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Manufacturing range:
stainless steel coil tube
stainless steel tube coil
stainless steel coil tubing
stainless steel coil pipe
stainless steel coil tube suppliers
stainless steel coil tube manufacturers
stainless steel pipe coil
Stainless steel capillary, stainless steel small tube is widely used in medical treatment, fiber-optic, pen making, electronic welding products, light cable joint, food, vintage, dairy, drink, pharmacy and biochemistry, different length can be provided according to requests
Capillary tubes with a maximum bore of 0.0158 in., available in a wide range of stainless steels. Sandvik capillary tubes are characterized by tight tolerances, and the inside surface of the tubes is free from oil, grease and other particles. This ensures, for example, an optimized and even flow of liquids and gases from the sensor to the measuring instrument.
Stainless steel Coiled tubing is available in a range of different product forms depending on the customer requirements. Licancheng sihe stainless steel material manufactures welded and seamless tube products. The standard grades are 304 304L 316L(UNS S31603) Duplex 2205 (UNS S32205 & S31803) Super Duplex 2507 (UNS S32750) Incoloy 825 (UNS N08825) Inconel 625 (UNS N06625) Other grades of stainless steel in duplex and superduplex and nickel alloy are available on request.
Diameter from 3mm (0.118’’) to 25.4mm (1.00’’) OD. Wall thickness from 0.5mm (0.020’’) to 3mm (0.118’’).Tubing can be supplied in the annealed or cold worked stainless steel control line pipe condition.
304 Stainless Steel Chemical Composition
Grade |
C |
Mn |
Si |
P |
S |
Cr |
Mo |
Ni |
N |
|
304 |
min. |
– |
– |
– |
– |
– |
18.0 |
– |
8.0 |
– |
max. |
0.08 |
2.0 |
0.75 |
0.045 |
0.030 |
20.0 |
10.5 |
0.10 |
Stainless Steel 304 Mechanical Properties
Grade |
Tensile Strength (MPa) min |
Yield Strength 0.2% Proof (MPa) min |
Elongation (% in 50mm) min |
Hardness |
|
Rockwell B (HR B) max |
Brinell (HB) max |
||||
304 |
515 |
205 |
40 |
92 |
201 |
Stainless Steel 304 Physical Properties
Grade |
Density (kg/m3) |
Elastic Modulus (GPa) |
Mean Coefficient of Thermal Expansion (m/m/0C) |
Thermal Conductivity (W/m.K) |
Specific Heat 0-1000C (J/kg.K) |
Electrical Resistivity (n.m) |
|||
0-1000C |
0-3150C |
0-5380C |
at 1000C |
at 5000C |
|||||
304 |
8000 |
193 |
17.2 |
17.8 |
18.4 |
16.2 |
21.5 |
500 |
720 |
Electric Properties
Properties |
Conditions |
||
T (°C) |
Treatment |
||
Electric Resistivity (10-9W-m) | 720 |
25 |
Stainless Steel 304 Equivalent
Equivalent Grades for 304 Stainless Steel
Grade |
UNS No |
