磷含量對GH984G合金變形行為的影響
發(fā)布時間:2021-03-05 18:40
GH984G合金是中國科學(xué)院金屬研究所自主研發(fā)的一種Ni-Fe基合金,具有持久強度高、成本低、抗氧化腐蝕性能優(yōu)異、成形性好等優(yōu)勢,已成為我國700℃超超臨界燃煤電站熱端部件的候選材料。前期研究結(jié)果表明磷微合金化可進一步提高GH984G合金在高應(yīng)力條件下的持久壽命,然而,在接近應(yīng)用工況的低應(yīng)力條件下,磷含量對GH984G合金的高溫持久及蠕變性能的影響規(guī)律尚無認知,有必要進一步澄清磷在GH984G合金中的作用,明確其影響機制。同時,結(jié)合超超臨界燃煤電站熱端部件在熱加工和熱穩(wěn)定性等方面的要求,圍繞合金變形行為這一核心,本文研究了磷含量對GH984G合金高溫?zé)嶙冃涡袨、室溫沖擊變形、服役溫度下的拉伸變形以及蠕變變形的影響,闡明在不同應(yīng)力水平下磷對GH984G合金變形行為的作用及影響機制,從而為磷微合金化Ni-Fe基合金的成分設(shè)計、加工工藝優(yōu)化和實際應(yīng)用提供實驗依據(jù)和理論基礎(chǔ)。研究了磷含量對三種狀態(tài)(均勻化態(tài)、鍛態(tài)及熱軋態(tài))GH984G合金熱變形行為的影響,結(jié)果表明不同磷含量的均勻化態(tài)合金的最優(yōu)熱加工參數(shù)均位于高溫低應(yīng)變速率區(qū),但隨著磷含量的增加,最優(yōu)熱加工溫度范圍由1050℃-1200℃縮小至...
【文章來源】:中國科學(xué)技術(shù)大學(xué)安徽省 211工程院校 985工程院校
【文章頁數(shù)】:172 頁
【學(xué)位級別】:博士
【部分圖文】:
圖1.4?700?°C超超臨界電站熱端部件候選材料的管壁厚度對比示意圖??°
,并促使MC碳化物由棒狀向塊狀轉(zhuǎn)變[9|1。??最近A.W.?Zhang等[92_94]在鑄造IN718C中發(fā)現(xiàn)磷能夠抑制S相的析出,促進/和??Y〃相的析出,并提高/和Y〃相的尺寸,同時由于憐在晶界的非平衡偏析行為,冷??卻速度會影響磷在晶內(nèi)的濃度,進而改變Y'相和Y〃相的含量以及力學(xué)性能。通過??第一性原理計算可知磷原子在丫'和Y〃相中占據(jù)Ni原子的位置,降低了?丫'和Y〃相??的形成焓,從而促進丫'和Y"相的析出[92]。??1.3.2.2?性能??(1)蠕變持久性能??圖1.6為不同文獻中報道的磷含量對鑄造高溫合金蠕變持久性能的影響趨勢??[87,89,95]。M963?合金在?975?°C?/?225?MPa?下及?IN718?合金在?650?°C?/?620?MPa?下??的蠕變持久壽命及延伸率均隨著磷含量的升高而降低,這是由于磷在凝固過程中??偏聚于晶界促進脆性富磷相及Laves相的形成,損害了合金的蠕變持久性能。而??K17G合金在950?°C?/?235?MPa及206?MPa條件下的持久壽命則隨著磷含量的升??高呈現(xiàn)先增加后降低的變化趨勢,延伸率則隨著磷含量的升高而逐漸升高,作者??將這種變化趨勢歸結(jié)為磷偏聚于枝晶間及晶界,從而降低晶界的擴散速度。??2〇〇?p(?)?Rupture?life?’?S?250?P(b)?Ruptura?kfa'j?15?100?F(c)?Ruptur*?ii?*K2〇6MPa)?40??160?^?200?12?8〇?Elon9?ion<235MP?)?32??Va?\?J?Vxi????91?I60?/?"I??leo-?\?1?f?!,
?第I章緒論???100,???Doping?P&B??〇?IN718-649°C?D??O?IN718-704°C??S?A?GH984-700°C??ST??j?A?°??V〇?A??CL??J???■??Doping?P?■?■??■?IN718-650°C????GH761-650°C??A?GH4133-700°C?▲??1?100?200?300?400?500?600?700?800??Stress,?MPa??圖1.14磷及磷硼交互作用對合金蠕變持久壽命的影響程度隨應(yīng)力的變化趨勢??Fig.?1.14?The?effects?of?phosphorus?and?the?interaction?between?phosphorus?and?boron?on??the?creep?rupture?life?at?different?stresses.??卜?L[…JL:?l?—?45j??I400?-樣'『灣-3〇|??250?-?Creep??A?-15??1?Q〇?_?Low?stress??i?i?I?I?/?/?i?I?i?i?I?I?I?Q??0?10?20?30?40?550?700?850?100011501300??Temperature,?°C??圖1.15實驗內(nèi)容示意圖??Fig.?1.15?The?schematic?diagram?of?experiment?contents.??22??
