
Smooth Copper Tube C12200
Why Choose Us
High Quality
YEXIANG Metal Tech taking science and technology as the guide, we are committed to the R&D and manufacturing of high-efficiency heat exchange tubes. We have brought together the most advanced high-efficiency heat exchange tube manufacturing technologies, processes and equipment. We rely on years of experience in the development of high-efficiency heat exchange tubes to continuously introduce more efficient products to our customers. At the same time, we also focus on product quality management and have established strict quality management systems and production standards in accordance with European and American standards.
Flexible innovation
YEXIANG is a young company with innovative capabilities. We always regard innovative products to drive the development of the industry as one of our long-term goals!
Integrity and reliability
The trust given to customers means that we are always obligated to provide the best quality. No matter now or in the future, YEXIANG will always do things in a responsible way!
Professional Team
Our professional team collaborate and communicate effectively with one another, and are committed to delivering high-quality results. They are capable of handling complex challenges and projects that require their specialized expertise and experience.
What is Smooth Copper Tube
Copper tube is most often used for the supply of hot and cold tap water, and as a refrigerant line in HVAC systems. There are two basic types of copper tube, soft copper and rigid copper. Copper tube is joined using flare connection, compression connection, pressed connection, or solder. Copper offers a high level of corrosion resistance but is becoming very costly.
Related Product
Copper High Performance Evaporating Tube
This tube type has a unique fin design. There are specially designed channels under the outer fins to communicate with each other. In a flooded evaporator, this special structure can form a large number of stable vaporization cores and promote liquid evaporation. The vaporization process becomes frequent in and out channels, which promotes the continuous overflow of bubbles when the refrigerant boils, strengthens the boiling effect, and can obtain excellent heat conduction performance, and its heat transfer coefficient can be up to 7 times that of light tubes. At the same time, on this basis, the inner wall of the tube is strengthened to minimize the formation of thermal resistance inside the tube, so that the heat exchange capacity on both sides of the copper tube can be maximized.
Copper Pool Boiling Evaporator Tube
The fish scales like profiles are distributed uniformly on the enhanced surface of the tube while the circular channels are formed helically under the profiles. The special porous structure has provided lots of nucleation points which are critical in flooded boiling. It has reduced the thickness of the liquid film between the bubbles and the tube wall to decrease the thermal resistance. Meanwhile, it can accelerate the circulation of liquid and bubbles in the fin root channels and cavity pockets due to the thermos-siphon effect, which improves both internal and external convection.
Low-finned tubes are a reliable solution for controlling the temperature of gases and liquids, or for evaporating and condensing refrigerants. Thanks to their larger heat transfer surface area, they offer considerable potential to save in terms of materials and fill volumes. The wide range of dimensions offered by Yexiang Solutions makes these products perfect for a broad scope of applications in the refrigeration and air conditioning industry, for oil/gas coolers in machinery and plant engineering, and for intermediate vapor superheaters in process engineering.
Copper Nickel High Performance Evaporating Tube
The addition of Fe and Mn in C70600 alloy greatly improves the corrosion resistance of this material. In clean seawater, the alloy can accept water flow rates up to 2.2-2.5%/s, and in slightly salt solutions it can accept The maximum speed can reach 4m/s. This alloy can avoid stress corrosion cracking and high temperature point denickeling. Therefore, the alloy has good corrosion resistance to clean or polluted seawater and river water. It is widely used in power stations, on heat exchangers using seawater in desalination and petrochemical plants.
Copper square tube is one of the many types of copper tubes. It is a pressed and drawn seamless tube. Light weight, good thermal conductivity, high low temperature strength. Often used in the manufacture of heat exchange equipment (such as condensers, etc.). It is also used to assemble low-temperature pipelines in oxygen production equipment. Small-diameter copper pipes are often used to transport pressured liquids (such as lubrication systems, oil pressure systems, etc.) and pressure measuring tubes used as instruments.
Copper Nickel High Performance Condensing Tube
Copper nickel high performance condenser tube is mainly used in shell-type condensers. Its delicately designed fins can make condensate film thinner, thermal resistance smaller and outlet of refrigerant smoother, thereby intensify the heat exchange outside the tube; the optimized inner fin shape and count No. Enhance the stir of water, which increases the heat-exchange efficiency inside the copper tube. The design of this type of copper tube optimizes and integrates the efficiency of heat-exchange inside and outside of the tube consequently, the overall efficiency of heat exchange is increased.
