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Peter Liaw K. Fatigue and Fracture Behavior of High Temperature Materials


Mechanisms of High-Temperature Fatigue and Fracture in Silicon Carbide Ceramics 1 D. Chen, X.F. Zhang, and R.O. Ritchie High Frequency Fatigue Crack Propagation in the Nickel-base Superalloy KM4 at High Temperatures 9 A. Shyam, S.A. Padula, and W.W. Milligan Fracture and Fatigue-Crack Growth Behavior in Mo-12Si-8.5B Intermetallics at Ambient and Elevated Temperatures 17 H. Choe, D. Chen, J.H Schneibel, and R.O. Ritchie Temperature Evolution and Fatigue Damage of Reactor Pressure Vessel (RPV) Steels 25 B. Yang, P.K. Liaw, H. Wang, L. Jiang, J.Y. Huang, R.C. Kuo, andJ.GHuang Effect of Frequency and Specimen Self-Heating on the Fatigue Life of Type 316 LN Stainless Steel 37 H. Tian, P.K. Liaw, D. Fielden, L. Jiang, B Yang,C.R. Brooks, D.D Bruns, M.D. Brotherton, H. Wang, J.P. Strizak, L.K. Mansur, J.R. DiStefano, K. Farrell, D.C. Lousteau, S.J. Pawel, and G.T. Yahr An Investigation of the Effects of Temperature on Fatigue Crack Growth in Cast Lamellar™ XD Gamma Alloy 41 J. Lou, C. Mercer, and W.O. Soboyejo An Investigation of the Effects of Loading Rate on Resistance-Curve Behavior and Toughening in Cast Lamellar XD™ Gamma Alloys 49 J. Lou, and W.O. Soboyejo Damage Assessment of Ceramic Matrix Composites by Nondestructive Evaluation Techniques 59 J. Kim, P.K. Liaw, H Wang, and Y.T. Lee High-Temperature Cyclic Fatigue-Crack Growth in Monolithic Ti3SiC2 Ceramics 71 K Shirato, D. Chen, M.W. Barsoum, T. El-Raghy, and R.O. Ritchie Low-Cycle Fatigue of UltimetR Alloy 77 L. Jiang, P.K. Liaw, C.R. Brooks, J. Strader, D.L. Klarstrom, and T. Jiang Influence of Hold Time and Temperature on Low-Cycle Fatigue Behavior of Cobalt- Based Superalloy Haynes® 188 85 L.J. Chen, P.K. Liaw, Y.H. He, M.L. Benson, J. W. Blust, P.F. Browning, R.R. Seeley, and D.L. Klarstrom Orientation Dependence of Directional Coarsening in a Single Crystal Nickel-Base Superalloy 95 Y.B. Xu, Y.H. Sha, J.H Zhang, andZ.Q. Hu In-Situ TEM Observation of Crack Propagation in a Single Crystal Ni3Al 97 Y.B. Xu, Z.W.Shan, andL. Liu Author Index 99

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Claude Bathias Fatigue of Materials and Structures


Fatigue and fracture result in billions of dollars of damage each year. This book examines the various causes of fatigue including crack growth, defects, temperature, environmental, and corrosion.

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Degallaix-Moreuil Suzanne Duplex Stainless Steels


Duplex Stainless Steels (DSSs) are chromium-nickel-molybdenum-iron alloys that are usually in proportions optimized for equalizing the volume fractions of austenite and ferrite. Due to their ferritic-austenitic microstructure, they possess a higher mechanical strength and a better corrosion resistance than standard austenitic steels. This type of steel is now increasing its application and market field due to its very good properties and relatively low cost. This book is a review of the most recent progress achieved in the last 10 years on microstructure, corrosion resistance and mechanical strength properties, as well as applications, due to the development of new grades. Special attention will be given to fatigue and fracture behavior and to proposed models to account for mechanical behavior. Each subject will be developed in chapters written by experts recognized around the international industrial and scientific communities. The use of duplex stainless steels has grown rapidly in the last 10 years, particularly in the oil and gas industry, chemical tankers, pulp and paper as well as the chemical industry. In all these examples, topics like welding, corrosion resistance and mechanical strength properties (mainly in the fatigue domain) are crucial. Therefore, the update of welding and corrosion properties and the introduction of topics like texture effects, fatigue and fracture strength properties, and mechanical behavior modeling give this book specific focus and character.

