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Shaanxi Ruisen Metallic Composite Material Co., Ltd
Shaanxi Ruisen Metallic Composite Material Co., Ltd
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Explosive Welding Bimetallic Transition Inserts Heat Resistant For Shipbuilding

Product Details

Place of Origin: CHINA

Brand Name: RUISEN

Payment & Shipping Terms

Delivery Time: 60-90DAYS

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Specifications
Highlight:

Heat Resistant Bimetallic Transition Inserts

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Shipbuilding Bimetallic Transition Inserts

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Heat Resistant Transition Joint

Material:
Clad Strip
Application:
Shipbuilding
Material:
Metal(Aluminum、copper)
Material:
Aluminium, Carbon Steel, Copper, Titanium
Application:
Engineering For Oil&gas, Chemical Industry
Process:
Explosive Bonding And Hot Rolled
Material:
Clad Strip
Application:
Shipbuilding
Material:
Metal(Aluminum、copper)
Material:
Aluminium, Carbon Steel, Copper, Titanium
Application:
Engineering For Oil&gas, Chemical Industry
Process:
Explosive Bonding And Hot Rolled
Description
Explosive Welding Bimetallic Transition Inserts Heat Resistant For Shipbuilding

Aluminum Steel Explosive Welding Transtion Joints For Shipbuilding

Bimetallic or Triametallic transition joints accordingly.

- Steel (Q235B, 316L, 304) + Aluminum (AL1050 or 1060) + Aluminum alloy 5083

- Steel (Q235B, 316L, 304) + Aluminum (AL1050 or 1060) + Aluminum alloy 5083

Total thickness can be from 10 mm till 40 mm

Explosive Welding Bimetallic Transition Inserts Heat Resistant For Shipbuilding 0

 

In modern shipbuilding, especially high-speed ship construction, it’s normal to use aluminum structures with a lower density to reduce the weight and increase ship speed. Considering the strength, carrying capacity, cost and durability, the main hull structure is usually made of steel. Aluminum alloy only used in superstructure to reduce weight and to make lower a center of gravity. Therefore, the reliable bonding between aluminum alloy parts and steel parts is a very important matter.

 

The benefit of the last one combination is the ability for the interface to be heated up to 500 °C during fusion welding to ship structure. Meanwhile the first one combination interface can be heated only up to 300 °C

 

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