-
1
-
-
85024598148
-
-
Ph.D. Dissertation, Northwestern University
-
Blake, J. W. (1989), “A Surface Pitting Life Model for Spur Gears,” Ph.D. Dissertation, Northwestern University
-
(1989)
A Surface Pitting
-
-
Blake, J.W.1
-
2
-
-
0016941645
-
Dynamic Capacity and Surface Fatigue Life for Spur and Helical Gears
-
Coy, J. J., Townsend, D. R and Zaretsky, E. V. (1976), “Dynamic Capacity and Surface Fatigue Life for Spur and Helical Gears,” ASME Jour, of Lubr: Tech., 98. pp 267-276
-
(1976)
ASME Jour, of Lubr: Tech
, vol.98
, pp. 267-276
-
-
Coy, J.J.1
Townsend, D.R.2
Zaretsky, E.V.3
-
3
-
-
0035482088
-
Pitting of the Rolling Bodies Contact Surface
-
Datsyshyn, O. P. and Panasyuk, V. V. (2001), “Pitting of the Rolling Bodies Contact Surface,” Wear, 251, pp 1347-1355
-
(2001)
Wear
, vol.251
, pp. 1347-1355
-
-
Datsyshyn, O.P.1
Panasyuk, V.V.2
-
6
-
-
0035354071
-
Analysis of Micropitting of Prototype Surface Fatigue Test Gear
-
Hoeprich, M. (2001), “Analysis of Micropitting of Prototype Surface Fatigue Test Gear,” Tribotest Jour., 7, 4, pp 333-347
-
(2001)
Tribotest Jour
, vol.7
, Issue.4
, pp. 333-347
-
-
Hoeprich, M.1
-
7
-
-
0022094169
-
A New Fatigue Life Model for Rolling Bearings
-
Ioannides, S. and Harris, T. A. (1985), “A New Fatigue Life Model for Rolling Bearings,” ASME Jour. ofTrib 107, pp 367-378
-
(1985)
ASME Jour. Oftrib
, vol.107
, pp. 367-378
-
-
Ioannides, S.1
Harris, T.A.2
-
8
-
-
0022094535
-
Mechanism of Crack Growth In Lubricated Rolling/Sliding Contact
-
Kaneta, M., Yatsuzuka, H. and Murakami, Y. (1985), “Mechanism of Crack Growth In Lubricated Rolling/Sliding Contact,” ASLE Trans., 28, pp 407-414
-
(1985)
ASLE Trans
, vol.28
, pp. 407-414
-
-
Kaneta, M.1
Yatsuzuka, H.2
Murakami, Y.3
-
9
-
-
0022440270
-
Growth Mechanism of a Subsurface Crack Due to Hertzian Contact
-
Kaneta, M., Murakami, Y. and Okazaki, T. (1986), “Growth Mechanism of a Subsurface Crack Due to Hertzian Contact,” ASME Jour. ofTrib 108, pp 134-139
-
(1986)
ASME Jour. Oftrib
, vol.108
, pp. 134-139
-
-
Kaneta, M.1
Murakami, Y.2
Okazaki, T.3
-
10
-
-
0011658154
-
Elastohydrodynamic Problem of the Lubrication Theory for Elastic Bodies with Cracks
-
Kudish, I.I. (1984), “Elastohydrodynamic Problem of the Lubrication Theory for Elastic Bodies with Cracks,” Applied Mathematics and Mechanics, 48, pp 799-808
-
(1984)
Applied Mathematics and Mechanics
, vol.48
, pp. 799-808
-
-
Kudish, I.I.1
-
11
-
-
0022943301
-
Contact Problem of the Elasticity Theory for Bodies with Cracks
-
Kudish, I. I. (1986), “Contact Problem of the Elasticity Theory for Bodies with Cracks.” Applied Mathematics and Mechanics, 50, pp 1020-1033
-
(1986)
Applied Mathematics and Mechanics
, vol.50
, pp. 1020-1033
-
-
Kudish, I.I.1
-
12
-
-
0022986217
-
On the Influence of Friction Stresses on the Fatigue Failure of Machine Elements
-
Kudish, I.I. (1986), “On the Influence of Friction Stresses on the Fatigue Failure of Machine Elements,” Soviet Jour, of Friction and Wear, 7, pp 32-40
-
(1986)
Soviet Jour, of Friction and Wear
, vol.7
, pp. 32-40
-
-
Kudish, I.I.1
-
13
-
-
0023308470
-
Contact Problem of the Theory of Elasticity for Prestressed Bodies with Cracks
-
Kudish, I.I. (1987), “Contact Problem of the Theory of Elasticity for Prestressed Bodies with Cracks,” Jour; of Applied Mechanics and Technical Physics, 28, pp 144-152
