ISSN Print: 2381-0998  ISSN Online: 2381-1005
Journal of Materials Sciences and Applications  
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Calculations for Crack Growth Rate in Whole Process Realized with Two Kinks of Methods for Elastic-Plastic Materials Contained Crack
Journal of Materials Sciences and Applications
Vol.1 , No. 3, Publication Date: May 4, 2015, Page: 100-113
1671 Views Since May 4, 2015, 740 Downloads Since May 4, 2015
 
 
Authors
 
[1]    

Yangui Yu, President’s Study Office, Zhejiang Guangxin New Technology Application Academy of Electromechanical and Chemical Engineering, Hangzhou, China.

 
Abstract
 

In view of short crack and long crack behaviors there are distinctly differences, to use the theoretical approach, to adopt the simple stress-parameter, or the strain-parameter-method and the multiplication-method of two-parameters, to establish numerous new calculation models in whole crack propagation process for elastic-plastic steels, which are the crack growth driving forces, the crack growth rate equations for different stages, the crack-growth-rate-linking-equation in whole process; For transitional crack size and the crack growth rate at transitional point from short crack to long crack growth respectively to put forward a lot of expressions, to provide the concrete and detailed calculation process, the steps and the methods; For new discovering and there are functional relations of some key materials parameters, respectively to give the new calculable formulas, the new definitions, the new physical meanings and geometrical meanings for them. Thereby to make linking and communication between for the modern fracture mechanics and the traditional material mechanics; So that to realize calculations for the crack growth rate in whole process based on traditional material constants with two kinds of methods.


Keywords
 

Elastic-Plastic Materials, Fatigue Fracture, Crack Growth Rate Modeling, The Simple Stress-Strain-Parameter-Method, The Multiplication-Method of Two-Parameters


Reference
 
[01]    

Yu Yangui, Sun Yiming, MaYanghui and XuFeng. The Computing of intersecting relations for its Strength Problem on Damage and Fracture to Materials with short and long crack, In: International Scholarly Research Network ISRN. Mechanical Engineering, Volume, Article ID 876396. http://www.hindawi.com/isrn/me/(2011).

[02]    

Yangui Yu. The Calculations of Evolving Rates Realized with Two of Type Variables in Whole Process for Elastic-Plastic Materials Behaviors under Unsymmetrical Cycle. Mechanical Engineering Research, (Canadian Center of Science and Education, 2012), 2. (2), PP. 77-87; ISSN 1927-0607(print) E-ISSN 1927-0615 (Online).

[03]    

Yu Yangui, Xu Feng, Chinese, Studies and Application of Calculation Methods on Small Crack Growth Behaviors for Elastic-plastic Materials, Chinese Journal of Mechanical Engineering, 43, (12), 240-245. (2007).

[04]    

Yu Yangui and LIU Xiang. Studies and Applications of three Kinds of Calculation Methods by Describing Damage Evolving Behaviors for Elastic-Plastic Materials, Chinese Journal of Aeronautics, 19, (1),52-58,(2006).

[05]    

Yangui Yu. The Life Predicting Calculations in Whole Process Realized from Micro to Macro Damage with Conventional Materials Constants. American Journal of Science and Technology. Vol. 1, No. 5, 2014, pp. 310-328.

[06]    

Yangui Yu. Life Predictions Based on Calculable Materials Constants from Micro to Macro Fatigue Damage Processes. American Journal of Materials Research. Vol. 1, No. 4, 2014, pp. 59-73.

[07]    

Smith K N, Watson P and Topper T H. A stress-strain function of the fatigue of metals. Journal of Materials. 5, (4), 767-778 (1970); 32, (4), 489-98 (2002).

[08]    

Yu Yangui, Jiang Xiaoluo, Chen Jianyu and Wu Zhiyuan, The Fatigue Damage Calculated with Method of the Multiplication ∆ε_e ε_p, Ed. A. F. Blom, In: Proceeding of the Eighth International Fatigue Congress. (EMAS, Stockholm, 2002), (5), PP. 2815-2822.

[09]    

Y. Murakami, S. Sarada, T. Endo. H. Tani-ishi, Correlations among Growth Law of Small Crack, Low-Cycle Fatigue Law and ,Applicability of Miner’s Rule, Engineering Fracture Mechanics, 18, (5) 909-924, (1983).

[10]    

Morrow, j. D. Fatigue Design handbook, Section 3.2, SAE Advances in Engineering, Society for Automotive Engineers, (Warrendale, PA, 1968), Vol. 4, pp. 21-29.

[11]    

Masing, G. Eigerspannungen and Verfestigungbein Messing, in: Proceeding of the 2nd International Congress of Applied Mechanics, (Zurich, 1976), pp. 332-335.

[12]    

GB/T 19624-2004, Chinese, Safety assessment for in-service pressure vessels containing defects, (Beijing, 2005) pp.24-26.

[13]    

S. V. Doronin, et al., Ed. RAN U. E. Soken, Russian, Models on the fracture and the strength on technology systems for carry structures, (Novosirsk Science, 2005) , PP. 160-165.

[14]    

S. Ya. Yaliema, Russian, Correction about Paris’s equation and cyclic intensity character of crack, Strength Problem.147, (9) 20-28(1981).

[15]    

Xian-Kui Zhu, James A. Joyce, Review of fracture toughness (G, K, J, CTOD, CTOA) testing and standardization, Engineering Fracture Mechanics, 85,1-46, (2012).

[16]    

U. Zerbst, S. Beretta, G. Kohler, A. Lawton, M. Vormwald, H.Th. Beier, C. Klinger,I. C erny´, J. Rudlin, T. Heckel a, D. Klingbeil, Safe life and damage tolerance aspects of railway axles – A review. Engineering Fracture Mechanics. 98, 214–271 (2013).

[17]    

Yu Yangui, MaYanghuia, The Calculation in whole Process Rate Realized with Two of Type Variable under Symmetrical Cycle for Elastic-Plastic Materials Behavior, in: 19th European Conference on Fracture,(Kazan, Russia, 26-31 August, 2012), In CD, ID 510.

[18]    

Yu Yangui, Bi Baoxiang, MaYanghau, Xu Feng. Damage Calculations in Whole Evolving Process Actualized for the Materials Behaviors of Structure with Cracks to Use Software Technique. In:12th International Conference on Fracture Proceeding, (Ottawa, Canada. 2009), 12-19. CD.





 
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