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K. Thomas Liaw Investment Banking and Investment Opportunities in China

Naman Recho Fracture Mechanics and Crack Growth


This book presents recent advances related to the following two topics: – how mechanical fields close to material or geometrical singularities such as cracks can be determined; – how failure criteria can be established according to the singularity degrees related to these discontinuities. Concerning the determination of mechanical fields close to a crack tip, the first part of the book presents most of the traditional methods in order to classify them into two major categories. The first is based on the stress field, such as the Airy function, and the second resolves the problem from functions related to displacement fields. Following this, a new method based on the Hamiltonian system is presented in great detail. Local and energetic approaches to fracture are used in order to determine the fracture parameters such as stress intensity factor and energy release rate. The second part of the book describes methodologies to establish the critical fracture loads and the crack growth criteria. Singular fields for homogeneous and non-homogeneous problems near crack tips, v-notches, interfaces, etc. associated with the crack initiation and propagation laws in elastic and elastic-plastic media, allow us to determine the basis of failure criteria. Each phenomenon studied is dealt with according to its conceptual and theoretical modeling, to its use in the criteria of fracture resistance; and finally to its implementation in terms of feasibility and numerical application. Contents 1. Introduction. Part 1: Stress Field Analysis Close to the Crack Tip 2. Review of Continuum Mechanics and the Behavior Laws. 3. Overview of Fracture Mechanics. 4. Fracture Mechanics. 5. Introduction to the Finite Element Analysis of Cracked Structures. Part 2: Crack Growth Criteria 6. Crack Propagation. 7. Crack Growth Prediction in Elements of Steel Structures Submitted to Fatigue. 8. Potential Use of Crack Propagation Laws in Fatigue Life Design.

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Pineau André Fatigue of Materials and Structures. Application to Damage and Design, Volume 2


The design of mechanical structures with improved and predictable durability cannot be achieved without a thorough understanding of the mechanisms of fatigue damage and more specifically the relationships between the microstructure of materials and their fatigue properties. Written by leading experts in the field, this book (which is complementary to Fatigue of Materials and Structures: Application to Damage and Design, also edited by Claude Bathias and André Pineau), provides an authoritative, comprehensive and unified treatment of the mechanics and micromechanisms of fatigue in metals, polymers and composites. Each chapter is devoted to one of the major classes of materials or to different types of fatigue damage, thereby providing overall coverage of the field. The book deals with crack initiation, crack growth, low-cycle fatigue, gigacycle fatigue, shorts cracks, fatigue micromechanisms and the local approach to fatigue damage, corrosion fatigue, environmental effects and variable amplitude loadings, and will be an important and much used reference for students, practicing engineers and researchers studying fracture and fatigue in numerous areas of mechanical, structural, civil, design, nuclear, and aerospace engineering as well as materials science.

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Ulrich Krupp Fatigue Crack Propagation in Metals and Alloys


This comprehensive overview of the whole field of fatigue and fracture of metallic materials covers both the theoretical background and some of the latest experimental techniques. It provides a summary of the complex interactions between material microstructure and cracks, classifying them with respect to the overall damage process with a focus on microstructurally short cracks and dynamic embrittlement. It furthermore introduces new concepts for the numerical treatment of fatigue microcrack propagation and their implementation in fatigue-life prediction models.This comprehensive overview of the whole field of fatigue and fracture of metallic materials covers both the theoretical background and the latest experimental techniques. It provides a summary of the complex interactions between material microstructure and cracks, classifying them with respect to the overall damage process. It furthermore introduces new concepts for the numerical treatment of fatigue microcrack propagation and their implementation in fatigue-life prediction models.

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Stephen W. Freiman The Fracture of Brittle Materials. Testing and Analysis


Provides a modern, practical approach to the understanding and measurement procedures relevant to the fracture of brittle materials This book examines the testing and analysis of the fracture of brittle materials. Expanding on the measurement and analysis methodology contained in the first edition, it covers the relevant measurements (toughness and strength), material types, fracture mechanics, measurement techniques, reliability and lifetime predictions, microstructural considerations, and material/test selection processes appropriate for the analysis of the fracture behavior of brittle materials. The Fracture of Brittle Materials: Testing and Analysis, Second Edition summarizes the concepts behind the selection of a test procedure for fracture toughness and strength, and goes into detail on how the statistics of fracture can be used to assure reliability. It explains the importance of the role of microstructure in these determinations and emphasizes the use of fractographic analysis as an important tool in understanding why a part failed. The new edition includes a significant quantity of material related to the fracture of biomaterials, and features two new chapters—one on thermal shock, the other on the modeling of the fracture process. It also expands on a discussion of how to treat the statistics of fracture strength data to ensure reliability. Provides practical analysis of fracture toughness and strength Introduces the engineering and materials student to the basic concepts necessary for analyzing brittle fracture Contains new statistical analysis procedures to allow for the prediction of the safe design of brittle components Contains real-world examples to assist the reader in applying the concepts to their own research, material development, and quality-control needs The Fracture of Brittle Materials: Testing and Analysis, Second Edition is an important resource for all students, technicians, engineers, scientists, and researchers involved in the study, analysis, creation, or testing of ceramics.

