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橡胶工程专业英语:英文电子书

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作       者:杜爱华 主编

出  版  社:化学工业出版社

出版时间:2018-03-01

字       数:29.1万

所属分类: 科技 > 工业技术 > 重工业

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本书为橡胶工程专业英语教材,全书共分四部分,分别对聚合物的合成和结构;橡胶原材料配合体系如生胶、硫化体系、补强填充体系、防护体系等及配合原理;橡胶加工工艺,包括塑炼、混炼、压延、压出和硫化;橡胶循环利用等行了系统的介绍。同时每章后面还附有相关词汇、短语的注释。本书可作为高等院校具有橡胶工程特色的高分子材料与工程专业的专业英语教材,也可作为研究生的选修课教材,同时也可作为从事橡胶行业的工程技术人员的学习参考书。<br/>【推荐语】<br/>本教材分为四部分(PART),共13章内容。一部分为聚合物简介,包括聚合物的合成和结构;第二部分为橡胶原材料及科学,包括橡胶原材料配合体系如生胶、硫化体系、补强填充体系、防护体系等及配合原理;第三部分为橡胶加工工艺,包括塑炼、混炼、压延、压出和硫化;第四部分为橡胶循环利用。<br/>
目录展开

Part Ⅰ Introduction to Polymers

Chapter 1 Introduction

1.1 Introduction

1.2 Definition-Ⅰ

1.2.1 Monomers

1.2.2 Dimers, Trimers, and Oligomers

1.2.3 Polymers

1.2.4 Linear Polymers

1.2.5 Branched Polymers

1.2.6 Crosslinked Polymers

1.3 Definition-II

1.3.1 Copolymers

1.3.2 Terpolymers

1.3.3 Graft Copolymers

1.3.4 Thermoplastics

1.3.5 Elastomers

1.3.6 Thermosetting Resin

1.3.7 Polymer Blends

Chapter 2 Polymer Chemistry

2.1 Rubber Polymerization

2.1.1 Solution Polymerization

2.1.2 Emulsion Polymerization

2.1.3 Cation Polymerization

2.1.4 Anionic Polymerization

2.1.5 Coordination Polymers

2.2 Polymer Characterization

2.2.1 Qualitative Analysis of Polymer

2.2.2 Quantitative Analysis of Polymer

2.2.3 Thermal Analysis

Chapter 3 Polymer Physics

3.1 Configurational States

3.2 Molecular Architecture

3.3 Chain Structure

3.4 Primary,Secondary,and Tertiary Structure

3.5 Representative States of Rubber Aggregation

3.5.1 The Glassy Amorphous State

3.5.2 The Rubber Elastic State

3.6 Polymer Structure-Property Relationships

Part Ⅱ Rubber Materials and Science

Chapter 4 Raw Rubber

4.1 Introduction

4.1.1 Definition of Rubber

4.1.2 Testing of Rubber

4.1.3 Classification of Rubber

4.2 Natural Rubber(NR)

4.2.1 Manufacture of NR

4.2.2 Grading of NR

4.2.3 Constitution of NR

4.2.4 Structure of NR

4.2.5 Properties of NR

4.2.6 Application of NR

4.2.7 Substituent of NR

4.3 Styrene-Butadiene Rubber(SBR)

4.3.1 Classification of SBR

4.3.2 Structure of SBR

4.3.3 Properties of SBR

4.4 Polybutadiene Rubber(BR)

4.4.1 Manufacture and Grading of BR

4.4.2 Structure of BR

4.4.3 Properties of BR

4.4.4 Application of BR

4.5 Nitrile Rubber(NBR)

4.5.1 Grading of NBR

4.5.2 Structure and Properties of NBR

4.5.3 Compounding of NBR

4.5.4 Application and Development of NBR

4.6 Chloroprene Rubber(CR)

4.6.1 Manufacture and Grading of CR

4.6.2 Chemical Structure of CR

4.6.3 Properties of CR

4.6.4 Compounding and Application of CR

4.7 Ethylene-Propylene Rubber(EPR)

4.7.1 Grading of EPR

4.7.2 Structure and Properties of EPR

4.7.3 Compounding of EPR

4.8 Butyl Rubber(IIR)

4.8.1 Grading of IIR

4.8.2 Properties and Application of IIR

4.9 Special-Purpose Elastomers

4.9.1 Fluroprene Rubber(FPM)

4.9.2 Silicone Rubber(Q)

4.9.3 Polyurethanes(PU)

4.9.4 Epichlorohydrin(CO)

4.10 Thermoplastic Elastomers(TPE)

