Computational Tapered and Cylinder Roller Bearings

Hung Nguyen-Schäfer

Informasi Dasar

21.21.741
621
Buku - Elektronik (E-Book)
12a

This monograph presents computational models that describe electro-mechanical characteristics of tapered and cylinder roller bearings in various industrial applications. Applying the Levenberg-Marquardt’s algorithm to solving strongly nonlinear coupled equation systems, the computational models consisting of many circular slices per rolling element enable computations of the local Hertzian pressures at the elastohydrodynamic (EHD) contact area, the relating oil-film thickness in elastohydrodynamic lubrication (EHL), the limiting voltage of electro-pitting, bearing frictions, and fatigue lifetimes of the bearings for various load spectra. Using the best-known machine-learning method for clustering, the load spectrum is clustered in k cluster means based on the invariant damage number to accelerate the load spectrum. Furthermore, the accelerated load spectrum is used for the testing procedure of the bearings to reduce the testing time and costs as well.

The target audience of this book primarily comprises graduate students in mechanical engineering and practicing engineers of electro-machines and transmission systems who want to computationally design tapered and cylinder roller bearings for the automotive industry and other industries, and to deeply dive into these relating working fields.

Subjek

ENGINEERING AND TECHNOLOGICAL SCIENCES
 

Katalog

Computational Tapered and Cylinder Roller Bearings
978-3-030-05444-1
114p.: pdf file.; 4 MB
Inggris

Sirkulasi

Rp. 0
Rp. 0
Tidak

Pengarang

Hung Nguyen-Schäfer
Perorangan
 
 

Penerbit

Springer International Publishing
Cham
2019

Koleksi

Kompetensi

  • TUI1A1 - PRAKTIKUM FISIKA 1
  • TUI1A3 - FISIKA 1
  • TFI3L1 - PRAKTIKUM TEKNIK FISIKA 4
  • TUI1F3 - FISIKA 2
  • TUI1A1 - PRAKTIKUM FISIKA 1
  • TUI1F1 - PRAKTIKUM FISIKA 2
  • TFI2K1 - PRAKTIKUM TEKNIK FISIKA 1
  • TFI2L1 - PRAKTIKUM TEKNIK FISIKA 2
  • TFI3F1 - PRAKTIKUM TEKNIK FISIKA 3
  • TUI1A1 - PRAKTIKUM FISIKA 1
  • TUI1A3 - FISIKA 1
  • TUI1F3 - FISIKA 2
  • TUI1A1 - PRAKTIKUM FISIKA 1
  • TUI1F1 - PRAKTIKUM FISIKA 2

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