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显示标签为“sch std drl”的博文。显示所有博文

2014年9月24日星期三

API 5L B / ASTM A53 B SCH40 Steel Tube

API 5L B / ASTM A53 B SCH40 Steel Tube

HYSP produce sch 10, sch 20, sch 30. sch 40, sch 80 welded tubes.  And we are strong at tuberia astm a53 sch 40 carbon pipes, astm a53 sch 40 tubes. Besides the API 5L Grade B welded pipes, the ASTM A53 B SCH40 Welded Tubes are the second popular pipe products in HYSP.
You are welcome to send us your RFQ and we will send the A53 B pipe price asap.
A53 B SCH40 Steel Tube
A53 B SCH40 Steel Tube
Product NameASTM A53 B SCH40 Welded Tube
A53 B SCH40 pipe Diameter1inch, 4inch, 6 inch, 8 inch, ~ 26 inch
Diameter Toleranceacc. to ASTM A53, +/-1% of outside diameter
Wall ThicknessSTD,SCH 30, SCH40, SCH 80, SCH 120, SCH 180etc.
Wall Thickness Toleranceacc. to ASTM A53, +/- 12.5%t
Pipe StandardASTM A53, API 5L, CSA Z245, A106, ASTM A252, AS 1163, IPS 190
etc
A53 B SCH40 pipe GradeGrade A, Grade B or other steel grade required
A53 B SCH40 pipe TestHydro test, UT test, Flatten test, Impact test, DWT test if agreed
etc
Hydro test pressureAs per ASTM A53 Spec
A53 B SCH40 pipe LengthSRL, DRL, Random length from 3m to 18m
End FinishBevelled ends with caps or steel protector
ApplicationFluid pipe, line pipe, water pipe, structure steel
tube
piling pipe, construction pipe, bridge pipe etc.
Pipe CoatingBlack painting, varnish, anti rust oil,
FBE, 3PE, 3 layer PE, 3PP etc.
PackagePlastic caps on both ends, Steel bundle, or acc. to customers’ request
InspectionISO9001, SGS,BV, GL, DNV, Moody  or other TPI
appointed by customer
Capacity10000 metric tons per month
Delivery time30 days against deposit or LC at sight

Carbon Steel Pipe Schedule Chart Dimension -- ASME B36.10M-2004

Welded and Seamless  Wrought Steel Pipe–Steel Pipe Schedule Chart


CONTENTS
Foreword . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . iv
Committee Roster . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . vi
1 Scope . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
2 Size . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
3 Materials . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
4 Wall Thickness . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
5 Weights . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
6 Permissible Variations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
7 Pipe Threads . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
8 Wall Thickness Designations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 1
9 Wall Thickness Selection . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2
Table
1 Dimensions and Weights of Welded and Seamless Wrought Steel Pipe . . . . . . . . . . . . . . . 3
1. Scope
This Standard covers the standardization of dimensions of welded and seamless wrought steel pipe for high or low temperatures and pressures. 
The word pipe is used, as distinguished from tube, to apply to tubular products of dimensions commonly use for pipeline and piping systems. Pipe NPS 12 (DN 300) and smaller have outside diameters numerically larger than their corresponding sizes. In contrast, the outside diameters of tubes are numerically identical to the size number for all sizes.
2. Size
The size of all pipe is identified by the nominal pipe size.The manufacture of pipe NPS 1⁄8 (DN 6) to NPS 12
(DN 300), inclusive, is based on a standardized outside diameter (OD). This OD was originally selected so that pipe with a standard OD and having a wall thickness that was typical of the period would have an inside diameter (ID) approximately equal to the nominal size. Although there is no such relation between the existing standard thickness — OD and nominal size — these nominal sizes and standard ODs continue in use as ‘‘standard.’’ The manufacture of pipe NPS 14 (DN 350) and larger proceeds on the basis of an OD corresponding to the nominal size.

