCrZr copper alloy is predicted. Finally, the temperature-related failure mechanism of CuCrZr copper alloy is analyzed based on fracture analysis: fatigue crack failure is prone to occur at lower temperatures, and with the increase of temperature, the ductility failure accumulated by ratchet strain is more likely.

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引用本文

顧佳澄,彭 劍,繆新婷,屠 懿. CuCrZr銅合金高溫階梯疲勞與循環(huán)塑性行為研究[J].稀有金屬材料與工程,2023,52(6):2196~2204.[Gu Jiacheng, Peng Jian, Miao Xinting, Tu Yi. Study on Step Fatigue and Cyclic Plastic Behavior of CuCrZr Copper Alloy at High Temperature[J]. Rare Metal Materials and Engineering,2023,52(6):2196~2204.]
DOI:10.12442/j. issn.1002-185X.20220486

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  • 收稿日期:2022-06-04
  • 最后修改日期:2022-07-27
  • 錄用日期:2022-08-12
  • 在線發(fā)布日期: 2023-07-07
  • 出版日期: 2023-06-30