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The Asphalt Concrete Cracking Device (ACCD) is a test method developed as a simpler alternative to the thermal stress retrained specimen test (TSRST) for cracking temperature determination.
A novel test method developed for fast and accurate measurement of iron losses in permanent magnet synchronous machines and a dedicated laboratory system for performing automatic measurements are presented.
Study of the machinability characteristics of porous sintered materials has received far less attention during the last decades, presumably due to powder metallurgy's greatest advantage over other manufacturing methods in eliminating completely or minimising greatly machining and also perhaps due to lack of any standard test method developed for machinability studies.
In this study, the concrete fracture energy was obtained using the three point notched beam test method developed by Hillerborg et al. (Cem Concr Res 6 6):773–782, 1976).
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A brief review of possible accelerated test methods, developed at Leeds, is presented.
First, the paper reviews test methods developed for the risk assessment of chemicals, including food additives and pesticides, discussing which of these methods are suitable for the assessment of recombinant proteins and whole foods.
As PMCs are currently used in various applications, it is necessary to investigate the possibility of applying the existing non-destructive test methods developed for the evaluation of mechanical properties of ordinary concretes.
Specifically, the in vitro approach should be designed so that a chemical's potential to penetrate the skin, react with protein/peptide (biotransformation may be required) and initiate an antigen-specific immune response is incorporated in the test methods developed.
A comparative study is performed in this paper on the crack-tip opening displacement (CTOD) resistance curve test methods developed for single edge-notched tension (SENT) specimens in the end-clamped conditions.
The print property test methods developed and proposed in this study are significantly more quantitative compared to the standard test methods used in the industry.
In these revisions, outset is taken in the hypothesis that ecotoxicological test methods, developed for soluble chemicals, can be made applicable to nanomaterials.
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