ASME SA 213 GRADE T36 ALLOY STEEL SEAMLESS TUBES /
T36 合金無(wú)縫管 性能簡(jiǎn)介
ASME SA 213 Grade T36 Specification
ASME SA 213 Grade T36 Alloy Steel Seamless Tubes are Carbon Steel Tubes with subsequent addition of chromium, molybdenum and sometimes vanadium are known as chrome moly Tubes. ASME Specification alloy steel Tubes are used for high temperature service applications. Seamless Alloy Steel Tubes according to ASME SA 213 Grade T36 are reheated and furnished in full annlealed,isothermal annealed or normalised quenched and tempered condition. ASME SA 213 Grade T36 Alloy Steel Seamless Tubes have a typical chemistry with additions of 0.30 max Chromium and 0.25-0.50 Molybdenum. Bearing minimum tensile strength of 415 Mpa ASME SA 213 Grade T36 Tubes have a minimum yield strength of 205 Mpa.
ASME SA 213 Grade T36 Properties 性能參數(shù)
Chemical Properties 化學(xué)成份 | |||||||||
---|---|---|---|---|---|---|---|---|---|
Carbon | Silicon | Manganese | Phosphorous | Sulphur | Molybdenum | Nickel | Chromium | Copper | Others |
0.10-0.17 | 0.25-0.50 | 0.80-1.20 | 0.030 max | 0.025 max | 0.25-0.50 | – | 0.30 max | – | – |
Mechanical Properties 機(jī)械性 | |||||||||
---|---|---|---|---|---|---|---|---|---|
Yield Strength | Tensile Strength | Elongation A5 min | |||||||
MPa min | ksi min | MPa min | MPa min | ksi min | Percentage | ||||
415 | – | 60 | 30 |
Product Specification 產(chǎn)品列表
Length | 0-2 meters, 2-4 meters, 4-6 meters, 6-8 meters |
Type | Welded, Seamless, U-Tubes, Coils, Condenser & Heater Tubes |
Size | 1/4''-1'', 1''-2'', 2''-3'', 3''-10'', 10''-20'' |
Hallow Sections | Circular, Square, Rectangular, Elliptical |
Product Description
ASME SA 213 Alloy Steel T36 Seamless Tube provides higher creep rupture strength than normally achievable in similar grades without these different requirements.
ASTM A 213 Grade
ASTM A 213 Gr T1, ASTM A 213 Gr T2, ASTM A 213 Gr T5, ASTM A 213 Gr T5b, ASTM A 213 Gr T5c, ASTM A 213 Gr T9, ASTM A 213 Gr T11, ASTM A 213 Gr T12, ASTM A 213 Gr T17, ASTM A 213 Gr T21, ASTM A 213 Gr T22, ASTM A 213 Gr T23, ASTM A 213 Gr T24, ASTM A 213 Gr T36, ASTM A 213 Gr T91, ASTM A 213 Gr T92, ASTM A 213 Gr T122, ASTM A 213 Gr T911
ASME SA213 Grade
ASME SA 213 Gr T1, ASME SA 213 Gr T2, ASME SA 213 Gr T5, ASME SA 213 Gr T5b, ASME SA 213 Gr T5c, ASME SA 213 Gr T9, ASME SA 213 Gr T11, ASME SA 213 Gr T12, ASME SA 213 Gr T17, ASME SA 213 Gr T21, ASME SA 213 Gr T22, ASME SA 213 Gr T23, ASME SA 213 Gr T24, ASME SA 213 Gr T36, ASME SA 213 Gr T91, ASME SA 213 Gr T92, ASME SA 213 Gr T122, ASME SA 213 Gr T911
ASTM A213 T36 Alloy Steel Tube
A213 T36 Alloy Steel Tubes for High Temperature Services
ASTM A213 T36 Alloy Steel Seamless Tubes
ASTM A213 T36 Alloy Steel Seamless Tubing
T36 Alloy Steel Seamless Tubes
T36 Alloy Steel Seamless Tubing
Alloy Steel A213 T36 Cold Drawn Seamless Tube
Alloy Steel A213 T36 Cold Drawn Seamless Tubing
ASTM A213 T36 Ferritic Alloy Steel Tubes
A213 T36 High Pressure Steel Tube
A213 T36 High Pressure Steel Tubing
ASTM A213 T36 Chrome Moly Alloy Tube
ASTM A213 T36 Chrome Moly Alloy Tubing
ASTM A213 T36 Alloy Steel Seamless Round Tube
ASTM A213 T36 Alloy Steel Seamless Round Tubing
ASTM A213 T36 Alloy Steel Seamless Square Tube
ASTM A213 T36 Alloy Steel Seamless Square Tubing
ASTM A213 T36 Alloy Steel Seamless Rectangular Tube
ASTM A213 T36 Alloy Steel Seamless Rectangular Tubing
A213 T36 Chrome Moly Tubes
Alloy Steel T36 Tube
Alloy Steel T36 Tubing
ASME SA 213 T36 Tube
ASME SA 213 T36 Tubing
ASME SA 213 T36 Turbo
T36 A213 Alloy Steel Tube
T36 A213 Alloy Steel Tubing
T36 Alloy Steel Heat Exchanger
T36 Alloy Steel Heat Exchanger Tubes
T36 Alloy Steel Heat Exchanger Tubing
ASTM A213 T36 Alloy Steel Superheater Tubing
ASTM A213 T36 Alloy Steel Superheater Tube
A213 T36 Hot Rolled Alloy Steel Seamless Tubes
