Hydrodynamic Lubrication 2011 Part 4 ppsx
... [ 24] : r = 1 2µ ∂p ∂r z(z − h) + ρrω 2 µ hz 4 − z 2 2 + z 3 3h − z 4 12h 2 (4. 37) G c = ρrω 2 µ h 3 40 (4. 38) If G c = 0 is assumed in Eq. 4. 34, Reynolds’ equation ignoring the centrifugal force ... µU h 2 h 1 3h m h 2 − 4 h dx (4. 21) = µUB h 2 h 2 h 1 ⎛ ⎜ ⎜ ⎜ ⎜ ⎝ 3 h m h 2 − 4 h ⎞ ⎟ ⎟ ⎟ ⎟ ⎠ d ¯x (4. 22) In the case of an infinitely long plane pad, substituting...
Ngày tải lên: 11/08/2014, 08:21
Hydrodynamic Lubrication 2011 Part 3 pps
... pp. 44 4 - 45 0. 13. J. Mitsui, “Method of Calculation for Bearing Characteristics”, Journal Bearing Data- book (T. Someya, Editor), Springer Verlag, Berlin Heidelberg, 1988, pp. 231 - 240 4 Fundamentals ... Sommerfeld’s condition. From Eq. 3 .42 and Eq. 3 .43 , the bearing load P 1 is obtained as: P 1 = µUL R c 2 6κ {4 2 + π 2 (1 − κ 2 )} 1/2 (2 + κ 2 )(1 − κ 2 ) . (3 .44 ) This can...
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Hydrodynamic Lubrication 2011 Part 5 pptx
... κ 0 2 π 2 − (π 2 − 4) κ 0 2 π 2 − 8 π(2 + κ 0 2 ) (5.39) C xy =+ 4 π 2 − (π 2 − 4) κ 0 2 (5 .40 ) K yx =+ π 1 − κ 0 2 π 2 − (π 2 − 4) κ 0 2 1 κ 0 − 2κ 0 2 + κ 0 2 + κ 0 1 − κ 0 2 (5 .41 ) K yy = ... jour- nal center (x j , y j ) from the equation of motion Eqs. 5 .47 and 5 .48 . Thus, substitution of Eqs. 5 .49 and 5.50 into Eqs. 5 .47 and 5 .48 , respectively, use of the...
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Hydrodynamic Lubrication 2011 Part 7 pptx
... Analysis of Floating Bush Bearing” (in Japanese), Trans. JSME, C, Vol. 65, No. 640 , December 1999, pp. 48 40 - 48 45. 66. Y. Hori, Compilation of Manufacturers’ Data from Various Sorces (2003). 5.10 ... 1982, pp. 389 - 395. 43 . M. Akkok and C.M.M. Ettles, “Journal Bearing Response to Excitation and Behaviour in the Unstable Region”, ASLE Trans., Vol. 27, 19 84, pp. 341 - 351. 44 . H. H...
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Hydrodynamic Lubrication 2011 Part 8 pps
... March 24 - 27, 1975, pp. 121 - 125 #D-5. Bulletin of the JSME 20- 141 (1977-3) pp. 381 - 387. 16. A. Hasuike and Y. Hori, “A Study on Foil Disk” (in Japanese), Trans. JSME, C, Vol. 49 , No. 44 0, April ... Vol. 94, No. 1, January 1972, pp. 93 - 100. 13. M.M. Reddi, “Finite Element Solution of the Incompressible Lubrication Problem”, Trans. ASME. F, Vol. 91, No. 3, July 1969, pp. 5 24 -...
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Hydrodynamic Lubrication 2011 Part 9 pot
... consideration. 7 .4 Sinusoidal Squeeze with a Soft Surface 153 We then solve Eqs. 7 .40 and 7 .44 simultaneously under the boundary condition p N+1 = 0 (7 .46 ) using the Newton–Raphson method. Since Eq. 7 .44 includes ... Basic Equations for Thermohydrodynamic Lubrication Hydrodynamic lubrication that takes heat generation and temperature rise into con- sideration is called thermohydr...
Ngày tải lên: 11/08/2014, 08:21