Last edited by Kezahn
Monday, July 27, 2020 | History

1 edition of Creep-fatigue data and existing evaluation procedures for grade 91 and hastelloy XR found in the catalog.

Creep-fatigue data and existing evaluation procedures for grade 91 and hastelloy XR

Tai Asayama

Creep-fatigue data and existing evaluation procedures for grade 91 and hastelloy XR

by Tai Asayama

  • 259 Want to read
  • 31 Currently reading

Published by ASME Standards Technology, LLC in New York, N.Y .
Written in English

    Subjects:
  • Engineering design,
  • Materials,
  • Strains and Stresses,
  • Creep,
  • Standards

  • Edition Notes

    StatementPrepared by: Tai Asayama and Yukio Tachibana ; Japan Atomic Energy Agency
    ContributionsTachibana, Yukio, American Society of Mechanical Engineers
    Classifications
    LC ClassificationsTA418.22 .A83 2009
    The Physical Object
    Paginationxii, 150 p. :
    Number of Pages150
    ID Numbers
    Open LibraryOL25406472M
    ISBN 100791831841
    ISBN 109780791831847
    LC Control Number2012405769
    OCLC/WorldCa701248261

      Starting from plastic deformation of single crystals this chapter will provide an introduction into several important mechanical properties of structural materials: stress–strain response, toughness measures, creep, fatigue, fracture mechanics and creep-fatigue interactions. Creep-Fatigue Data and Existing Evaluation Procedures for Grade 91 and Hastelloy XR: Paperback: Data Acquisition Systems PTC " Decimal Inch Drawing Sheet Size and Format Y " Design Factor Guidelines for High-pressure Composite Hydrogen Tanks "

    Digital Book, PDF. A - Guide for Inspection of Elevators, Escalators, and Moving Walks (A - ) A - Digital Book, PDF. A - Safety Code for Existing Elevators and Escalators (Includes Requirements for Electric and Hydraulic Elevators and Escalators) (A - ) A - Digital Book. DOE/ASME Generation IV Materials Project, Collect Available Creep-Fatigue Data and Study Existing Creep-Fatigue Evaluation Procedures for Grade 91 and Hastelloy XR. A report on Task 5 submitted to ASME ST-LLC, Revision 3, Final Report. Google Scholar; Filipini, M., Catelli, R., & Cristea, M. E.

    Different approaches for modelling creep–fatigue (CF) interaction are used on strain controlled creep fatigue data of 9Cr–1Mo-VNb (P91) steel and assessed with the target of finding suitable candidates for use in design rules. The assessed models include time, ductility, and strain energy-based creep-fatigue interaction methods and two.   Takahashi, Yukio, Dogan, Bilal, and Gandy, David. "Systematic Evaluation of Creep-Fatigue Life Prediction Methods for Various Alloys." Proceedings of the ASME Pressure Vessels and Piping Conference. Volume 6: Materials and Fabrication, Parts A and B. Prague, Czech Republic. July 26–30, pp. ASME.


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Creep-fatigue data and existing evaluation procedures for grade 91 and hastelloy XR by Tai Asayama Download PDF EPUB FB2

CREEP-FATIGUE DATA AND EXISTING EVALUATION PROCEDURES FOR GRADE 91 AND HASTELLOY XR. Date of Issuance: Creep-Fatigue Procedures for Grade 91 and Hastelloy XR STP-NU Suggested Options for the Improvement of Creep-Fatigue Evaluation Procedure in. Task 5 is to collect available creep-fatigue data and study existing creep-fatigue evaluation procedures for Grade 91 steel and Hastelloy XR.

Part I of this report is devoted to Grade 91 steel. Part II of this report is devoted to Hastelloy XR. Task 5 is to collect available creep-fatigue data and study existing creep-fatigue evaluation procedures for Grade 91 steel and Hastelloy XR.

Part I of this report is devoted to Grade 91 steel. Existing creep-fatigue data were collected (Appendix A) and analyzed from the viewpoints of establishing a creep-fatigue procedure for VHTR design.

Creep-Fatigue Data and Existing Evaluation Procedures for Grade 91 and Hastelloy XR (STP-NU - ) This report describes the results of investigation on Task 5 of DOE/ASME Materials Project based on a contract between ASME Standards Technology, LLC (ASME ST-LLC) and Japan Atomic Energy Agency. Asayama and Y.

Tachibana, “Collect Available Creep-Fatigue Data and Study Existing Creep-Fatigue Evaluation Procedures for Grade 91 and Hastelloy XR” (JAEA Task 5 Report Sept. 30, ). CrossRef Google Scholar. Asayama T and Tachibana Y, Collection of Available Creep-Fatigue Data and Study Existing Creep-Fatigue Evaluation Procedures for Grade 91 and Hastelloy XR, JAEA Task 5 Report, S Kimura K, Toda Y, Kushima H, and Sawada K, in Creep & fracture in high temperature components - 2nd ECCC Creep Conference, (eds) Shibli I A, and.

