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01-01-Fine Seamless & Welded Tube Pipe - juya-tech. · PDF file1.4529 B649 6MO 0.02 Ma x 2.0 Ma x 24.0 ~ ... Austenitic stainless steel intended for use under se ... g resistance equivalent

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Page 1: 01-01-Fine Seamless & Welded Tube Pipe - juya-tech. · PDF file1.4529 B649 6MO 0.02 Ma x 2.0 Ma x 24.0 ~ ... Austenitic stainless steel intended for use under se ... g resistance equivalent

Rev. 01. 2013.09.02

Page 2: 01-01-Fine Seamless & Welded Tube Pipe - juya-tech. · PDF file1.4529 B649 6MO 0.02 Ma x 2.0 Ma x 24.0 ~ ... Austenitic stainless steel intended for use under se ... g resistance equivalent

History of Tube Fitting

◦ After WW2, the industry demanded higher pressures, higher temperatures and increased vibration & thermal cycling.

◦ The standard type of fittings could not meet these demands.

◦ In 1947, Mr. Cullen Crawford designed and commenced Swagelok fittings with twin ferrules, which met the requirements.

◦ No torque is transmitted from the fitting to the tubing, which had left the tubing in a weakened condition with the other fittings.

◦ Hoke (Gyrolok-Different Design with Swagelok) and Parker (CPI-Single Ferrule) entered the market in the 1960’s.

◦ Swagelok twin ferrules design was patented until 1981.

◦ In the 1980’s, Hamlet (Let-Lok), Parker (A-Lok) entered the market with the same design as Swagelok.

◦ Now, there are so many different brands of Tube Fittings in the market. USA : VALEX , SWE:SANDVIK ,ISRAEL :EGMO , Germany : DOCWEILOR,Japan : KUZE SUMIKIN , Korea : MASCO, C&K

1. Uni-Lok Range 1. Tube/Pipe

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1. Uni-Lok Range

How to order

C&K Tubing

Deforming Method

Tubing Shape

Appea- rance O.D. Size

Wall Thickness

Length per Piece

Material NACE Finish Level

Method Designator

Deforming Method

Seamless

Welded

Semi-Seamless

S

W

HW

Method Designator

Tube Shape

Straight

Coil

S

C

Appearance Designator

Outer Appearance

Mat, Gary

Gloss, Bright

M

B

Wall Thickness (Inch)

Designator

Tube OD (mm)

0.028

028

0.71

0.035

035

0.89

0.049

049

1.24

0.065

065

1.65

0.083

083

2.11

0.095

095

2.41

0.109

109

2.77

Wall Thickness

Wall Thickness (mm)

Designator

0.8

080

1.0

100

1.2

120

1.5

150

2.0

200

2.2

220

2.5

250

Length Designator

Length per Piece

6M - AP

4M – BA or EP

L06

L04

Finish Level

O.D. Size, Material, NACE

The designators of O.D. Size, Material and NACE are the same as tube fittings. But for O.D. Size, add T to the end of designator of O.D. as shown above.

2. Tube/Pipe

Finish Level Designator

Annealed & Pickled AP (Ra≤5.2µm)

MP(Ra≤0.6µm)

Electro Polish EP(Ra≤0.25µm)

Bright Annealed BA(Ra≤0.5µm)

Mechanical Polish

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1. Uni-Lok Range Training Manual

Applications of Tube Fitting ◦ Applicable for all kinds of fluids - water, steam, gas, air, chemical, oil ◦ Instrumentation1) line ◦ Piping2) line – air, gas, steam ◦ System or equipment – analytical, metering, sampling, compressor, SCADA, inje ction, chiller, scrubber ◦ Pressure vessel or tank ◦ Control valve

1) Instrument – a measurement and control of process variables within a production or manufacturing area 2) Piping - a system of pipes used to convey fluids (liquids and gases) from one location to another The in-line components for both instrumentation and piping, known as fittings, valves, and other devices, typically sense and control the pressure, flow rate, temperature, level of the transmitted fluid.

