Forged Flanges & Helical Gears Built for Peak Torque

Large-diameter forged flanges, rigid shaft couplings, and induction-hardened helical gears engineered to minimize axial mechanical backlash in industrial speed reducers.

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60 inMax flange diameter
2.5 mmCase depth hardness
G2.5Balance grade

Trusted by engineers who demand zero backlash

Our forged flanges, rigid couplings, and induction-hardened gears are specified by industrial speed reducer manufacturers across India. Here is what the teams running them say.

⭐ 4.8 / 5.0 (42 reviews) Large-Diameter Forged Flange

“We installed a 48-inch Class 300 flange on a hydrogen compressor loop. The ultrasonic test report came back clean, and the sealing face held zero leaks during hydrotest at 740 psi. No re-torquing needed after the first thermal cycle.”

⭐ 4.9 / 5.0 (31 reviews) Rigid Shaft Coupling

“Replaced a bellows coupling on a servo-driven indexing table. The split-clamp design eliminated the 0.02° angular error we were compensating for in software. Repeatability improved from ±0.05 mm to ±0.01 mm.”

⭐ 4.7 / 5.0 (58 reviews) Induction-Hardened Helical Gear

“The case hardness of 60 HRC on a module 8 gear survived a 30 % torque spike that previously cracked our through-hardened gears. After 800 hours at full load, the tooth profile wear is below 0.03 mm.”

⭐ 4.9 / 5.0 (19 reviews) Customer Support & Lead Time

“We needed a custom bore on a 20-inch flange within two weeks. The team confirmed the drawing change in four hours and shipped on day 12. The paperwork matched the material test certificate exactly.”

Frequently Asked Questions

Common questions about our forged flanges, rigid couplings, and induction-hardened gears for industrial speed reducers.

What is the maximum diameter available for forged flanges?

Our large-diameter forged flanges are available up to 60 inches in diameter. Custom bore configurations can be accommodated for specific piping requirements. Each flange is manufactured from premium alloy steel and undergoes ultrasonic testing to ensure zero internal defects.

How does the rigid shaft coupling eliminate axial backlash?

The split-clamp design provides uniform radial clamping force without marring the shaft. This ensures absolute angular alignment and zero mechanical backlash under peak torque conditions. Each coupling is balanced to G2.5 grade, making it suitable for servo drives, encoders, and precision positioning systems.

What case hardness is achieved on the helical gears?

Our induction-hardened helical gears achieve a case depth of 2.5 mm with a surface hardness of 58–62 HRC. The ductile core remains tough to handle sudden peak loads without tooth fracture. Final grinding ensures AGMA Q10 quality for smooth, quiet operation at high rotational speeds.

What standard modules are available for helical gears?

Standard modules range from 4 to 12. Custom ratios are available upon request. Each gear is CNC hobbed and induction-hardened to a precise case depth, followed by final grinding to meet your specific speed reducer requirements.

Can you provide custom bore configurations for flanges?

Yes, we offer custom bore configurations for our large-diameter forged flanges. Contact our engineering team with your specific dimensions and pressure class requirements. We can accommodate most custom requests within standard lead times.

Contact our engineering team for more details
Direct Contact

Get a torque analysis for your drivetrain

Request callback

We will contact you within 24 hours with a preliminary backlash report and a quote for your specific flange, coupling, or gear requirement.

1. Submit your shaft specs Bore diameter, keyway, torque range
2. Receive a free backlash estimate Axial play prediction under peak load
3. Confirm and we ship Standard lead time 14 working days

Terms & Clarifications

Definitions and conditions that govern the interpretation of our product specifications and performance claims.

What does “zero mechanical backlash” mean in your product literature?

“Zero mechanical backlash” refers to the absence of measurable angular or axial play under static torque up to the rated limit of the coupling. For rigid shaft couplings, this is achieved through a split-clamp design that applies uniform radial force. For helical gears, backlash is minimized to less than 0.05 mm at the pitch line under peak torque conditions. These values are verified using a laser interferometer at our facility.

Are your forged flanges rated for continuous service at 600 °C?

Our ASME B16.5 Class 300 flanges are designed for service temperatures up to 540 °C in accordance with ASME B16.5 material group 1.1. For continuous operation above 540 °C, we recommend our Class 600 series with alloy steel grade F22 or F91. Each flange is stamped with the material grade and pressure-temperature rating per the applicable code.

What is the typical lead time for a custom induction-hardened helical gear?

Standard helical gears with module 4–12 and face width up to 250 mm ship within 6–8 weeks from drawing approval. Custom ratios, non-standard bore diameters, or special keyway configurations add 2–3 weeks. Rush orders (4 weeks) are available with a 25% expedite fee, subject to material availability.

Do you provide material certificates and traceability reports?

Yes. Every forged flange and rigid coupling ships with a 3.1 material certificate per EN 10204, including chemical composition and mechanical test results. Helical gears include a case-depth report and hardness traverse curve. Additional NDT reports (ultrasonic, magnetic particle) are available on request at no extra charge for standard products.

How do you define “peak torque conditions” in your gear ratings?

“Peak torque” is defined as the maximum momentary torque that the gear can withstand without permanent deformation or tooth fracture, applied for no more than 10 seconds per event and not exceeding 1000 events over the gear’s design life. Our ratings are based on AGMA 2001-D04 with a safety factor of 1.25 against yield. Continuous torque ratings are 60% of peak values.

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