GH4049

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Description

Étendue de la fourniture pour le groupe Aviation

Pièces forgées, barres rondes, plaques d'acier, anneaux, tuyaux sans soudure, plaques d'acier/courroies d'acier, matériaux de soudage par fil, n'hésitez pas à nous contacter !

1. Introduction to GH4049 Materials

      GH4049 alloy is a Ni-Co-Cr-based precipitation hardened deformation high-temperature alloy, used at below 950 degrees Celsius. This alloy has good oxidation resistance below 1000 degrees Celsius and has a high high temperature strength below 950 degrees Celsius. Compared with nickel-based alloys of similar purposes, the alloy has poor thermal processing plasticity. It can improve its processing plasticity after electroslag remelting or vacuum arc remelting. This alloy is suitable for the manufacture of gas turbine blades with operating temperatures between 850-950°C.

Materials Technical Standards

      GB/T14992 Classification and grade of high-temperature alloys and intermetallic compounds

      GB/T14993 Specification for hot rolled rods for rotating components

      GJB1953A Specification for hot rolled bars for high-temperature alloys for rotating parts of aircraft engines

      HB/Z140 Aviation high-temperature alloy heat treatment process

2. Chemical composition of GH4049

alliage % C Cr En Al De V W Mo Fe cerium

Ce

B S P Et Mn
Gh4049/gh49 Valeur minimale 9.50 marge 3.7 1.4 0.200 5.0 4.5
Valeur maximale 0.10 11.0 4.4 1.9 0.500 6.0 5.5 1.50 0.020 0.025 0.010 0.10 0.50 0.50

3. GH4049 physical properties

densité  g / cm3 8.44
Point de fusion  1320-1390
Magnetic performance Alloy is non-magnetic

Minimum value of mechanical properties of GH4049 alloy at room temperature:

Statut de l'alliage résistance à la traction Limite d'élasticité
RP0,2 N/mm
Élongation Dureté Brinell
Rm N/mm A5 % HB
État de fusion solide ≥570 ≥275 ≥8.0 ≤363

 4. GH4049 application fields

      GH4049 is suitable for gas turbine working blades with operating temperatures of 850-950℃, and this is the most widely used.

      Used to manufacture aircraft engine turbine blades and other high-temperature bearing workpieces.

      Forgings can be used to manufacture structural parts for marine gas engines and military equipment.

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