Tungsten Alloy Aerospace Components — tungsten-alloy-aerospace-components-d04.jpg
Tungsten Alloy Aerospace Components — tungsten-alloy-aerospace-components-d05.jpg
Tungsten Alloy Aerospace Components — tungsten-alloy-aerospace-components-d02.jpg
Iron Base Alloy Steel Products

Tungsten Alloy Aerospace Components

Tungsten aerospace components for applications requiring high density, mechanical strength and thermal stability — counterweights, structural inserts and shielding with density up to 18.5 g/cm³.

Materials
Tungsten heavy alloy (self-developed tungsten powders)
Features
Ultra-high density, withstands high G-loads and vibration, complex near-net-shape geometries, high-precision machining for critical tolerances, Ni/Ag/Au plating compatible
Application
Satellite counterweights and stabilizers, aerospace structural components and balance masses, high-temperature turbine and engine inserts, spacecraft radiation shielding, defense aerospace modules.

Specifications

ParameterValue
DensityUp to 18.5 g/cm³
Surface PlatingNi, Ag, Au
FAQ

Frequently Asked Questions

What materials and process are used for Tungsten Alloy Aerospace Components?

Tungsten Alloy Aerospace Components is made from Tungsten heavy alloy (self-developed tungsten powders) and is formed by MIM/PM (metal injection molding / powder metallurgy) near-net-shape and sintered to a relative density of ≥ 98%, which keeps mechanical properties close to wrought material.

What are the key specifications of Tungsten Alloy Aerospace Components?

Typical specifications: Density: Up to 18.5 g/cm³; Surface Plating: Ni, Ag, Au. The full parameter list is in the specifications table on this page; custom requirements can be discussed against your drawing.

What is the MOQ and lead time for Tungsten Alloy Aerospace Components?

MOQ is 1000 pcs. Mold lead time is about 20 days (mold fee typically RMB 20–40k depending on part geometry), and production lead time is about 7 days once the mold is validated; secondary processing adds 3–5 days.