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"welded steel tube"

qualità ASME tubi laminati a caldo in acciaio al carbonio tubo di caldaia senza cuciture nella stazione di impianto fabbrica

ASME tubi laminati a caldo in acciaio al carbonio tubo di caldaia senza cuciture nella stazione di impianto

Product Description The steel pipes are divided into two categories: seamless steel pipes and welded steel pipes (seamed pipes). According to the cross-sectional shape, it can be divided into round pipe and special-shaped pipe, which is widely used in round steel pipes, but there are also some square, rectangular, semicircular, hexagonal, equilateral triangle, octagonal and other special-shaped steel pipes. Generally, the use temperature of boiler tubes is below 350 °C, and

qualità Tubo di acciaio senza cuciture per caldaie con elevata resistenza e resistenza alla pressione fabbrica

Tubo di acciaio senza cuciture per caldaie con elevata resistenza e resistenza alla pressione

Product Description The boiler seamless steel tube is a high-performance, multi-purpose seamless steel tube with excellent high-temperature strength, corrosion resistance and anti-wear performance, which is widely used in various industries and fields. The seamless pipes are made by billets through multiple cold and hot rolling processes, and there are no welds, so they have high strength and pressure resistance, and they are not prone to leakage problems. Common seamless

qualità Tubo in acciaio al carbonio senza cuciture con buona conduttività termica fabbrica

Tubo in acciaio al carbonio senza cuciture con buona conduttività termica

Product Description The seamless steel pipe is made of perforated whole round steel, and there is no weld on the surface, which is called seamless steel pipe. It has high strength, corrosion resistance and good thermal conductivity. Due to its excellent performance, the seamless steel pipes are widely used in various fields such as petroleum, chemical industry, electric power, and construction. The stainless steel seamless pipe has good corrosion resistance and is suitable

qualità Tubi di caldaia in acciaio di alta qualità verniciati in cabon per la parete della membrana della caldaia fabbrica

Tubi di caldaia in acciaio di alta qualità verniciati in cabon per la parete della membrana della caldaia

Product Description Product Ttem Grade Chemical composition C Si Mn P.≤ S.≤ Cr Ni others Carbon steel 1 10 0.07/0.13 0.17/0.37 0.35/0.65 0.03 0.03 ≤0.15 ≤0.30 Cu≤0.25 2 20 0.17/0.23 0.17/0.37 0.35/0.65 0.03 0.03 ≤0.25 ≤0.30 Cu≤0.25 3 A179 0.06/0.18 - 0.27/0.63 0.03 0.03 - - - 4 A192 0.06/0.18 ≤0.25 0.27/0.63 0.03 0.03 - - - Boiler steel pipe is a kind of steel pipe made of boiler-grade materials, among which, carbon steel pipe can be divided into seamless steel pipe, straight

qualità Tubi per caldaie in acciaio carbonio di alta qualità con eccellente resistenza alla corrosione fabbrica

Tubi per caldaie in acciaio carbonio di alta qualità con eccellente resistenza alla corrosione

Product Description Chemical&Mechanical parameters Grade C Mn Si Cr Mo S P 20G 0.17~0.23 0.35~0.65 0.17~0.37 --- --- ≤0.020 ≤0.025 20MnG 0.17~0.23 0.70~1.00 0.17~0.37 --- --- ≤0.020 ≤0.025 25MnG 0.22~0.29 0.70~1.00 0.17~0.37 --- --- ≤0.020 ≤0.025 12CrMoG 0.08~0.15 0.40~0.70 0.17~0.37 0.40~0.70 0.40~0.55 ≤0.020 ≤0.025 15CrMoG 0.12~0.18 0.40~0.70 0.17~0.37 0.80~1.10 0.40~0.55 ≤0.020 ≤0.025 SA-210A1 ≤0.27 ≤0.93 ≥0.10 --- --- ≤0.035 ≤0.035 SA-210C ≤0.35 0.29~1.06 ≥0.10 --- --- ≤0

qualità ISO9001 Caldaia in acciaio al carbonio tubo H Fin per economizzatore tubulare a pinne di tipo H fabbrica

ISO9001 Caldaia in acciaio al carbonio tubo H Fin per economizzatore tubulare a pinne di tipo H

