Combustion behavior of GH4169 and GH4202 superalloys in oxygen-enriched atmosphere
-
摘要: 采用富氧燃燒實驗方法,通過光學顯微鏡、掃描電子顯微鏡和能譜儀等手段對GH4169和GH4202高溫合金燃燒試樣進行分析,建立合金燃燒質量、熱量和氧傳輸模型,探究兩種合金的富氧燃燒機理并提出提高新型高溫合金抗燃燒性能的措施.結果表明:GH4202與GH4169合金在富氧條件下均發生燃燒,GH4202抗燃燒性能優于GH4169;兩種合金以液相進行燃燒,在合金燃燒前沿存在由未完全燃燒的金屬顆粒和氧化物組成"燃燒層",燃燒層中合金元素的燃燒行為是決定合金整體燃燒的關鍵性因素;合金元素在燃燒前沿呈現"選擇性燃燒"規律,Nb、Ti、Al、Cr等元素易于與氧發生燃燒,Ni滯后燃燒且燃燒熱低,起到良好的抗燃燒作用.Abstract: Ignition-combustion test was carried out and the combustion samples of GH4169 and GH4202 superalloys were ana-lyzed by using optical microscopy, scanning electron microscopy and energy dispersive spectrometry. A model of mass transfer, heat transfer and oxygen transfer was built to analyze the combustion mechanism of the alloys. Some methods to improve the ability of com-bustion resistance for new superalloys were proposed. The results show that both the alloys burn in the test condition, but GH4202 per-forms better than GH4169. Both the alloys burn in liquid phase, there is a combustion section composed of oxides and metal particles in front of the reaction zone, and the burning behavior of elements in the combustion section decides the combustion ability of the whole alloys. A selective combustion rule of elements is present in the combustion section, the elements such as Nb, Ti, Al and Cr will burn with oxygen easily, while Ni is of delayed combust with low heat and can protect the alloy from combustion.
-
Key words:
- superalloys /
- combustion /
- oxygen /
- mechanisms
-

計量
- 文章訪問數: 238
- HTML全文瀏覽量: 47
- PDF下載量: 20
- 被引次數: 0