Brake pad & disc materials

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Bibliographic Details
Other Authors: Solomon, Darius G.
Format: Book
Language:English
Published: Shah Alam Pusat Penerbitan, Universiti Teknologi MARA 2007
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Table of Contents:
  • Chapter 1 Raw materials Data Base forBrake Pad Production
  • Chapter 2 Bond and bonding strength for brake friction materials
  • Chapter 3 Friction material test procedures
  • Chapter 4 Evaluation of friction material using chase machine and on-road performance test
  • Chapter 5 On-road vehicle braking performance evaluation
  • Chapter 6 Investigation into impact property for new LRT Brake Pad material formulation using izod and charpy test evaluations
  • Chapter 7 Effect of temperature on hardness, impact properties and wear characteristic to light rail transit (LRT) Brake Pad Composite material
  • Chapter 8 A study or hardness of brake pad formulations
  • Chapter 9 Effect of hardness to friction and wear behaviors of friction materials
  • Chapter 10 Physical and mechanical properties of light rail transit brake pit
  • Chapter 11 Selection of formulations based pad material formulations
  • Chapter 12 Thermal analysis of brake pad material formulations
  • Chapter 13 TGA of brake friction materials before and after road performance test
  • Chapter 14 Characterization of brake pad materials by scanning electron microscope
  • Chapter 15. The XRD analysis of brake friction material formulations
  • Chapter 16 The use of pugh method in the selection of the best friction material
  • Chapter 17 Friction material characteristic
  • Chapter 18 Selection of suitable light rail transit (LRT) Brake Pad formulations using quality function deployment (QFD)
  • Chapter 19 Method for Producing Carbon-Cooper Collector Shoe through powder metallurgy route
  • Chapter 20 Process for producing carbon-cooper composites throught warm compaction method
  • Chapter 21 Brake pad temperature during long downhill drive
  • Chapter 22 Detection of asbestos in local made brake shoes
  • Chapter 23 The effects of metallic additions on mechanical and electrical properties of carbon-copper composites for light rail application
  • Chapter 24 Analyzing brake friction using MSC.ADAMS
  • Chapter 25 Predicting wear and squel noise of a disc brake assembly using the finite element method
  • Chapter 26 Some methods for preventing friction generated noise from disc brake
  • Chapter 27 Analysis of out-of-roundness effect on the brake factor of an S-cam drum brake
  • Chapter 28 Work hardening of worn aluminium alloys due to dry sliding
  • Chapter 29 Investigating on tribological properties of strontium modified LM-6 alloy
  • Chapter 30 Characteristics and wear behavior of low temperature nitride stainless steel
  • Chapter 31 Wear behavior of stir cast al-sic composites
  • Chapter 32 Prediction of temperature distributions in a disc assembly using the finite element method.