【參考文獻】:
期刊論文
[1]Effect of cooling rate on phosphorus segregation behavior and the corresponding precipitation of γ’’ and γ’ phases in IN718 alloy[J]. Anwen Zhang,Sha Zhang,Fang Liu,Feng Qi,Xiaoyu Yao,Yuanguo Tan,Dan Jia,Wenru Sun. Journal of Materials Science & Technology. 2019(07)
[2]Distribution of Phosphorus and Its Effects on Precipitation Behaviors and Tensile Properties of IN718C Cast Superalloy[J]. An-Wen Zhang,Yan Yang,Sha Zhang,Dong Zhang,Wei-Hong Zhang,Da-Wei Han,Feng Qi,Yuan-Guo Tan,Xin Xin,Wen-Ru Sun. Acta Metallurgica Sinica(English Letters). 2019(07)
[3]Effects of Phosphorus and Iron on Microstructures and Mechanical Properties in NiCrFe-Based Alloys[J]. Xin-Tong Lian,Wen-Ru Sun,Fang Liu,Dan-Dan Zheng,Xin Xin. Acta Metallurgica Sinica(English Letters). 2019(05)
[4]Re-recognition of the Effects of Phosphorus and Boron on the γ’’ and γ’ Phases in IN718 Alloy[J]. An-Wen Zhang,Yang Li,Sha Zhang,Fang Liu,Wei-Hong Zhang,Lian-Xu Yu,Wen-Ru Sun. Acta Metallurgica Sinica(English Letters). 2019(03)
[5]620~650℃鍋爐過熱器/再熱器用新型奧氏體耐熱鋼SP2215的研發(fā)[J]. 謝錫善,艾卓群,遲成宇,于鴻垚,楊輝,宋建新,崔正強,羅坤杰. 鋼管. 2018(01)
[6]Haynes282合金在長期時效和持久過程中的組織穩(wěn)定性[J]. 符銳,趙雙群. 動力工程學(xué)報. 2017(06)
[7]Segregation of Phosphorus and Precipitation of MNP-Type Phosphide at the Grain Boundary of IN706 Superalloy[J]. Sha Zhang,Linjie Huang,Anwen Zhang,Lianxu Yu,Xin Xin,Wenru Sun,Xiaofeng Sun. Journal of Materials Science & Technology. 2017(02)
[8]磷偏聚對IN706合金鑄態(tài)組織及均勻化處理的影響(英文)[J]. 章莎,信昕,孫文儒,孫曉峰,于連旭,張玉忱,胡壯麒. Transactions of Nonferrous Metals Society of China. 2015(09)
[9]Thermal Stability of a New Ni-Fe-Cr Base Alloy with Different Ti/Al Ratios[J]. Changshuai Wang,Tingting Wang,Meilin Tan,Yongan Guo,Jianting Guo,Lanzhang Zhou. Journal of Materials Science & Technology. 2015(02)
[10]Ti/Al比對GH984G合金長期時效過程中γ′沉淀相粗化行為及拉伸性能的影響[J]. 譚梅林,王常帥,郭永安,郭建亭,周蘭章. 金屬學(xué)報. 2014(10)
本文編號:3065673
【文章來源】:中國科學(xué)技術(shù)大學(xué)安徽省 211工程院校 985工程院校
【文章頁數(shù)】:172 頁
【學(xué)位級別】:博士
【部分圖文】:
圖1.4?700?°C超超臨界電站熱端部件候選材料的管壁厚度對比示意圖??°
,并促使MC碳化物由棒狀向塊狀轉(zhuǎn)變[9|1。??最近A.W.?Zhang等[92_94]在鑄造IN718C中發(fā)現(xiàn)磷能夠抑制S相的析出,促進/和??Y〃相的析出,并提高/和Y〃相的尺寸,同時由于憐在晶界的非平衡偏析行為,冷??卻速度會影響磷在晶內(nèi)的濃度,進而改變Y'相和Y〃相的含量以及力學(xué)性能。通過??第一性原理計算可知磷原子在丫'和Y〃相中占據(jù)Ni原子的位置,降低了?丫'和Y〃相??的形成焓,從而促進丫'和Y"相的析出[92]。??1.3.2.2?性能??(1)蠕變持久性能??圖1.6為不同文獻中報道的磷含量對鑄造高溫合金蠕變持久性能的影響趨勢??[87,89,95]。M963?合金在?975?°C?/?225?MPa?下及?IN718?合金在?650?°C?/?620?MPa?下??的蠕變持久壽命及延伸率均隨著磷含量的升高而降低,這是由于磷在凝固過程中??偏聚于晶界促進脆性富磷相及Laves相的形成,損害了合金的蠕變持久性能。而??K17G合金在950?°C?/?235?MPa及206?MPa條件下的持久壽命則隨著磷含量的升??高呈現(xiàn)先增加后降低的變化趨勢,延伸率則隨著磷含量的升高而逐漸升高,作者??將這種變化趨勢歸結(jié)為磷偏聚于枝晶間及晶界,從而降低晶界的擴散速度。??2〇〇?p(?)?Rupture?life?’?S?250?P(b)?Ruptura?kfa'j?15?100?F(c)?Ruptur*?ii?*K2〇6MPa)?40??160?^?200?12?8〇?Elon9?ion<235MP?)?32??Va?\?J?Vxi????91?I60?/?"I??leo-?\?1?f?!,