Old British |
Euronorm |
Swedish SS |
Japanese JIS |
GOST |
||
BS |
En |
No |
Name |
|||||
SS 304 |
S30400 |
304S31 |
58E |
1.4301 |
X5CrNi18-10 |
2332 |
SUS 304 |
08Х18Н10 |
Specification
Brand | Liaocheng Sihe Stainless STEEL |
Thickness | 0.1-2.0mm |
Diameter | 0.3-20mm (tolerance: ±0.01mm) |
Stainless Grade | 201,202,304,304L,316L,317L,321,310s,254mso,904L,2205,625 etc. |
Surface Finish | inside and outside are both bright annealing, cleaning, and seamless, no leaks. |
Standard | ASTM A269-2002.JIS G4305/ GB/T 12770-2002GB/T12771-2002 |
Length | 200-1500m per coil, or As customer required |
Stock size | 6*1mm ,8*0.5mm ,8*0.6mm,8*0.8mm, 8*0.9mm,8*1mm, 9.5*1mm,10*1mm,ect.. |
Certificate | ISO&BV |
Packing way | Woven bags,plastic bags etc. |
Application range | widely used in food industry, beverage equipment, beer machine, heat exchanger, milk/ water supply system, medical equipmentsolar energy, medical equipment, aviation, aerospace, communications, oil and other industries |
Note | OEM / ODM / Buyer Label accepted. |
Size of Stainless steel Coil Tube |
||||||||||||||||
ITEM |
Grade |
Size |
Pressure |
Length |
||||||||||||
1 |
316L、304L、304 alloy 625 825 2205 2507 |
1/8″×0.025″ |
3200 |
500-35000 |
||||||||||||
2 |
316L、304L、304 alloy 625 825 2205 2507 |
1/8″×0.035″ |
3200 |
500-35000 |
||||||||||||
3 |
316L、304L、304 alloy 625 825 2205 2507 |
1/4″×0.035″ |
2000 |
500-35000 |
||||||||||||
4 |
316L、304L、304 alloy 625 825 2205 2507 |
1/4″×0.049″ |
2000 |
500-35000 |
||||||||||||
5 |
316L、304L、304 alloy 625 825 2205 2507 |
3/8″×0.035″ |
1500 |
500-35000 |
||||||||||||
6 |
316L、304L、304 alloy 625 825 2205 2507 |
3/8″×0.049″ |
1500 |
500-35000 |
||||||||||||
7 |
316L、304L、304 alloy 625 825 2205 2507 |
1/2″×0.049″ |
1000 |
500-35000 |
||||||||||||
8 |
316L、304L、304 alloy 625 825 2205 2507 |
1/2″×0.065″ |
1000 |
500-35000 |
||||||||||||
9 |
316L、304L、304 alloy 625 825 2205 2507 |
φ3mm×0.7mm |
3200 |
500-35000 |
||||||||||||
10 |
316L、304L、304 alloy 625 825 2205 2507 |
φ3mm×0.9mm |
3200 |
500-35000 |
||||||||||||
11 |
316L、304L、304 alloy 625 825 2205 2507 |
φ4mm×0.9mm |
3000 |
500-35000 |
||||||||||||
12 |
316L、304L、304 alloy 625 825 2205 2507 |
φ4mm×1.1mm |
3000 |
500-35000 |
||||||||||||
13 |
316L、304L、304 alloy 625 825 2205 2507 |
φ6mm×0.9mm |
2000 |
500-35000 |
||||||||||||
14 |
316L、304L、304 alloy 625 825 2205 2507 |
φ6mm×1.1mm |
2000 |
500-35000 |
||||||||||||
15 |
316L、304L、304 alloy 625 825 2205 2507 |
φ8mm×1mm |
1800 |
500-35000 |
||||||||||||
16 |
316L、304L、304 alloy 625 825 2205 2507 |
φ8mm×1.2mm |
1800 |
500-35000 |
||||||||||||
17 |
316L、304L、304 alloy 625 825 2205 2507 |