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Pineau André Fatigue of Materials and Structures. Application to Design


The design of mechanical structures with predictable and improved durability cannot be achieved without a thorough understanding of the mechanisms of fatigue damage and more specifically the relationships between the microstructure of materials and their fatigue properties. Written by leading researchers in the field, this book, along with the complementary books Fatigue of Materials and Structures: Fundamentals and Application to Damage and Design (both also edited by Claude Bathias and André Pineau), provides an authoritative, comprehensive and unified treatment of the mechanics and micromechanisms of fatigue in metals, polymers and composites. Each chapter is devoted to one of the major classes of materials or to different types of fatigue damage, thereby providing overall coverage of the field. This book deals with multiaxial fatigue, thermomechanical fatigue, fretting-fatigue, influence of defects on fatigue life, cumulative damage and damage tolerance, and will be an important and much used reference for students, practicing engineers and researchers studying fracture and fatigue in numerous areas of materials science and engineering, mechanical, nuclear and aerospace engineering.

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Группа авторов Mechanical Behavior of Concrete


This title provides a comprehensive overview of all aspects of the mechanical behavior of concrete, including such features as its elastoplasticity, its compressive and tensile strength, its behavior over time (including creep and shrinkage, cracking and fatigue) as well as modeling techniques and its response to various stimuli. As such, it will be required reading for anyone wishing to increase their knowledge in this area.

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Peter K. Liaw | Materials Science and Engineering

Method for Bonding Glassy Metals with Patent Number of I33150, Applicants: Shinghoa Wang, Peihung Kuo, Peter K. Liaw, Guojiang Fan, Hsiaotsung Tsang, Dongchun Qiao, and Feng Jiang. Assignment for Published Patent Application: National Taiwan Ocean University; Foreign Application: Taiwan 096148928, 12/20/2007.

Fatigue and Fracture Behavior of High Temperature ...

Fatigue and Fracture Behavior of High Temperature Materials (English Edition) eBook: Peter K. Liaw: Amazon.de: Kindle-Shop

Fatigue and Fracture Behavior of High Temperature ...

Fatigue and Fracture Behavior of High Temperature Materials | P. K. Liaw, M. Huang | ISBN: 9780873394468 | Kostenloser Versand für alle Bücher mit Versand und Verkauf duch Amazon.

FATIGUE AND FRACTURE BEHAVIOR OF HIGH TEMPERATURE MATERIALS

FATIGUE AND FRACTURE BEHAVIOR OF HIGH TEMPERATURE MATERIALS Edited by: Peter K. Liaw 184 Thorn Hill Road Warrendale, PA 15086-7514 (724) 776-9000 Fracture and Fatigue-Crack Growth Behavior in Mo-12Si-8.5B Intermetallics at Ambient and Elevated Temperatures H. Choe, D. Chen, J.H Schneibel, and R.O. Ritchie Pgs. 17-24. FRACTURE AND FATIGUE-CRACK GROWTH BEHAVIOR IN Mo-12Si-8.5B INTERMETALLICS AT ...

FATIGUE AND FRACTURE BEHAVIOR OF HIGH ... FATIGUE AND ...

FATIGUE AND FRACTURE BEHAVIOR OF HIGH TEMPERATURE MATERIALS Edited by: Peter K. Liaw 184 Thorn Hill Road Warrendale, PA 15086-7514 (724) 776-9000 Fracture and Fatigue-Crack Growth Behavior in Mo-12Si-8.5B Intermetallics at Ambient and Elevated Temperatures H. Choe, D. Chen, J.H Schneibel, and R.O. Ritchie Pgs. 17-24. FRACTURE AND FATIGUE-CRACK GROWTH BEHAVIOR IN Mo-12Si-8.5B INTERMETALLICS AT ...

Fatigue and Fracture Behavior of High Temperature ...

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Peter K. Liaw's research works | The University of ...

Peter K. Liaw's 94 research works with 654 citations and 13,923 reads, including: Nondestructive effect of the cusp magnetic field on the dendritic microstructure during the directional ...

