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激光能量輸入對直接激光沉積莫來石陶瓷組織性能的影響
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大連理工大學(xué)精密與特種加工教育部重點實驗室

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國家自然科學(xué)基金項目(面上項目,重點項目,重大項目);中央高校基本科研業(yè)務(wù)項目;遼寧省自然科學(xué)基金指導(dǎo)計劃項目


Effect of laser energy input on microstructure and properties of directed laser deposition mullite ceramics
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The National Natural Science Foundation of China; the Fundamental Research Funds for the Central Universities; the Liaoning Province Natural Science Foundation Guidance Program

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    摘要:

    直接激光沉積是一種重要的激光增材制造技術(shù),在制備高熔點熔體自生氧化物陶瓷領(lǐng)域得到越來越多的應(yīng)用。由于對激光增材制造陶瓷在不同激光能量作用下的影響規(guī)律及其內(nèi)在機制理解不足,該技術(shù)更廣泛的應(yīng)用受到限制。為此,本文深入研究了激光能量密度對直接激光沉積熔體自生莫來石陶瓷孔隙/密度、微觀組織和力學(xué)性能的影響。結(jié)果表明,較低激光能量密度(15 J/mm2)所制備的陶瓷樣件邊緣分布有尺寸較大的氣孔,使得樣件整體孔隙率較高,且表面粘粉嚴(yán)重,這與成形掃描速度大和硅酸鹽熔體粘度高有關(guān)。而較高激光能量密度(90 J/mm2)雖然可以獲得表面光滑、莫來石晶粒尺寸較小的陶瓷樣件。但由于單位時間內(nèi)輸入熔池能量高,粉末蒸發(fā)產(chǎn)生的氣孔來不及逃逸出熔池,使得樣件心部形成較大的氣孔,限制了樣件的力學(xué)性能。在激光能量密度為45 J/mm2時,獲得了表面相對光潔、孔隙率較低和力學(xué)性能較高的莫來石陶瓷樣件。本文結(jié)果為直接激光沉積增材制造高性能陶瓷過程中合理選定工藝條件提供了理論指導(dǎo)及技術(shù)支撐。

    Abstract:

    Directed laser deposition is a significant laser additive manufacturing technology, and it has been widely utilized in the field of preparing high melting point melt growth oxide ceramics. Due to inadequate understanding of the influence law and internal mechanism of laser additive manufacturing ceramics under the action of different laser energy, the wider application of this technology is limited. In this study, the effects of laser energy density on the porosity/density, microstructure, and mechanical properties of directed laser deposition melt growth mullite ceramics were investigated. The results show that the mullite ceramic samples prepared with lower laser energy density (15 J/mm2) have large pores distributed on the edges, making the porosity of the specimen higher. The sample surface has serious sticky powder, which is related to the high scanning speed and the high viscosity of the silicate melt. The ceramic samples with a smooth surface and smaller mullite grain size were prepared by higher laser energy density (15 J/mm2). However, due to the high energy input into the molten pool per unit time, the pores generated by the evaporation of the powder are too late to escape from the molten pool, resulting in larger pores in the core of the sample, deteriorating the mechanical properties of the samples. The mullite ceramic samples with a relatively smooth surface, low porosity, and high mechanical properties can be obtained when the laser energy density is 45 J/mm2. The results of this study provide theoretical guidance and technical support for the rational selection of process conditions in the process of manufacturing high-performance ceramics with directed laser additive manufacturing.

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趙大可,吳東江,牛方勇,馬廣義.激光能量輸入對直接激光沉積莫來石陶瓷組織性能的影響[J].稀有金屬材料與工程,2021,50(3):1007~1015.[Zhao Dake, Wu Dongjiang, Niu Fangyong, Ma Guangyi. Effect of laser energy input on microstructure and properties of directed laser deposition mullite ceramics[J]. Rare Metal Materials and Engineering,2021,50(3):1007~1015.]
DOI:10.12442/j. issn.1002-185X.20200290

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  • 收稿日期:2020-05-03
  • 最后修改日期:2020-07-06
  • 錄用日期:2020-07-20
  • 在線發(fā)布日期: 2021-04-02
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