φ10mm×1mm |
1500 |
500-35000 |
||||||||||||
18 |
316L、304L、304 alloy 625 825 2205 2507 |
φ10mm×1.2mm |
1500 |
500-35000 |
||||||||||||
19 |
316L、304L、304 alloy 625 825 2205 2507 |
φ10mm×2mm |
500 |
500-35000 |
||||||||||||
20 |
316L、304L、304 alloy 625 825 2205 2507 |
φ12mm×1.5mm |
500 |
500-35000 |
||||||||||||
Pressure tables | ||||||||||||||||
Selection of the appropriate material for any given control or chemical injection line is subject to the prevailing operational and site conditions. In order to assist in the selection, the following tables provide internal pressure ratings and the adjustments factors for a range of common grades and sizes of seamless and laser welded stainless tubing. | ||||||||||||||||
Maximum pressure (P) for TP 316L at 100°F (38°C)1) | ||||||||||||||||
Please refer to grade and product form adjustment factors below. | ||||||||||||||||
Outside diameter, in. | Wall thickness, in. | Working pressure2) | Burst pressure2) | Collapse pressure4) | ||||||||||||
psi (MPa) | psi (MPa) | psi (MPa) | ||||||||||||||
1/4 | 0.035 | 6,600 (46) | 22,470 (155) | 6,600 (46) | ||||||||||||
1/4 | 0.049 | 9,260 (64) | 27,400 (189) | 8,710 (60) | ||||||||||||
1/4 | 0.065 | 12,280 (85) | 34,640 (239) | 10,750 (74) | ||||||||||||
3/8 | 0.035 | 4,410 (30) | 19,160 (132) | 4,610 (32) | ||||||||||||
3/8 | 0.049 | 6,170 (43) | 21,750 (150) | 6,220 (43) | ||||||||||||
3/8 | 0.065 | 8,190 (56) | 25,260 (174) | 7,900 (54) | ||||||||||||
3/8 | 0.083 | 10,450 (72) | 30,050 (207) | 9,570 (66) | ||||||||||||
1/2 | 0.049 | 4,630 (32) | 19,460 (134) | 4,820 (33) | ||||||||||||
1/2 | 0.065 | 6,140 (42) | 21,700 (150) | 6,200 (43) | ||||||||||||
1/2 | 0.083 | 7,840 (54) | 24,600 (170) | 7,620 (53) | ||||||||||||
5/8 | 0.049 | 3,700 (26) | 18,230 (126) | 3,930 (27) | ||||||||||||
5/8 | 0.065 | 4,900 (34) | 19,860 (137) | 5,090 (35) | ||||||||||||
5/8 | 0.083 | 6,270 (43) | 26,910 (151) | 6,310 (44) | ||||||||||||
3/4 | 0.049 | 3,080 (21) | 17,470 (120) | 3,320 (23) | ||||||||||||
3/4 | 0.065 | 4,090 (28) | 18,740 (129) | 4,310 (30) | ||||||||||||
3/4 | 0.083 | 5,220 (36) | 20,310 (140) | 5,380 (37) | ||||||||||||
1) Estimates only. Actual pressures should be calculated considering all stress factors in the system. | ||||||||||||||||
2) Based on calculations from API 5C3, using a wall tolerance of +/-10% | ||||||||||||||||
3) Based on ultimate strength burst calculations from API 5C3 | ||||||||||||||||
4) Based on yield strength collapse calculations from API 5C3 | ||||||||||||||||
Adjustment factors for working pressure limits1) | ||||||||||||||||