3. Tube/Pipe

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1. Uni-Lok Range Training Manual

Material Type – 1/2

Designator

Material Chemical Composition

Alloy

316/316L

Dual Grade

UNS DIN

S31600/3

1.4404

ASTM

A479 A182 316

C

0.08 0.03

5 Max

Mn

2.0 Max

Ni

10.0 ~

14.0

Cr

16.0 ~

18.0

Fe

bal

Mo

2.0 ~3.0

Ti Nb N Al Others

P 0.045 S 0.030 Si 1.000

Features

Standard corrosion-resistant materials available to be used for; oil industry, chemical and petrochemical industry, power plants, refineries, automotive, paper mills, construction and engineered products.

316Ti S31635 1.4571

A479 A182 316TI

0.08 Ma

x

2.0 Max

10.0 ~

14.0

16.0 ~

18.0 bal

2.0 ~3.0

5x(C+N)-0.7

0.10 Max

P 0.045 S 0.030 Si 1.000

Austenitic stainless steel with addition of 0.5% Ti to improve alloy stability at temperatures above 800°C.

Alloy 825

Incoloy

N07718 2.4858

B425 B564

AL825

0.05 Ma

x

1.0 Ma

x

38.0 ~

46.0

19.5 ~

23.5

22.0 Min

2.5 ~3.5

0.6~

1.2

0.2 Max

Cu 1.5~3.0

Nickel-iron-chromium alloy with additions of molybdenum and copper. It has excellent resistance to both reducing and oxidizing acids, to stress-corrosion cracking, and to localise attack such as pitting and crevice corrosion. The alloy are especially resistant to sulphuric and phosphoric acids.

Alloy 2205

Duplex

S31803 1.4462

A479 A182

AL2205

0.03 Ma

x

2.0 Ma

x

4.5 ~6.5

21.0 ~

23.0 bal

2.5 ~3.5

0.08 ~0.20

P 0.030 S 0.020 Si 1.000

High mechanical strength and good resistance to localise cracking & chloride stress corrosion.

Alloy 2507

Super Duplex

S32750 1.4410

A479 A182

AL2507

0.03 Ma

x

1.2 Ma

x

6.0 ~8.0

24.0 ~

26.0 bal

3.0 ~5.0

0.08 ~0.20

P 0.030 S 0.020 Si 0.800

Super duplex alloy combining excellent strength with good corrosion resistance in high chloride and seawater environments.

6MO SMO254

S31254 1.4529 B649 6MO

0.02 Ma

x

2.0 Ma

x

24.0 ~

26.0

19.0 ~

21.0 bal

6.0 ~7.0

0.15 ~0.25

P 0.03 S 0.01 Si 0.5

Austenitic stainless steel, similar to alloy 904L, but with increased molybdenum and nitrogen contents, to be used in seawater, oil and gas piping systems on offshore production platforms and other aggressive chloride bearing media. With a excellent resistant to pitting, crevice corrosion and to stress-corrosion cracking.

904L N08904 1.4539 A269 904L

0.02 Ma

x

2.0 Ma

x

23.0 ~

28.0

19.0 ~

23.0 bal

4.0 ~5.0

0,1 Max

Si 1.000 S 0.035

Austenitic stainless steel intended for use under severe corrosion conditions, with a very good resistance to attacks in acidic environments, as sulphuric, phosphoric and acetic acid. Used for chemical processing, oil and gas well piping, heat exchangers, acid production and pickling equipment.

317L S31703 1.4438 A269 317L

0.03 Ma

x

2.0 Ma

x

11.0 ~

15.0

18.0 ~

20.0 bal

3.0 ~4.0

0,1 Max

Si 1.000 S 0.035

Austenitic stainless steel with higher corrosion resistance then 316L.

4. Tube/Pipe

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1. Uni-Lok Range Training Manual

NACE – 1/2

◦ NACE International is the world's leading professional organization for the corrosion control industry established in 1943.

◦ NACE International, formerly known as National Association of Corrosion Engineers, is a world wide corrosion society. NACE provides and publishes standards such as the MR0175 (known as ISO15156 ,International Standard), and the MR0103 (within the refining process). In these standards. NACE provides guidance on which corrosion resistant alloys and materials should be used for preventing “sulfide stress cracking” (SSC) and “chloride stress corrosion cracking” (SCC).