Prof. Peter Liaw | Materials Science and Engineering

Peter K. Liaw was born in Chiayi, Taiwan. He graduated from the Chiayi High School, obtained his B.S. in Physics from the National Tsing Hua University, Taiwan, and his Ph.D. in Materials Science and Engineering from Northwestern University, USA, in 1980. After working at the Westinghouse Research and Development (R&D) Center for thirteen years, he joins the faculty and becomes an Endowed Ivan ...

Fatigue crack propagation in 99.99+ and 1100 aluminum at ...

Peter Kaehuei Liaw; Morris E. Fine; Mechanical Behavior. 66 Downloads; 11 Citations; Abstract. The fatigue crack propagation rate,dc/dN, in cold-rolled and annealed 99.99+ Al is about 80 times slower at 77 K than at 298 K. In annealed 1100 Al which contains constituent particles,dc/dN decreases by a factor of 20 on cooling from 298 to 77 K. At 298 and 77 K, annealed 99.99 + Al and 1100 Al ...

Stress-life fatigue behavior and fracture-surface ...

The stress-life fatigue behavior and fracture morphology of a (Cu 60 Zr 30 Ti 10) 99 Sn 1 bulk-metallic glass alloy was investigated under both three-point and four-point bending conditions. For all stress levels tested, the fatigue lifetimes tended to be higher for the three-point loading condition.

‪Peter Liaw‬ - ‪Google Scholar‬

Peter Liaw. University of Tennessee. Verified email at utk.edu. fatigue fracture high entropy alloys neutron and synchrotron diffraction. Articles Cited by Co-authors. Title. Sort . Sort by citations Sort by year Sort by title. Cited by. Cited by. Year; Microstructures and properties of high-entropy alloys. Y Zhang, TT Zuo, Z Tang, MC Gao, KA Dahmen, PK Liaw, ZP Lu. Progress in Materials ...

Fatigue and the Criminal Law | Request PDF

Dobbie K (2002) Fatigue related crashes: an analysis of fatigue related crashes on australian roads using an operational definition of fatigue. Australian Transport Safety Bureau, OR-23. Criminal ...

Fatigue and Fracture Behavior of High Temperature Materials

Peter K. Liaw. FATIGUE AND FRACTURE BEHAVIOR OF HIGH TEMPERATURE MATERIALS A Publication of Proceedings of a Symposium sponsored by the Structural Materials Division (SMD) of TMS (The Minerals, Metals & Materials Society). Held at the 2000 TMS Fall Meeting in St. Louis, Missouri, USA October 8-12, 2000 Edited by Peter K. Liaw. Printed in the United States of America Library of Congress Catalog ...

Peter LIAW | University of Tennessee, TN | UTK

Peter Liaw As high-entropy alloys (HEAs) are being actively explored for next-generation structural materials, gaining a comprehensive understanding of their creep, fatigue, and fracture behaviors ...

Fatigue and Fracture Behavior of High Temperature ...

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Peter K. Liaw Fatigue and Fracture Behavior of High ...

Peter K. Liaw Fatigue and Fracture Behavior of High Temperature Materials . Support. Adobe DRM. €123.99. Add to cart . Table of Content Mechanisms of High-Temperature Fatigue and Fracture in Silicon Carbide Ceramics 1 D. Chen, X.F. Zhang, and R.O. Ritchie High Frequency Fatigue Crack Propagation in the Nickel-base Superalloy KM4 at High Temperatures 9 A. Shyam, S.A. Padula, and W.W. Milligan ...

Peter K. Liaw - mse.site.nthu.edu.tw

Mechanical behavior, fatigue and fracture behavior, nondestructive-evaluation, and neutron/synchrotron studies of advanced materials, including bulk-metallic glasses, nano-structural materials, high-entropy alloys, superalloys, steels, and intermetallics

Amazon.com: Fatigue and Fracture Behavior of High ...

Amazon.com: Fatigue and Fracture Behavior of High Temperature Materials (9781118000380): Liaw, Peter K.: Books

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Fatigue and Fracture Behavior of High Temperature Materials: Liaw, Peter K.: Amazon.nl. Ga naar primaire content.nl. Hallo, Inloggen. Account en lijsten Account Retourzendingen en bestellingen. Probeer . Prime Winkel-wagen. Boeken. Zoek Zoeken Hallo ...

Fatigue And Fracture Behavior | SpringerLink

W. H. Peter, R. A. Buchanan, C. T. Liu, and P. K. Liaw, The fatigue behavior of a zirconium-based bulk metallic glass in vacuum and air, J. Non-Cryst. Solids 317, 187-192 (2003). CrossRef ADS Google Scholar

Fatigue and Fracture Behavior of High Temperature ...