-
(1987)
Jour; of Applied Mechanics and Technical Physics
, vol.28
, pp. 144-152
-
-
Kudish, I.I.1
-
14
-
-
2242435705
-
Statistical Calculation of Rolling Bearing Wear and Pitting
-
Kudish, I. I. (1990), “Statistical Calculation of Rolling Bearing Wear and Pitting,” Soviet Jour, of Friction and Wear, 11, pp 71-86
-
(1990)
Soviet Jour, of Friction and Wear
, vol.11
, pp. 71-86
-
-
Kudish, I.I.1
-
15
-
-
0034306651
-
A New Statistical Model of Contact Fatigue
-
Kudish, I. I. (2000), “A New Statistical Model of Contact Fatigue,” Trib. Trans., 43, pp 711-721
-
(2000)
Trib. Trans
, vol.43
, pp. 711-721
-
-
Kudish, I.I.1
-
16
-
-
0033627513
-
Modem State of Experimentation and Modeling in Contact Fatigue Phenomenon. Part I, Contact Fatigue Versus Normal and Tangential Contact and Residual Stresses. Nonmetallic Inclusions and Lubricant Contamination. Crack Initiation and Crack Propagation. Surface and Subsurface Cracks
-
Kudish, I. I. and Burris, K. W. (2000), “Modem State of Experimentation and Modeling in Contact Fatigue Phenomenon. Part I, Contact Fatigue Versus Normal and Tangential Contact and Residual Stresses. Nonmetallic Inclusions and Lubricant Contamination. Crack Initiation and Crack Propagation. Surface and Subsurface Cracks,” Trib. Trans 43, pp 187-196
-
(2000)
Trib. Trans
, vol.43
, pp. 187-196
-
-
Kudish, I.I.1
Burris, K.W.2
-
17
-
-
0034126474
-
Modem State of Experimentation and Modeling in Contact Fatigue Phenomenon. Part II. Analysis of the Existing Statistical Mathematical Models of Bearing and Gear Fatigue Life. New Statistical Model of Contact Fatigue
-
Kudish, I. I. and Burris, K. W. (2000), “Modem State of Experimentation and Modeling in Contact Fatigue Phenomenon. Part II. Analysis of the Existing Statistical Mathematical Models of Bearing and Gear Fatigue Life. New Statistical Model of Contact Fatigue,” Trib. Trans., 43, pp 293-301
-
(2000)
Trib. Trans
, vol.43
, pp. 293-301
-
-
Kudish, I.I.1
Burris, K.W.2
-
18
-
-
0011594485
-
Failure Mechanisms of Elastic Bodies with Cracks in the Presence of a Lubricant
-
Kudish, I. I. (1985), “Failure Mechanisms of Elastic Bodies with Cracks in the Presence of a Lubricant,” Strength ofMaterials, 17, pp 64-70
-
(1985)
Strength Ofmaterials
, vol.17
, pp. 64-70
-
-
Kudish, I.I.1
-
19
-
-
0029357153
-
Surface and Subsurface Cracks and Pores with Liquid under Action of a Contact Load in the Presence of a Lubricant
-
ASTM STP 1220, Erdogan, F., ed., ASTM, Philadelphia
-
Kudish, I. I. (1995), “Surface and Subsurface Cracks and Pores with Liquid under Action of a Contact Load in the Presence of a Lubricant,” Fracture Mechanics, 25, ASTM STP 1220, Erdogan, F., ed., ASTM, Philadelphia, pp 606-621
-
(1995)
Fracture Mechanics
, vol.25
, pp. 606-621
-
-
Kudish, I.I.1
-
20
-
-
0002243186
-
Dynamic Capacity of Rolling Bearings
-
Royal Swedish Academy of Engineering Sciences
-
Lundberg, G. and Palmgren, A. (1947),“Dynamic Capacity of Rolling Bearings,” Acta Polytechnica (Mech. Eng. Ser. 1), Royal Swedish Academy of Engineering Sciences, 7, pp 5-32
-
(1947)
Acta Polytechnica (Mech. Eng. Ser. 1)
, vol.7
, pp. 5-32
-
-
Lundberg, G.1
Palmgren, A.2
-
21
-
-
0021892056
-
Analysis of Surface Crack Propagation in Lubricated Rolling Contact
-
