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轮胎·橡胶制品先进力学:第一届清华轮胎力学国际论坛论文集电子书

本书共分九章,力图汇集轮胎与橡胶制品力学的重要进展。

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33人正在读 | 1人评论 6.2

作       者:危银涛,(德)Michael Kaliske,黄友剑

出  版  社:清华大学出版社

出版时间:2013-11-01

字       数:2035

所属分类: 科技 > 自然科学 > 物理学

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  • 读书简介
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本书共分九章,力图汇集轮胎与橡胶制品力学的重要进展。各章内容由清华大学汽车安全与节能国家重点实验室组织的国际轮胎力学研讨会上的邀请报告扩充而成。这些报告充分反映了国际轮胎力学领域的研究热点。各章的作者也都是国内外有影响的学者,内容涉及轮胎结构动力学、轮胎帘线力学行为、轮胎滚动噪声、轮胎滚动六分力、车/轮/路界面、轮胎模型、轮胎结构优化、轮胎性能对车辆行为的影响、轮胎动态硫化、橡胶元件设计计算及疲劳寿命等方面,基本反映了本领域的热点问题及*研究方向。本书的一个重要特点是从系统的观点研究道路-轮胎-车辆相互作用,从整体的角度分析材料-结构-性能的多尺度关系,这种整体和系统的观点有助于读者把握轮胎力学这一交叉学科的内涵。本书可供从事车辆、轮胎、橡胶制品研究、设计及生产部门的技术人员,以及高等院校与汽车、轮胎和橡胶相关专业师生阅读参考。
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作者名单

FOREWORD

前言

目录

Chapter1 An Introduction to Tire Structural Dynamics

1.2 Tire Stress and Cord Force in Radial Tires

1.3 Tire Vibration-Acoustics

1.4 Tire vibration-Impact Simulation with cleat

1.5 Tire Rolling Kinematic Forces and Moments Prediction Theory

1.6 Summary

References

Chapter2 Vehicle/Tire/Road Interaction-Simulation, Experiment and Sensing

2.1 Introduction

2.3 Traction on wet, ice and snow surface

2.4 Sensing technology of contact area information (intelligent tire)

References

Chapter3 RMOD-K Tyre Model Family

List of symbols

3.1 Introduction

3.2 Structure dynamics

3.3 Tangential Contact

3.4 Model family application examples

References

Chapter4 Simulation Based Optimal Design of Robust Tires

4.1 Introduction

4.2 Optimization Task for Tires

4.3 Tire Analysis

4.4 Uncertainty Description

4.5 Robustness Investigation within the Optimization Task

4.6 Optimization Algorithm

4.7 Results

References

Chapter5 Tire Performance Targets from Vehicle/Tire System Dynamics

5.2 Tire is important for vehicle performance

5.4 Tire and vehicle dynamics

5.5 Tire model used in vehicle dynamics

5.6 Tire as a part of vehicle

5.7 Discussions and conclusions

Chapter6 A Numerical Modeling of Dynamic Curing Process of Tire by Finite Element

6.2 Theoretical Foundation of Tire Curing Modeling

6.3 Finite Element Formulation of a heat transfer problem for axisymmetric Composite Materials Structures

6.4 Numerical Validation

6.5 Results and Discussions

6.6 Concluding Remarks

Chapter7 Gradual innovations in tire structure design and production process

7.2 Main Functions of Tire

7.3 Contradictions between Multiple Objectives Optimization of Tire Function and the Structure

7.4 Strengthen the Nature Functions of Tire and Dissolve Structural Contradiction

7.5 Development Directions of Tire Design and Manufacture

References

Chapter8 Design-calculation Method of Rubber Component and Airspring

8.2 Calculation Method of Rubber Component based on Engineering Application

8.3 Loading theory and basic calculation method of airspring

8.4 Modeling technology of airspring system and its loading performance analysis

Reference

Chapter9 Fatigue Life Prediction for Elastomeric Structures

9.2 Fatigue Failure Processes

9.3 Physics of Fatigue Failure

9.4 Material Behavior

9.5 Multiaxial Loading

9.6 Variable Amplitude Loading

References

Subject Index

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