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連續(xù)激光燒蝕作用下Ti-6AlTi-48Al合金表面的溫度場
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中國航發(fā)北京航空材料研究院 先進鈦合金航空科技重點實驗室,北京 100095

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China


Surface Temperature Field of Ti-6Al and Ti-48Al Alloys Under Continuous Laser Ablation
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Aviation Key Laboratory of Science and Technology on Advanced Titanium Alloys, AECC Beijing Institute of Aeronautical Materials, Beijing 100095, China

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China “Ye Qisun” Science Foundation Project of National Natural Science Foundation (U2141222); AECC Innovation Fund (CXPT-2022-034); AECC BIAM Innovation Fund (KJSJ231506)

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    摘要:

    鈦合金的高溫阻燃性能是制約其在航空發(fā)動機中應(yīng)用的重要因素,而激光點火法能夠精確反映鈦合金在局部加熱時的阻燃性能。在Ti-6Al與Ti-48Al的溫度場研究中,通過鈦合金激光點火實驗表征了溫度場演化特性,同時在微觀瞬態(tài)機制分析中引入了分子動力學(xué)(MD)模擬與JMatPro計算等方法。結(jié)果表明:在激光連續(xù)照射下,Ti-Al系合金表面首先形成熔池,熔池溫度場從中心到邊緣呈正態(tài)分布。當(dāng)中心溫度達到起燃臨界點時,產(chǎn)生擴展燃燒,擴展燃燒路徑沿氣流方向推進。與Ti-6Al相比,Ti-48Al合金在激光燒蝕下的阻燃性能更高。這是由于Ti-48Al具有更高的傳熱性能,導(dǎo)致光斑溫度場邊界附近的熱集中效應(yīng)減弱,因此需要增加氧分壓,降低合金起燃點,才能在同等激光熱源下達到Ti-48Al合金的起燃邊界條件。另外在擴展燃燒路徑方面,MD模型顯示試件存在邊界熱集中效應(yīng),這揭示了除氣流方向之外的另一種擴展燃燒路徑影響機制,即激光光斑產(chǎn)生的熱量傳導(dǎo)至臨近邊界時中斷,在邊界附近產(chǎn)生熱量集中,因此燃燒路徑亦傾向于沿該方向擴展。

    Abstract:

    The high temperature fire retardancy of titanium alloy is an important factor restricting its application in aero-engine, and the laser ignition method can accurately reflect the fire retardancy of titanium alloy under local heating. Due to the limitations of laser ignition experiments on the microscopic boundary and the transient propagation mechanism of the temperature field, molecular dynamics (MD) simulations and JMatPro calculation were applied to study the temperature field of Ti-6Al and Ti-48Al alloys. The results show that a molten pool is formed on the surface of Ti-Al alloys under continuous laser irradiation, and the temperature field of the molten pool is normally distributed from the center to the edge. When the center temperature reaches the critical point of ignition, the extended combustion occurs, and the extended combustion path advances along the direction of the air flow. Compared with Ti-6Al alloy, Ti-48Al alloy has higher fire retardancy under laser ablation. This is due to the better heat transfer performance of Ti-48Al, which leads to the weakening of the heat concentration effect near the boundary of the spot temperature field. So it is necessary to increase the partial pressure of oxygen, and thus to reduce the ignition point of the alloy in order to achieve the ignition boundary condition of Ti-48Al alloy under the same laser heat source. In the aspect of extended combustion path, the boundary heat collection effect of specimens shown by MD models reveals another mechanism affecting combustion expansion path besides the direction of air flow. That is, the heat generated by the laser spot is interrupted when it is transmitted to the boundary of the specimen along the short side direction, resulting in a concentration of heat near the boundary. So the combustion path also tends to expand along this direction.

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孫若晨,弭光寶.連續(xù)激光燒蝕作用下Ti-6AlTi-48Al合金表面的溫度場[J].稀有金屬材料與工程,2024,53(9):2405~2412.[Sun Ruochen, Mi Guangbao. Surface Temperature Field of Ti-6Al and Ti-48Al Alloys Under Continuous Laser Ablation[J]. Rare Metal Materials and Engineering,2024,53(9):2405~2412.]
DOI:10.12442/j. issn.1002-185X.20230822

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  • 收稿日期:2023-12-19
  • 最后修改日期:2024-01-30
  • 錄用日期:2024-02-28
  • 在線發(fā)布日期: 2024-09-12
  • 出版日期: 2024-09-04