2014年7月31日星期四

Bri-Chem Sells All Steel Pipe Division Assets

Bri-Chem Corp., a leading North American wholesale distributor and manufacturer of oil and gas drilling fluids, is pleased to announce that it has completed the sale of its Steel Pipe Manufacturing division and Steel Pipe Distribution division including their respective assets and ongoing business operations to a U.S.-based steel company. Bri-Chem will not retain any steel pipe assets or conduct any further steel pipe business operations going forward. The sale transaction provides Bri-Chem the opportunity to further its North American drilling fluids growth strategy by expanding its leadership position in existing markets and penetrating future growth into new drilling fluid market segments.
"Bri-Chem's USA drilling fluids expansion success has led to an overabundance of opportunities and this divestiture will position our company to deliver focused organic and acquisitive growth on a sustainable basis," said Don Caron, Chief Executive Officer of Bri-Chem. "We do not believe that the value of our North American leading wholesale drilling fluids market position is being adequately reflected in our stock price. By monetizing the steel pipe assets, we will be able to unleash the growth potential that resides within our market leading drilling fluids markets."
Bri-Chem Sells All Steel Pipe Division Assets
Bri-Chem Sells All Steel Pipe Division Assets

EN10210 S355joh Mild Steel Pipe

EN10210 S355joh Mild Steel Pipe Specifications

Our company HYSP is a professional manufacturer specializing in producing ERW EN10210 S355joh Mild Steel Pipe. We can supply EN10210 S355joh Mild Steel Pipe with the standards of GB, ASTM A53, ASTM A252, API 5L. Besides, we also have perfect production lines and skilled engineers to manufacture these products.
These S355joh Mild Steel Pipe products are manufactured to meet the mechanical property requirements of all international S355joh Mild Steel Pipe standards and are suitable for welding and limited bending. 
The S355joh Mild Steel Pipe plant process a wide range of S355joh Mild Steel Pipe hollow sections to local and international specifications. Typical applications include agricultural, architectural, general engineering, mechanical handling and structural uses. Typical uses are agricultural implement frames, trailers, pallets and stock crates, sign gantries, service bridges, railings, columns and trusses.
EN10210 S355joh Mild Steel Pipe
Product nameEN10210 ERW  S355joh Mild Steel Pipe
Out diameter21-660mm
specificationthickness4mm-25mm
length6-18m or others according to the client
Steel materialA53 Grade B, API 5L X42, X46, X52, X56,X60, X65, X70 etc
usageused for gas, petroleum, water ,oil and other liquid transportation or construction
endsplain or beveled(can be protected by plastic pipe cap)
surfacebared or paint with oil, bitumen,1-3 layer PE (outside or inside anti-corrosion treatment can supply)
Inspectionwith hydraulic testing, eddy current , infrared or X-Ray test
also with chemical and physical property inspect
techniqueERW welded pipe
typewelded
Welded line typelongitudinal welding
Section shaperound
packagein bulk, or other methods according to the client
Payment termT/T or L/C
Delivery time20-30 days after deposit or according to the quantity
Place of originTianjin, China
Main marketMiddle East,Africa, Southeast Asia, European and South America

