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ASTM A213 TP316L Stainless Steel Seamless Coiled Tube Heating Tubing in Coil

ASTM A213 TP316L Stainless Steel Seamless Coiled Tube Heating Tubing in Coil

Nazwa marki: YUHONG
Numer modelu: Zwijana rura ze stali nierdzewnej ASTM A213 TP316L
MOQ: 1000 kg
Warunki płatności: L/C, T/T
Szczegółowe informacje
Miejsce pochodzenia:
Chiny
Orzecznictwo:
ABS, GL, DNV, NK, PED, AD2000, GOST9941-81, CCS, ISO 9001-2008
Nazwa produktu:
Zwinięta rurka
Standard:
ASTM A213, ASME SA213
Tworzywo:
TP316/316L
OD:
1/4", 3/8", 1/2", 5/8", 3/4", 1", 1,1/4", itp.
Grubość:
BWG10-25
Długość:
może niestandardowe
Koniec:
Zwykły koniec, fatowy koniec
Szczegóły pakowania:
Obudowa / wiązka / wiązka żelaza z plastikową czapką
Podkreślić:
ASTM A213 TP316L Zwijana rura ze stali nierdzewnej, rura grzewcza w cewce
Opis produktu

ASTM A213 TP316L Stainless Steel Coil Tube Heat Exchanger Tubing in Coil
 
 

ASTM A213 TP316L Heating Coil Tube represents a premium, engineered component. It leverages the proven corrosion resistance and high-temperature strength of low-carbon 316L stainless steel in a seamless, coiled form to deliver reliable, efficient, and durable performance in aggressive thermal applications. Proper specification, manufacturing control, and certification validation are essential to realize its full benefits.
 
 

Why Coil a Heating Tube?

Coiling a tube dramatically increases its effective heat transfer surface area within a compact footprint. This creates a more efficient, intense, and localized heat exchange compared to a straight tube of the same length.

 
 

ASTM A213 TP316L Stainless Steel Tube Coiled Tube Chemical Composition

Grade UNS Designation C M P S Si Ch Ni Mo N Nb Ti Other
TP316L S31603 0.035 2 0.045 0.03 1 16.0–18.0 10.0–14.0 2.00–3.00 ... ... ... ...

 


ASTM A213 TP316L Stainless Steel Tube Coiled Tube Mechanical properties

Grade 
Tensile Str
(MPa) min
Yield Str
0.2% Proof
(MPa) min
Elong
(% in 50mm) min
Hardness
Rockwell B (HR B) max
Brinell (HB) max

 316L

485
170
40
95
217
 

 
 
ASTM A213 TP316L Stainless Steel Tube Coiled Tube Physical Properties

Grade
Density
(kg/m3)
Elastic Modulus
(GPa)
Mean Co-eff of Thermal Expansion (m/m/0C)
Thermal Conductivity
(W/m.K)
Specific Heat 0-1000C
(J/kg.K)
Elec Resistivity
(nΩ.m)
0-1000C
0-3150C
0-5380C
At 1000C 
At 5000C
316/L

 8000

193
15.9
16.2
17.5
16.3
21.5
500

740

 

 
Key Advantages of Coiled Tube Heaters

  • High Efficiency & Compact Design: Maximum surface area in minimal space leads to faster, more efficient heat transfer.

  • Structural Integrity & Flexibility: The coil form provides mechanical strength against thermal expansion and vibration, while remaining flexible for installation.

  • Uniform Heating & Turbulent Flow: The coiled path promotes fluid turbulence, improving heat transfer and reducing temperature gradients (for fluid-based systems).

  • Reduced Leak Points: A single, continuous coil has far fewer welds and connections than a serpentine arrangement of straight tubes, enhancing reliability.

 
 
Application

  • Heat exchangers, condensers, and boiler tubes.

  • Chemical processing, petrochemical, and refinery equipment.

  • Pharmaceutical and food-processing systems.

  • Power generation (e.g., superheaters, rebollers).

 
 

ASTM A213 TP316L Stainless Steel Seamless Coiled Tube Heating Tubing in Coil 0