Fatigue and Fracture Behavior of High Temperature Materials (Peter K. Liaw) – аннотация, отзывы, информация о книге. Рецензии. Переходите и скачивайте книгу на Fenzin!

Dr. Peter Liaw Honored with TMS Symposium: "Innovations in ...

Dr. Peter Liaw Honored with TMS Symposium: “Innovations in High Entropy Alloys and Bulk Metallic Glasses: An SMD & FMD Symposium in Honor of Peter K. Liaw” February 28, 2020. Dr. Peter Liaw. At the 149th Annual Meeting and Exhibition of TMS held in February, 2020 in San Diego, California, the Structural Materials Division (SMD) and Functional Materials Division (FMD) co-sponsored a special ...

Creep, fatigue, and fracture behavior of high-entropy ...

Creep, fatigue, and fracture behavior of high-entropy alloys - Volume 33 Issue 19 - Weidong Li, Gang Wang, Shiwei Wu, Peter K. Liaw Skip to main content Accessibility help We use cookies to distinguish you from other users and to provide you with a better experience on our websites.

Peter K. Liaw - Publications

Qiao JW, Zhang T, Yang FQ, Liaw PK, Pauly S, Xu BS. A tensile deformation model for in-situ dendrite/metallic glass matrix composites. Scientific Reports. 3: 2816. PMID 24085187 DOI: 10.1038/srep02816 : 0.48: 2013: Chuang CP, Yuan T, Dmowski W, Wang GY, Freels M, Liaw PK, Li R, Zhang T. Fatigue-induced damage in Zr-based bulk metallic glasses.

FATIGUE AND FRACTURE BEHAVIOR OF HIGH TEMPERATURE MATERIALS

FATIGUE AND FRACTURE BEHAVIOR OF HIGH TEMPERATURE MATERIALS Edited by: Peter K. Liaw 184 Thorn Hill Road Warrendale, PA 15086-7514 (724) 776-9000 High-Temperature Cyclic Fatigue-Crack Growth in Monolithic Ti 3 SiC 2 Ceramics K. Shirato, D. Chen, M.W. Barsoum, T. El-Ragy, and R.O. Ritchie Pgs. 71-75 . HIGH-TEMPERATURE CYCLIC FATIGUE-CRACK GROWTH IN MONOLITHIC Ti3SiC2 CERAMICS K. Shirato ’, D ...

ASTM International - Author Information

Peter K. Liaw: Westinghouse Research and Development Center: 01 January 1988: STP10586S: Fatigue Behavior of SA533-B1 Steels: Peter K. Liaw: The University of Tennessee: 01 January 2002: STP33109S: Fatigue Crack Growth Rate Properties of SA508 and SA533 Pressure Vessel Steels and Submerged-Arc Weldments in a Pressurized Water Environment: Peter ...

Fatigue and Fracture Behavior of High Temperature ...

Fatigue and Fracture Behavior of High Temperature Materials: Liaw, Peter K.: Amazon.com.au: Books

SERRATION BEHAVIOR OF HIGH-ENTROPY ALLOYS (HEAs) Project ...

Strong fatigue and fracture resistance ... James Antonaglia, Braden Brinkman, Michael LeBlanc, Xie Xie, Shuying Chen, Peter K. Liaw, and Karin A. Dahmen, Experiments and Model for Serration Statistics in Low -Entropy, Medium-Entropy, and High- Entropy Alloys, Scientific Reports 5, 16997 (2015), and S.Y. Chen et al. preprint in preparation (2017) 1. Testing the model against predictions for ...

Fatigue and Fracture Behavior of High Temperature ...

Fatigue and Fracture Behavior of High Temperature Materials. Editor (s): Peter K. Liaw. First published: 1 February 2001. Print ISBN: 9781118000380 | Online ISBN: 9781118787823 | DOI: 10.1002/9781118787823. Copyright © 2000, The Minerals, Metals and Materials Society. All rights reserved.

Peter K. Liaw | Scientific.Net

Journal of Biomimetics, Biomaterials and Biomedical Engineering Materials Science. Defect and Diffusion Forum

NSF Award Search: Award#1611180 - Fundamental Study of Low ...

Peter Liaw [email protected] (Principal Investigator) Sponsor: University of Tennessee Knoxville 1331 CIR PARK DR Knoxville, TN 37916-3801 (865)974-3466 NSF Program(s): METAL & METALLIC NANOSTRUCTURE Program Reference Code(s): 9150 Program Element Code(s): 1771 ABSTRACT Non-Technical Abstract This project will study low-cycle-fatigue behavior of a new class of multi-component alloys called high ...