Pw = reference working pressure rating for TP 316L at 100°F (38°C). To determine working pressure for grade/temperature combination, multiply Pw by adjustment factor. | ||||||||||||||||
Grade | 100°F | 200°F | 300°F | 400°F | ||||||||||||
(38°C) | (93°C) | (149°C) | (204°C) | |||||||||||||
TP 316L, seamless | 1 | 0.87 | 0.7 | 0.63 | ||||||||||||
TP 316L, welded | 0.85 | 0.74 | 0.6 | 0.54 | ||||||||||||
Alloy 825, seamless | 1.33 | 1.17 | 1.1 | 1.03 | ||||||||||||
Alloy 825, welded | 1.13 | 1.99 | 1.94 | 0.88 | ||||||||||||
1) Adjustment factors based on allowable stress in ASME. | ||||||||||||||||
Adjustment factors for burst pressure limits1) | ||||||||||||||||
Pb = reference burst pressure for TP 316L at 100°F. To determine burst pressure for grade/temperature combination, multiply Pb by adjustment factor. | ||||||||||||||||
Grade | 100°F | 200°F | 300°F | 400°F | ||||||||||||
(38°C) | (93°C) | (149°C) | (204°C) | |||||||||||||
TP 316L, seamless | 1 | 0.93 | 0.87 | 0.8 | ||||||||||||
TP 316L, welded | 0.85 | 0.79 | 0.74 | 0.68 | ||||||||||||
Alloy 825, seamless | 1.13 | 1.07 | 1 | 0.87 | ||||||||||||
Alloy 825, welded | 0.96 | 0.91 | 0.85 | 0.74 | ||||||||||||
1) Adjustment factors based on ultimate strength in ASME. |
U.S.A. |
GERMANY |
GERMANY |
FRANCE |
JAPAN |
ITALY |
SWEDEN |
U.K. |
E.U. |
SPAIN |
RUSSIA |
AISI |
DIN 17006 |
W.N. 17007 |
AFNOR |
JIS |
UNI |
SIS |
BSI |
EURONORM |
||
201 |
SUS 201 |
|||||||||
301 |
X 12 CrNi 17 7 |
1.4310 |
Z 12 CN 17-07 |
SUS 301 |
X 12 CrNi 1707 |
23 31 |
301S21 |
X 12 CrNi 17 7 |
X 12 CrNi 17-07 |
|
302 |
X 5 CrNi 18 7 |
1.4319 |
Z 10 CN 18-09 |
SUS 302 |
X 10 CrNi 1809 |
23 31 |
302S25 |
X 10 CrNi 18 9 |
X 10 CrNi 18-09 |
12KH18N9 |
303 |
X 10 CrNiS 18 9 |
1.4305 |
Z 10 CNF 18-09 |
SUS 303 |
X 10 CrNiS 1809 |
23 46 |
303S21 |
X 10 CrNiS 18 9 |
X 10 CrNiS 18-09 |
|
303 Se |
Z 10 CNF 18-09 |
SUS 303 Se |
X 10 CrNiS 1809 |
303S41 |
X 10 CrNiS 18-09 |
12KH18N10E |
||||
304 |
X 5 CrNi 18 10 X 5 CrNi 18 12 |
1.4301 1.4303 |
Z 6 CN 18-09 |
SUS 304 |
X 5 CrNi 1810 |
23 32 |
304S15 304S16 |
X 6 CrNi 18 10 |
X 6 CrNi 19-10 |
08KH18N10 06KH18N11 |
304 N |
SUS 304N1 |
X 5 CrNiN 1810 |
||||||||
304 H |
SUS F 304H |
X 8 CrNi 1910 |
X 6 CrNi 19-10 |
|||||||
304 L |
X 2 CrNi 18 11 |
1.4306 |
Z 2 CN 18-10 |
SUS 304L |
X 2 CrNi 1911 |
23 52 |
304S11 |
X 3 CrNi 18 10 |
X 2 CrNi 19-10 |
03KH18N11 |
X 2 CrNiN 18 10 |
1.4311 |
Z 2 CN 18-10-Az |
SUS 304LN |
X 2 CrNiN 1811 |
23 71 |
|||||
305 |
Z 8 CN 18-12 |
SUS 305 |
X 8 CrNi 1812 |
23 33 |
305S19 |
X 8 CrNi 18 12 |
X 8 CrNi 18-12 |
|||
Z 6 CNU 18-10 |
SUS XM7 |
X 6 CrNiCu 18 10 4 Kd |
||||||||
309 |
X 15 CrNiS 20 12 |
1.4828 |
