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Ti6Al4V 合金在Saline溶液中的扭動微動磨損
作者:
作者單位:

四川理工學院

作者簡介:

通訊作者:

中圖分類號:

TG146. 4

基金項目:

國家自然科學基金項目(面上項目,重點項目,重大項目)


Torsional Fretting Wear of Ti6Al4V Alloys in Saline Solutions
Author:
Affiliation:

Sichuan University of Science and Engineering

Fund Project:

The National Natural Science Foundation of China

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    摘要:

    在球/面接觸中存在四種微動模式,即切向、徑向、轉動和扭動微動,在生理介質中扭動微動是人工關節(jié)失效的主要原因之一。本文成功建立了一種可在恒溫液體介質中實現(xiàn)球/面接觸扭動微動的新的試驗系統(tǒng)。利用該系統(tǒng),在37℃的Saline溶液中進行了鈦合金/二氧化鋯陶瓷球的扭動微動試驗,詳細討論了扭動微動的運行行為和損傷機理。結果表明,扭動微動動力學行為在很大程度上取決于扭動角位移振幅和周期數。研究建立了扭動微動運行工況圖(RCFM),包括3個區(qū)域,即:部分滑移區(qū)(PSR),混合區(qū)(MFR)和完全滑移區(qū)(SR)。在部分滑移區(qū),接觸中心沒有發(fā)現(xiàn)任何損傷,接觸邊緣上只觀察到輕微的擦傷和磨損。在混合區(qū),損壞區(qū)域從接觸邊緣向中心擴展,接觸中心無損傷,接觸邊緣區(qū)域出現(xiàn)氧化磨損和損傷。在滑移區(qū),整個接觸區(qū)域均發(fā)生損傷,損傷機理主要是磨蝕磨損、氧化磨損、和粘著磨損。

    Abstract:

    Four fretting modes exist in ball-on-flat contact according to the direction of relative motion, i.e. tangential, radial, rotational, and torsional fretting. Torsional fretting in a physiological medium is one of the main reasons that artificial joints fail. A new test system was successfully established for torsional fretting in a liquid medium at a constant temperature in a torsional mode with a ball-on-flat contact. The torsional fretting experiments were conducted on Titanium alloys against Zirconium dioxide ceramic balls in a saline solution at 37°C, and the torsional fretting running behaviors and damage mechanisms were discussed in detail. The results showed that the dynamics behaviors were strongly depended upon the torsional angular displacement amplitude and the number of cycles. A running condition fretting map (RCFM) was established, which included 3 fretting running regimes: a partial slip regime (PSR), a mixed fretting regime (MFR), and a slip regime (SR). No damage was observed on the contact center and only slight scratch and wear were observed on the contact edge in the PSR. The damage zone extended to the contact center and the sticking zone (which exhibited no damage) contracted to the contact center with increases in the number of cycles, and some oxidation wear and damage presented on the contact edge region in the MFR. The damage mechanisms were primarily the result of abrasive wear, oxidation wear and adhesion wear in the SR.

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林修洲. Ti6Al4V 合金在Saline溶液中的扭動微動磨損[J].稀有金屬材料與工程,2019,48(6):1742~1748.[Lin Xiuzhou. Torsional Fretting Wear of Ti6Al4V Alloys in Saline Solutions[J]. Rare Metal Materials and Engineering,2019,48(6):1742~1748.]
DOI:10.12442/j. issn.1002-185X.20180144

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  • 收稿日期:2018-02-07
  • 最后修改日期:2019-05-23
  • 錄用日期:2018-09-13
  • 在線發(fā)布日期: 2019-07-30
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