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Published byKenneth Curtis Norman Modified over 6 years ago
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Date of download: 12/17/2017 Copyright © ASME. All rights reserved. From: Algebraic Equations for the Pile-Up Geometry in Debris Particle Indentation of Rolling Elastohydrodynamic Contacts J. Tribol. 2015;138(2): doi: / Figure Legend: Pile-up geometry (not to scale) and notation
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Date of download: 12/17/2017 Copyright © ASME. All rights reserved. From: Algebraic Equations for the Pile-Up Geometry in Debris Particle Indentation of Rolling Elastohydrodynamic Contacts J. Tribol. 2015;138(2): doi: / Figure Legend: Experimental validation. Input data in column “validation” of Table 1.
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Date of download: 12/17/2017 Copyright © ASME. All rights reserved. From: Algebraic Equations for the Pile-Up Geometry in Debris Particle Indentation of Rolling Elastohydrodynamic Contacts J. Tribol. 2015;138(2): doi: / Figure Legend: Effect of particle size
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Date of download: 12/17/2017 Copyright © ASME. All rights reserved. From: Algebraic Equations for the Pile-Up Geometry in Debris Particle Indentation of Rolling Elastohydrodynamic Contacts J. Tribol. 2015;138(2): doi: / Figure Legend: Effect of particle hardness
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Date of download: 12/17/2017 Copyright © ASME. All rights reserved. From: Algebraic Equations for the Pile-Up Geometry in Debris Particle Indentation of Rolling Elastohydrodynamic Contacts J. Tribol. 2015;138(2): doi: / Figure Legend: Effect of friction coefficient
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Date of download: 12/17/2017 Copyright © ASME. All rights reserved. From: Algebraic Equations for the Pile-Up Geometry in Debris Particle Indentation of Rolling Elastohydrodynamic Contacts J. Tribol. 2015;138(2): doi: / Figure Legend: Effect of rolling velocity
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Date of download: 12/17/2017 Copyright © ASME. All rights reserved. From: Algebraic Equations for the Pile-Up Geometry in Debris Particle Indentation of Rolling Elastohydrodynamic Contacts J. Tribol. 2015;138(2): doi: / Figure Legend: Effect of strain-hardening exponent
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