ASTM B111 C70600 Tube
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Shihang ASTM B111 C70600 Tube
Shihang can manufacture an extensive range of C70600 tubes in different specifications such as ASTM B111. This specification establishes the requirements for ferrule stock and a seamless tube of copper alloys of a specified range of diameters.
Shihang ASTM B111 c70600 tube is widely used in the surface condenser, heat exchanger, and evaporators. Our ASTM B111 c70600 tube is produced by processes such as extrusion, casting, drawing, straightening, annealing, trimming, and other processes that produce a seamless tube in the specified condition.
Shihang ASTM B111 C 70600 tube offers moderately corrosion cracking, excellent corrosion resistance, high strength, and good creep resistance at elevated temperatures. Other standard specifications for the c70600 tube we offer are: IS H3300, BS EN 12451, EN 12449, GB/T8890, etc.
In China, we are a reliable manufacturer that offers top-quality, clean, bright, and smooth in surface ASTM B111 c70600 tube. You can use our ASTM B111 70600 tube steam turbines, petrochemical plants, coolers, power plants, water evaporators, boiler, shipbuilding & repair, and many more.
We design ASTM B111 c70600 tubes in various dimensions, size, shapes, length, thickness as per the demands are given by the clients. As leading producers and suppliers of ASTM B111 c70600 tubes, we make use of our latest tools and technology to ensure an excellent quality product.
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ASTM B111 C70600 Tube: The Ultimate FAQ Guide
Whether you’re looking for more information or the best place to buy ASTM B111 C70600 Tubes, this guide has a perfect solution for you.
It covers both basic and advanced concepts about copper nickel tubes.
What is aASTM B111 C70600 Tube?
ASTM B111 C70600 Tuberefer to those tubes with a chemical compound mainly of copper and nickel with varying quantities.
Copper has a percentage composition range of 88-90%, while nickel has a percentage range of 8-10%.
These chemical properties suit their uses in various extreme applications and environments, such as in salty and high temperatures.
The ASTM B111 copper nickel tubes are specifically design for condenser tubes applications.
Copper nickel tube
Where can you use ASTM B111 C70600 Tube?
You can use ASTM B111 C70600 Tubein:
- Marine application
- Heat exchangers
- Condenser tube systems
- Underwater tubing
- Water treatment plants
- Desalination plants
What are the Benefits of using ASTM B111 C70600 Tube?
Main advantages of Cunifertubes are:
- ASTM B111 C70600 tubes are non-corrosiveness; hence they offer durability.
- Lower operating cost since they don’t wear out easily
- ASTM B111 C70600 tubes have a versatile usage in applications with temperature fluctuations.
- You can alter their design to fit your specifications.
Which Chemical Elements are Present in ASTM B111 C70600tubes?
ASTM B111 C70600 tubes consist of two main elements with additional elements in small quantities.
In a given ASTM B111 C70600 tube, the percentage quantity of copper is between 88-89%.
Nickel has a percentage quantity of between 8-9%.
The remaining percentage constitutes of zinc, iron, lead, and manganese.
Is there any Drawback tousing ASTM B111 C70600 Tubes?
Yes. Cost is the major setback when you intend to use ASTM B111 C70600 tubes.
They cost slightly higher compared to conventional tubes.
This means there is a need for proper budgeting before purchasing these tubes.
However, given their exceptional properties and the durability they offer, the cost is a small setback.
How doASTM B111 C70600Pipes compare to ASTM B111 C70600 Tube?
Both C70600 pipe and ASTM B111 C70600 tube have the same chemical elements with the same proportion.
There function is the same, only that ASTM B111 C70600 tube has a wide range of relevant areas.
However, the difference is in their design, whereas a ASTM B111 C70600 pipe has a circular cross-sectional.
In contrast,an ASTM B111 C70600 tube can have varying cross-sectional surfaces such as a rectangular, square oval, or circular.
It is easy to fabricate the ASTM B111 C70600 pipe to fit your application’s need compared to fabricating a ASTM B111 C70600 tube.
