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Super Alloys

Inconel 718

Rely on PML IN718 superalloy for exceptional heat and corrosion resistance across demanding environments.

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Good oxidation and corrosion resistance at high temperatures with strong mechanical properties and good fabricability.

Widely used in aerospace and turbine applications, particularly for critical rotating components such as shafts, blades, discs, and sheets.

Ingot Manufacturing Process

Melting of virgin elements to make ingots of IN718 alloy by Vacuum Induction melting (VIM)

RFQ from Customer

Alloy chemistry and ingot specifications are finalized as per application requirements.

Alloy Design/Planning

As per customer requirements, mould design carried out and planned for charge preparation, charge sequences in VIM furnace. Careful selection of raw materials are the prime factor to achieve specified chemistry of an alloy.

Alloy Melting by VIM

Virgin elements are charged into the VIM furnace either in air or under vacuum, with precise adjustments made for trace element additions during melting.

Process & Quality Control

The melt is poured under vacuum into precision-engineered molds using an automatic tilting mechanism for defect-free solidification. With online temperature, Spectro, and oxygen data, we meticulously control melting and refining to achieve the specified ingot composition.

Primary Finishing

Post-casting processes include surface treatment, cropping, and preparation of ingots for downstream processing.

Testing & Packaging

Every batch is tested for chemical composition by Spark-OES, wet analysis / Gas analysis, as well as physical compliance, as per customer specifications, before secure packaging.

Properties

Exceptional heat tolerance, stress durability, and chemical degradation resistance

Performs under pressure—resistant to saline, heat, and mechanical stress in critical environments.

 

Alloy

Mechanical properties*

PML alloy: as cast*

After Heat treatment*

PML IN718

 

 

 

*Typical

Rockwell Hardness (HRC)

36 HRC

30 - 34HRC

 

Tensile Strength Ultimate (UTS)

1275 MPa

1138MPa Min

 

Tensile Strength Yield (YS)

Not Applicable

1034MPa Max

 

Elongation Break

Not Applicable

20% Min

 

Reduction of  Area

Not Applicable

35% Min

Process Capability

Precision melting, alloy control, and vacuum casting for consistent, high-performance results.

Custom ingot shapes and batch sizes tailored to exact customer specifications.

Input Batch size

Output

Alloying  Elements

Chemistry tolerance

Impurities Max

30 kgs to 600 Kgs

Ingot of 

required 

shape as per 

customers requirement

Cr, Mo, Nb, Ta

+/- 0.5 % for Higher

level % (Above 2

digit) and

+/- 0.3 % for lower

level % (Single digit)

Oxygen < 25ppm 

Hydrogen < 3ppm 

Nitrogen < 50ppm 

All other impurities  < 50 ppm

Image Text Section

Ensuring material integrity

Chemical analysis performed using Ametek Spectromaxx & 100% PMI testing via X-MET8000 XRF Analyzer

Technical Specifications

Powering Your Success with Precise, Reliable Specs

Engineered to meet demanding specs with consistent quality and adaptable performance.

Element

Range Min (Wt%)

Max (Wt%)

Carbon

0.00

0.08

Silicon

0.00

0.35

Manganese

0.00

<0.35

Chromium

17.00

21.00

Nickel

50.00

55.00

Molybdenum

2.80

3.30

Niobium + tantalum

4.75

5.50

Aluminium

0.20

0.80

Titanium

0.65

1.15

Iron

Balance

Balance

Copper

0.00

0.30

Boron

0.00

0.50

Phosphorous

0.00

0.015

Sulphur

0.00

0..015

 

Trust, Reliability & Quality

With over six decades of expertise, PML delivers high-performance component technologies and precision solutions trusted across critical industries.

ISO 45001

ISO 45001

Occupational Health and Safety (OH&S) management systems

ISO 14001

ISO 14001

Environmental Management Systems (EMS)

ISO 9001

ISO 9001

Quality Management Systems (QMS)

IATF 16949

IATF 16949

International Standard for Automotive Management Systems

AS 9100

AS 9100

Aerospace Quality Management System (QMS)

Frequently Asked Questions

A super alloy is a high-performance material known for its exceptional mechanical strength, resistance to high temperatures, corrosion, and oxidation. These alloys are predominantly used in extreme environments such as aerospace, automotive, power generation, and chemical processing industries.

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