壓力容器自增強技術及其應用 (英文版) 9787030781260 Ruilin ZHU Guolin ZHU Zhao

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書名:壓力容器自增強技術及其應用 (英文版)
ISBN:9787030781260
出版社:科學
著編譯者:Ruilin ZHU Guolin ZHU Zhaoyang
頁數:350
所在地:中國大陸 *此為代購商品
書號:1647604
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【台灣高等教育出版社簡體書】 壓力容器自增強技術及其應用 (英文版) 787030781260 Ruilin ZHU Guolin ZHU Zhaoyang

內容簡介

壓力容器是許多工業領域的關鍵設備,自增強技術是提高壓力容器安全性和承載能力的有效措施。本書從本質和機理出發,對壓力容器的自增強技術進行了全面、系統的研究,重點介紹了自增強壓力容器的結構原理、力學性能和設計方法;發現了許多有學術意義和實用價值的現象和相關規律,建立了自增強技術的新理論,並提出了新的自增強技術;研究了以熱應力作為預應力的自增強技術。書中給出了大量的公式、圖表和應用實例,以方便對自增強理論和技術的理解和應用;同時提出了許多能夠充分保證壓力容器的安全性、極大提高其承載能力的方法與措施。

目錄

Foreword
CHAPTER 1 Study on Elastic-Plastic Mechanical Stresses in Cylindrical Pressure Vessels
1 1 Introduction
1 2 Studies of Elastic Stresses
1 3 Analysis of Elastic-Plastic Stresses
1 4 Chapter Summary
References
CHAPTER 2 Mechanical Autofrettage Technology Based on Tresca Yield Criterion
2 1 General Study on Mechanical Autofrettage Technology
2 1 1 In General Forms
2 1 2 The Critical Radius Ratio
2 1 3 The Optimum Plastic Depth k?*(k? is Written as kg*)
2 1 4 The Results When kj= kj
2 2 Mechanical Autofrettage Technology Under Entire Yield State
2 3 Mechanical Autofrettage Technology with Radius of Elastic-Plastic Juncture Being Arithmetic Mean Value of Inside Radius and Outside Radius
2 4 Mechanical Autofrettage Technology with Radius of Elastic-Plastic Juncture Being Geometrical Mean Value of Inside Radius and Outside Radius
2 5 Mechanical Autofrettage Technology with Minimum Equivalent Total Stress on Elastic-Plastic Juncture
2 6 Comparison Between Three Cases
2 7 Chapter Summary
References
CHAPTER 3 Mechanical Autofrettage Technology Based on Mises Yield Criterion
3 1 General Study on Mechanical Autofrettage Technology 83
3 1 1 In General Forms
3 1 2 The Critical Radius Ratio
3 1 3 The Optimum Plastic Depth kj*(kg is Written as kj*)
3 1 4 The Results When k?= k?·or k2lnk2-k2-k2+2=0
3 2 Mechanical Autofrettage Technology Under Entire Yield State
3 2 1 The Residual Stresses
3 2 2 The Total Stresses
3 3 Mechanical Autofrettage Technology with Radius of Elastic-Plastic Juncture Being Arithmetic Mean Value of Inside Radius and Outside Radius
3 4 The Solutions with Radius of Elastic-Plastic Juncture Being Geometrical Mean Value of Inside Radius and Outside Radius
3 5 The Solutions with Minimum Equivalent Total Stress on Elastic-Plastic Juncture
3 6 Comparison Between the Three Cases
3 6 1 k=2 5> kc
3 6 2 k=2 3 7 Chapter Summary
References
CHAPTER 4 Mechanical Autofrettage Technology by Limiting Circumferential Residual Stress Based on Mises Yield Criterion
4 1 The Optimum Plastic Depth When Circumferential Residual Stress on the Inside Surface Controlled
4 2 The Distribution of Residual Stresses When Circumferential Residual Stress on the Inside Surface Controlled
4 2 1 General Discussion
4 2 2 The Residual Stresses for Entire Yield
4 2 3 The Residual Stresses with Radius of Elastic-Plastic Juncture Being Arithmetic Mean Value of Inside Radius and Outside Radius
4 2 4 The Residual Stresses with Radius of Elastic-Plastic Juncture Being Geometrical Mean Value of Inside Radius and Outside Radius
4 2 5 The Residual Stresses When Equivalent Total Stress on Elastic-Plastic Juncture is the Minimum
4 3 The Total Stresses and the Load-Bearing Capacity When Circumferential Residual Stress on the Inside Surface Controlled
4 4 Control Circumferential Total Stress Directly
4 5 Chapter Summary
References
CHAPTER 5 Mechanical Autofrettage Technology Under Low Load
5 1 Introduction
5 2 The Optimum Plastic Depth
5 3 Analysis of Residual Stresses Under the Optimum Plastic Depth
5 4 Analysis of the Stresses Caused by Internal Pressure and Total Stresses
5 5 Analysis of the Effect of Load Ratio(λ)and Plastic Depth(kju)
5 6 Analysis of Load-Bearing Capacity
5 6 1 Based on Tresca Yield Criterion
5 6 2 Based on Mises Yield Criterion
5 7 Chapter Summary
References
CHAPTER 6 Summary of Implement Methods and Their Characteristics of Mechanical and Thermal Autofrettage Technology
6 1 Implement Methods and Characteristics of Mechanical Autofrettage Technology
6 2 Implement Methods and Characteristics of Thermal Autofrettage Technology
References
CHAPTER 7 Thermal Autofrettage Technology Based on Tresca Yield Criterion
7 1 Introduction
7 2 Derivation of Thermal Stre
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