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高合金化難變形高溫合金GH4975熱裂敏感性研究
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1.北京科技大學(xué) 材料科學(xué)與工程學(xué)院;2.中國航發(fā)北京航空材料研究院先進(jìn)高溫材料重點(diǎn)實(shí)驗(yàn)室

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北京市自然科學(xué)基金(項(xiàng)目號2242042)


Study on hot cracking sensitivity of Wrought superalloy GH4975 with high alloying
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1.School of Materials Science and Engineering,University of Science and Technology Beijing;2.Key Laboratory of Science Technology on Advanced High Temperature Structural Materials,AECC Beijing Institute of Aeronautical Materials

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    摘要:

    為研究高合金化難變形高溫合金GH4975熱裂敏感性,對GH4975合金鑄錠裂紋形貌和組織特征進(jìn)行觀察,結(jié)合其凝固行為和熱力學(xué)計(jì)算等方式分析熱裂原因。結(jié)果表明,裂紋沿晶界和枝晶間擴(kuò)展,等軸晶區(qū)比柱狀晶區(qū)具有更大的熱裂傾向。鑄錠中心區(qū)域易出現(xiàn)縮孔,連續(xù)縮孔的形成導(dǎo)致枝晶間搭接不充分,易在應(yīng)力作用下被拉開從而形成裂紋源。同時(shí)枝晶間Al、Ti、Nb元素偏析嚴(yán)重,復(fù)雜的析出相尤其是大量的(γ+γ′)共晶相促進(jìn)了裂紋的形核與擴(kuò)展。JMatPro計(jì)算可知GH4975合金固液兩相區(qū)收縮率大,不可補(bǔ)縮溫度范圍大,易形成縮孔從而成為裂紋源,同時(shí)不可補(bǔ)縮溫度區(qū)間內(nèi)合金線性膨脹系數(shù)變化大,裂紋易擴(kuò)展。

    Abstract:

    In order to study the hot cracking sensitivity of high alloying refractory superalloy GH4975, the crack morphology and microstructure characteristics of the ingot of GH4975 were observed, and the causes of hot cracking were analyzed by means of solidification behavior and thermodynamic calculation. The results show that the crack spreads along grain boundaries and dendrites, and the equiaxed crystal region has a greater tendency to crack than the columnar crystal region. Shrinkage holes are easy to appear in the center of the ingot. The formation of continuous shrinkage holes leads to insufficient overlap between dendrites, which is easy to be pulled apart under the action of stress to form a crack source. At the same time, the segregation of Al, Ti and Nb elements between dendrites is serious, and complex precipitates, especially a large number of (γ+γ ') eutectic phases, promote the nucleation and propagation of cracks. JMatPro's calculation shows that GH4975 alloy has a large shrinkage rate in the solid-liquid two-phase zone and a wide range of non-complementary temperature, which is easy to form a shrinkage hole and become a crack source. Meanwhile, the linear expansion coefficient of the alloy changes greatly in the non-complementary temperature range, and the crack is easy to expand.

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朱 興,江 河,董建新,萬志鵬.高合金化難變形高溫合金GH4975熱裂敏感性研究[J].稀有金屬材料與工程,,().[ZHU Xing, JIANG He, DONG Jianxin, WAN Zhipeng. Study on hot cracking sensitivity of Wrought superalloy GH4975 with high alloying[J]. Rare Metal Materials and Engineering,,().]
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  • 收稿日期:2024-09-16
  • 最后修改日期:2024-11-18
  • 錄用日期:2024-12-02
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