ENERGY AND RESOURCE SAVING TECHNOLOGIES OF FORMATION OF MASSIVE AMORPHOUS STRUCTURE
Journal Title: Structure and Environment - Year 2016, Vol 0, Issue 1
Abstract
The article presents the results of an experimental study of energy-resource saving technologies of formation of massive amorphous structure. Considered are the methods of mathematical modeling and optimization of process production of massive amorphous structures, which can reduce experimental studies and material resources to create a highly efficient production of amorphous alloys. The results of physical experiments are compared with the results of the calculation. Received results can be used to analyze the physical regularities and justified choice of technological modes of formation of amorphous structures.
Authors and Affiliations
ANATOLIY PAVLENKO
IMPROVING OF BOILER EFFICIENCY BY CONTROLLING THE HARMFUL SUBSTANCES CONCENTRATION IN THE COMBUSTION PRODUCTS
Chemical carbon level control is considered to be one of the simplest, cheapest and the most effective methods of optimizing fuel combustion. Standardized balance boiler’s tests show that maximum efficiency can be mentio...
RELIABILITY ANALYSIS OF THE SUPPORTING STRUCTURE SUBJECTED TO THE ACTION FORCED VIBRATIONS
The study concerns the forced vibrations analysis of supporting structure in terms of probabilism. Structural design parameters are defined as the deterministic values and random variables. Random variables are not corre...
STAINLESS STEEL IN BUILDING STRUCTURES – ADVANTAGES AND EXAMPLES OF APPLICATION
The paper discusses the problem of using stainless steels in construction. Characteristics of steel marking systems in the European standards have been characterized. Basic types of steel are presented together with thei...
NEW WAYS OF RENEWABLE SOURCES UTILIZATION FOR ELECTRICITY PRODUCTION
Nowadays, different solutions for increasing energy production are investigated in the world. One of the ways is utilization of renewable energy sources in cogeneration devices – combined production of electricity and he...
NON-LINEAR MASTIC CHARACTERISTICS BASED ON THE MODIFIED MSCR (MULTIPLE STRESS CREEP RECOVERY) TEST
Mastic containing asphalt in its composition is an example of a viscoelastic material. It is an effective binder in asphalt. It consists of a filler (<0.063 mm) and asphalt mixed in the right proportions. Just like in as...