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出版时间:2014-04

出版社:哈尔滨工业大学出版社

以下为《材料手册8 气体 液体》的配套数字资源,这些资源在您购买图书后将免费附送给您:
  • 哈尔滨工业大学出版社
  • 9787560344546
  • 112918
  • 2014-04
  • TB3-62
内容简介

  卡达雷利主编的《材料手册》第二版提供所有类别的材料的物理和化学性质,是一本简洁的手边工具书。第二版与第一版的差别是扩大新的家庭用的材料,但重点是每一类常见的工业材料的性能。《材料手册(8气体液体)》一书内容为原手册第19、20章气体和液体的介绍。

目录
Introduction
19 Gases
 19.1 Properties of Gases
  19.1.1 Pressure
  19.1.2 The Boyle-Mariotte Law
  19.1.3 Charles and Gay-Lussac's Law
  19.1.4 The Avogadro-Ampere Law
  19.1.5 Normal and Standard Conditions
  19.1.6 Equation of State of Ideal Gases
  19.1.7 Dalton's Law of Partial Pressure
  19.1.8 Equations of State of Real Gases
   19.1.8.1 Van der Waals Equation of State
   19.1.8.2 Virial Equation of State
  19.1.9 Density and Specific Gravity of Gases
  19.1.10 Barometric Equation
  19.1.11 Isobaric Coefficient of Cubic Expansion
  19.1.12 Compressibility Factor
  19.1.13 Isotherms of Real Gases and Critical Constants
  19.1.14 Critical Parameters
  19.1.15 The Principle of Corresponding States
  19.1.16 Microscopic Properties of Gas Molecules
  19.1.17 Molar and Specific Heat Capacities
  19.1.18 Dynamic and Kinematic Viscosities
  19.1.19 Solubility of Gases in Liquids
  19.1.20 Gas Permeability of Polymers
  19.1.21 Dielectric Properties of Gases, Permittivity and Breakdown Voltage
  19.1.22 Psychrometry and Hygrometry
  19.1.23 Vapor Pressure
   19.1.23.1 Absolute Humidity or Humidity Ratio
   19.1.23.2 Mass Fraction of Water Vapor or Specific Humidity
   19.1.23.3 Relative Humidity
   19.1.23.4 Humid Heat
   19.1.23.5 Humid or Specific Volume
   19.1.23.6 Dry-Bulb Temperature
   19.1.23.7 Wet-Bulb Temperature
   19.1.23.8 Wet-Bulb Depression
   19.1.23.9 Dew Point Temperature
   19.1.23.10 Specific Enthalpy
   19.1.23.11 Latent Heat of Fusion
   19.1.23.12 Latent Heat of Vaporization
   19.1.23.13 Refractivity of Moist Air
   19.1.23.14 Psychrometric Charts
   19.1.23.15 Psychrometric Equations
  19.1.24 Flammability of Gases and Vapors
   19.1.24.1 Flammability Limits
   19.1.24.2 Explosive Limits
   19.1.24.3 Autoignition Temperature
   19.1.24.4 Ignition Energy
   19.1.24.5 Maximum Explosion Pressure
   19.1.24.6 Maximum Rate of Pressure Rise
   19.1.24.7 High and Low Heating Values
  19.1.25 Toxicity of Gases and Threshold Limit Averages
 19.2 Physico-Chemical Properties of Major Gases
 19.3 Monographxes on Major Industrxal Gases
  19.3.1 Air
  19.3.2 Nitrogen
  19.3.3 Oxygen
  19.3.4 Hydrogen
  19.3.5 Methane
  19.3.6 Carbon Monoxide
  19.3.7 Carbon Dioxide
  19.3.8 Helium and Noble Gases
   19.3.8.1 Neon
   19.3.8.2 Argon
   19.3.8.3 Krypton
   19.3.8.4 Xenon
   19.3.8.5 Radon
 19.4 Halocarbons
 19.5 Hydrates of Gases and Clathrates
 19.6 Materials for Drying and Purifying Gases
  19.6.1 Drying Agents and Dessicants
  19.6.2 Molecular Sieves
  19.6.3 Getters and Scavengers
 19.7 Producers and Manufacturers of Major Industrial Gases
 19.8 Further Reading
20 Liquids
 20.1 Properties of Liquids
  20.1.1 Density and Specific Gravity
  20.1.2 Hydrometer Scales
  20.1.3 Dynamic and Kinematic Viscosities
   20.1.3.1 Shear Stress
   20.1.3.2 Shear Rate
   20.1.3.3 Absolute or Dynamic Viscosity
   20.1.3.4 Kinematic Viscosity
   20.1.3.5 Temperature Dependence of the Dynamic Viscosity
  20.1.4 Classification of Fluids
  20.1.5 The Hagen-Poiseuille Equation and Pressure Losses
   20.1.5.1 Pressure Drop
   20.1.5.2 Friction Losses
  20.1.6 Sedimentation and Free settling
  20.1.7 Vapor Pressure
  20.1.8 Surface Tension, Wetting and Capillarity
   20.1.8.1 Surface Tension
   20.1.8.2 Temperature Dependence and Order of Magnitude of Surface Tension
   20.1.8.3 Parachor and Walden's Rule
   20.1.8.4 Wetting
   20.1.8.5 Contact Angle
   20.1.8.6 Young's Equation
   20.1.8.7 Work of Cohesion, Work of Adhesion and Spreading Coefficient
   20.1.8.8 Two Liquids and a Solid
   20.1.8.9 Antonoffs Rule