Characterization of Fatigue Damage Modes in Nicalon ...

Peter K. Liaw Department of Materials Science and Engineering, University of Tennessee, Knoxville, TN 37996-2200. Search for other works by this author on: This Site. PubMed . Google Scholar. Author and Article Information Jeongguk Kim . Railroad Safety Research and Testing Center, Korea Railroad Research Institute, Kyunggi, South Korea 437-757. Peter K. Liaw . Department of Materials Science ...

Rare to see political parties united like they are over ...

By Peter Madeley Coronavirus Published: Oct 9, 2020 Last Updated: Oct 9, 2020 It is a rare occasion when politicians of all stripes come together in unanimity. Subscribe to our daily newsletter!

Recent Developments in the Thermomechanical Fatigue Life ...

Peter K. Liaw is the Ivan Racheff Chair of Excellence and professor at the University of Tennessee. Mingliang Ye is an associate professor of mining engineering with GuiZhou University of Technology. Jie Yu is a professor of materials science and engineering with GuiZhou University of Technology.

P K Liaw: free download. Ebooks library. On-line books ...

P K Liaw: free download. Ebooks library. On-line books store on Z-Library | B–OK. Download books for free. Find books. 5,382,460 books books; 77,518,212 articles articles; ZLibrary Home; Home; Toggle navigation. Sign in . Login; Registration; Donate; Books; Add book; Categories; Most Popular; Recently Added; Z-Library Project ; Top Z-Librarians; Blog; Part of Z-Library project. The world's ...

Peter Liaw (K), 50 - Corvallis, OR Background Report at ...

Peter Liaw; Peter Liaw's Reputation Profile. Edit Profile. Review. Lock. Message. 0 Profile Searches. View People They Know with Court Records. Criminal or Civil Court records found on Peter's Family, Friends, Neighbors, or Classmates View Details. Peter Liaw, 50 Corvallis, OR. This is Me - Control Profile. Photos | Summary | Follow. BAD 1 - 2 POOR 2 - 3 FAIR 3 - 4 GOOD 4 - 5. BAD GOOD. Rate ...

Fatigue of Metallic Glasses | Applied Mechanics Reviews ...

The fatigue of MGs is thus a topic of research and practical interest. In this review, a brief introduction on MGs, their applications and challenges, is first provided. Next, experimental studies on fatigue behaviors of both macroscopic and nanoscale MGs are summarized. The range of topics covered include the stress-life behavior, fatigue-crack growth behavior, fatigue-fracture morphology ...

Книга Fatigue and Fracture Behavior of High Temperature ...

Peter K. Liaw «Fatigue and Fracture Behavior of High Temperature Materials»: аннотация, рейтинг, отзывы. Скачать книгу в формате pdf или читать онлайн

Bulk Metallic Glasses: An Overview | Michael Miller, Peter ...

Michael Miller, Peter Liaw. Bulk metallic glasses are a new emerging field of materials with many desirable and unique properties. These amorphous materials have many diverse applications from structural applications to biomedical implants. This book provides a complete overview of bulk metallic glasses. It covers the principles of alloy design, glass formation, processing, atomistic modeling ...

Foreword: Fatigue and Corrosion Damage in Metallic ...

0 Peter Liaw Professor and Ivan Racheff Chair of Excellence, The University of Tennessee, 427-B Dougherty Engineering Bldg. , Knoxville, TN 37996-2200 1 Guest Editors Tongguang Zhai Associate Professor, University of Kentucky , 177 F. Paul Anderson Tower, Lexington, KY 40506 This special forum in Metallurgical and Materials Transactions A contains the peer-reviewed papers that were presented ...

Bulk Metallic Glasses von Peter Liaw / Michael Miller (eds ...

Bulk metallic glasses are a new emerging field of materials with many desirable and unique properties, such as high strength, good hardness, good wear resistance, and high corrosion resistance that can be produced in near net shape components.

Fatigue behavior of high-entropy alloys: A review ...

AU - Liaw, Peter K. PY - 2018/2/1. Y1 - 2018/2/1. N2 - Fatigue failures cost approximately 4% of the United States’ gross domestic product (GDP). The design of highly fatigue-resistant materials is always in demand. Different from conventional strategies of alloy design, high-entropy alloys (HEAs) are defined as materials with five or more ...

