Blog

What are welded B-type tubes for radiators?

2024-09-27
Welded B-Type Tubes for Radiators is a specific type of tubing used in the manufacturing of radiators for various industries. These tubes are an essential component of radiators as they provide maximum heat transfer efficiency. The B-type tubes are made from carbon steel and are created by welding a fin strip onto a base tube. The fin strip is helically wound around the tube, ensuring a strong bond between the two metals. These tubes are highly durable and are resistant to corrosion, making them ideal for use in harsh conditions.
Welded B-Type Tubes for Radiators


What are the benefits of using welded B-type tubes for radiators?

There are several benefits of using welded B-type tubes for radiators. These tubes have a larger heat transfer surface area that offers greater efficiency in heat dissipation. The helical fin strip makes the tubes more durable, which extends the life of the radiators. The tubes are also more resistant to corrosion and are capable of withstanding high pressures, making them perfect for use in extreme environments.

What industries use welded B-type tubes for radiators?

Welded B-Type Tubes for Radiators are used in a variety of industries. Some of the industries that use radiators with these tubes are the automotive, energy, industrial, and refrigeration industries. These tubes are integral to keeping engines cool in heavy-duty machinery, maintaining safe temperatures in power plants, and cooling refrigeration units in grocery stores and warehouses.

What are some common sizes for welded B-Type Tubes for Radiators?

Welded B-Type Tubes for Radiators come in a range of sizes. The size of the tube depends on the application and the industry it is being used in. Common sizes for B-Type Tubes are from 15.88mm to 25.4mm in diameter. The wall thickness can range from 1.0mm to 2.0mm. Tubes can also be customized to fit the specific needs of each industry.

Conclusion

Welded B-Type Tubes for Radiators are an essential component in a variety of industries. These tubes provide maximum heat transfer efficiency, are highly durable, and are resistant to corrosion. Industries such as automotive, energy, industrial, and refrigeration rely on these tubes to keep their equipment running smoothly.

Founded in 2004, Sinupower Heat Transfer Tubes Changshu Ltd. is a trusted manufacturer of heat exchanger tubes and welded B-Type Tubes for Radiators. We are committed to providing high-quality products and exceptional service to our clients. Contact us at robert.gao@sinupower.com for more information on how we can help your business.



Scientific Papers

Li, C., et al. (2018). "Heat transfer of finned-tube heat exchangers with winglet vortex generators." Applied Thermal Engineering 139: 118-130.

Wang, Y., et al. (2016). "A numerical study on the influence of fin waviness on the performance of finned-tube heat exchangers." International Journal of Heat and Mass Transfer 96: 83-94.

Wu, Z., et al. (2019). "Experimental study on the heat transfer enhancement of a finned tube with V-pattern winglets." International Journal of Heat and Mass Transfer 139: 542-556.

Wong, K. L., et al. (2017). "Heat transfer enhancement in spiral-corrugated tubes with dimples-cut helical fins using nanofluid." International Journal of Heat and Mass Transfer 115: 443-454.

Yang, J., et al. (2018). "Heat transfer of elliptical tube with delta-winglet vortex generators." International Journal of Heat and Mass Transfer 127: 475-485.

Lei, Y., et al. (2016). "Experimental investigation of heat transfer enhancement using ZnO nanofluid in a three-row plate-fin and tube heat exchanger." International Journal of Heat and Mass Transfer 98: 401-409.

Liu, Y., et al. (2018). "Heat transfer and flow characteristics of tube heat exchanger with chamfered helical baffles." Applied Thermal Engineering 133: 36-45.

Qian, P., et al. (2020). "Experimental and numerical investigation of staggered-fin tube bundle heat exchangers with slit delta-winglet vortex generators." International Journal of Heat and Mass Transfer 159: 120081.

Chen, Z., et al. (2019). "Heat transfer and flow characteristics of V-shaped heterotypic fins." International Journal of Heat and Mass Transfer 131: 991-1002.

Zhao, X., et al. (2018). "Numerical simulation of heat transfer and pressure drop characteristics in spiral shell-and-tube heat exchangers." Applied Thermal Engineering 140: 98-108.

Lu, H., et al. (2017). "Thermal performance analysis of North China Power Grid heat exchangers." Energy Procedia 142: 1542-1548.

Tel
E-mail
X
We use cookies to offer you a better browsing experience, analyze site traffic and personalize content. By using this site, you agree to our use of cookies. Privacy Policy
Reject Accept