◦ These guidelines are determined from the collection of laboratory experimental data and field experience related to cracking resistance of metallic materials in a hydrogen sulfide (H2S) containing environment. In the NACE standards, a H2S containing environment may also be recognized as a “sour gas environment”.

◦ The limiting chemical composition in the NACE are the similar as ASTM. But, NACE defines some additional guidance for hardness, deforming metal method, weld method, “pitting resistance equivalent numbers” (PREN1) ).

Alloy

316

UNS

S31600

316L S31603

Alloy 2205 Duplex S31803

PREN

23~28

23~28

31~38

Alloy 2507 Super Dup

le S332750 38~44

Hardness

22 HRC

25 HRC

Remarks

Solution-annealed, Quenched or Annealed and Thermally stabilized heat treatment Cold work is not allowed.

Solution-annealed and Water-quenched condition Cr+3.3MO+16N<40

◦ All C&K’s materials and products are comply with both NACE MR-0175 and NACE MR-0103.

1) PREN = Cr+3.3(Mo+0.5W)+16N

5. Tube/Pipe

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1. Uni-Lok Range

Strict Size Tolerance for both OD and Wall Thickness

as per ASTM A269

Excellent Finished Inner & Outer Surface

by Bright Annealed

100% Eddy Current Tested (ECT)

What are the special features of C&K tubing?

◦ Available Materials

304, 304L, 316, 316L, 316/316L, 317L, 321, 904L, Duplex, Super Duplex, Alloy 400, Alloy 625

◦ Product & Size Ranges Seamless tubes in straight length, precision cut or coils 1/8”~1” OD, 3mm~28mmOD,6A~80A

Welded or semi-seamless (welded, cold drawn and bead reduced) tubes in straight length, precision cut or coils

1/8”~6”OD, 3mm~1000mmOD;6A~1000A

◦ UHP grades tubing, BA & EP are available.

◦ Available Materials AP : Both end protection caps, Bundle packaging per adequate lengths BA : Both end protection caps, Individual single PVC packaging per length

EP : Both end protection caps, Individual double PVC packaging per length

6. Tube/Pipe

※VIM/VAR (VIM/VAR are UHP(Ultra High Purity) 316LSS material with low Sulfur and Manganese in comply with SEMI F-20.)"

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1. Uni-Lok Range Training Manual

◦ Materials for sour gas / H2S Sour gas at high pressures, temperatures and in mixtures of other acids like formic acids found typically indown hole oil well stimulation environments is extremely corrosive. In these environments few materials could survive. ◦ Sour Gas (H2S) and Acid Gas Definition Sour gas is natural gas or any other gas that is corrosive due to significant content of hydrogen sulfide (H2S). Natural gas is considered sour if there are more than 5.7 milligrams of H2S per cubic meter of natural gas (4 ppm H

2S by volume). Natural gas that contain less amounts of hydrogen sulfide is called "sweet gas". The terms "acid gas" and "sour gas" are often used interchangeably, strictly speaking, a sour gas is any gas that contains hydrogen sulfide (H2S) in significant amounts, whereas an acid gas is any gas that contains significant amounts of acidic gases such as carbon dioxide (CO2) or hydrogen sulfide (H2S). Thus, carbon dioxide by itself is an acid gas but it is not a sour gas.

NACE – 2/2

◦ Corrosion of sour gas Natural gas that have high sulfur and carbon dioxide contents (sour and acid gas) is recognized being extremely corrosive and dangerous. Special corrosion resistant material will have to be applied.

◦ Sour Gas Environments

Upstream Downstream

Often contain CO₂, which causes low PH. Often contain chloride-ion stress corrosion cracking.

Often contain dissolved ammonia. Often contain cyanides. Seldom contain chlorides or CO₂.

7. Tube/Pipe

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1. Uni-Lok Range Training Manual

Tubing vs. Pipe

◦ Standard fluid line systems, whether for simple household use or for the more exacting requirements of industry, were for many years constructed from threaded pipe of assorted materials and were assembled with various standard pipe fitting shapes, unions and nipples. ◦ Such systems under high pressures were plagued with leakage problems besides being cumbersome, inefficient and costly to assemble and maintain. ◦ Therefore, the use of pipe in these systems has largely been replaced by tubing because of the many advantages it offers.

