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Jindal Panther is dedicated to creating a brighter future through our continued investment in research and development.

The success of Jindal Panther can be attributed to its commitment to innovation, setting new standards, enhancing capabilities, and improving lives in our pursuit of building a strong nation and empowering industries.

Every Jindal Panther mark represents a promise of unparalleled quality and strength, ensuring stronger homes and fulfilled aspirations that will leave a legacy. Crafted using high-quality virgin iron ore in advanced rolling mills, Jindal Panther TMT rebars exhibit consistent properties and exceptional uniformity throughout their structure.

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Superior quality

Jindal Panther TMT Rebars are made from virgin iron ore using a unique process that enhances their strength, safety, and ductility, surpassing other TMT rebars.

The advanced HYQST/QST technique creates a robust surface layer of Martensite, an intermediate layer of Martensite and Bainite, and a core with a soft Ferrite and Pearlite microstructure. This combination ensures consistent quality and an exceptional balance of strength and ductility.

Superior quality
Superior weldability

Superior weldability

Jindal Panther TMT rebars have low carbon levels which facilitates easier and faster welding without the need for preheating.

Jindal Panther TMT rebars have low carbon levels which facilitates easier and faster welding without the need for preheating. As a result, welded joints become stronger and safer, while also reducing wastage during on-site welding.

Excellent bonding with Cement

Jindal Panther TMT Rebars have a precise, uniform, and parallel rib pattern created using computer-controlled machines.

Jindal Panther TMT Rebars have a precise, uniform, and parallel rib pattern created using computer-controlled machines. This meticulous process ensures excellent bond strength with concrete. The parallel ribs are produced by an ultra-heavy-duty block called NTM (No Twist Mill), utilising Tungsten Carbide rings for close dimensional tolerance and superior surface finish, enhancing the overall rebar quality.

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High ductility

Jindal Panther TMT rebars have low carbon levels which facilitates easier and faster welding without the need for preheating.

Jindal Panther TMT rebars have low carbon levels which facilitates easier and faster welding without the need for preheating. As a result, welded joints become stronger and safer, while also reducing wastage during on-site welding.

Earthquake resistant properties

Jindal Panther TMT Rebars have demonstrated superior resistance to cyclic loading conditions, making them highly recommended for earthquake-prone areas.

Jindal Panther TMT Rebars have demonstrated superior resistance to cyclic loading conditions, making them highly recommended for earthquake-prone areas. These rebars' exceptional seismic-resistant properties ensure enhanced safety. Additionally, Jindal Panther TMT Rebars meet international specifications for the UTS/YS (Ultimate Tensile Strength/Yield Strength) ratio, resulting in high strength and ductility. A higher UTS/YS ratio and increased percentage of elongation indicate that the steel can withstand greater strain, especially during seismic events such as earthquakes.

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Corrosion resistance

Jindal Panther TMT Rebars possess a parallel rib pattern created during the final finishing stage.

Jindal Panther TMT Rebars possess a parallel rib pattern created during the final finishing stage, that eliminates torsion residual stress and combined with low carbon content, provides enhanced corrosion resistance properties compared to regular rebars.

Greater resistance to fire

Jindal Panther TMT Rebars are subjected to a quenching and self-tempering process at around 650°C,

Jindal Panther TMT Rebars are subjected to a quenching and self-tempering process at around 650°C, which leads to the formation of a substantial and uniform layer of tempered Martensitic ring on its outer surface. This unique treatment enhances the rebar's ability to maintain strength even at elevated temperatures.

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