ASTM B111 C70600 tube are more durable when you compare to ASTM B111 C70600 pipes.
How do you Connect ASTM B111 C70600 Tube?
Connection of ASTM B111 C70600 tubes can either be through screwing for threaded end ASTM B111 C70600 tube.
Or, it can be through welding for plain and beveled end ASTM B111 C70600 tubes.
Threaded end tube connection is relatively easier.
Before connecting, you have to check the ASTM B111 C70600 tube measurement and that of the connecting point for compatibility.
Then check on the gender of the tube and the connecting point.
For proper connection, these two should be of the opposite gender, that is, a male for a female end.
Once you have confirmed these steps, you are ready to connect.
The connecting procedure involves inserting the tube end to that of your application.
After that, you screw the tube end in an anti-clockwise direction until you have a tight connection.
Welding a beveled end involves inserting the tube end to that of your application, considering the beveled angle.
The next step is to weld around the connected region.
Ensure you do a proper welding procedure to minimize leakages.
Plain end welding is the same as beveled end welding, with the difference being the insertion point.
Beveled end depends on the beveled angle while a plain end is perpendicular to its surface.
It is critical to check for leakages on the joint before using your application.
Can you Weld ASTM B111 C70600Tubes?
Yes. You can weld ASTM B111 C70600 tubes using conventional methods.
Such methods include:
1. Resistance Welding
There are four types of resistance welding available for you to select.
They include; resistance butt welding, resistance spot welding, resistance projection welding, and resistance seam welding.
This type of welding has the following benefits:
- There is less pollution during operation and leaves the working surface clean.
- It is less costly to purchase and highly effective.
- It is a simple process to apply
- The heat concentration and heating time are less, resulting in minimal deformation on the surface.
- You can use it even on thin ASTM B111 C70600 tubes
- You don’t have to use a filler metal when using this type of welding.
However, the following are the drawbacks of using this method.
- Though the purchasing cost is little, it has a high maintenance cost, which increases the overall cost.
- High energy consumption.
- The welding process results in less tensile and fatigue strength joints.
2. Metal Inert Gas Welding
You can use metal inert gas welding is ideal for thin and average thick ASTM B111 C70600 Tube tubes.
Other benefits of using this method are:
- High welding speed rate
- Great toppling rate
- High welding pool visibility
- easy to automate the welding process
- It has less weld splatter
Metal inert gas usage has the following limitations:
- It is not ideal for thicker ASTM B111 C70600 tubes
- You have to prepare the surface of ASTM B111 C70600 tubes before using them, including rust removal.
- You cannot use it on vertically or overhead installed ASTM B111 C70600 tubes due to the fluidity of the welding puddle.
- It is unsuitable for outside welding due to the usage of a shielding gas that protects the welding surface purity.
3. Tungsten Inert Gas Welding
There are two types of tungsten inert gas welding that you can use, that is, orbital and manual tungsten inert gas welding.
Among the advantages that this method offers include:
- It allows for use in any position of ASTM B111 C70600 Tube, that is, either vertically, horizontal or overhead position.
- The welding process results in flawless joints due to the usage of a non-consumable electrode.
- It results in strong and high-quality welding.
- You can use them without applying a filler metal
- The joints are clean and non-corrosive.
The expected limitations of this method are:
- The welding process is time-consuming
- It is a complicated method that requires skilled professionals.
- The initial cost is relatively high
4. Manual Metal Arc Welding
The use of manual metal arc welding is advantageous because of:
- Their flexibility. You can move it from one place to another.
- There is no need for cleaning ASTM B111 C70600 tubes since it can work on rusty and dirty surfaces.
- You don’t have to use a shielding gas, and it allows for outdoor working regardless of the weather condition.
However, its use has several limitations such as;
- Less effective since it produces a lot of waste compared to other types of welding.
- It requires highly skilled experts to do the welding process. This is a limitation in case there aren’t such professionals.
What is the Maximum Length of ASTM B111 C70600 tubes?
