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Contact Suppliervijay tmt steel bars, a prestigious product of kamakshi steels pvt. Ltd. That enjoys two-decade-old reputation. Earlier, known as sdv steels, it made a mark in the making of quality reinforced steel bars using new-age technology in andhra pradesh. Vijay tmt is proud of being an iso 9001: 2000 certified company offering quality products. vijay tmt in tune with the changing new technology manufactures tmt steel bars that carry the following unique features : vijay tmt bars contain lower corbon levels as these are made in fe 415 [in future fe 500. Fe 550], is : 1786 grade. This chemical composition leads to superb ductability, extreme bendability and excellent weldability. the product is the next generation high-yielding strength and ductile steel bar. It gives consistent quality on par with global standards. The grade 500 gives 18% to 25% elongation. The users get 10% to 15% savings in steel used in rcc structures. They can also find very negligible loss of strength at as high temperature as at 500o c. the applications vijay tmt steel bars have become synonymous for strength and durability and are used in the constructions of all types of concrete structures including sky scrapers, everywhere. the process it’s the best process for making supreme quality steel bars. Steel billets are heated and rolled through a sequence, the parcel leaving the final stage for a special three - stage heat treatment. the phases of production process
chemical arrangement vijay tmt bars contain lower carbon levels as these are made in fe 415 [in future fe 500, fe 550], is : 1786 grade. This chemical composition leads superb ductability, extreme bendability and excellent weldability. scope as per indian standard the strength grades fe415, fe 500 and fe 550 are covered by the requirements of vijay tmt bars, for using these as reinforcement concrete. elongation when a tensile test bar is subjected to under constant stress, increase in length is arrived at, resulting in elongation. tensile strength ultimate tensile stress is, when maximum load reached in a tensile test divided by productive and effective cross - sectional area of the gauge length portion of the test bar. This process involved is known as tensile strength. specified lengths vijay tmt bar can be cut within certain deviations of + 75mm on the length specified is the -25 cases minimum lengths, the deviations should not exceed +50mm and -0 mm. nominal mass the density of vijay tmt at 0.00785 kgmm2 of the cross-sectional aream run should be applied, while checking the nominal mass. customer friendly vijay tmt is the next generation high-yielding strength and ductile steel bar. It gives consistent quality on par with global standards. The grade 500 gives 18% to 25% elongation. The users get 10% to 15% savings in steel used in rcc structures. They can also find very negligible loss of strength at as high temperature as at 500c. chemical properties parametersunitis : 1766vijay tmt barcarbon%0.30**max0.17-0.24carbon equivalalent(c+mn6)%-0.38 maxsulphur%0.060 max0.045 maxphosphorous%0.60 max0.045 maxs & p%0.110 max0.090 maxnitrogenppm-100 max mechanical properties parametersunitis : 1786 gr.-fe 415vijay gr. - fe 415yield streesnmm2415 min450 mintensile strees nmm210% more than ys but not less than 48510% more than ys but not less than 520elongation%14.5 min22 min
Parameters | CTD 415 | Vijay TMT 415 |
---|---|---|
Deesign | 415 | 450N/mm2 |
Quantity | 1.0 Mt. | .92 Mt. |
Required % of saving weight over CTD 415 | 8.0 | |
Saving in cost relative to CTD 415/Mt. | Rs. 2104 |
Specific | BIS %Range/ Tolerance | Vijay TMT Range/Tolerance | ||
---|---|---|---|---|
Size in mm | Kg/mtr. | Kg/mtr. (Min) (Max) | Kg/mtr. (Min) (Max) | % |
8 | 0.395 | 0.367 to 0.423 | 0.370 to 0.407 | ±7 |
10 | 0.617 | 0.574 to 0.659 | 0.580 to 0.625 | ±7 |
12 | 0.888 | 0.844 to 0.932 | 0.845 to 0.920 | ±5 |
16 | 1.579 | 1.500 to 1.658 | 1.516 to 1.625 | ±5 |
20 | 2.467 | 2.400 to 2.541 | 2.408 to 2.510 | ±3 |
25 | 3.856 | 3.740 to 3.971 | 3.752 to 3.924 | ±3 |
32 | 6.313 | 6.124 to 6.502 | 6.200 to 6.450 | ±3 |