◦ Old Method with Pipe Each connection is threaded - requires numerous fittings – system not flexible or easy to install and service connections not smooth inside - pockets obstruct flow.

◦ Modern Method with Tubing Bendable tubing needs fewer fittings - no threading required - system light and compact - easy to install and service - no internal pockets or obstructions to free flow.

8. Tube/Pipe

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1. Uni-Lok Range

Major Advantages of Tubing vs. Pipe

1. Bending Quality Tubing has strong but relatively thinner walls; is easy to bend. Tube fabrication is simple.

2. Greater Strength Tubing is stronger. No weakened sections from reduction of wall thickness by threading.

3. Less Turbulence Smooth bends result in streamlined flow passage and less pressure drop.

4. Economy of Space and Weight

With its better bending qualities and a smaller outside diameter, tubing saves space and permits working in close quarters. Tube fittings are smaller and also weigh less.

5. Flexibility Tubing is less rigid, has less tendency to transmit vibration from one connection to another.

6. Fewer Fittings Tubing bends substitute for elbows. Fewer fittings mean fewer joints, fewer leak paths.

7. Tighter Joints Quality tube fittings, correctly assembled, give better assurance of leak-free systems.

8. Better Appearance Tubing permits smoother contours with fewer fittings for a professional look to tubing systems..

9. Cleaner Fabrication No sealing compounds on tube connections. Again no threading; minimum chance of scale, metal chips, foreign particles in system.

10. Easier Assembly and Disassembly

Every tube connection serves as a union. Tube connections can be reassembled repeatedly with easy wrench action.

11. Less Maintenance Advantages of tubing and tube fittings add up to dependable, trouble-free installations.

9. Tube/Pipe

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1. Uni-Lok Range

Proper Tubing Selection

1. Always Match Materials

S.S. Tubing should be used only with S.S. Fittings. The only exception to this rule is copper tubing with brass fittings. Mixing materials can cause galvanic corrosion.

2. Select proper tubing hardness

Remember C&K Instrumentation Tube Fittings are designed to work within specific hardness ranges. Rb 90 max. for S.S., Rb 80 recommended.

3. Select proper tubing wall thickness

Proper wall thickness is necessary to accommodate accepted safety factors relative to desired working pressures.

4. Tubing surface finish

Always select tubing free of visible draw marks or surface scratches. If possible, cut off any undesirable sections. These “deep” scratches can cause leaks when attempting to seal low-density gases such as argon, nitrogen, or helium.

Recommended Free Tubing Lengths L

F2) R

O.D.

L : Free Length of Straight Tubing D : Tube Insertion Depth R : Radius of Bender

O.D. 1/8 3/16 1/4 5/16 3/8 1/2 5/8 3/4 7/8 1 1-1/4

1-1/2 2

L 18 19 21 22 24 30 32 32 33 38 51 61 83

R1) 3/8 7/16 9/16 11/16 15/16 1-1/2 1-7/8 2-1/4 2-5/8 3 3-3/4 4-1/2 8

Gain 90◦ 0.16 0.19 0.24 0.30 0.40 0.64 0.80 0.97 1.13 1.29 1.61 1.93 3.43

Gain 45◦ 0.02 0.02 0.02 0.03 0.04 0.06 0.08 0.10 0.11 0.13 0.16 0.19 0.34

1)R : Minimum radius of bender, Some radius may differ. Consult individual radius bender manufacturers, 2)F : Refer to “F” in C&K Tube Fittings catalog

Gain 90◦ Bend : 0.429R, Gain 45◦ Bend : 0.043R

A B

C

Triangle A-B-C with Arc A-C The Arc A-C is shorter than the distance from A to B plus B to C.