Thermography Detection on the Fatigue Damage

Special thanks gives to my advisor, Prof. Peter K. Liaw, who gave me the greatest help both acdemically and personally. I would also like to thank Dr. Hsin Wang at the Oak Ridge National Laboratory for his great help on thermography. Dr. R. C. Kuo, Dr. J. Y. Huang, and Dr. J. G. Huang of the Institue of Nuclear Energy Research, Taiwan, and Taiwan Power Company have provided funding and great ...

Fatigue and Fracture Behavior of High Temperature ...

Fatigue and Fracture Behavior of High Temperature Materials: Amazon.es: Peter K. Liaw: Libros en idiomas extranjeros

Microstructures and properties of high-entropy alloys ...

Fig. 4.14 exhibits the engineering stress–strain compression curves of the NbCrMo 0.5 Ta 0.5 TiZr alloy samples after HIP at 296 K, 1073 K, 1273 K, and 1473 K . During deformation at 296 K, the yield strength was 1595 MPa and continuous strengthening occurred until the alloy fractured by localized shearing at maximum strength of 2046 MPa accumulating about a 5% strain. During testing at

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Buy Fatigue and Fracture Behavior of High Temperature Materials by Peter K. Liaw (ISBN: 9781118000380) from Amazon's Book Store. Everyday low prices and free delivery on eligible orders.

P K Liaw: free download. Ebooks library. On-line books ...

P K Liaw: free download. Ebooks library. On-line books store on Z-Library | B–OK. Download books for free. Find books. 5,335,332 books books; 77,518,212 articles articles; ZLibrary Home; Home; Toggle navigation. Sign in . Login; Registration; Donate; Books; Add book; Categories; Most Popular; Recently Added; Z-Library Project ; Top Z-Librarians; Blog; Part of Z-Library project. The world's ...

Liaw: free download. Ebooks library. On-line books store ...

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CiteSeerX — Mutiscale Plastic Deformation near a Fatigue ...

BibTeX @MISC{Sun_mutiscaleplastic, author = {Yinan Sun and Rozaliya Barabash and Hahn Choo and Peter K. Liaw and Yulin Lu and Donald W. Brown and Gene E. Ice}, title = {Mutiscale Plastic Deformation near a Fatigue Crack from Diffraction}, year = {}}

Bulk Metallic Glasses: An Overview: Miller, Michael K ...

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Raouf A. Ibrahim Handbook of Structural Life Assessment


This important, self-contained reference deals with structural life assessment (SLA) and structural health monitoring (SHM) in a combined form. SLA periodically evaluates the state and condition of a structural system and provides recommendations for possible maintenance actions or the end of structural service life. It is a diversified field and relies on the theories of fracture mechanics, fatigue damage process, and reliability theory. For common structures, their life assessment is not only governed by the theory of fracture mechanics and fatigue damage process, but by other factors such as corrosion, grounding, and sudden collision. On the other hand, SHM deals with the detection, prediction, and location of crack development online. Both SLA and SHM are combined in a unified and coherent treatment.

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Christian Lalanne Mechanical Vibration and Shock Analysis, Fatigue Damage


Fatigue damage in a system with one degree of freedom is one of the two criteria applied when comparing the severity of vibratory environments. The same criterion is also used for a specification representing the effects produced by the set of vibrations imposed in a real environment. In this volume, which is devoted to the calculation of fatigue damage, Christian Lalanne explores the hypotheses adopted to describe the behavior of material affected by fatigue and the laws of fatigue accumulation. The author also considers the methods for counting response peaks, which are used to establish the histogram when it is not possible to use the probability density of the peaks obtained with a Gaussian signal. The expressions for mean damage and its standard deviation are established and other hypotheses are tested.

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Tom Lassen Fatigue Life Analyses of Welded Structures


Avoiding or controlling fatigue damage is a major issue in the design and inspection of welded structures subjected to dynamic loading. Life predictions are usually used for safe life analysis, i.e. for verifying that it is very unlikely that fatigue damage will occur during the target service life of a structure. Damage tolerance analysis is used for predicting the behavior of a fatigue crack and for planning of in-service scheduled inspections. It should be a high probability that any cracks appearing are detected and repaired before they become critical. In both safe life analysis and the damage tolerance analysis there may be large uncertainties involved that have to be treated in a logical and consistent manner by stochastic modeling. This book focuses on fatigue life predictions and damage tolerance analysis of welded joints and is divided into three parts. The first part outlines the common practice used for safe life and damage tolerance analysis with reference to rules and regulations. The second part emphasises stochastic modeling and decision-making under uncertainty, while the final part is devoted to recent advances within fatigue research on welded joints. Industrial examples that are included are mainly dealing with offshore steel structures. Spreadsheets which accompany the book give the reader the possibility for hands-on experience of fatigue life predictions, crack growth analysis and inspection planning. As such, these different areas will be of use to engineers and researchers.