Murakami, Y., Kaneta, M, and Yatsuzuka, H. (1985), “Analysis of Surface Crack Propagation in Lubricated Rolling Contact,” ASLE Trans., 28, pp 60-68
-
(1985)
ASLE Trans
, vol.28
, pp. 60-68
-
-
Murakami, Y.1
Kaneta, M.2
Yatsuzuka, H.3
-
22
-
-
0031440892
-
Experimental and Fracture Mechanics Study of the Pit Formation Mechanism Under Repeated Lubricated Rolling-Sliding Contact: Effects of Reversal of Rotation and Change of the Driving Roller
-
Murakami, Y., Sakae, C., Ichimaru, K. and Morita, T. (1997), “Experimental and Fracture Mechanics Study of the Pit Formation Mechanism Under Repeated Lubricated Rolling-Sliding Contact: Effects of Reversal of Rotation and Change of the Driving Roller,” ASME Jour. Of Trib., 119, pp 788-796
-
(1997)
ASME Jour. of Trib
, vol.119
, pp. 788-796
-
-
Murakami, Y.1
Sakae, C.2
Ichimaru, K.3
Morita, T.4
-
23
-
-
0000358026
-
Experimental and Theoretical Investigation on Rolling Contact Fatigue of 52100 and M50 Steels Under EHLand Micro-EHL Conditions
-
Nelias, D., Dumont, M.-L., Couhier, F., Dudragne, C. and Flamand, L, (1998), “Experimental and Theoretical Investigation on Rolling Contact Fatigue of 52100 and M50 Steels Under EHLand Micro-EHL Conditions,” ASME Jour, of Trib., 120, pp 184-190
-
(1998)
ASME Jour, of Trib
, vol.120
, pp. 184-190
-
-
Nelias, D.1
Dumont, M.-L.2
Couhier, F.3
Dudragne, C.4
Flamand, L.5
-
24
-
-
0029378844
-
The Crack Propagation Theory under Rolling Contact
-
Panasyuk, V. V., Datsyshin, O. P. and Marchenko, H. P. (1995), “The Crack Propagation Theory under Rolling Contact,” Eng. Fract. Mech., 52, 1, pp 179-191
-
(1995)
Eng. Fract. Mech
, vol.52
, Issue.1
, pp. 179-191
-
-
Panasyuk, V.V.1
Datsyshin, O.P.2
Marchenko, H.P.3
-
25
-
-
0003974797
-
-
"Naukova Dumka” Publishing, Kiev, Ukraine
-
Panasyuk, V. V., Savruk, M. P. and Datsyshin, A. P. (1976), Stress Distribution Near Cracks in Plates and Shells, "Naukova Dumka” Publishing, Kiev, Ukraine
-
(1976)
Stress Distribution near Cracks in Plates and Shells
-
-
Panasyuk, V.V.1
Savruk, M.P.2
Datsyshin, A.P.3
-
26
-
-
2242487721
-
Rolling Bearing Life Prediction. Corrections for Material and Operating Conditions. Part 1: General Model and Basic Life
-
Tallinn, T. E. (1988), "Rolling Bearing Life Prediction. Corrections for Material and Operating Conditions. Part 1: General Model and Basic Life,” ASME Jour. Of Trib., 110, pp 1-6
-
(1988)
ASME Jour. of Trib
, vol.110
, pp. 1-6
-
-
Tallinn, T.E.1
-
27
-
-
85025323857
-
Author’s Closure
-
Tallian, T., Hoeprich, M. and Kudish, I. (2001), Author’s Closure, Trib. Trans., 44, 2, pp 153-155
-
(2001)
Trib. Trans
, vol.44
, Issue.2
, pp. 153-155
-
-
Tallian, T.1
Hoeprich, M.2
Kudish, I.3
-
28
-
-
0031444248
-
A Numerical Solution of a Surface Crack Under Cyclic Hydraulic Pressure Loading
-
Xu, Z.-Q. and Hsia, K. J. (1997), “A Numerical Solution of a Surface Crack Under Cyclic Hydraulic Pressure Loading.” ASME Jour. ofTrib., 119, pp 637-645
-
(1997)
ASME Jour. Oftrib
, vol.119
, pp. 637-645
-
-
Xu, Z.-Q.1
Hsia, K.J.2
-
29
-
-
0019592472
-
Methodology of Determination of Material Crack Resistance under Cyclic Loading
-
Yarema, S. Y. (1981), “Methodology of Determination of Material Crack Resistance under Cyclic Loading,” Physico-Chemical Mechanics of Materials, 4, pp 100-111
-
(1981)
Physico-Chemical Mechanics of Materials
, vol.4
, pp. 100-111
-
-
Yarema, S.Y.1
|