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]]>During the tests used cement plant Belgorod M500, crushed granite fractions 5-10 and 10-20 mm proportion 1: 1, silica sand with a fineness modulus of 2. Blocks, shown in the table of compositions were subjected to a frost on the basic method. Frost resistance of composition 1 with open porosity 4.1% of 300 cycles of 2 (= 5.6%) – 200, of 3 (= 7.5%) – 50. Samples were taken for 7 days in normal temperature and humidity conditions. Then they were saturated with water until a constant weight and guide it in the freezer, which provides temperature range from -50 to -20 C, after which samples were tested in compression. A thin layer of ice cubes on the surface prevented water evaporation. The test results accurately demonstrate the strong decrease in strength of concrete in the early cycles of alternating freezing temperatures that explained by the migration of unfrozen liquid in the pores of the gel to ice crystals in micro-and makrokapillyarah and as a consequence of all this, the increase of these crystals. Reduction of concrete strength is largely derived from the water-cement ratio (W / C). Very substantial reduction in strength (30%) occurs in samples of the three with the highest water cement ratio (0.7). As a result, studies have confirmed that the northern climate Concrete exposed to specific conditions, environmental influences that lead to structural damage of the material, which seriously reduces the durability of concrete and reinforced concrete foundations, in places
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]]>Reduced induction period and time of curing can be used in several ways: In the winter period to avoid hypothermia fresh concrete prior to hardening. Production of ready-made elements (faster reuse of forms). Reduced risk of cracking due to shrinkage of concrete. Reduced time to finishing (smoothing) of concrete floors. Increased early strength concrete. To activate the concrete after a long transport or transportation in hot climates. RISK REDUCTION NITCAL cracking can be used as an additive that reduces the risk cracking due to rapid loss of moisture in fresh concrete. The most likely effect of accelerated curing.
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