?第I章緒論???100,???Doping?P&B??〇?IN718-649°C?D??O?IN718-704°C??S?A?GH984-700°C??ST??j?A?°??V〇?A??CL??J???■??Doping?P?■?■??■?IN718-650°C????GH761-650°C??A?GH4133-700°C?▲??1?100?200?300?400?500?600?700?800??Stress,?MPa??圖1.14磷及磷硼交互作用對合金蠕變持久壽命的影響程度隨應(yīng)力的變化趨勢??Fig.?1.14?The?effects?of?phosphorus?and?the?interaction?between?phosphorus?and?boron?on??the?creep?rupture?life?at?different?stresses.??卜?L[…JL:?l?—?45j??I400?-樣'『灣-3〇|??250?-?Creep??A?-15??1?Q〇?_?Low?stress??i?i?I?I?/?/?i?I?i?i?I?I?I?Q??0?10?20?30?40?550?700?850?100011501300??Temperature,?°C??圖1.15實驗內(nèi)容示意圖??Fig.?1.15?The?schematic?diagram?of?experiment?contents.??22??
【參考文獻】:
期刊論文
[1]Effect of cooling rate on phosphorus segregation behavior and the corresponding precipitation of γ’’ and γ’ phases in IN718 alloy[J]. Anwen Zhang,Sha Zhang,Fang Liu,Feng Qi,Xiaoyu Yao,Yuanguo Tan,Dan Jia,Wenru Sun. Journal of Materials Science & Technology. 2019(07)
[2]Distribution of Phosphorus and Its Effects on Precipitation Behaviors and Tensile Properties of IN718C Cast Superalloy[J]. An-Wen Zhang,Yan Yang,Sha Zhang,Dong Zhang,Wei-Hong Zhang,Da-Wei Han,Feng Qi,Yuan-Guo Tan,Xin Xin,Wen-Ru Sun. Acta Metallurgica Sinica(English Letters). 2019(07)
[3]Effects of Phosphorus and Iron on Microstructures and Mechanical Properties in NiCrFe-Based Alloys[J]. Xin-Tong Lian,Wen-Ru Sun,Fang Liu,Dan-Dan Zheng,Xin Xin. Acta Metallurgica Sinica(English Letters). 2019(05)
[4]Re-recognition of the Effects of Phosphorus and Boron on the γ’’ and γ’ Phases in IN718 Alloy[J]. An-Wen Zhang,Yang Li,Sha Zhang,Fang Liu,Wei-Hong Zhang,Lian-Xu Yu,Wen-Ru Sun. Acta Metallurgica Sinica(English Letters). 2019(03)
[5]620~650℃鍋爐過熱器/再熱器用新型奧氏體耐熱鋼SP2215的研發(fā)[J]. 謝錫善,艾卓群,遲成宇,于鴻垚,楊輝,宋建新,崔正強,羅坤杰. 鋼管. 2018(01)
[6]Haynes282合金在長期時效和持久過程中的組織穩(wěn)定性[J]. 符銳,趙雙群. 動力工程學(xué)報. 2017(06)
[7]Segregation of Phosphorus and Precipitation of MNP-Type Phosphide at the Grain Boundary of IN706 Superalloy[J]. Sha Zhang,Linjie Huang,Anwen Zhang,Lianxu Yu,Xin Xin,Wenru Sun,Xiaofeng Sun. Journal of Materials Science & Technology. 2017(02)
[8]磷偏聚對IN706合金鑄態(tài)組織及均勻化處理的影響(英文)[J]. 章莎,信昕,孫文儒,孫曉峰,于連旭,張玉忱,胡壯麒. Transactions of Nonferrous Metals Society of China. 2015(09)
[9]Thermal Stability of a New Ni-Fe-Cr Base Alloy with Different Ti/Al Ratios[J]. Changshuai Wang,Tingting Wang,Meilin Tan,Yongan Guo,Jianting Guo,Lanzhang Zhou. Journal of Materials Science & Technology. 2015(02)
[10]Ti/Al比對GH984G合金長期時效過程中γ′沉淀相粗化行為及拉伸性能的影響[J]. 譚梅林,王常帥,郭永安,郭建亭,周蘭章. 金屬學(xué)報. 2014(10)
本文編號:3065673
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