Chapter 5 Curing System

5.1 Introduction

5.2 Characterization of The Vulcanization Process

5.2.1 Moving-Die Rheometer

5.2.2 Curing Process(Curing Curve)

5.2.3 Effects of Vulcanization on The Properties of Vulcanizate

5.3 Sulfur Curing System

5.3.1 Constitution of Sulfur Curing System

5.3.2 Sulfur Curing Mechanism

5.3.3 Different Sulfur Curing System

5.4 Non-Sulfur Curing System

5.4.1 Vulcanization by the Action of Organic Peroxides

5.4.2 Metallic Oxide Curing System

5.4.3 Resin Curing System

5.4.4 Reversible Crosslinking Technique

Chapter 6 Reinforcing and Filling System

6.1 Introduction

6.2 Carbon Black

6.2.1 Manufacture of Carbon Black

6.2.2 Classification of Carbon Black

6.2.3 Properties of Carbon Black

6.2.4 Mechanical Properties of Filled Rubbers

6.3 Silica

6.3.1 Classification of Silica

6.3.2 Nature of Silica Surface

6.3.3 Chemistry of Silane Coupling Agents

6.4 Other Fillers

6.4.1 China Clays

6.4.2 Calcium Carbonate

6.4.3 Barium Sulfate

6.5 New Type of Fillers

Chapter 7 Stabilizer Systems

7.1 Introduction

7.2 Oxidation of Rubber

7.2.1 Mechanism of Oxidation

7.2.2 Influencing Factors

7.3 Ozone Attack

7.4 Antidegradant

7.4.1 Antidegradant Types

7.4.2 Selection Criteria of Antidegradant

Chapter 8 Plasticizers and Other Processing Aids

8.1 Introduction

8.2 Mechanism of Plastification

8.2.1 Lubricity Theory

8.2.2 Gel Theory

8.2.3 Free-Volume Theory

8.3 Types of Plasticizers

8.3.1 Petroleum-Based Plasticizer

8.3.2 Pine Tar and Pine Products

8.3.3 Synthetic Resins

8.3.4 Esters

8.4 Other Processing Aids

8.4.1 Natural Fats and Salts

8.4.2 Peptizers

8.4.3 Coupling Agents

Part Ⅲ Rubber Processing and Engineering

Chapter 9 Mastication and Mixing

9.1 Introduction

9.2 Machinery

9.2.1 Open-Mills

9.2.2 Internal Mixers

9.3 Mastication

9.3.1 Mechanical Force

9.3.2 Operating Temperature

9.3.3 Oxygen

9.4 Mixing

9.4.1 Mill Mixing

9.4.2 Internal Mixing

9.5 Quality Control of Rubber Compounds

Chapter 10 Calendering

10.1 Calendering Machinery

10.2 Calendering Technology

10.2.1 Unsupported Sheeting

10.2.2 Coating of Fabric and Steel

Chapter 11 Extruding

11.1 Extruder

11.2 Extruding Technology

11.3 Recent Extruder Design

Chapter 12 Curing Process

12.1 Curing Medium

12.2 Curing Method

12.2.1 Compressing Molding

12.2.2 Transfer Molding

12.2.3 Injection Molding

12.2.4 Open Curing

Part Ⅳ Rubber Recycling

Chapter 13 Rubber Recycling

13.1 Introduction

13.2 Retreading of Tire

13.2.1 Pre Cure

13.2.2 Mold Cure

13.3 Ground Tire Rubber

13.3.1 The Specifications of GTR

13.3.2 Producing Process for GTR

13.4 Reclaimed Rubber

13.4.1 Reclaiming Technology

13.4.2 Common Processes Used for Reclaiming

13.5 Pyrolysis

13.5.1 Introduction

13.5.2 Typical Pyrolysis Process——Vacuum Pyrolysis Process

13.5.3 Pyrolysis Yields

13.5.4 Properties of Pyrolysis Products

13.5.5 Pyrolytic Products Applications

13.6 Incineration of Rubber(Tire-Derived Fuel)

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