EN10210 S355joh Mild Steel Pipe
EN10210 S355joh Mild Steel Pipe

2014年7月27日星期日

Steel Pipe Manufacturing Process

Overview:
The manufacture of steel pipe dates from the early 1800’s. Initially, pipe was manufactured by hand – by heating, bending, lapping, and hammering the edges together. The first automated pipe manufacturing process was introduced in 1812 in England. Manufacturing processes have continually improved since that time. Some popular pipe manufacturing techniques are described below.
Lap Welding
The use of lap welding to manufacture pipe was introduced in the early 1920’s. Although the method is no longer employed, some pipe that was manufactured using the lap welding process is still in use today.
In the lap welding process, steel was heated in a furnace and then rolled into the shape of a cylinder. The edges of the steel plate were then “scarfed”. Scarfing involves overlaying the inner edge of the steel plate, and the tapered edge of the opposite side of the plate. The seam was then welded using a welding ball, and the heated pipe was passed between rollers which forced the seam together to create a bond.
The welds produced by lap welding are not as reliable as those created using more modern methods. The American Society of Mechanical Engineers (ASME) has developed an equation for calculating the allowable operating pressure of pipe, based on the type of manufacturing process. This equation includes a variable known as a “joint factor”, which is based on the type of weld used to create the seam of the pipe. Seamless pipes have a joint factor of 1.0. Lap welded pipe has a joint factor of .6.
Electric Resistance Welded pipe manufacturing
Electric resistance welded (ERW) pipe is manufactured by cold-forming a sheet of steel into a cylindrical shape. Current is then passed between the two edges of the steel to heat the steel to a point at which the edges are forced together to form a bond without the use of welding filler material. Initially this manufacturing process used low frequency A.C. current to heat the edges. This low frequency process was used from the 1920’s until 1970. In 1970, the low frequency process was superseded by a high frequency ERW process which produced a higher quality weld.
Over time, the welds of low frequency ERW pipe was found to be susceptible to selective seam corrosion, hook cracks, and inadequate bonding of the seams, so low frequency ERW is no longer used to manufacture pipe. The high frequency process is still being used to manufacture pipe for use in new pipeline construction.
Electric Flash Welded pipe manufacturing
Electric flash welded pipe was manufactured beginning in 1927. Flash welding was accomplished by forming a steel sheet into a cylindrical shape. The edges were heated until semi-molten, then forced together until molten steel was forced out of the joint and formed a bead. Like low frequency ERW pipe, the seams of flash welded pipe are susceptible to corrosion and hook cracks, but to a lesser extent than ERW pipe. This type of pipe is also susceptible to failures due to hard spots in the plate steel. Because the majority of flash welded pipe was produced by a single manufacturer, it is believed these hard spots occurred due to accidental quenching of the steel during the manufacturing process used by that particular manufacturer. Flash welding is no longer used to pipe manufacturing.
Double Submerged Arc Welded (DSAW) pipe manufacturing
Similar to other pipe manufacturing processes, the manufacture of Double Submerged Arc Welded Pipe involves first forming steel plates into cylindrical shapes. The edges of the rolled plate are formed so that V-shaped grooves are formed on the interior and exterior surfaces at the location of the seam. The pipe seam is then welded by a single pass of an arc welder on the interior and exterior surfaces (hence double submerged). The welding arc is submerged under flux.
The advantage of this process is that welds penetrate 100% of the pipe wall and produce a very strong bond of the pipe material.
Seamless pipe has been manufactured since the 1800’s. While the process has evolved, certain elements have remained the same. Seamless pipe is manufactured by piercing a hot round steel billet with a mandrel. The hollowed steel is than rolled and stretched to achieve the desired length and diameter. The main advantage of seamless pipe is the elimination of seam-related defects; however, the cost of pipe manufacturing is greater.
Early seamless pipe was susceptible to defects caused by impurities in the steel. As steel-making techniques improved, these defects were reduced, but they have not been totally eliminated. While it seems that seamless pipe would be preferable to formed, seam-welded pipe, the ability to improve characteristics desirable in pipe is limited. For this reason, seamless pipe is currently available in lower grades and wall thicknesses than welded pipe.

Conclusion
Continual advances in materials and welding techniques have resulted in dramatic improvements in the reliability of pipes. As mentioned, however, there is still pipe in use that is susceptible to corrosion and seam-related defects. These defects are identified through integrity assessments and are repaired when found.
pipe manufacturing today is subject to non-destructive tests such as ultrasonic testing and x-ray, as well as pressure-testing. Each individual section of pipe must be pressure-tested by the manufacturer, and new pipelines are also pressure-tested during the actual construction process.
Steel Pipe Manufacturing Process
steel pipe manufacturing techniques 