Butt

10. Tube/Pipe

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1. Uni-Lok Range

System Pressure & Temperature ◦ Determination of AWP Multiply allowable working pressure and factors which are shown in the table. AWP1) = MAWP2) x Factor Example : 316SS Tubing, 1/2″ODx0.049″WT at 310°C AWP : 3750 x 0.85 = 3187 psig. 1)MAWP : Maximum Allowable Working Pressure 2)AWP : Allowable Working Pressure

°C °F 316SS Copper Monel

90 194 1.00 0.80 0.88

200 392 0.96 0.50 0.79

310 590 0.85 - 0.79

480 802 0.79 - 0.75

536 996 0.76 - -

644 1227 0.37 - -

Temperature Materials

◦ Determination factors of MAWP at high temperature application

◦ Ratings in gray not suitable for Gas Service

To achieve a gas-tight seal, ferrules in instrument fittings must seal any surface imperfections. This is accomplished by the ferrules penetrating the surface of the tubing. Thick walled tubing helps to provide resistance.

0.028 0.035 0.049 0.065 0.083 0.095 0.109 0.120 0.134 0.156 0.188

1/8 8550 10950

3/16 5500 7100 10300

1/4 4100 5200 7600 10300

5/16 4100 5900 8100

3/8 3350 4850 6550

1/2 2650 3750 5150 6750

5/8 2950 4050 5250 6050

3/4 2450 3350 4250 4950 5850

7/8 2050 2850 3650 4250 4850

1 2400 3100 3600 4200 4700

1-1/4 2400 2800 3300 3600 4100 4900

1-1/2 2300 2700 3000 3400 4000 4900

2 2000 2200 2500 2900 3600

Fractional(Inch) Tubing

Tube O.D.(inch)

Tube Wall Thickness (inch)

0.8 1.0 1.2 1.5 2.0 2.2 2.5 3.0 3.5 4.0 4.5

3 9700

4 7900 11500

6 4500 6100 7850 10300

8 4500 5650 7550

10 3500 4350 5800 8400

12 2900 3600 4800 6800

14 2300 2900 4000 5500 6250

15 2200 2750 3650 5200 5800

16 2450 3350 4800 5350 5800

18 2150 2950 4200 4650 5350

20 2030 2600 3750 4200 4800

22 1750 2300 3350 3750 4350

25 2900 3350 3750 4650

38 2030 2300 2900 3500 3900 4500

Metric Tubing

Tube O.D.(mm)

Tube Wall Thickness (mm)

◦ Maximum allowable working pressure – 316SS Seamless

11. Tube/Pipe

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12. Tube/Pipe

PRODUCT RANGE ASTM A269!Tolerances according to ASTM A269"(Welded and Seamless Tube)"

√:Norm" ※:Specific" ×:Not Produce"SIZE! Tolerance! O.D! Thickness!                

inch! mm! mm! mm! mm! mm! seamless !

Semi-Seamless! Welded! V+V! EP! BA! MP! AP!

1/8"! ±0.13" 3.18" 0.71"   

√" √" √" √" √" √" √" √"

1/4"! ±0.13" 6.35" 0.89" 1.00" 

√" √" √" √" √" √" √" √"

3/8"! ±0.13" 9.53" 0.89" 1.00" 

√" √" √" √" √" √" √" √"

1/2"! ±0.13" 12.7" 1.00" 1.24" 

√" √" √" √" √" √" √" √"

3/4"! ±0.13" 19.05" 1.24" 1.65" 2.11" √" √" √" √" √" √" √" √"

1"! ±0.13" 25.4" 1.65" 2.11" 2.77" √" √" √" √" √" √" √" √"

1.5"! ±0.13" 38.1" 1.65" 2.11" 2.77" ※ " ※ " √" ×" √" √" √" √"

2"! ±0.25" 50.8" 1.65" 2.11" 2.77" ※ " ※ " √" ×" √" √" √" √"

2.5"! ±0.25" 63.5" 1.65" 2.11" 

※ " ※ " √" ×" √" √" √" √"

3"! ±0.25" 76.2" 1.65" 2.11" 

※ " ※ " √" ×" √" √" √" √"

4"! ±0.40" 101.6" 2.11" 2.41" 2.77" ※ " ※ " √" ×" √" √" √" √"

5"! ±0.40" 127" 2.41" 2.77" 

※ " ※ " √" ×" √" √" √" √"

6"! ±0.40" 152.4" 2.77"   

※ " ※ " √" ×" √" √" √" √"

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13. Tube/Pipe

ASTM 312!SIZE!   O.D! SCH5! SCH10! SCH20! SCH40! SCH80!                

