Evaluation of the Intrinsic and Extrinsic Fracture Behavior of Iron Aluminides

Evaluation of the Intrinsic and Extrinsic Fracture Behavior of Iron Aluminides PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 35

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Book Description
Iron aluminides have excellent corrosion resistance in high-temperature oxidizing-sulfidizing environments; however, there are problems at room and medium temperatures with hydrogen embrittlement as related to exposure to moisture. In this research, a coordinated computational modeling/experimental study of mechanisms related to environmental-assisted fracture behavior of selected iron aluminides has been undertaken. The modeling and the experimental work connect at the level of coordinated understanding of the mechanisms for hydrogen penetration and for loss of strength and susceptibility to fracture. The focus of the modeling component has been on the challenging question of accurately predicting the iron vacancy formation energy in Fe3Al and the subsequent tendency, if present, for vacancy clustering. The authors have successfully performed, on an ab initio basis, the first calculation of the vacancy formation energy in Fe3Al. These calculations include lattice relaxation effects which are quite large for one of the two types of iron sites. This has significant implications for vacancy clustering effects with consequences for hydrogen diffusion. Indeed, the ab-initio-based estimate of the divacancy binding energy indicates a likely tendency toward such clustering for iron vacancies on the sites with large lattice relaxation. The experimental work has focused on the relationship of the choice and concentration of additives to the improvement of resistance to hydrogen embrittlement and hence to the fracture behavior.

Evaluation of the Intrinsic and Extrinsic Fracture Behavior of Iron Aluminides

Evaluation of the Intrinsic and Extrinsic Fracture Behavior of Iron Aluminides PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 35

Get Book Here

Book Description
Iron aluminides have excellent corrosion resistance in high-temperature oxidizing-sulfidizing environments; however, there are problems at room and medium temperatures with hydrogen embrittlement as related to exposure to moisture. In this research, a coordinated computational modeling/experimental study of mechanisms related to environmental-assisted fracture behavior of selected iron aluminides has been undertaken. The modeling and the experimental work connect at the level of coordinated understanding of the mechanisms for hydrogen penetration and for loss of strength and susceptibility to fracture. The focus of the modeling component has been on the challenging question of accurately predicting the iron vacancy formation energy in Fe3Al and the subsequent tendency, if present, for vacancy clustering. The authors have successfully performed, on an ab initio basis, the first calculation of the vacancy formation energy in Fe3Al. These calculations include lattice relaxation effects which are quite large for one of the two types of iron sites. This has significant implications for vacancy clustering effects with consequences for hydrogen diffusion. Indeed, the ab-initio-based estimate of the divacancy binding energy indicates a likely tendency toward such clustering for iron vacancies on the sites with large lattice relaxation. The experimental work has focused on the relationship of the choice and concentration of additives to the improvement of resistance to hydrogen embrittlement and hence to the fracture behavior.

Energy Materials Coordinating Committe (EMaCC): Fiscal Year 1999 Annual Technical Report

Energy Materials Coordinating Committe (EMaCC): Fiscal Year 1999 Annual Technical Report PDF Author:
Publisher: DIANE Publishing
ISBN: 1422345645
Category :
Languages : en
Pages : 221

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Book Description


Energy Materials Coordinating Committe (EMaCC): Fiscal Year 1997 Annual Technical Report

Energy Materials Coordinating Committe (EMaCC): Fiscal Year 1997 Annual Technical Report PDF Author:
Publisher: DIANE Publishing
ISBN: 1422345661
Category :
Languages : en
Pages : 234

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Book Description


Satire des romans du jour, considérés dans leur influence sur le goût et les moeurs de la nation. Pièce couronnée par l'Athénée de Lyon par Ch. Millevoye

Satire des romans du jour, considérés dans leur influence sur le goût et les moeurs de la nation. Pièce couronnée par l'Athénée de Lyon par Ch. Millevoye PDF Author: Charles Hubert Millevoye
Publisher:
ISBN:
Category :
Languages : en
Pages : 16

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Energy Materials Coordinating Committe (EMaCC): Fiscal Year 1998 Annual Technical Report

Energy Materials Coordinating Committe (EMaCC): Fiscal Year 1998 Annual Technical Report PDF Author:
Publisher: DIANE Publishing
ISBN: 1422345653
Category :
Languages : en
Pages : 232

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Energy Materials Coordinating Committe (EMaCC): Fiscal Year 2000 Annual Technical Report

Energy Materials Coordinating Committe (EMaCC): Fiscal Year 2000 Annual Technical Report PDF Author:
Publisher: DIANE Publishing
ISBN: 1422345637
Category :
Languages : en
Pages : 230

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Book Description


Energy Materials Coordinating Committe (EMaCC): Fiscal Year 1996 Annual Technical Report

Energy Materials Coordinating Committe (EMaCC): Fiscal Year 1996 Annual Technical Report PDF Author:
Publisher: DIANE Publishing
ISBN: 142234567X
Category :
Languages : en
Pages : 279

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Book Description


Energy Materials Coordinating Committe (EMaCC): Fiscal Year 2001 Annual Technical Report

Energy Materials Coordinating Committe (EMaCC): Fiscal Year 2001 Annual Technical Report PDF Author:
Publisher: DIANE Publishing
ISBN: 1422345629
Category :
Languages : en
Pages : 214

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Book Description


Energy Materials Coordinating Committe (EMaCC): Fiscal Year 2002 Annual Technical Report

Energy Materials Coordinating Committe (EMaCC): Fiscal Year 2002 Annual Technical Report PDF Author:
Publisher: DIANE Publishing
ISBN: 1422345610
Category :
Languages : en
Pages : 221

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Book Description


Mechanisms of Defect Complex Formation and Environmental-assisted Fracture Behavior of Iron Aluminides

Mechanisms of Defect Complex Formation and Environmental-assisted Fracture Behavior of Iron Aluminides PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 15

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Book Description
Iron aluminide has excellent corrosion resistance in high-temperature oxidizing-sulfidizing environments; however, there are problems at room and medium temperature with hydrogen embrittlement as related to exposure to moisture. In this research, a coordinated computational modeling/experimental study of mechanisms related to environmental-assisted fracture behavior of selected iron aluminides is being undertaken. The modeling and the experimental work will connect at the level of coordinated understanding of the mechanisms for hydrogen penetration and for loss of strength and susceptibility to fracture. The focus of the modeling component at this point is on the challenging question of accurately predicting the iron vacancy formation energy in Fe3Al and the subsequent tendency, if present, for vacancy clustering. The authors have successfully performed, on an ab initio basis, the first calculation of the vacancy formation energy in Fe3Al. These calculations include lattice relaxation effects which are quite large. This has significant implications for vacancy clustering effects with consequences to be explored for hydrogen diffusion. The experimental work at this stage has focused on the relationship of the choice and concentration of additives to the improvement of resistance to hydrogen embrittlement and hence to the fracture behavior. For this reason, comparative crack growth tests of FA-186, FA-187, and FA-189 iron aluminides (all with basic composition of Fe-28Al-5Cr, at % with micro-alloying additives of Zr, C or B) under, air, oxygen, or water environment have been performed. These tests showed that the alloys are susceptible to room temperature hydrogen embrittlement in both B2 and DO3 conditions. Test results indicated that FA-187, and FA-189 are intrinsically more brittle than FA-186.