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Moussa Nait-Abdelaziz Particle and Continuum Aspects of Mesomechanics


This title brings together a variety of papers presented at the 9th annual Meso meeting in 2007. The topics selected for Meso 2007 are designed to illustrate the relation of thresholds to multiscaling: Flow through capillary tubes in contrast to pipes Laminar and turbulent flow transition Heat convection of thin wires in contrast to cylinders Electrical conductance of macro- and nano-circuits Rubbery and glassy polymers Single- and poly-crystal behavior Strength of wires and round cylindrical bars Uni-axial and multi-axial material: linear and non-linear response Thin and thick plate behavior Brittle and ductile fracture Small and large crack growth behavior Low and high temperature effects Local and global material property characteristics Small and large bodies: size and time effects Specimen and structure

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Arthur J. McEvily Metal Failures


One of the only texts available to cover not only how failure occurs but also examine methods developed to expose the reasons for failure, Metal Failures has long been considered the most definitive and authoritative resources in metallurgical failure analysis. Now in a completely revised edition, this Second Edition features updates of all chapters plus new coverage of elastic behavior and plastic deformation, localized necking, the phenomenological aspects of fatigue, fatigue crack propagation, alloys and coatings, tensors and tensor notations, and much more.

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Freiman Stephen The Fracture of Brittle Materials. Testing and Analysis


Supports the use and development of strong, fracture-resistant, and mechanically reliable ceramic materials The Fracture of Brittle Materials thoroughly sets forth the key scientific and engineering concepts underlying the selection of test procedures for fracture toughness, strength determination, and reliability predictions. With this book as their guide, readers can confidently test and analyze a broad range of brittle materials in order to make the best use of existing materials as well as to support the development of new materials. The authors explain the importance of microstructure in these determinations and describe the use of quantitative fractography in failure analysis. The Fracture of Brittle Materials is relevant to a broad range of ceramic materials (i.e., any inorganic non-metal), including semiconductors, cements and concrete, oxides, carbides, and nitrides. The book covers such topics as: Basic principles of fracture mechanics underlying brittle material tests and analysis procedures Theory and mechanisms of environmentally enhanced crack growth Fracture mechanics tests to determine a material's resistance to fast fracture Test and analysis methods to assess the strength of ceramics Methods to analyze the fracture process based on quantitative measurements of the fracture surface Effect of a material's microstructure Methods for predicting the lifetime of brittle components under stress Throughout the book, figures and illustrations help readers understand key concepts and methods. Replete with real-world examples, this text enables engineers and materials and ceramics scientists to select and implement the optimal testing methods for their particular research needs and then accurately analyze the results.

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M. Matthewson John Mechanical Properties of Ceramics


A Comprehensive and Self-Contained Treatment of the Theory and Practical Applications of Ceramic Materials When failure occurs in ceramic materials, it is often catastrophic, instantaneous, and total. Now in its Second Edition, this important book arms readers with a thorough and accurate understanding of the causes of these failures and how to design ceramics for failure avoidance. It systematically covers: Stress and strain Types of mechanical behavior Strength of defect-free solids Linear elastic fracture mechanics Measurements of elasticity, strength, and fracture toughness Subcritical crack propagation Toughening mechanisms in ceramics Effects of microstructure on toughness and strength Cyclic fatigue of ceramics Thermal stress and thermal shock in ceramics Fractography Dislocation and plastic deformation in ceramics Creep and superplasticity of ceramics Creep rupture at high temperatures and safe life design Hardness and wear And more While maintaining the first edition's reputation for being an indispensable professional resource, this new edition has been updated with sketches, explanations, figures, tables, summaries, and problem sets to make it more student-friendly as a textbook in undergraduate and graduate courses on the mechanical properties of ceramics.

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ECCS – European Convention for Constructional Steelwork Fatigue Design of Steel and Composite Structures. Eurocode 3: Design of Steel Structures, Part 1 – 9 Fatigue; Eurocode 4: Design of Composite Steel and Concrete Structures


This volume addresses the specific subject of fatigue, a subject not familiar to many engineers, but still relevant for proper and good design of numerous steel structures. It explains all issues related to the subject: Basis of fatigue design, reliability and various verification formats, determination of stresses and stress ranges, fatigue strength, application range and limitations. It contains detailed examples of applications of the concepts, computation methods and verifications.

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