Shri Krushna TMT

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550 D Bar

Where strength meets superior ductility. Shri Krushna's Fe 550 D — the premium choice for high-performance construction.



About 550 D Bar

Shree Krushna 550 D Bar is a premium quality TMT steel bar specially designed for modern construction needs. Manufactured with advanced technology and strict quality standards, these bars offer high strength, excellent flexibility, and long-lasting durability.

The 550 D Bar is ideal for structures that require strong reinforcement with better resistance to stress, bending, and heavy loads. Its superior bonding with concrete helps create safer and stronger buildings.

With excellent weldability and corrosion resistance, Shree Krushna 550 D Bars are trusted for residential, commercial, and infrastructure projects.

Steel reinforcement bars

Engineered for Strength

Explore our TMT bar in 3D — drag to rotate and inspect every detail.

Used in

01

Commercial complexes

Ideal for malls, offices, and business buildings requiring high strength.

02

High-rise buildings

Ensures structural stability and load-bearing capacity for tall buildings.

03

Bridges and flyovers

Offers reliable support for heavy traffic and long-span structures.

04

Foundations and columns

Strengthens the core structure for long-term safety and durability.

05

Beams and slabs

Enhances concrete strength and prevents structural cracks.

Why Choose 550 D Bar

Built for heavy load performance and structural safety.

Shree Krushna 550 D Bars are manufactured to handle high stress and pressure, making them ideal for columns, beams, foundations, and large construction projects where strength is critical.

Best Used In

  • High-rise buildings
  • Bridges
  • Industrial structures

Built for heavy load performance and structural safety.

Shree Krushna 550 D Bars are manufactured to handle high stress and pressure, making them ideal for columns, beams, foundations, and large construction projects where strength is critical.

Best Used In

  • High-rise buildings
  • Bridges
  • Industrial structures

Long-lasting protection against rust and moisture damage.

The bars are designed to resist corrosion caused by humidity, water exposure, and changing weather conditions, helping extend the life of the structure.

Best Used In

  • Coastal areas
  • Water tanks
  • Basements
  • Outdoor projects

Easy shaping without compromising strength.

These bars provide excellent flexibility, allowing easier cutting and bending during construction while maintaining structural integrity.

Applications

  • Curved designs
  • Beams
  • Slabs
  • Custom frameworks

Better grip inside concrete for stronger structures.

The ribbed surface ensures firm bonding with concrete, reducing slippage and improving the overall stability of the construction.

Applications

  • Foundations
  • Columns
  • Slabs
  • Retaining walls

Product Specifications

Parameter Details
Product NameShree Krushna 550 D Bar
GradeFe 550 D
MaterialHigh Quality TMT Steel
Available Sizes8mm, 10mm, 12mm, 16mm, 20mm, 25mm, 32mm
Standard Length12 Meter (Approx.)
StrengthHigh Tensile Strength
BendabilityExcellent Flexibility
Surface TypeRibbed for Strong Concrete Bonding
Corrosion ResistanceYes
WeldabilityGood
ApplicationConstruction & Infrastructure
Quality StandardISI Standard
FinishPremium Mill Finish
01 Mechanical Properties of 550 D TMT Bar
Grade Fe 415 Fe 500 Fe 550 SHRI KRUSHNA TMT
Yield stress (n/sq.mm) >415 >500 >550 >550
Tensile strength (n/sq.m) >485 >545 >585 >640
Elongation% >14.5% >12% >10% >16%
02 Chemical Properties of 550 D TMT Bar
Grade Fe 415 Fe 500 Fe 550 SHRI KRUSHNA TMT
Carbon % <0.30% <0.30% <0.30% <0.25%
Sulphur % <0.060% <0.055% <0.055% <0.050%
Phosphorus % <0.060% <0.055% <0.050% <0.050%
Sulphur & phosphorus % <0.11% <0.105% <0.10% <0.10%
Manganese % 0.5% to 1.0% 0.5% to 1.0% 0.5% to 1.0% 0.5% to 1.0%
CE % <0.42% <0.42% <0.42% <0.40%
03 Saving in Weight and Cost of Construction by Shree Krushna TMT Bar
Grade TMT Fe 415 TMT Fe 500 SHRI KRUSHNA TMT
Yield Strength 415 N/mm2 500 N/mm2 550 N/mm2
Weight Required 1,000 MT 0.854 MT 0.809 MT
Saving in Weight - 14.6% 19.15%

