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This paper describes the results of numerical analyses performed to investigate α factors for soil profiles which were calibrated using the results of the CPT tests performed at a dense sand test-bed site.
Sandy loam soil included two moisture contents; sand tested involved two moisture contents and dry sand.
Results from natural quartzitic sand (Leighton Buzzard sand) tested using a high-resolution optical interferometer are presented.
The efficiency is better in the case of dry sand (tests 1 and 3).
In other words, the differences in the compression response between different sands tested under different loading conditions lie in the differences in the compression parameters λ* and N*.
The tribological performance of the coatings was evaluated using a dry sand abrasion test, a solid particle erosion test and a pin-on-disc sliding wear test.
"We tested them in several environments, from the Arctic in Norway, to the deserts in America, including sand drag tests, special mud tests, and in the freezing rain.
A sand crushing test was designed to get compressive behavior of the abrasive layer.
The sand flow test is commonly used to control this quality.
Wear resistance experiment was conducted on one dry sand abrasion test (DSAT) machine to value the coatings.
The surface erosion characteristics of molded CF composites were investigated by sand erosion test using silica particles with a size around 150 μm as the erodent.
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