Customized Forging Products Made Through Hot Forging of Metals

Product Details
Customization: Available
Processing Object: Metal
Molding Style: Forging
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  • Customized Forging Products Made Through Hot Forging of Metals
  • Customized Forging Products Made Through Hot Forging of Metals
  • Customized Forging Products Made Through Hot Forging of Metals
  • Customized Forging Products Made Through Hot Forging of Metals
  • Customized Forging Products Made Through Hot Forging of Metals
  • Customized Forging Products Made Through Hot Forging of Metals
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  • Overview
  • Product Description
  • Detailed Photos
  • Product Parameters
Overview

Basic Info.

Model NO.
0251425532
Molding Technics
Forging
Application
Machinery Parts
Material
Aluminium
Heat Treatment
Normalizing
Surface Treatment
Zinc Plating
Forging Tolerance
+/-0.2mm
Standard
AISI
Production Process
Forging
Product Material
Metal
Industry
Mechanical Parts
Electricity Products
Extrusion Forging
Transport Package
Wooden Box
Specification
5KG
Trademark
CMC
Origin
Made in China
HS Code
7326901990
Production Capacity
50000

Packaging & Delivery

Package Size
5.00cm * 5.00cm * 5.00cm
Package Gross Weight
10.000kg
Lead Time
30 days (1 - 5 Pieces)
To be negotiated ( > 5 Pieces)

Product Description

Product Description

 

We are a forging manufacturer from China. Our main business is custom production of forging parts. Any product that can be produced by forging process can be customized. Our process is very simple. It is to forge metals into shapes by hot forging. We make products in the simplest way to save costs for our customers. Customers who need mechanical products can inquire about prices. The quotations are free!! !!
Detailed Photos

 

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Product Parameters

 

How are Hot Forgings Made?

In the hot forging process, metals are meticulously heated beyond their recrystallization points to prevent strain hardening during deformation. Once heated, the metal is plastically deformed and expertly shaped in molds that may also be heated when required. This high-temperature condition permits the creation of more intricate and complex shapes than cold forging, significantly enhancing the metal's pliability and formability.

For superalloys, which are inherently less malleable, specialized techniques such as isothermal forging are employed to prevent oxidation. Also recognized as hot forging, this sophisticated thermal process meticulously maintains the workpiece at an optimal temperature throughout, ensuring the superior quality and structural integrity of the final product.

Maintaining the workpiece's temperature is adeptly achieved by heating the mold to a temperature that is close to or slightly below that of the workpiece. This eliminates cooling at mold interfaces, thereby optimizing metal flow properties and significantly enhancing forming precision.

Material Characteristics Application
Stainless Steel Corrosion-resistant
  • Used in steam turbines, pressure vessels, and other applications in petrochemical, medical, food processing industries.
  • Used at temperatures up to 1800 F under low stress and to 1250 F under high-stress.
Low Carbon and Low Alloy Steel Easily processed
Good mechanical properties
Low material cost
  • Widely used at temperature lower than 900 F.
HSLA/Microalloy Steel Good mechanical properties
Low material cost
Simple thermomechanical treatment
  • Mainly used at temperature lower than 400 F for structural and engine applications in the aircraft and transportation industries. 
Aluminum Good strength-to-weight ratio
Readily forged
  • Mainly used at temperature lower than 400 F for structural and engine applications in the aircraft and transportation industries. 
Aluminum A356.0 Good strength-to-weight ratio
Readily forged
  • Mainly used at temperature lower than 400 F for structural and engine applications in the aircraft and transportation industries. 
Nickel-Base Superalloy Oxidation resistance
Creep-rupture strength
  • Used at temperature between 1200 and 1800 F.
  • Used for structural shapes, turbine components, fittings, and valves. 
Titanium High strength
Low density
Excellent corrosion resistance
  • About 40% lighter in weight compared to steel parts.
  • Used primarily in the temperature services to 1000 F. 
  • Used for aircraft engine components and structures, ship components, and valves and fitting in transportation and chemical industries.
 

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