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A53B Precision Seamless Steel Pipe Aisi 4130 80mm Carbon Steel Tube

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A53B Precision Seamless Steel Pipe Aisi 4130 80mm Carbon Steel Tube

Country/Region china
City & Province liaocheng shandong
Categories Metal Casting Machinery
InquireNow

Product Details

Precision Pipe Aisi 4130 Alloy Steel Tube Seamless Steel Pipe And Tube


Product specification:

NameSeamless carbon steel pipes
Pipe Size1/2-"32"
Wall ThicknessSCH10,SCH20,SCH30,STD,SCH40,SCH60,XS,SCH80,
SCH100,SCH120,
SCH140,SCH160,XXS,DIN, JIS standard thickness
Length5.8m,6m, 11.8m,12m or depending on customers' requirements
StandardASTM A53, A106, API 5L, ASME B36.10M-1996
DIN1626, DIN1629, DIN17175, DIN 2448
JIS G3452,JIS G3454,JIS G3455,JIS G3456,JIS G3457,JIS G3461
MaterialQ235, 20#, Q345
A53B, A106B, API 5L B,X42,X46,X52,X60, X65
ST37.0,ST35.8,St37.2,St35.4/8,St42,St45,St52,St52.4
STP G38,STP G42,STPT42,STB42,STS42,STPT49,STS49
ApplicationLow and middle pressure fluid pipeline, boiler, petroleum
and natural gas industry, drilling, chemical
SurfaceBlack painting, black varnish, transparent oil
PackageAs per customers' request
CertificateISO9001, API etc
Delivery Time10-15days
PaymentL/C,T/T
Advantages1.Reasonable price with excellent quality
2.Abundant stock and prompt delivery
3.Rich supply and export experience, sincere service

 

Precision tube is a kind of seamless steel tube with high precision and high brightness produced by cold drawing or cold rolling process. Its inner and outer diameter size can be accurate to less than 0.2mm, in order to ensure bending and torsional strength at the same time, the weight is relatively light, so it is widely used in manufacturing precision machinery parts and engineering structures. It is also used to produce all kinds of conventional weapons, gun barrels, shells, bearings and so on.
use

Used for manufacturing mechanical structure, hydraulic equipment, auto parts, steel sleeve.

Commonly used material
Commonly used materials are 10#, 20#, 35#, 45#, 20Cr, 40Cr, 20CrMo, 16Mn, 27SIMN, 304, 201, 310S, high quality carbon structural steel.

Precision tube characteristics

The characteristics of

1. Smaller outside diameter.

2. High precision can do small batch production.

3. Cold-drawn products have high precision and good surface quality.

4. The cross area of steel pipe is more complex.

5. The performance of steel pipe is superior, and the metal is dense.

 

According to the tempering temperature range of precision pipe brittleness, it can be divided into low temperature tempering brittleness and high temperature tempering brittleness.

After quenching martensitic structure of precision tube low temperature tempering brittle alloy steel, the steel embrittlement is made by tempering in the temperature range of 250 ~ 400℃, and the transformation temperature of toughness to brittleness is obviously increased. The embrittlement precision tube can no longer be eliminated by low temperature tempering heating, so it is also called % 26LDquo; Irreversible temper brittleness %26rdquo; . It mainly occurs in alloy structural steel and low alloy ultra-high strength precision pipe steel. The fracture of embrittlement precision tube is either intercrystalline fracture or intercrystalline and quasi cleavage fracture. The causes of low temperature tempering brittleness are generally considered as follows :(1) it is closely related to grain boundary embrittlement caused by the precipitation of cementite at the original austenite grain boundary during low temperature tempering. (2) The segregation of impurity elements such as phosphorus at the grain boundary of proto-austenite is also one of the reasons for tempering brittleness at low temperature. High purity precision tubes with phosphorus content less than 0.005% do not produce low temperature tempering brittleness. The austenite grain boundary segregation occurs when the phosphorus is heated by fire and remains after quenching. Phosphorus precipitates at proto-austenite grain boundary during segregation and cementite tempering. These two factors cause intergranular brittle fracture and contribute to the occurrence of low temperature tempering brittleness.

Alloy elements in precision tubes have great influence on tempering brittleness at low temperature. Chromium and manganese promote the segregation of impurity elements such as phosphorus at austenite grain boundaries, thus promoting low temperature tempering brittleness, tungsten and vanadium basically have no effect, molybdenum reduces the ductile-brittleness transition temperature of low temperature tempering precision tube, but it is not enough to inhibit low temperature tempering brittleness. Silicon can delay the precipitation of cementite during tempering and increase its formation temperature, so it can increase the temperature at which the brittleness of precision tube occurs at low temperature.

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