A! B! mm! mm! mm! mm! mm! mm! seamless !

Semi-Seamless! Welded! V+V! EP! BA! MP! AP!

√:Norm" ※:Specific" ×:Not Produce"

6A! 1/8"! 10.29"   1.24"   1.73" 2.41" √" √" √" ※ " √" √" √" √"

8A! 1/4"! 13.72"   1.65"   2.24" 3.02" √" √" √" ※ " √" √" √" √"

10A! 3/8"! 17.15"   1.65"   2.31" 3.20" √" √" √" ※ " √" √" √" √"

15A! 1/2"! 21.34" 1.65" 2.11"   2.77" 3.73" √" √" √" ※ " √" √" √" √"

20A! 3/4"! 26.67" 1.65" 2.11"   2.87" 3.91" √" √" √" ×" √" √" √" √"

25A! 1"! 33.4" 1.65" 2.77"   3.38" 4.55" √" √" √" ×" √" √" √" √"

32A! 1 1/4"! 42.16" 1.65" 2.77"   3.56" 4.85" √" √" √" ×" √" √" √" √"

40A! 1 1/2"! 48.26" 1.65" 2.77"   3.68" 5.58" √" √" √" ×" √" √" √" √"

50A! 2"! 60.33" 1.65" 2.77"   3.91" 5.54" √" √" √" ×" √" √" √" √"

65A! 2 1/2"! 73.03" 2.11" 3.05"   5.16" 7.01" √" √" √" ×" √" √" √" √"

80A! 3"! 88.9" 2.11" 3.05"   5.49" 7.62" √" √" √" ×" √" √" √" √"

100A! 4"! 114.3" 2.11" 3.05"   6.02" 8.56" ※ " ※ " √" ×" √" √" √" √"

125A! 5"! 141.3" 2.77" 3.40"   6.55" 9.52" ※ " ※ " √" ×" √" √" √" √"

150A! 6"! 168.28" 2.77" 3.40"   7.11" 10.97" ※ " ※ " √" ×" √" √" √" √"

200A! 8"! 219.08" 2.77" 3.76"   8.18" 12.70" ※ " ※ " √" ×" ※ " ※ " √" √"

250A! 10"! 273.05" 3.4" 4.19"   9.27" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

300A! 12"! 323.85" 3.96" 4.57"   9.52" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

350A! 14"! 355.6" 3.96" 5.00"   11.1" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

400A! 16"! 406.4" 4.19" 5.00"   12.7" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

450A! 18"! 457.2" 4.2" 5.00"   14.3" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

500A! 20"! 508" 5.16" 5.50"   15.1" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

550A! 22"! 558.8" 5.16" 5.50"   15.9" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

600A! 24"! 609.6" 5.49" 6.50"   17.5" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

650A! 26"! 660.4" 5.49" 8.00"   17.5" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

700A! 28"! 711.2" 5.49" 8.00"   17.5" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

750A! 30"! 762" 6.55" 8.00"   17.5" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

800A! 32"! 812.8"   8.00"   17.5" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

850A! 34"! 863.6"   8.00"   17.5" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

900A! 36"! 914.4"   8.00"   19.1" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

1000A! 40"! 1016"   9.50"   26.2" 12.70" ×" ×" √" ×" ※ " ※ " √" √"

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14. Tube/Pipe

JIS G3459!SIZE!   O.D! SCH5! SCH10! SCH20! SCH40! SCH80!                

A! B! mm! mm! mm! mm! mm! mm! seamless !

Semi-Seamless! Welded! V+V! EP! BA! MP! AP!

6A! 1/8"! 10.5" 1.00" 1.20" 1.50" 1.70" 2.40" √" √" √" ※ " √" √" √" √"

8A! 1/4"! 13.8" 1.20" 1.65" 2.00" 2.20" 3.00" √" √" √" ※ " √" √" √" √"

10A! 3/8"! 17.3" 1.20" 1.65" 2.00" 2.30" 3.20" √" √" √" ※ " √" √" √" √"

15A! 1/2"! 21.7" 1.65" 2.10" 2.50" 2.80" 3.70" √" √" √" ※ " √" √" √" √"

20A! 3/4"! 27.2" 1.65" 2.10" 2.50" 2.90" 3.90" √" √" √" ×" √" √" √" √"

