A non-constant shear friction approach is proposed to evaluate the friction in ring test. The distribution of shear friction is derived and found to be dependent on the ratio (called F-coefficient) of the second derivative and first derivative of velocity at the z-direction. An upper bound method co
A new experimental approach to evaluate friction in ring test
β Scribed by Jang-Ping Wang; Fu-Lung Lin; Bing-Chuan Huang; Chang-Chia Yun
- Publisher
- Elsevier Science
- Year
- 2008
- Tongue
- English
- Weight
- 864 KB
- Volume
- 197
- Category
- Article
- ISSN
- 0924-0136
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β¦ Synopsis
A real-time measuring method is proposed to evaluate the friction by using a ring test.
In this approach, two experimental procedures are developed: the image processing that used to measure the radius of contraction inner surface (convex forming) at the high friction condition and the measurement of strain by using strain gage that is used to find the expansion inner radius (concave forming) at the low friction condition. An hardening material, aluminum, annealed at 1100 β’ F, is used for theoretical comparison and non-hardening materials that consist of tin (63%) and lead (37%) is adopted to calibrate various friction conditions. The size of specimen is machined to the standard size so the ratio of outer diameter to inner diameter to thickness is 6:3:2. A theoretical model of non-constant shear friction approach is used to construct the calibration curves. It is found that these methods present an excellent agreement with the experimental data and the results of prior literatures, specifically in evaluating the friction situation at concave forming.
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