Z 15 CN 24-13 |
SUH 309 |
X 16 CrNi 2314 |
309S24 |
X 15 CrNi 23 13 |
|||
309 S |
SUS 309S |
X 6 CrNi 2314 |
X 6 CrNi 22 13 |
|||||||
310 |
X 12 CrNi 25 21 |
1.4845 |
SUH 310 |
X 22 CrNi 2520 |
310S24 |
20KH23N18 |
||||
310 S |
X 12 CrNi 25 20 |
1.4842 |
Z 12 CN 25-20 |
SUS 310S |
X 5 CrNi 2520 |
23 61 |
X 6 CrNi 25 20 |
10KH23N18 |
||
314 |
X 15 CrNiSi 25 20 |
1.4841 |
Z 12 CNS 25-20 |
X 16 CrNiSi 2520 |
X 15 CrNiSi 25 20 |
20KH25N20S2 |
||||
316 |
X 5 CrNiMo 17 12 2 |
1.4401 |
Z 6 CND 17-11 |
SUS 316 |
X 5 CrNiMo 1712 |
23 47 |
316S31 |
X 6 CrNiMo 17 12 2 |
X 6 CrNiMo 17-12-03 |
|
316 |
X 5 CrNiMo 17 13 3 |
1.4436 |
Z 6 CND 17-12 |
SUS 316 |
X 5 CrNiMo 1713 |
23 43 |
316S33 |
X 6 CrNiMo 17 13 3 |
X 6 CrNiMo 17-12-03 |
|
316 F |
X 12 CrNiMoS 18 11 |
1.4427 |
||||||||
316 N |
SUS 316N |
|||||||||
316 H |
SUS F 316H |
X 8 CrNiMo 1712 |
X 5 CrNiMo 17-12 |
|||||||
316 H |
X 8 CrNiMo 1713 |
X 6 CrNiMo 17-12-03 |
||||||||
316 L |
X 2 CrNiMo 17 13 2 |
1.4404 |
Z 2 CND 17-12 |
SUS 316L |
X 2 CrNiMo 1712 |
23 48 |
316S11 |
X 3 CrNiMo 17 12 2 |
X 2 CrNiMo 17-12-03 |
03KH17N14M2 |
X 2 CrNiMoN 17 12 2 |
1.4406 |
Z 2 CND 17-12-Az |
SUS 316LN |
X 2 CrNiMoN 1712 |
||||||
316 L |
X 2 CrNiMo 18 14 3 |
1.4435 |
Z 2 CND 17-13 |
X 2 CrNiMo 1713 |
23 53 |
316S13 |
X 3 CrNiMo 17 13 3 |
X 2 CrNiMo 17-12-03 |
03KH16N15M3 |
|
X 2 CrNiMoN 17 13 3 |
1.4429 |
Z 2 CND 17-13-Az |
X 2 CrNiMoN 1713 |
23 75 |
||||||
X 6 CrNiMoTi 17 12 2 |
1.4571 |
Z6 CNDT 17-12 |
X 6 CrNiMoTi 1712 |
23 50 |
320S31 |
X 6 CrNiMoTi 17 12 2 |
X 6 CrNiMoTi 17-12-03 |
08KH17N13M2T 10KH17N13M2T |
||
X 10 CrNiMoTi 18 12 |
1.4573 |
X 6 CrNiMoTi 1713 |
320S33 |
X 6 CrNiMoTI 17 13 3 |
X 6 CrNiMoTi 17-12-03 |
08KH17N13M2T 10KH17N13M2T |
||||
X 6 CrNiMoNb 17 12 2 |
1.4580 |
Z 6 CNDNb 17-12 |
X 6 CrNiMoNb 1712 |
X 6 CrNiMoNb 17 12 2 |
08KH16N13M2B |
|||||
X 10 CrNiMoNb 18 12 |
1.4583 |
X 6 CrNiMoNb 1713 |
X 6 CrNiMoNb 17 13 3 |
09KH16N15M3B |
||||||
317 |
SUS 317 |
X 5 CrNiMo 1815 |
23 66 |
317S16 |
||||||
317 L |
X 2 CrNiMo 18 16 4 |
1.4438 |
Z 2 CND 19-15 |
SUS 317L |
X 2 CrNiMo 1815 |
23 67 |
317S12 |
X 3 CrNiMo 18 16 4 |
||
317 L |
X 2 CrNiMo 18 16 4 |
1.4438 |
Z 2 CND 19-15 |
SUS 317L |
X 2 CrNiMo 1816 |
23 67 |
317S12 |
X 3 CrNiMo 18 16 4 |
||
330 |
X 12 NiCrSi 36 16 |
1.4864 |
Z 12NCS 35-16 |
SUH 330 |
||||||
321 |
X 6 CrNiTi 18 10 X 12 CrNiTi 18 9 |
1.4541 1.4878 |
Z 6 CNT 18-10 |
SUS 321 |
X 6 CrNiTi 1811 |
23 37 |
321S31 |
X 6 CrNiTi 18 10 |
X 6 CrNiTi 18-11 |
08KH18N10T |
321 H |
SUS 321H |
X 8 CrNiTi 1811 |
321S20 |
X 7 CrNiTi 18-11 |
12KH18N10T |
|||||
329 |
X 8 CrNiMo 27 5 |
1.4460 |
SUS 329J1 |
23 24 |
||||||
347 |
