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关节软骨摩擦学

关节软骨摩擦学

作者:李锋著
出版社:中国海洋大学出版社出版时间:2020-11-01
开本: 24cm 页数: 166页
本类榜单:医学销量榜
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关节软骨摩擦学 版权信息

  • ISBN:9787567026384
  • 条形码:9787567026384 ; 978-7-5670-2638-4
  • 装帧:一般胶版纸
  • 册数:暂无
  • 重量:暂无
  • 所属分类:>>

关节软骨摩擦学 本书特色

本书以对海洋工程的学科发展与海洋土力学基础知识为分析背景,以解决海洋能源开发过程中结构物地基土体稳定性为目标,较为全面地阐述了海洋结构物地基稳定性分析的原理和计算方法。本书共十一章,内容包括:海洋环境荷载计算,海洋土工程特性,土体力学性质,土体塑性极限平衡问题,极限平衡问题变分解法,海洋结构基础型式及其稳定性,复合加载下基础破坏包络面,海床液化与冲刷,流固土耦合数值仿真,模型试验分析等。本书可作为水利工程类专业本科生、研究生的教科书,也可供水利、土木工程领域科研、设计和施工人员参考。

关节软骨摩擦学 内容简介

在人和动物关节中,关节软骨是是滑膜关节的重要组成部分,在关节运动中起到缓冲承载、润滑和抗关节磨损的作用。本书中对关节软骨与人工关节软骨的摩擦磨损问题进行研究和探讨。内容包括组成结构、表面性能、力学性能、摩擦学性能等多方面,并包含多种实验和测试方式,探讨了摩擦磨损性能的变化规律及其磨损机理,为人工关节材料的仿生设计和性能改善提供依据。

关节软骨摩擦学 目录

Chapter 1 Articular Cartilage and Biotribology
1.1 Biomaterials and Biotribology
1.2 Biotribology of Organism Biomaterials
1.2.1 Biotribology in Vitro
1.2.2 Biotribology in Vivo
1.3 Biotribology of the Human Body
1.4 Articular Cartilage System
1.5 Surface and Contact Observation of Articular Cartilage
1.6 Biomechanical Properties of Articular Cartilage
1.7 Lubrication Performance of Joints
1.8 Repair of Articular Cartilage
1.8.1 Tissue Engineering Cartilage
1.8.2 Artificial Joint Material
1.9 Friction in Joint Replacement
1.9.1 Artificial Hip Joint
1.9.2 Artificial Knee Replacement
Chapter 2 Composition and Structure of Articular Cartilage and Preparation and Observation of Samples
2.1 Introduction
2.2 Preparation of Natural Cartilage Samples
2.3 Preparation of Artificial Cartilage Samples
2.3.1 Common Methods for Preparing PVA Hydrogel
2.3.2 Preparation of PVA Hydrogel
2.4 Structural Observation of Natural Cartilage and Artificial Cartilage
2.4 .I Test Method
2.4.2 Observation of Human Cartilage
2.4.3 Observation of Bovine Cartilage
2.4.4 Observation of PVA Hydrogel Artificial Cartilage
2.4 Analysis of Natural Cartilage Elements
2.4.1 Analysis of Human Cartilage Surface
2.4.2 Analysis of Bovine Cartilage Surface
2.4.3 Sectional Analysis of Cartilage
2.5 Summary
Chapter 3 Articular Cartilage Surface
3.1 Introduction
3.2 Measurement of Surface Roughness of Articular Cartilage
3.3 AFM-Based Cartilage Surface Study
3.3.1 Test Method
3.3.2 AFM Observation of Human Articular Cartilage
3.3.3 AFM Observation of Bovine Articular Cartilage
3.3.4 AFM Observation of PVA Hydrogel Artificial Cartilage
3.4 Effect of the Amorphous Layer on Surface Properties
3.4.1 Surface Observation and Elemental Analysis After Removal of Cartilage Amorphous Layer
3.4.2 AFM Observation of Human Articular Cartilage After Removal of the Amorphous Layer
3.5 Infiltration Performance of Articular Cartilage Surface
3.5.1 Principle of Contact Angle
3.5.2 Measurement Method of Contact Angle
3.5.3 Factors Affecting Contact Angle Measurement
3.5.4 Test Method
3.5.5 Contact Angles of Different Materials
3.5.6 Surface Tension and Adhesion Work
3.6 Analysis of the Influence of Surface Properties of the Articular Cartilage on Friction Performance
3.6.1 Effect of the Surface Amorphous Layer on Friction Properties
3.6.2 Effect of Wetting Properties on Friction Properties
3.7 Summary
Chapter 4 Mechanical Properties of the Articular Cartilage Surface and Exposure Studies
4.1 Introduction
4.2 Mechanical Properties Test of Articular Cartilage
4.2.1 Test Method
4.2.2 Stress-Strain Relationship of Cartilage
4.2.3 Compression Modulus of Cartilage
4.2.4 Cartilage Creep
4.2.5 Stress Relaxation of Cartilage
4.3 Analysis of the Effect of Mechanical Properties of the Articular Cartilage on Friction Performance
4.4 Contact Surface of Articular Cartilage
4.4.1 Laser Scanning Confocal Microscope
4.4.2 Fluorescent Materials and Fluorescence Analysis
4.4.3 Test Method
4.4.4 Test Results
4.5 Analysis of the Influence of Articular Cartilage Surface Contact on Friction Performance
4.6 Summary
Chapter 5 Friction Behavior of Natural and Artificial Cartilage
5.1 Introduction
5.2 Development of Dual-Purpose Friction Testing Machine
5.2.1 Common Reciprocating Friction Testing Machine
5.2.2 Test Requirements
5.3 Reciprocating Linear Motion Friction Test
5.3.1 Test Method
5.3.2 Friction Properties of Carilage and Stainless Steel
5.3.3 Wear Observation of Cartilage and Stainless Steel
5.3.4 Cartilage and PVA Hydrogel Friction Properties
5.3.5 Observation of Cartilage and PVA Hydrogel Wear
5.4 Analysis
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