A213 T36 Hot Rolled Alloy Steel Seamless Tubing
Chrome Moly Alloy T36 Tube
Chrome Moly Alloy T36 Tubing
Chrome Moly Alloy T36 Turbo
ASTM A213 T36 Seamless Tube
ASTM A213 T36 Seamless Tubing
T36 Tubes
T36 Tubing
A213 T36 Austenitic Alloy Steel Tube
A213 T36 Austenitic Alloy Steel Tubing
Alloy Steel Seamless Tube
A213 T36 High Temperature Alloy Steel Tube
A 213 Gr T36 Chemical Composition
Carbon; 0.10-0.17
Manganese; 0.80-1.20
Phosphorus; 0.030max
Sulfur; 0.025max
Silicon; 0.25-0.50
Nickel; 1.00-1.30
Chromium; 0.30max
Molybdenum; 0.25-0.50
Vanadium; 0.02max
Niobium; 0.015-0.045
Nitrogen; 0.02max
Aluminium; 0.05max
Other elements; Cu 0.50-0.80
Tensile Strength; 415Mpa(min)
Yield Strength; 205Mpa(min)
Elongation; 30%
Hardness, HB; 163max ASME SA213 T36 Round bar,T36 Bearing steel,T36 round bar
ASME SA213 T36 Round bar,T36 Bearing steel,T36 round bar
United steel Round bar factory export ASME SA213 High carbon chromium round bar, The main steel grade is T2 T5 T5b T5c T9 T11 T12 T17 T21 T22 T23 T24 T36 T91 T92 T122 T911 TP201 TP202 XM-19 TP304 TP304L TP304H TP304N .
If any round bar stock steel, round bar requirement, please feel free to contact us. More better quality, faster delivery, and the competitive price.1. ASME SA213 T36 standard applies to manufacture of bearing ring steel pipe rolling elements made by high-carbon chromium bearing steel processed with hot rolled forged round, steel wire, cold rolled. Continuous casting steel is not recommended to be the material of balls.
2. Keywords: ASME SA213 T36 Round bar,T36 Bearing steel,T36 round bar
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4. ASME SA213 T36 Round bar Chemical Composition
T36 high Strength Chemical Composition
Grade
The Element Max (%)
C
Mn
P
S
Si
Ni
Cr
0.1-0.17
0.8-1.2
0.03
0.025
0.25-0.5
1.0-1.3
0.3
Mo
V
B
Nb
N
Al
W
Other
T36
0.25-0.5
0.02
--
0.015-0.045
0.02
0.05
--
--
5. ASME SA213 T36 Round bar Diameter
ODMM 10-320MM
6. ASME SA213 T36 Round bar
Allowable deviation for the chemical composition
7. ASME SA213 T36 Round bar Hardness of annealed steel
8. ASME SA213 T36 Round bar
Surface Quality
The steel should be processed well, with no cracks, folding, tearing, scarring, inclusions, or other harmful defects on the surface. Cold drawn (rolled) steel surface should also be clean, without rust. If any such defect is found, the supply-side must remove, and the removal depth should be consistent with the provisions of 5.12.2, 5.12.3 and 5.12.4.
STM A213 Standard covers seamless ferritic and austenitic steel boiler, superheater, and heat-exchanger tubes. ASTM A213 T36 Grades containing the letter H in their designation have requirements different from those of similar grades not containing the letter H.
- ASTM A213 T36 Seamless alloy tube, alloy steel, ASTM A213, ASTM A213 T36, Seamless alloy tube, steel tubes, superheater tubes, T36, Tubing
These different requirements provide higher creep-rupture strength than normally achievable in similar grades without these different requirements. ASTM A213 T36 tubes shall be made by the seamless process and shall be either hot finished or cold finished, as specified. Grade TP347HFG shall be cold finished. Heat treatment shall be done separately and in addition to heating for hot forming. The ferritic alloy and ferritic stainless steels shall be reheated. On the other hand, austenitic stainless steel tubes shall be furnished in the heat-treated condition. Alternatively, immediately after hot forming, while the temperature of the tubes is not less than the minimum solution temperature, tubes may be individually quenched in water or rapidly cooled by other means. Tension test, hardness test, flattening test, and flaring test shall be done to each tube. Also, each tube shall be subjected to the nondestructive electric test or hydrostatic test.
