316L Austenitic Stainless Steel Clad head for Pressure Vessels

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Product
316L Austenitic Stainless Steel Clad head for Pressure Vessels
Posting date : Apr 13, 2018
Membership
Free Member Scince Feb 26, 2018
FOB Price
negotiation
Port
P.R.China
Payment Terms
L/C, D/A, T
Package
Seaworthy packing
Keyword :
Category
Contact
Margaret Xiao
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Product Detail
Company Info
 
Quick Detail
Place of Origin
China [CN]
Brand Name
Suntech
Model Number
E007
HS-CODE
82-
Package & Delivery Lead Time
Package
Seaworthy packing
Delivery Lead Time
60 working days after received your payment
Detailed Description
316L Austenitic Stainless Steel Clad head for Pressure Vessels Explosion Bonded / Bimetallic / SS Cladded Head Flying Layer: 316L Base Layer: A516 Gr.70 Size: (3+13)*ID940*SF50.8mm Edge Treatment: Bevelling as per drawing Packing: Seaworthy packing Table for available type of clad headsandcladded metals: - - - - Product Names: | Explosion Bonded Clad Head for Pressure Vessels | Production Codes: | ASME UG-81, etc. | Type | Abbreviation | Available Clad Metals | Production Method | Elliptical clad head | EHA, EHB | Titanium & Steel Clad Ferritic Stainless Steel & Steel Clad Austenitic (Duplex) Stainless Steel & Steel Clad Nickel Alloy & Steel Clad Zirconium & Steel Clad Tantalum & Steel Clad Copper & Steel Clad | Cold Pressing, Hot Pressing, Hot Spinning | Standard Flange&Dished | DHA, DHB | Dish only | PSH,SHD | Flange reverse dished | WD | Joggled head | DHD | Conical | CHA,CHB,CHC,CHD | Flange only | FH | Hemispherical | HH | Shallow Flange& Dished | MD,XD | Approximate Elliptical | AH | Dished and Flared | DF | - - - - Description: Clad heads provide an economical solution for chemical processing. Explosion welding is a solid state joining process in which explosive energy is used to propel the component metal parts together to form a metallurgical bond. At the point of impact of the two components, a thin layer is stripped from both colliding surfaces and is ejected as a molten metal jet. This jet contains the surface contaminants and oxides that would otherwise prevent bonding. The two surfaces are in intimate contact under extreme pressure enabling the bond to be formed. Inspection:

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