The line contact rolling fatigue properties of Cr5 steels for backup roll under two kinds of heat treatment(940 ℃) quenching and 450 ℃,535 ℃ tempering were studied and the P-σ-N curves were also measured.
Line Contact Rolling Fatigue Properties of Cr5 Steels for Backup Roll
Reynolds Equations of Line Contact Problem for Limiting Shear Condition
Stribeck Curves of Line Contact Lubrication
THIRD ORDER CONTACT ANALYSIS OF LINE CONTACT SURFACES
Simulation Study of Gear Line-Contact Fatigue
Theoretical Formula for Calculation of Line-contact Elastic Contact Deformation
The dynamic analysis of the crusher is analyzed in virtue of the line-contact surfaces mechanism and the analysis can reduce the analytic error.
The new types of seal for special demands of coal high-speed liquefaction e- quipment are introduced. These new types of seal are no-gasket line-contact seal, screw sleeve semi-self-sealing seal and magnetic driving seal. The process of design of these seals is explained.
3. Based on the theory of abrasive wear, and with some assumptions, the material removal model of line-contact manufacturing is presented. Then the flow sheet of the process simulation is given. The algorithm to calculate the distance between the tool and the workpiece is studied, and also is its error.
The elastic approach for linear contact problem and roller bearing's load distribution
The paper introduces the structure and character of linear contact lay strand for 1-4 layer by number of layers to steel wire in the strand of linear contact lay ropes.
接 线接触股中钢丝的层数深入介绍了1—4层 线接触股的构造及特点．
A STUDY OF DESIGN AND ADJUSTMENT OF CROSS-ROLLING LINEAR CONTACT STRAIGHTENING ROLL
Strand Structure of Linear Contact Lay Wire Ropes
The Thermal EHL Numerical Value Analysis of the Mixed Linear Contact Lubrication and It's Application in Straight Gear Transmission
A Full EHL Solution for Pure Rolling Line Contacts of Two-phase Solid-liquid Fluid
NUMERICAL SOLUTION FOR THE ISOTHERMAL ELASTOHYDRODYNAMIC PROBLEMS UNDER LINE CONTACTS
Analysis of Oil Supply Conditions for Elastohydrodynamic Lubrication in Line Contacts
A NEW FILM THICKNESS FORMULA FOR PARTIAL THERMAL ELASTOHYDRODYNAMIC LUBRICATED LINE CONTACTS
Analysis for Finite Line Contacts of Thermal Elastohydrodynamic Lubrication
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An approximate analytical solution is presented for a line contact model.
The accuracy of the technique is illustrated in elastohydrodynamic lubrication (EHL) of inclined slider and line contact problems.
Line contact, plane strain, and negligible friction are assumed.
By using this method, not only the cylindrical cutter and the machined surface can keep line contact, but also the propeller can be machined with one clamping.
In this paper I present such an analysis by considering the limitations on- line contact imposes on the nature of the professional-client relationship.
It is concluded that the meshing of conjugate CGC is line-contact, there are several pairs of teeth engage simultaneously, and non-conju gate CGC has point-contact condition of meshing and only 2 pairs of teeth engage in theory.
The laser-clad Fe-Cr-C-W alloy showed better wear properties than laser-clad Fe-Cr-Mn-C and several times smaller scar width as compared to Stellite 6 hard-facing during line-contact wear testing.
The tribology properties of the coatings against AISI 1045 steel, AA7075, AA6061 aluminum alloy, and bronze rods were tested by an oscillation sliding test machine with a line-contact wear mode under dry conditions.
A deep modulation of the film conduction properties and non- linear contact resistance effects have been observed.
As one application of our results, we obtain the limiting behavior of the critical values for the linear contact process in d dimensions as d→∞, thus answering a question we raised in .
Algorithms for non- linear contact constraints with application to stability problems of rods and shells
In this paper we develop an adaptive method for geometrically linear contact problems, which also includes elastoplastic material behavior.
An important distributional characteristic of a random closed set, the linear contact distribution function, yields the contribution to surface depth resulting from pores.
This response is dominated by the peripheral line contacts between mica flakes, rather than by the surface impedance of the mica flakes between these contacts.
A comparison between computational fluid dynamic and reynolds approaches for simulating transient ehl line contacts.
Comparison of reynolds and navier-stokes approaches for solving isothermal ehl line contacts.
Here, a slight modification is necessary to make it more appropriate for parallel line contacts such as the fingers on a solar cell.
Line contacts have small deformations and point contacts have large deformations.