ASTM A209 Through A213
Other standard specifications include the categories of A209 seamless carbon-molybdenum alloy-steel boiler and superheater tubes; A210 seamless medium-carbon steel boiler and superheater tubes and A213 seamless ferritic and austenitic steel boiler, superheater and heat-exchanger tubes. Piping wall thicknesses range from 1/2 inch to 5 inches. A213 grades also have the letter H or M assigned, which changes the composition and specifications for that series.
This abstract is a brief summary of the referenced standard. It is informational only and not an official part of the standard; the full text of the standard itself must be referred to for its use and application. ASTM does not give any warranty express or implied or make any representation that the contents of this abstract are accurate, complete or up to date.
Chemical Composition(%) for ASTM A213 T36 Low Alloy Steel
UNS Designation K21001 Carbon 0.10–0.17 Manganese 0.80–1.20 Phosphorus 0.03 Sufur 0.025 Silicon 0.25–0.50 Nickel 1.00–1.30 Chromium 0.3 Molybdenum 0.25–0.50 Vanadium 0.02 Boron … Niobium 0.015–0.045 Nitrogen 0.02 Aluminum 0.05 Tungsten … Other Elements Cu 0.50–0.80 Mechanical properties for ASTM A213 T36 Low Alloy Steel
Tensile strength(min) 415Mpa Yield strength(min) 205Mpa Elongation 30% Hardness, HB 163max Permitted tolerance for OD
OD Plus tolerance(+) Minus tolerance (-) 10.29—48.3 0.4 0.4 <48.3—-≤114.3 0.79 0.79 <114.3—≤219.1 1.59 0.79 <219.1—≤323.9 2.38 0.79 <323.9 ±1% Wall thickness is average wall or according to ASME SA530.
Notes for Bend Test:
For pipe whose diameter exceeds NPS 25 and whose diameter to wall thickness ratio is 7.0 or less shall be subjected to the bend test instead of the flattening test.
Other pipe whose diameter equals or exceeds NPS 10 may be given the bend test in place of the flattening test subject to the approval of the purchaser.
The bend test specimens shall be bent at room temperature through 180 without cracking on the outside of the bent portion.
Packing:
Packed in wooden crates, wrapped in plastic, and suitably protected for sea-worthly delivery or as requested.
Both ends of each crate will indicate the order no., heat no., dimensions, weight and bundles or as requested.
Delivery:
Pipes are supplied in hexagonal bundles or round bundles tied with steel strip.
Weight of bundle – up to 5000 kg upon request of customer.
Each bundle is furnished with three tags.ASTM A213 Standard Scope
1.1 This specification covers seamless ferritic and austenitic steel boiler, superheater, and heat-exchanger tubes, designated Grades T91, TP304, etc. These steels are listed in Tables 1 and 2.
1.2 Grades containing the letter, H, in their designation, have requirements different from those of similar grades not containing the letter, H. These different requirements provide higher creep-rupture strength than normally achievable in similar grades without these different requirements.
1.3 The tubing sizes and thicknesses usually furnished to this specification are 1/8 in. [3.2 mm] in inside diameter to 5 in. [127 mm] in outside diameter and 0.015 to 0.500 in. [0.4 to 12.7 mm], inclusive, in minimum wall thickness or, if specified in the order, average wall thickness. Tubing having other diameters may be furnished, provided such tubes comply with all other requirements of this specification.
1.4 The values stated in either SI units or inch-pound units are to be regarded separately as standard. Within the text, the SI units are shown in brackets. The values stated in each system may not be exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems may result in non-conformance with the standard. The inch-pound units shall apply unless the “M” designation of this specification is specified in the order.
TABLE 1 Chemical Composition Limits, %A, for Low Alloy SteelA Maximum, unless range or minimum is indicated. Where ellipses (…) appear in this table, there is no requirement, and analysis for the element need not be determined or reported.B It is permissible to order T2 and T12 with a sulfur content of 0.045 max. See 16.3.
C Alternatively, in lieu of this ratio minimum, the material shall have a minimum hardness of 275 HV in the hardened condition, defined as after austenitizing and cooling to room temperature but prior to tempering. Hardness testing shall be performed at mid-thickness of the product. Hardness test frequency shall be two samples of product per heat treatment lot and the hardness testing results shall be reported on the material test report.
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