The maximum length for ASTM B111 C70600tubes is 6 meters.
It is, however, possible to have a length that fits your specification by contracting a reliable manufacturer.
ASTM B111 C70600 Tube
How do you ProduceASTM B111 C70600Tubes?
There are two types of ASTM B111 C70600 tubes having different production processes.
The main types are seamless and welded ASTM B111 C70600 tubes.
Seamless ASTM B111 C70600 tubes have the following production methods:
- Mandrel mill
- Plug rolling mill
- Forging method
Welded ASTM B111 C70600 tubes have the following fabrication methods:
- Submerged arc welding
- Electric fusion welding
- High-frequency welding
- Electric resistance welding
How can you Cut ASTM B111 C70600 Tube?
Cutting ASTM B111 C70600 tubes helps in getting the correct fitting for your application.
Conventional cutting methods include:
· Abrasive Cutting
This is a manual cutting method that uses a circular blade.
Due to the manual cutting procedure, it is not ideal for band cutting due to their low cutting speed.
· Band Saw Cutting
Band saw cutting method though a cheaper and readily available, it is not a recommended option for use.
This is because of the uneven cutting surface that it produces.
The method is also not suitable for band cutting ASTM B111 C70600 tubes due to the production of burr and lack of the necessary tight tolerance
· Cold Sawing
Cold sawing is suitable for thin-walled ASTM B111 C70600 tubes and does not produce any burrs on the cutting surface.
It is an automated method that enhances the cutting of your ASTM B111 C70600tubes.
· Laser Cutting
Laser cutting is a precise method of cutting ASTM B111 C70600 tubes.
It produces less waste during the production process regardless of tubes’ hardness.
The main limitation of this method is its high cost of purchasing and maintenance.
· Lathe Cutting
Lathe cutting is best for cutting thin-walled ASTM B111 C70600 tubes and does not produce visible burrs on the cutting edge.
The limitation of using this method is the preparation time and also on the quantity of ASTM B111 C70600 tubes it can handle at a given time.
It also has a high kerf loss.
· Shear Cutting
The advantage of shear cutting is the cutting speed and the high volume of ASTM B111 C70600tubes it can cut in a given time compared to other cutting methods.
Shear cutting has a tight tolerance and does not produce any Kerf loss.
However, it has high tooling due to the customization of the die per cutting.
What is the Difference Between ASTM B111 C70600 Tubes and C71500 Tubes?
The main difference between ASTM B111 C70600 tubes and C71500 tubes is in the quantities of the chemical elements present.
In ASTM B111 C70600 tube, nickel percentage composition is between 8 and 10%, while in C71500 tubes, it ranges between 28-30%.
Copper has a percentage composition of between 88-90% in ASTM B111 C70600 tubes.
While 67-70% in C71500 tubes.
These chemical properties affect the different applications of ASTM B111 C70600tubes and C71500 tubes.
How do you Choose ASTM B111 C70600Tubes?
You need to put in mind the following factors when you are selecting your ASTM B111 C70600tubes:
Copper nickel tube
· ASTM B111 C70600Tube End Configuration
Proper compatibility involves checking on the end configuration of the tube and that of the piping system.
Common end configurations include beveled, threaded, and plain ends.
· Operating Pressure and Temperature
The operating pressure and temperature of ASTM B111 C70600 tubes should allow for smooth fluid flow.
As such, select a tube whose operating pressure and a temperature range between that of your application.
· Length and Thickness of ASTM B111 C70600Tubes
Length and thickness help in ensuring you have a perfect fit for your application.
Furthermore, thickness facilitates the smooth flow of fluid through the tubes and maintains the pressure flow.
When selecting the length, take note of the expansion rate of the ASTM B111 C70600 tubes and that of your application.
This minimizes rupture as a result of expansion due to an increase in temperature.
· Quality Standards
The ASTM B111 C70600 tubes you select should have all the quality standard certifications.
This ensures effective operation and durability to your application.
A reliable manufacturer needs to give you these certifications before purchasing the tubes.