Manufacturing Process

Melting & Refining

Melting & Refining

  • Raw Material Selection: High-grade raw materials are carefully sourced to ensure superior TMT steel quality.
  • Induction Furnace: Materials are melted in in-house induction furnaces, where molten metal is efficiently separated from slag.
  • Purging & Refining: The molten steel is refined in a ladle furnace using purging and controlled chemical additions to remove impurities and achieve precise composition. Advanced spectrometer analysis ensures optimal weldability, strength, ductility, and elongation, meeting stringent industry standards

Continuous Casting

  • Continuous casting is a critical stage in TMT bar manufacturing, where molten metal is solidified into predefined sections through a controlled and continuous process. Fresh molten metal is consistently fed into the mold to maintain uniform solidification.
  • Our advanced continuous casting system enhances yield, productivity, and cost efficiency while ensuring consistent quality. Leveraging precision engineering and modern technology, it enables the seamless conversion of molten metal into accurately shaped, high-strength steel billets.
Continuous Casting
Secondary Cooling & Hot Charging

Secondary Cooling & Hot Charging

  • After continuous casting, billets pass through a secondary cooling chamber where controlled water spraying ensures complete solidification, dimensional stability, and improved structural integrity.
  • The solidified billets are then reheated in a furnace to achieve recrystallization, enhancing material properties and minimizing losses. This process preserves metallurgical integrity during rolling, resulting in superior-quality TMT bars. Our Next Gen 3X Ribbed Bars are engineered to deliver optimal steel and cement bonding, ensuring exceptional strength and performance.

Rolling Mill

  • Recrystallized billets are conveyed to a state-of-the-art rolling mill for precision processing. Using internationally recognized roll pass design, the process enhances strength, elongation, and ensures uniform properties along the bar length.
  • TMT bars produced from billets offer superior quality compared to ingot-based bars. Our in-house induction furnaces enable complete control over billet production, ensuring consistent quality from raw material to finished product.
Rolling Mill
Quenching & Self-tempering

Quenching & Self-tempering

  • After exiting the finishing mill, rebars enter a water-cooling chamber for quenching using advanced German QST technology, producing high-strength, flexible ribbed TMT bars suitable for premium infrastructure.
  • The process involves three stages:
  • Rapid Quenching: Immediate surface hardening as bars leave the final mill stand.
  • Self-Tempering: Residual core heat tempers the hardened surface layer.
  • Air Cooling: Uniform cooling on a cooling bed to stabilize the microstructure.
  • This controlled treatment ensures superior strength, ductility, bendability, weldability, and enhanced resistance to corrosion.

Quality Process Management

Step - 1
Raw Material

Raw Material

Step - 2
At Laddle, QA of Liquid Metal

At Laddle, QA of Liquid Metal

Step - 3
Billet QA & QC

Billet QA & QC

Step - 4
Finished Goods / Final QC Release

Finished Goods / Final QC Release

Step - 5
Chemical Purity Test

Chemical Purity Test

Step - 6
The Hardness Test

The Hardness Test

Step - 7
Splitting tendency check

Splitting tendency check

Step - 8
Ductility test

Ductility test

Step - 9
Fatigue and compression test

Fatigue and compression test

Step - 10
impact, wear resistance test, corrosion test

impact, wear resistance test, corrosion test

Today's 550 D TMT Bar Price Table

Section Recommended TMT Price
8 mm392 (Per Piece)
10 mm597 (Per Piece)
12 mm839 (Per Piece)
16 mm1523 (Per Piece)
20 mm2418 (Per Piece)
25 mm3737 (Per Piece)
32 mm6488 (Per Piece)

Let's Build Something Great Together

Got a bulk order? Running a large infrastructure project? Our team is ready to help with reliable supply, expert guidance, and zero run-around.

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