Javascript must be enabled to continue!
Contact Stiffness of New and Worn Surfaces
View through CrossRef
The presence of surface texture/roughness on engineering surfaces results in contacts between surfaces being considerably more compliant than if the interfaces were smooth and flat. The inclusion of a local contact stiffness can be critical to the accurate analytical or computational modeling of mechanical contacts. We present measurements of contact stiffness for five pairs of freshly prepared and worn of steel surfaces. The wom surfaces variously contain surface glazes, oxide layers, subsurface cracks, inclusions and wear particles. Contact resonance frequencies between sample interfaces are measured at various applied pressures. With known modal masses, the contact stiffness is easily calculated and presented on a per unit area basis. For a given contact pair, the contact stiffness is nonlinear, increasing with nominal pressure and decreasing with increasing surface roughness. We compare these results with the Greenwood-Williamson (G-W) Theory of rough surface contact. The expected pressure and summit height dependencies are observed in the measured data. When there are wear particles within the contact, the stiffness is reduced when the underlying surfaces are very smooth. If the underlying surfaces are rough, the presence of wear particles have little effect on the contact stiffness.
Title: Contact Stiffness of New and Worn Surfaces
Description:
The presence of surface texture/roughness on engineering surfaces results in contacts between surfaces being considerably more compliant than if the interfaces were smooth and flat.
The inclusion of a local contact stiffness can be critical to the accurate analytical or computational modeling of mechanical contacts.
We present measurements of contact stiffness for five pairs of freshly prepared and worn of steel surfaces.
The wom surfaces variously contain surface glazes, oxide layers, subsurface cracks, inclusions and wear particles.
Contact resonance frequencies between sample interfaces are measured at various applied pressures.
With known modal masses, the contact stiffness is easily calculated and presented on a per unit area basis.
For a given contact pair, the contact stiffness is nonlinear, increasing with nominal pressure and decreasing with increasing surface roughness.
We compare these results with the Greenwood-Williamson (G-W) Theory of rough surface contact.
The expected pressure and summit height dependencies are observed in the measured data.
When there are wear particles within the contact, the stiffness is reduced when the underlying surfaces are very smooth.
If the underlying surfaces are rough, the presence of wear particles have little effect on the contact stiffness.
Related Results
Progress in Surface Theory
Progress in Surface Theory
The workshop
Progress in Surface Theory
, organised by Uwe Abresch (Bochum), Josef Dorfmeister (München), and Masaaki Umehara (Osaka) was he...
Spleen and Liver Fibrosis Is Associated to Treatment Response and Prognosis in Philadelphia-Negative Chronic Myeloproliferative Neoplasms
Spleen and Liver Fibrosis Is Associated to Treatment Response and Prognosis in Philadelphia-Negative Chronic Myeloproliferative Neoplasms
Abstract
Introduction: Spleen and liver stiffness, investigated by transient elastography (TE), have been associated with marrow fibrosis in patients...
Prediction of curved workpiece-fixture contact stiffness based on fractal theory
Prediction of curved workpiece-fixture contact stiffness based on fractal theory
Abstract
Workpiece-fixture contact stiffness is an evaluation criterion for machining stability, and its effective prediction involves contact state analysis, surface profi...
Interactions between titanium surfaces and biological components
Interactions between titanium surfaces and biological components
El conocimiento de las interacciones entre célula/proteína/biomaterial es fundamental para la ingeniería de superficies debido a las numerosas aplicaciones biomédicas y biotecnológ...
Stiffness regulation by reflex action in the normal human hand
Stiffness regulation by reflex action in the normal human hand
1. The torque and electromyographic (EMG) responses to stretch of the first dorsal interosseous muscle (externally imposed joint rotation) were recorded in five normal human subjec...
Abstract 1099: Mapping matrix mechanics in 3D to study the role of stiffness in breast tumor progression.
Abstract 1099: Mapping matrix mechanics in 3D to study the role of stiffness in breast tumor progression.
Abstract
Introduction
Evidence suggests that the Extra Cellular Matrix (ECM) stiffness may be a driving factor in tumor progression and may sensitize ...
Assessment of arterial stiffness in populations at increased cardiovascular risk
Assessment of arterial stiffness in populations at increased cardiovascular risk
<p dir="ltr">Introduction</p><p dir="ltr">Arterial stiffness is an established marker of cardiovascular risk. However, its full potential for clinical application...
Assessment of arterial stiffness in populations at increased cardiovascular risk
Assessment of arterial stiffness in populations at increased cardiovascular risk
<p dir="ltr">Introduction</p><p dir="ltr">Arterial stiffness is an established marker of cardiovascular risk. However, its full potential for clinical application...

