Ss 310 Hat Channel
Hat channels have a raised center section and outward-flared flanges, used primarily in wall furring, panel reinforcement, and light-duty structural applications.
Minimum Order : 150 Items
Customization as per requiments
material | Steel Channel |
shape | Angle, C Channel, U Channel, H Beam, I Beam, T Beam, W Beam, Chain |
size & thickness | 2mm*20mm, 10mm*100mm |
Hat channels have a raised center section and outward-flared flanges, used primarily in wall furring, panel reinforcement, and light-duty structural applications.
Box channels have enclosed or semi-enclosed profiles, providing enhanced strength and structural rigidity. These are suitable for load-bearing assemblies, protective housings, and reinforced frameworks.
What is the SS 310 channel?
SS 310 channel is a structural component manufactured of stainless steel grade 310, a high-temperature austenitic stainless steel alloy known for its outstanding resistance to oxidation and sulfidation at high temperatures. SS 310 channels are widely utilised in various industrial applications, particularly those involving high temperatures, corrosion, and thermal cycling, such as the production of furnace components, heat treatment equipment, and other thermal processing systems.
What are the dimensions available for SS 310 channels?
SS 310 channels, also known as stainless steel 310 channels, are available in a variety of sizes to meet varied structural needs. Height ranges from 40mm to 300mm, while widths range from 20mm to 100mm. The thickness of the material can range from 3mm to 12mm, depending on the application and load-bearing requirements.
What are the benefits of using SS 310 channels?
SS 310 channels have numerous advantages, notably their resilience to high temperatures and corrosive conditions. As a result, they are widely used in industries such as furnace manufacture, heat treatment facilities, and chemical processing plants, where intense temperatures and corrosive substances are widespread. SS 310 channels have excellent oxidation resistance, maintaining structural integrity even at temperatures beyond 1000°C, making them ideal for application in harsh thermal settings.
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