25A! 1"! 34" 1.65" 2.80" 3.00" 3.40" 4.50" √" √" √" ×" √" √" √" √"

32A! 1 1/4"! 42.7" 1.65" 2.80" 3.00" 3.60" 4.90" √" √" √" ×" √" √" √" √"

40A! 1 1/2"! 48.6" 1.65" 2.80" 3.00" 3.70" 5.10" √" √" √" ×" √" √" √" √"

50A! 2"! 60.5" 1.65" 2.80" 3.50" 3.90" 5.50" √" √" √" ×" √" √" √" √"

65A! 2 1/2"! 76.3" 2.10" 3.00" 3.50" 5.20" 7.00" √" √" √" ×" √" √" √" √"

80A! 3"! 89.1" 2.10" 3.00" 4.00" 5.50" 7.60" √" √" √" ×" √" √" √" √"

100A! 4"! 114.3" 2.10" 3.00" 4.00" 6.00" 8.60" ※ " ※ " √" ×" √" √" √" √"

125A! 5"! 139.8" 2.80" 3.40" 5.00" 6.60" 9.50" ※ " ※ " √" ×" √" √" √" √"

150A! 6"! 165.2" 2.80" 3.40" 5.00" 7.10" 11.00" ※ " ※ " √" ×" √" √" √" √"

200A! 8"! 216.3" 2.80" 4.00" 6.00" 8.20" 12.70" ※ " ※ " √" ×" ※ " ※ " √" √"

250A! 10"! 267.4" 3.40" 4.00" 6.00" 9.30" 15.10" ×" ×" √" ×" ※ " ※ " √" √"

300A! 12"! 318.5" 4.00" 4.50" 6.00" 10.30" 17.40" ×" ×" √" ×" ※ " ※ " √" √"

350A! 14"! 355.6" 3.96" 5.00" 8.00" 11.10" 19.00" ×" ×" √" ×" ※ " ※ " √" √"

400A! 16"! 406.4" 4.19" 5.00" 8.00" 12.70" 21.40" ×" ×" √" ×" ※ " ※ " √" √"

450A! 18"! 457.2" 4.20" 5.00" 8.00" 14.30" 23.83" ×" ×" √" ×" ※ " ※ " √" √"

500A! 20"! 508" 5.16" 5.50" 9.50" 15.10" 26.19" ×" ×" √" ×" ※ " ※ " √" √"

550A! 22"! 558.8" 5.16" 5.50" 9.50" 15.90" 28.58" ×" ×" √" ×" ※ " ※ " √" √"

600A! 24"! 609.6" 5.49" 6.50" 9.50" 17.50" 30.96" ×" ×" √" ×" ※ " ※ " √" √"

650A! 26"! 660.4" 5.49" 8.00" 12.70" 17.50"   ×" ×" √" ×" ※ " ※ " √" √"

700A! 28"! 711.2" 5.49" 8.00" 12.70" 17.50"   ×" ×" √" ×" ※ " ※ " √" √"

750A! 30"! 762" 6.55" 8.00" 12.70" 17.50"   ×" ×" √" ×" ※ " ※ " √" √"

800A! 32"! 812.8"   8.00" 12.70" 17.50"   ×" ×" √" ×" ※ " ※ " √" √"

850A! 34"! 863.6"   8.00" 12.70" 17.50"   ×" ×" √" ×" ※ " ※ " √" √"

900A! 36"! 914.4"   8.00" 12.70" 19.10"   ×" ×" √" ×" ※ " ※ " √" √"

1000A! 40"! 1016"   9.50" 14.30" 16.20"   ×" ×" √" ×" ※ " ※ " √" √"

√:Norm" ※:Specific" ×:Not Produce"

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Rm No. 420, Dongmoon Tower 2, 358-25, Hosu-Ro, Ilsandong-Gu, Goyang-City, Kyounggi, Korea !Tel : +82-31-901-3381 Fax : +82-31-904-3383!!!!!Room 707, CanHong Building No1079# Wuzhong Rd,Minhang District,Shanghai,China!!Tel : +86-21-6465 1186 / 6465 1180 Fax: +86-21-64651055