Product Description H-type finned tubular economizer technology is a high-efficiency heat exchange economizer assembled by using H-type finned tubes (also known as H-type finned tubes, ribbed tubes, and sheet tubes). [1] Wear resistance: Wear resistance, can improve the wear life by 3-4 times. [2] Less ash accumulation: The reasons why H-type fins do not accumulate dust are: ① H-type fins are welded on both sides of the pipe that are not easy to accumulate dust, and the air

qualità Elemento di scambio termico efficiente della caldaia a forma di pinna H tubo con pinna rettangolare fabbrica

Elemento di scambio termico efficiente della caldaia a forma di pinna H tubo con pinna rettangolare

Product Description The heat exchange element H-shaped fin tube is also called H-shaped rib tube, which is mainly to weld together two pieces of steel sheet with arc in the middle symmetrically and the plain tube to form a fin (rib). The front shape is quite similar to the letter "H", so it is called H-shaped fin tube. The two fins of H-shaped fin tube are rectangular, approximately square, and its side length is about 2 times the diameter of the light tube, which belongs to

qualità Tubo a pinna a spirale in acciaio inossidabile di acciaio carbonio utilizzato nelle parti a pressione della caldaia fabbrica

Tubo a pinna a spirale in acciaio inossidabile di acciaio carbonio utilizzato nelle parti a pressione della caldaia

Product Description The serrated fin tube is an efficient and practical thermal energy conversion device. With its advantages of high efficiency, durability and easy installation, the serrated finned tube is widely used in various industrial production and civil fields. The unique design of the serrated finned tube, with its fins arranged in a zigzag pattern, not only increases the heat dissipation area, but also allows the heat sink to produce greater disturbance in the air

qualità SA213/ASTM Caldaia in acciaio inossidabile tubo a pinna a spirale serrato ad alta efficienza fabbrica

SA213/ASTM Caldaia in acciaio inossidabile tubo a pinna a spirale serrato ad alta efficienza

Product Description As a high-efficiency heat transfer element, the serrated spiral fin tube has the advantages of high heat transfer efficiency, compact structure, high reliability and wide application range. The specific advantages are as follows: 1). High heat transfer efficiency: Because the fins increase the surface area of the tube, the heat transfer speed is faster and the heat transfer efficiency is higher. 2). Compact structure: The compact structure of the extruded

qualità Ottima conduttività termica tubo di caldaia in acciaio al carbonio per l'industria elettrica fabbrica

Ottima conduttività termica tubo di caldaia in acciaio al carbonio per l'industria elettrica

Product Description The spiral steel fin tube is a high-efficiency heat transfer element made of high-quality steel with excellent corrosion and wear resistance. Its unique fin design and spiral structure can increase the heat exchange area and improve the heat transfer efficiency. It is widely used in petroleum, chemical, electric power and other industrial fields, with excellent thermal conductivity and mechanical properties, and it can withstand the action of high pressure

qualità Tubo a pinna a spirale in acciaio al carbonio per una maggiore efficienza di trasferimento di calore negli scambiatori di calore fabbrica

Tubo a pinna a spirale in acciaio al carbonio per una maggiore efficienza di trasferimento di calore negli scambiatori di calore

Product Description The spiral fin tube is a heat transfer element commonly used in heat exchangers, and its structure is characterized by a layer of spiral fins wrapped around the tube, which can increase the surface area of the tube, thereby improving the heat transfer efficiency. At the same time, the spacing between the fins is adjustable, which can be adjusted according to different process requirements to achieve the best heat exchange effect. In the manufacturing

qualità Tubo a pinne personalizzato con pinne a spirale per una migliore economia e affidabilità operativa fabbrica

Tubo a pinne personalizzato con pinne a spirale per una migliore economia e affidabilità operativa

Customized Finned Tube with Spiral Fins for Improved Economy and Operational Reliability Product Description The spiral fin tube is a highly efficient heat transfer element characterized by a significant increase in the heat transfer area by adding spiral fins to the base tube, thereby increasing the heat transfer efficiency. This design not only strengthens the heat transfer process, reduces flow resistance, but also reduces metal consumption, resulting in improved economy