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Abrasion resistance of polymers in slurry pipes
AbstractA rotating pipe drum test has been developed to assess the abrasion performance of plastics pipes to an extent where most test variables are understood. The procedure involves the rotation of relatively short pipe lengths containing slurry on a conventional ball mill. In the test, the pipe surface repeatedly passes through a stationary bed of particles, which is thought to be an accurate simulation of sliding bed conditions in service.Test data for even the most abrasion resistant materials have been found to be extremely reproducible, and results obtained for different materials in various conditions can be directly compared using a simple analysis. The test may also be used as a Slurry Rating Index, measuring both abrasive nature and attrition of particles in conditions similar to those in service.Wear data from this type of test is currently being used to establish why certain materials are more abrasion resistant than others.
Abrasion resistance of polymers in slurry pipes
AbstractA rotating pipe drum test has been developed to assess the abrasion performance of plastics pipes to an extent where most test variables are understood. The procedure involves the rotation of relatively short pipe lengths containing slurry on a conventional ball mill. In the test, the pipe surface repeatedly passes through a stationary bed of particles, which is thought to be an accurate simulation of sliding bed conditions in service.Test data for even the most abrasion resistant materials have been found to be extremely reproducible, and results obtained for different materials in various conditions can be directly compared using a simple analysis. The test may also be used as a Slurry Rating Index, measuring both abrasive nature and attrition of particles in conditions similar to those in service.Wear data from this type of test is currently being used to establish why certain materials are more abrasion resistant than others.
Abrasion resistance of polymers in slurry pipes
Lowe, D (author) / Marshall, GP (author)
Construction and Building Materials ; 3 ; 100-106
1989-01-01
7 pages
Article (Journal)
Electronic Resource
English
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