The creep-fatigue damage diagram of Grade 91 steel used in ASME-NH was derived using a conventional time-fraction testing method which was originally developed for type stainless steels.

Multiple studies indicate that the creep-fatigue damage diagram of Grade 91 steel developed using this testing method has excessive conservatism in it. Task 5 is to collect available creep-fatigue data and study existing creep-fatigue evaluation procedures for Grade 91 steel and Hastelloy XR.

Part I of this report is devoted to Grade 91 steel. Development of Creep-Fatigue Evaluation Method for Modified 9Cr-1Mo Steel Shigeru Takaya, STP-NU Creep-Fatigue Data and Existing Evaluation Procedures for Grade 91 and Hastelloy XR.

Acquisition of Long-Term Data and Re-evaluation of Creep-Fatigue Life Prediction Methods,” CRIEPI Report No. Q, (in Japanese). Collect available creep-fatigue data and study existing creep-fatigue evaluation procedures for grade 91 and hastelloy XR, DOE/ASME generation IV materials project, a report on task 5 submitted to.

Recommendation for Creep and Creep-fatigue assessment for P91 Components. European Commission Creep evaluation procedure of Grade 91 steel can be accomplished by simplified methods [3], [6], [7], [8].

These models utilize. Eurofer97 Creep-Fatigue assessment tool for ANSYS APDL and workbench. Asayama, Y. TachibanaCollect Available Creep-Fatigue Data and Study Existing Creep-Fatigue Evaluation Procedures for Grade 91 and Hastelloy XR.

JAEA () Google Scholar. Influence of data size on a reliability assessment of the long-term creep life of Grade 91 steel was investigated for two different sets of large body of creep-rupture data comprising (Set-1) and. Engineering models for softening and relaxation of Gr.

91 steel in creep-fatigue conditions. Stefan Holmström (European Commission DG-JRC, Petten, “ Collect available creep-fatigue data and study existing creep-fatigue evaluation procedures for Grade 91 and Hastelloy XR ”, Japan Atomic Energy Agency.

The creep-fatigue interaction diagram in ASME-BPVC for P91 was thoroughly investigated by Asayama & Tachibana considering the creep-fatigue evaluation procedures provided by ASME-BPVC and RCC-MR and found being reasonable in case of RCC-MR procedure with which the stresses used for calculating the creep usage are taken from the cyclic stress-strain curves and overly conservative in case of.

ASME Standards Technology, LLC (ASME ST-LLC) is a subsidiary not-for-profit company under ASME established i Creep-Fatigue Data and Existing. Evaluation Procedures for Grade 91 and Hastelloy XR pp. ISBN: eBook Order No.

AQ $ Print Book Order No. A $ STP-NU Verification of Allowable Stresses in. creep-fatigue data and existing evaluation procedures for grade 91 and hastelloy xr EXECUTIVE SUMMARY This report describes the results of investigation on Task 5 of DOE/ASME Materials Project based on a contract between ASME Standards Technology, LLC (ASME ST-LLC) and Japan Atomic.

Islam, Nazrul, Dewees, David J., Cooch, Michael, and Hassan, Tasnim. "Creep-Fatigue Damage Evaluation of Modified Grade 91 Headers Using Damage Coupled Unified Viscoplastic Model." Proceedings of the ASME Pressure Vessels and Piping Conference.

Volume 3B: Design and Analysis. Waikoloa, Hawaii, USA. July 16–20, V03BT03A ASME. Evaluation Procedures for Grade 91 Steel and Hastelloy XR Secure formal access and use rights of the various materials databases. Evaluate the state of existing data and determine where more data is necessary.

The necessary creep-fatigue data on Grade 91 steel and Hastelloy XR will be collected. Grade 91 steel was a candidate material for.

Asayama, Y. Tachibana, Collect Available Creep–Fatigue Data and Study Existing Creep–Fatigue Evaluation Procedures for Grade 91 and Hastelloy XR, DOE/ASME Generation IV Materials Project, Task 5, Revision 3 Final Report, Japan Atomic Energy Agency.

Creep-Fatigue Data and Existing Evaluation Procedures for Grade 91 and Hastelloy XR -- STP-NU - View Additional Information This report describes the results of investigation on Task 5 of DOE/ASME Materials Project based on a contract between ASME Standards Technology, LLC (ASME ST-LLC) and Japan.An assessment of a creep-fatigue crack growth for Mod.

9Cr-1Mo steel wide plates have been carried out based on an extended French high temperature design code, RCC-MR A16 guide. The defect assessment guide of the A16 provides assessment procedures on creep-fatigue crack growth for an austenitic stainless steel, but no guidelines are available yet for a Mod.

9Cr-1Mo steel.Request PDF | Mechanical Properties of Nuclear Materials | Mechanical properties are key elements for design and life-time assessments of all plants and components.

For current nuclear power.