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Tester for elastohydrodynamic lubricating oil film traction with spinning

A lubricating oil film and traction force technology, applied in the field of testers, can solve the problems of complex adjustment process, instability, leakage, etc., and achieve the effect of obvious force increase effect, convenient adjustment and large loading range.

Inactive Publication Date: 2014-04-16
SICHUAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] At present, double-disc testing machines or ball-disc testing machines are generally used to test the traction characteristics of lubricants, but they have some shortcomings: 1. Cannot continuously simulate the state of elastohydrodynamic lubrication under different spin conditions
2. By adjusting the angle between the rotation axes of the two contact surfaces to introduce different spin amounts, the adjustment process is more complicated
3. The existing loading device generally adopts hydraulic loading. Due to the defects of hydraulic loading such as leakage and instability, the loading force cannot be accurately obtained
4. The existing ball-on-disk testing machine realizes point (circle) contact, but cannot realize point (ellipse) contact

Method used

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  • Tester for elastohydrodynamic lubricating oil film traction with spinning
  • Tester for elastohydrodynamic lubricating oil film traction with spinning
  • Tester for elastohydrodynamic lubricating oil film traction with spinning

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Embodiment Construction

[0029] The present invention will be further described below in conjunction with the accompanying drawings and embodiments, but the present invention is not limited to the following embodiments.

[0030] As shown in the accompanying drawings, an elastohydrodynamic lubricating oil film traction tester with spin is composed of a worm gear mechanism (1), an angle conversion mechanism (2), a linear guide mechanism (3) and a lever-pulley loading mechanism (4 )composition;

[0031] The elastohydrodynamic lubricating oil film traction tester with spin described above includes: a large base plate (101), a stepped shaft (107), a small base plate (201), and an electric spindle I (305) , electric spindle II (202), coupling (203), groove test piece (204), ball test piece (308), linear guide (303), V-groove (306), worm wheel (102), worm shaft ( 103), lever I (401), lever II (402), fixed pulley (406) and traction sensor (307), the large base plate (101) is connected with the small base pla...

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Abstract

A ball groove type tester used for testing elastohydrodynamic lubricating oil film traction with spinning comprises a large base plate, a stepped shaft, a small base plate, an electric spindle I, an electric spindle II, a coupler, a groove test piece, a ball test piece, a linear guide track, a V-shaped groove, a worm and gear mechanism, a lever-pulley loading mechanism and a traction sensor. The large base plate is connected with the small base plate through the stepped shaft, a worm gear is installed on the stepped shaft, and a worm shaft is installed on the large base plate to control the worm gear to rotate. The electric spindle II and the groove test piece are fixed on the small base plate, the ball test piece is fixed on the end portion of the electric spindle I installed in the V-shaped groove fixed on the movable portion of the linear guide track, and loading of the ball test piece on the groove test piece is achieved through a weight and the lever-pulley loading mechanism. The tester can simulate the elastohydrodynamic lubricating state of two contact pieces under oval contact in the sliding state with different spinning quantities and can accurately measure elastohydrodynamic traction of a lubricant.

Description

technical field [0001] The invention relates to a tester, in particular to a ball-groove tester for testing the traction force of an elastohydrodynamic lubricating oil film with spin. Background technique [0002] Elastohydrodynamic lubrication (referred to as elastohydrodynamic lubrication) is a common form of lubrication for many point and line contact parts in engineering. Its research needs to consider both the elastic deformation of two relatively moving solid surfaces and the rheological properties of the lubricant between the contact surfaces. , Semi / full toroidal continuously variable transmission, rolling bearings and other transmission contact parts are in the state of elastohydrodynamic lubrication in most cases. A layer of elastohydrodynamic lubricating oil film will be formed between the two contacts in the state of elastohydrodynamic lubrication. The elastohydrodynamic traction characteristics of the oil film have a great influence on the dynamic behavior of tr...

Claims

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Application Information

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IPC IPC(8): G01L5/00
Inventor 吴杰李青涛李华姚进曹修全李智辉
Owner SICHUAN UNIV
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