X 6 CrNiNb 18 10 |
1.4550 |
Z 6 CNNb 18-10 |
SUS 347 |
X 6 CrNiNb 1811 |
23 38 |
347S31 |
X 6 CrNiNb 18 10 |
X 6 CrNiNb 18-11 |
08KH18N12B |
347 H |
SUS F 347H |
X 8 CrNiNb 1811 |
X 7 CrNiNb 18-11 |
|||||||
904L |
1.4939 |
Z 12 CNDV 12-02 |
||||||||
X 20 CrNiSi 25 4 |
1.4821 |
|||||||||
UNS31803 |
X 2 CrNiMoN 22 5 |
1.4462 |
||||||||
UNS32760 |
X 3 CrNiMoN 25 7 |
1.4501 |
Z 3 CND 25-06Az |
|||||||
403 |
X 6 Cr 13 X 10 Cr 13 X 15 Cr 13 |
1.4000 1.4006 1.4024 |
Z 12 C 13 |
SUS 403 |
X 12 Cr 13 |
23 02 |
403S17 |
X 10 Cr 13 X 12 Cr 13 |
X 6 Cr 13 |
12Kh13 |
405 |
X 6 CrAl 13 |
1.4002 |
Z 6 CA 13 |
SUS 405 |
X 6 CrAl 13 |
405S17 |
X 6 CrAl 13 |
X 6 CrAl 13 |
||
X 10 CrAl 7 |
1.4713 |
Z 8 CA 7 |
X 10 CrAl 7 |
|||||||
X 10 CrAl 13 |
1.4724 |
X 10 CrAl 12 |
10Kh13SYu |
|||||||
X 10 CrAl 18 |
1.4742 |
X 10 CrSiAl 18 |
15Kh18SYu |
|||||||
409 |
X 6 CrTi 12 |
1.4512 |
Z 6 CT 12 |
SUH 409 |
X 6 CrTi 12 |
409S19 |
X 5 CrTi 12 |
|||
X 2 CrTi 12 |
||||||||||
410 |
X 6 Cr 13 X 10 Cr 13 X 15 Cr 13 |
1.4000 1.4006 1.4024 |
Z 10 C 13 Z 12 C 13 |
SUS 410 |
X 12 Cr 13 |
23 02 |
410S21 |
X 12 Cr 13 |
X 12 Cr 13 |
12Kh13 |
410 S |
X 6 Cr 13 |
1.4000 |
Z 6 C 13 |
SUS 410S |
X 6 Cr 13 |
23 01 |
403S17 |
X 6 Cr 13 |
08Kh13 |
|
414 |
Factory
Quality advantage:
The quality of our products for the control line in oil and gas sector is assured not just during the controlled manufacturing process but also by way of finished product testing. Typical tests include:
1.Non-destructive tests
2. Hydrostatic tests
3.Surface finish controls
4. Dimensional accuracy measurements
5.Flare and coning tests
6. Mechanical and chemical property testing
Application caillary tube
1) Medical device industry
2) temperature-guided industrial temperature control, sensors used pipe, tube thermometer
3) Pens care industry core tube
4) micro-tube antenna, various types of small precision stainless steel antenna
5) With a variety of electronic small-diameter Stainless steel capillary
6) Jewelry needle punch
7) Watches, picture
8) Car antenna tube, bar antennas using tubes, antenna tube
9) Laser engraving equipment to use stainless steel tube
10) Fishing gear, accessories, Yugan out with possession of
11) Diet with stainless steel capillary
12) all types of mobile phone stylus a computer stylus
13) Heating pipe industry, oil industry
14) Printers, silent box needle
15) Pull a double-melt stainless steel tube used in window-coupled
16) A variety of industrial small diameter Precision stainless steel tubes
17) Precision dispensing with stainless steel needles
18) Microphone, headphones and microphone to use stainless steel tube, and so on