Shop around for a price that you can afford without compromising on the quality of ASTM B111 C70600 tubes.
Generally, different manufacturers have their best price from which you can engage them.
Getting quality ASTM B111 C70600tubes at an affordable price helps you in cutting costs.
The kind of manufacturer you engage in for your ASTM B111 C70600 tubes should have the necessary certification to produce these tubes.
They should also be in a position to offer the progress of fabricating your tubes.
Check on their communication channel and how responsive they are to their clients.
This informs you of how they are going to handle your order.
Other after-sales services that they can offer to you, including packaging details and logistics arrangements, are an added incentive for selecting.
Can you Test ASTM B111 C70600 Tubes?
Yes, it is possible to test ASTM B111 C70600 tubes.
Testing assures you the quality of these tubes and guarantees maximum efficiency.
Critical test that you can subjectASTM B111 C70600 tubes include:
· Pitting Resistance Test
This test aims to quantitatively determine the strength of the ASTM B111 C70600 tube against the effect of pitting corrosion.
A digit specifies the strength value of a given ASTM B111 C70600 tube.
The higher the digit, the higher its strength is against pitting corrosion.
· Intergranular Corrosion Test
This test ascertains the corrosion resistance of ASTM B111 C70600 tubes when you subject them to specific conditions.
It helps in the early detection of degradation points along the surface of ASTM B111 C70600tubes.
Intergranular corrosion occurs when there is a subjection of these tubes to a corrosive environment.
· Mechanical Test
This test examines the ability of ASTM B111 C70600 tubes to machining.
It is from this test that you get to know how and where to use these tubes.
· Chemical Analysis
The chemical analysis examines the chemical elements within a given ASTM B111 C70600 tube.
This ensures you have the correct element and in the right proportion.
· Flattening and Flaring Test
Flattening and flaring test examines the ability of ASTM B111 C70600tubes to withstand compression and expansion under different environments.
Flattening test helps in getting the right load that you can have on top of these tubes without them flattening out.
The flaring test analyzes the ability of ASTM B111 C70600 tubes to expand without rupturing when fluid under given temperature flows through it.
· Hardness Test
This test determines the hardness level of your ASTM B111 C70600tubes.
This helps in understanding the machining property of the tubes and which tools to use.
Which Surface Finish can you have on ASTM B111 C70600 Tubes?
The following are the applicable ASTM B111 C70600 tube surface finishes that you can use:
· Matte Surface Finish
A matte surface finish leaves your ASTM B111 C70600 tube less susceptible to fingerprints and scratches.
ASTM B111 C70600 tubes have a uniform surface appearance and have enhanced chemical resistance.
Mirror surface finish gives your ASTM B111 C70600 tubes a mirror-like appearance.
The process entails buff or vertical grinding of the surface.
The alternative process includes electric sparking and polishing of the surface.
The key advantages of using this method include improving the tube’s surface roughness an enhanced coordination quality.
Mirror surface finishing is, however, a complex and delicate process.
A slight mishandling may result in wastage of the ASTM B111 C70600tube.
Sandblast surface finish option is easy to use compared to other methods since it only requires a blasting gun and compressed air.
The resulting surface is clean and uniform.
This facilitates further workings on the tubes, such as welding and painting.
A sandblast surface finish option, however, is susceptible to environmental reactions such as moisture.
To prevent this, ensure there is proper packaging of these tubes.
Key considerations when selecting which surface finish to apply on your ASTM B111 C70600 tubes are:
- The application speed of the surface finish method.
- The budget you want to spend on the surface finish
- The hardness level of your ASTM B111 C70600 tubes.
What are the Pressure Rating and Operating Temperature for ASTM B111 C70600 Tubes?
Copper nickel tube
Several factors affect the pressure rating and operating temperature of ASTM B111 C70600 tubes.
Such factors include thickness and the outer diameter of these tubes.
At Shihang we design and manufacture high quality copper nickel tubes.
Contact us today for best prices of ASTM B111 C70600 Tubes.