TATA TISCON 500D - 6mm
TATA TISCON 500D - 6mm
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Specification
Diameter: 6mm
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Estimated delivery by25 Nov 2024

Key Features
  • Greater Elongation
  • Stress Absorption
  • Super Ductility
  • Uniform Ridges
  • Uniform Bonds
  • High Elasticity

Description

Tata Tiscon Super Ductile (SD) Rebars are the new standard in earthquake-resistant construction! A mark of the unmatched trust of Tata Steel, Tata Tiscon SD rebars are India's leading TMT Steel rebars, manufactured using industry-leading innovative automation. Made from virgin iron ore and pure steel, every rebar is the perfect balance of unbreakable strength, unbeatable ductility, and unprecedented technological advancement. With a minimum elongation of 18% and a total elongation of a minimum of 7.5% at max force, Tata Tiscon SD Rebars can bear great weight, stretch under pressure, and return to their original shape and size.
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Frequently Asked Questions

Tata Tiscon Super Ductile (SD) Rebars are the new standard in earthquake resistant construction! A mark of the unmatched trust of Tata Steel, Tata Tiscon SD rebars are India’s leading TMT Steel rebars, manufactured using industry-leading innovative automation. Made from virgin iron ore and pure steel, every rebar is the perfect balance of unbreakable strength, unbeatable ductility, and unprecedented technological advancement. So lay an unshakable foundation for your dream home with Tata Tiscon SD Rebars.

1. Greater Elongation: To bear great weight, stretch under pressure, and return to their original shape and size.

2. Stress Absorption: Tata Tiscon SD Rebars have a uniform stress-bearing capacity of 500 MPa. As opposed to ordinary rebars that crack overtime, SD rebars can absorb extreme pressure and stand strong.

3. Super Ductility: Specially suited for construction in seismic zones, Tata Tiscon SD rebars have a high ductility ratio of more than 1.5. This allows them to bend but not break, especially in case of earthquakes.

4. Uniform Ridges: Uniform ridges, parallel ribs & superior bond strength ensures that concrete around the rebars does not crack or dust off due to continued wear & tear through the years, as opposed to ordinary rebars.

1. Provides uniform strength across the length of the rebar yielding a stronger foundation to the structure.

2. Has a constant diameter across the rebar making them capable of bearing heavier loads.

3. Super ductility with a soft inner core and hard outer layer ensuring preparedness for seismic waves.

4. High bonding with the concrete that makes the structure unbreakable for generations.

5. Even rib pattern through the rebar length that assures the best bond with the concrete.

Tata Tiscon SD Rebars are made with unique chemistry with critical control over Carbon, Sulphur, Phosphorous, and other alloying elements. This enhances the gap between the yield strength and the ultimate tensile strength. BIS-13920, with the amendment in 2002, has incorporated the usage of Fe 500 in the ductile detailing of the structures subjected to seismic forces. The rebars possess higher ductility and are manufactured through the TMT route. In fact, the newly developed Tata Tiscon Super Ductile Rebars ensures property that exceeds the given standards.

Yes, Tata Tiscon Super Ductile Rebars are designed to have a much higher UTS/YS ratio compared to ordinary rebars, which prevents the building from collapsing. They don’t allow the stress to increase the tensile strength even if it increases the yield strength. In fact, Super Ductile Rebars have been developed and institutionalized for zones and countries vulnerable to earthquakes. The distinguishing feature of Super Ductile Rebars is their capacity to absorb large amounts of energy released during earthquakes without catastrophic failures which might happen in the case of ordinary rebars. For the first time in India, Tata Steel has developed Super Ductile Rebars, ideally suited for use in earthquake prone areas (zones 3, 4, and 5). BIS-13920, with the amendment in 2002, has incorporated the usage of Fe 500 in the ductile detailing of the structures subjected to seismic forces.

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