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Information × Registration Number 0209U002391, 0106U000949 , R & D reports Title Computational materials science methodology to search for compromise composition-process conditions of ensured quality of building composites popup.stage_title Head Voznesensky V.A., Registration Date 10-02-2009 Organization The Odessa State Akademy of Building and Architecture popup.description2 On the basis of computational building materials science methodology theoretical propositions have been formulated and new method has been developed of computer-aided search for compromise optimal solutions by a large number of the criteria of material guaranteed quality and resources saving in multi-dimensional space of composition-process parameters. Iterative random scanning of building material property fields described by experimental-statistical models is realized. Technologist-material researcher can change criterion priorities and search ranges and adapt search parameters to changes in problem conditions through the dialogue with computer. New method has been tried when searching (in space of 3-9 factors) for compromise optimal conditions to produce the materials of ensured quality: autoclave aerated concrete, non-autoclave foam concrete, fiber concrete, multi-component modifier of the concrete, slag-alkaline binder, filled epoxy-rubber and oligomer-polymer compositions, ceramics, fibre-cement-sand mixes for bore injection piles. Application range is the research and development of high performance building materials at reduced expenditure of energy resources. The effectiveness of the results is provided through saving the research and production resources, increase in quality, reliability, and inter-repair service life, decrease in material cost. Product Description popup.authors popup.nrat_date 2020-04-02 Close
R & D report
Head: Voznesensky V.A.. Computational materials science methodology to search for compromise composition-process conditions of ensured quality of building composites. (popup.stage: ). The Odessa State Akademy of Building and Architecture. № 0209U002391
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Updated: 2026-03-25