2014年6月17日星期二

API 5L 16 inch GR B STD ERW Pipe and Tube

API 5L 16 inch GR B STD ERW Pipe and Tube Mill: Huayang Steel Pipe Manufacturer
HYSP is professional carbon pipe supplier with API 5L, ISO9001 certified. We produce ERW carbon pipe for many kind of industry application. Our API 5L 16 inch GR B STD ERW Pipe and Tube is used as Line Pipes, EN10219 Structure Steel Pipe, ASTM A252 Piling Pipe, ASTM A53 Steel Pipes.
Product NameAPI 5L GR B STD ERW Pipe and Tube
Diameter16 inch (406.4MM)
Wall ThicknessSTD (9.53MM)
LengthRandom length from 3m to 12m
Pipe StandardAPI 5L, CSA Z245, ASTM A53, A106 or other standards
Steel GradeGR A, GR B, X42, X46, X52, X56, X60, X65, X70, S275, S355
TestHydro test, UT test, Flatten test, Impact test, DWT test if agreed etc
ApplicationLine pipe, fluid pipe, water pipe, structure steel tube,piling tube,
Pipe CoatingBlack painting, varnish paint, anti rust oil, or other coating required
PackagePlastic caps on both ends, Steel bundle, or acc. to customers' request
InspectionISO9001, SGS,BV, GL, Moody  or other TPI appointed by customer
Capacity10000 metric tons per month
Delivery time30 days against deposit or LC at sight
API 5L 16 inch GR B STD ERW Pipe and Tube
API 5L 16 inch GR B STD ERW Pipe and Tube
API 5L 16 inch GR B STD ERW Pipe and Tube could be produced in large mass production for your same project requirements. We can also do the FBE, 3PE coating on the external surface of our API 5L 16 inch GR B STD ERW Pipe and Tube.

2014年6月4日星期三

12 inch STD SRL A53 GR B ERW Steel Pipe China Manufacturer

We are very professional API 5L GRADE B steel pipe manufacturer. We have been API 5L, ISO 9001 certified and our API 5L Line Pipe could meet all international standard and TPI inspection such as BV, SGS, DNV etc.
12 inch STD SRL A53 GR B ERW Steel Pipe China Manufacturer
12 inch STD SRL A53 GR B ERW
HYSP is china's professional 12 inch STD SRL A53 GR B ERW Steel Pipe mill and exporter. We'd like to join hands with all international steel pipe trade or construction company. We will be your best partner.

12 inch STD SRL A53 GR B ERW Steel Pipe Specification

Product Name12 inch STD SRL A53 GR B ERW Steel Pipe
Diameter12 inch (323.9mm)
Wall ThicknessSTD 9.53mm
LengthSRL (single random length)
Pipe StandardASTM A53, A106, API 5L,ASTM A500, EN10219, EN10210 etc
Steel GradeGR A, GR B etc 
ApplicationFluid Steel Pipe, structure steel tube, system pipe, piling tube,
Pipe CoatingBlack painting, varnish paint, anti rust oil, or other coating required
PackagePlastic caps on both ends, Steel bundle, or acc. to customers’ request
InspectionISO9001, SGS,BV, GL  or other TPI appointed by customer
Capacity10000 metric tons per month
Delivery time30 days against deposit or LC at sight


2014年6月3日星期二

EN10219 S355JOH 12inch SCH STD DRL ERW Welded Steel Pipe Hollow Section

HYSP is one proud carbon steel pipe manufacturer in north of China. We produce and export many EN10219 S355JOH 12inch SCH STD DRL ERW Welded Steel Pipe Hollow Section for different countries's different projects as structure steel pipes.
Product NameEN10219 S355JOH 12inch SCH STD DRL ERW Welded Steel Pipe 
Diameter12inch (323.9mm)
Wall ThicknessSTD (9.53mm)
LengthDRL (double random length)
Pipe StandardEN10219, EN10210, ASTM A53, A106, API 5L
Steel GradeS355JOH or other steel grade required
TestUT test, Flatten test, Impact test etc
 ApplicationStructure steel tube, common use pipe, piling tube,
Pipe CoatingBlack painting, varnish paint, anti rust oil, or other coating required
PackagePlastic caps on both ends, Steel bundle, or acc. to customers' request
InspectionISO9001, SGS,BV, GL  or other TPI appointed by customer
Capacity10000 metric tons per month
Delivery time30 days against deposit or LC at sight
EN10219 S355JOH 12inch SCH STD DRL ERW Welded Steel Pipe Hollow Section
12inch SCH STD DRL ERW
EN10219 S355JOH 12inch SCH STD DRL ERW Welded Steel Pipe will be marked as qualified pipes only after we do all necessary tests on it, such UT test, impact test, flattening test, visual inspection etc. 
ISO9001 quality control system is our proud system not only for us, but also for our customer in the global world.