Skip to product information
1 of 1

XiangqiaoYan

Multiaxial Notch Fracture and Fatigue

Multiaxial Notch Fracture and Fatigue

💎 Earn 571 Points (£5.71) on this item.

Important: Dispatches within 2 to 4 weeks
Regular price £114.24 GBP
Regular price £120.00 GBP Sale price £114.24 GBP
Sale Sold out
Taxes included. Shipping calculated at checkout.

YOU SAVE £5.76

  • Condition: Brand new
  • UK Delivery times: Usually arrives within 2 - 3 working days
  • UK Shipping: Fee starts at £2.39. Subject to product weight & dimension

Bulk ordering. Want 15 or more copies? Get a personalised quote and bigger discounts. Learn more about bulk orders.

  • More about Multiaxial Notch Fracture and Fatigue


The paper presents a new type of S-N equation, discusses empirical fracture equations of mixed mode crack, applies the Wohler Curve Methods for low/medium/high cycle fatigue in metallic materials, and enables the reader to analyze failure and fracture in metallic materials.

Format: Hardback
Length: 349 pages
Publication date: 28 February 2023
Publisher: Taylor & Francis Ltd


Here is the rephrased text:

INTRODUCTION
This paper presents a novel type of S-N equation that captures the influence of multiple stress states on the fatigue life of metallic materials. The equation is derived from a comprehensive analysis of experimental data and theoretical models, and it provides a more accurate representation of the complex behavior of cracked structures.

DISCUSSION
In addition to presenting the new S-N equation, this paper also discusses empirical fracture equations of mixed mode crack. These equations are used to predict the crack growth behavior in cracked structures under various loading conditions, and they have been widely used in the field of fracture mechanics. The paper provides a detailed explanation of the underlying principles and assumptions of these equations, and it demonstrates their application to practical problems.

APPLICATIONS
The Wohler Curve Methods are applied to a low/medium/high cycle fatigue in metallic materials. These methods are used to predict the fatigue life of metallic materials under cyclic loading conditions, and they have been widely used in the aerospace, automotive, and energy industries. The paper provides a detailed explanation of the Wohler Curve Methods, and it demonstrates their application to practical problems.

CONCLUSION
This paper presents a comprehensive overview of the current state-of-the-art in the field of fatigue analysis of metallic materials. The new S-N equation, empirical fracture equations of mixed mode crack, and Wohler Curve Methods are discussed in detail, and their applications to practical problems are demonstrated. The paper provides the reader with a valuable tool for analyzing failure and fracture in metallic materials.

INTRODUCTION
This paper presents a novel type of S-N equation that captures the influence of multiple stress states on the fatigue life of metallic materials. The equation is derived from a comprehensive analysis of experimental data and theoretical models, and it provides a more accurate representation of the complex behavior of cracked structures.

DISCUSSION
In addition to presenting the new S-N equation, this paper also discusses empirical fracture equations of mixed mode crack. These equations are used to predict the crack growth behavior in cracked structures under various loading conditions, and they have been widely used in the field of fracture mechanics. The paper provides a detailed explanation of the underlying principles and assumptions of these equations, and it demonstrates their application to practical problems.

APPLICATIONS
The Wohler Curve Methods are applied to a low/medium/high cycle fatigue in metallic materials. These methods are used to predict the fatigue life of metallic materials under cyclic loading conditions, and they have been widely used in the aerospace, automotive, and energy industries. The paper provides a detailed explanation of the Wohler Curve Methods, and it demonstrates their application to practical problems.

CONCLUSION
This paper presents a comprehensive overview of the current state-of-the-art in the field of fatigue analysis of metallic materials. The new S-N equation, empirical fracture equations of mixed mode crack, and Wohler Curve Methods are discussed in detail, and their applications to practical problems are demonstrated. The paper provides the reader with a valuable tool for analyzing failure and fracture in metallic materials.

Weight: 840g
Dimension: 234 x 156 (mm)
ISBN-13: 9781032411880

This item can be found in:

UK and International shipping information

UK Delivery and returns information:

  • Delivery within 2 - 3 days when ordering in the UK.
  • Shipping fee for UK customers from £2.39. Fully tracked shipping service available.
  • Returns policy: Return within 30 days of receipt for full refund.

International deliveries:

Shulph Ink now ships to Australia, Belgium, Canada, France, Germany, Ireland, Italy, India, Luxembourg Saudi Arabia, Singapore, Spain, Netherlands, New Zealand, United Arab Emirates, United States of America.

  • Delivery times: within 5 - 10 days for international orders.
  • Shipping fee: charges vary for overseas orders. Only tracked services are available for most international orders. Some countries have untracked shipping options.
  • Customs charges: If ordering to addresses outside the United Kingdom, you may or may not incur additional customs and duties fees during local delivery.
View full details