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化學(xué)復(fù)合鍍Ni-Mo-P/(h)BN鍍層的寬溫域摩擦學(xué)性能研究
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1.沈陽工業(yè)大學(xué)材料科學(xué)與工程學(xué)院;2.廣東省科學(xué)院新材料研究所

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TQ153.2;TH117

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廣東省基礎(chǔ)與應(yīng)用基礎(chǔ)研究基金,廣東省科技計劃項目


Tribological Properties of Electroless Ni-Mo-P/(h)BN Composite Coatings in Wide Temperature Range
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    摘要:

    本文在GH4169鎳基高溫合金表面采用化學(xué)復(fù)合鍍技術(shù)制備了Ni-Mo-P鍍層和Ni-Mo-P/(h)BN復(fù)合鍍層,研究了鍍層在不同溫度下的摩擦學(xué)行為以及不同溫度摩擦磨損后鍍層的微觀組織結(jié)構(gòu)。采用球-盤式摩擦磨損試驗機(jī)研究了鍍層在室溫、300、500、700℃下的摩擦學(xué)性能。通過掃描電鏡、能譜儀、X射線衍射儀對不同溫度摩擦試驗后鍍層的化學(xué)成分、組織結(jié)構(gòu)進(jìn)行分析。利用顯微硬度計、洛氏壓痕儀對不同溫度摩擦試驗后鍍層的力學(xué)性能進(jìn)行表征。結(jié)果表明:沉積態(tài)Ni-Mo-P鍍層和Ni-Mo-P/(h)BN復(fù)合鍍層以非晶為主,同時包含少量納米晶結(jié)構(gòu),鍍層表面結(jié)構(gòu)致密。隨著摩擦試驗溫度的增加,鍍層逐漸從非晶結(jié)構(gòu)向納米晶結(jié)構(gòu)轉(zhuǎn)變,鍍層結(jié)晶度增加;當(dāng)溫度增加至500℃以上時,鍍層內(nèi)析出Ni3P硬質(zhì)相,同時由于Mo、P元素的氧化揮發(fā)導(dǎo)致鍍層內(nèi)出現(xiàn)了孔洞,鍍層致密度下降。隨溫度增加,鍍層硬度呈先升高后降低趨勢,膜基結(jié)合力從HF1級逐漸降低至HF6級。隨著試驗溫度增加,鍍層磨粒磨損和氧化現(xiàn)象逐漸加劇,在500℃時磨損率最高;進(jìn)一步增加溫度使得摩擦界面具有較好的潤滑效果,Ni-Mo-P鍍層平均摩擦系數(shù)從1.0降至0.60,Ni-Mo-P/(h)BN復(fù)合鍍層平均摩擦系數(shù)從0.88降至0.53,提高了鍍層在高溫下的減摩耐磨性能。添加(h)BN顆粒提高了鍍層內(nèi)P含量,使得Ni-Mo-P/(h)BN復(fù)合鍍層韌性增加,提高了復(fù)合鍍層的硬度和膜基結(jié)合力提高,復(fù)合鍍層在室溫~700℃范圍內(nèi)具有較好的耐磨性能。

    Abstract:

    Ni-Mo-P and Ni-Mo-P/(h)BN composite coatings were prepared on the surface of GH4169 nickel-based high-temperature alloy by chemical composite plating technology. The tribological behaviour of the coatings at different temperatures and the microstructures of the coatings after friction wear at different temperatures were investigated. The tribological properties of the coatings at room temperature, 300℃, 500℃ and 700℃ were investigated by utilising a ball-disc friction and wear test. The chemical composition and organisational structure of the plated layer following the friction test at different temperatures were analysed by scanning electron microscope, energy spectrometer and X-ray diffractometer. The mechanical properties of the coatings were characterised by microhardness tester and Rockwell indentation tester following tribological tests at different temperatures.The results demonstrate that the deposited Ni-Mo-P and Ni-Mo-P/(h)BN composite coatings are predominantly amorphous structure containing small amounts of nancrystalline. The coatings transformed from amorphous to nanocrystalline structure with the increase of the friction test temperature. As the friction test temperature is increased, the plating layer undergoes a transformation from an amorphous to a nanocrystalline structure, accompanied by an increase in crystallinity. At temperatures exceeding 500℃, the The precipitation of the Ni3P hard phase in the plating layer occurs concurrently with the oxidative volatilisation of the Mo and P elements, resulting in the formation of pores within the plating layer and a reduction in its densification. As the temperature increased, the hardness of the plated layer exhibited a fluctuating trend, initially rising and then declining. Concurrently, the bonding strength of the film base exhibited a gradual decline, progressing from an HF1 grade to an HF6 grade. As the test temperature increased, the abrasive wear and oxidation of the plating layer became more pronounced. The highest wear rate was observed at 500℃. However, further increases in temperature resulted in a reduction in friction at the interface, with the average coefficient of friction of the Ni-Mo-P plating layer decreasing from 1 to 0.60. The coefficient of friction of the Ni-Mo-P/(h)BN composite layer was reduced from 0.88 to 0.53, which improved the friction reduction and wear-resistant performance of the plating layer at high temperatures. The incorporation of (h)BN particles into the plating layer enhances the P content, thereby increasing the toughness of the Ni-Mo-P/(h)BN composite plating layer, improving the hardness of the composite plating layer, and strengthening the film-base bonding. Furthermore, the composite plating layer exhibits superior wear resistance within the temperature range of room temperature to 700℃.

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引用本文

夏雨,韋春貝,林松盛,向青春,石倩.化學(xué)復(fù)合鍍Ni-Mo-P/(h)BN鍍層的寬溫域摩擦學(xué)性能研究[J].稀有金屬材料與工程,2024,53(10):2860~2872.[Xia Yu, Wei Chunbei, Lin Songsheng, Xiang Qingchun, Shi Qian. Tribological Properties of Electroless Ni-Mo-P/(h)BN Composite Coatings in Wide Temperature Range[J]. Rare Metal Materials and Engineering,2024,53(10):2860~2872.]
DOI:10.12442/j. issn.1002-185X.20240138

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  • 收稿日期:2024-03-12
  • 最后修改日期:2024-05-21
  • 錄用日期:2024-05-22
  • 在線發(fā)布日期: 2024-10-17
  • 出版日期: 2024-09-27