Level wound coil are produced using an advanced continuous casting and rolling technique. This method offers the coils a smooth and bright finish, as well as a long service life and outstanding performance, even in low temperature conditions.
Smooth Surface Copper Tube in Coil
Level wound coil are produced using an advanced continuous casting and rolling technique. This method offers the coils a smooth and bright finish, as well as a long service life and outstanding performance, even in low temperature conditions.
The precision of Yexiang IGT copper tube in coil provides superior heat transfer capability by increasing the inner contact surface. These seamless drawn tubes significantly increase the efficiency of heat exchangers. Typical applications include fin and tube evaporator and condenser coils for air conditioners, freezers, and refrigerators.
Advantages of Smooth Copper Tube
Lightweight
Copper is a lightweight material which allows professionals to transport the product easily.
Ductile
Because of its ductility, it can be easily bent and formed to shape without causing any fractures hence its common use with water applications.
Ease of Installation
Due to its ability to easily bend and its lightweight material, it is a popular choice by contractors because of its trouble-free service and ease of installation.
Corrosion resistant
Possesses excellent corrosion and high temperature resistance along with high mechanical strength.
Recyclable
Since copper tubing is manufactured from recycled materials, it can be recycled at the end of its lifespan which results in less dangerous emissions and chemicals being released into the environment.
Reacts well to water
Water does not get contaminated because the dangerous materials were removed in the beginning of the manufacturing process.
Copper tubes are important in the plumbing and HVAC industries. Both retrofitted and new industrial, commercial, and residential installations require copper tubes as paths for refrigerants to flow between components. Copper tubing is available in hard-drawn and soft tempers and a range of wall thicknesses and diameters. Standard fittings are designed to fit most system applications, and joints are reliable and cost-effective to produce. Sizing, fittings, and installation layout must be precisely specified for the system to run efficiently.
Another key function of copper tubing is to protect the refrigerant from environmental exposure and, therefore, from absorbing heat from the atmosphere. The copper tube should be insulated between the compressor and the evaporator on the low-pressure side of the system. This is why insulation material wrapping is often seen around copper tubing. Wrapping also prevents condensation on the tubes.
Sizes of Smooth Copper Tube
Copper tube sizes vary depending on the type of copper temper. The two basic copper tube types are hard-drawn and soft.
Hard-drawn copper
Hard-drawn copper tubes are stiff, rigid, and not easily bent. The commonly available lengths of hard-drawn copper are 10 feet or 20 feet. There are three standard weights with their own wall thickness: Type K, Type L, and Type M.
Type K has the thickest walls, Type M has the thinnest walls, and Type L falls between them. Type L outer diameters often range from 3/8 inch to 25/8 inch. Thicker types are best for applications that require higher pressures.
Soft copper
This type is flexible and available in 25-feet or 50-feet rolls. The outer diameter typically ranges from 1/8 inch to 1 3/8 inch. These tubings have ACR markings that indicate air-conditioning and refrigeration use. In the production process of soft copper tubes, they are cleaned and dehydrated to remove moisture. Then the tubes are filled with nitrogen gas before being sealed.
How is Smooth Copper Tube Manufactured?
There are a few ways that copper tubing can be manufactured but it all depends on economic factors such as the cost, availability, and the furnace capabilities. The manufacturing process begins with copper (raw material) which is created from the following materials: copper scrap, newly refined copper (also referred to as cathode copper or cathode), or copper ingots.

Copper scrap
After the copper wire is recycled, it is stripped of its insulation resulting in the formation of copper scrap. While copper scrap is a relatively clean material, it does contain some impurities which include zinc, tin, nickel, and even some iron. Only the highest quality grades of copper scrap are used when manufacturing copper tubing.
Cathode copper
Manufactured in large electrolytic cells that refine impure blister copper taken from smelting and refining furnaces.
Copper ingots
Mainly used by tube mills and bears a strong resemblance to large brick casts from re-melted cathode or refined scrap.
The raw copper is then melted in a furnace to remove any impurities. Once it has been purified, it is transferred into a cast to solidify. After it has hardened, it is removed from its casting to get resized and cleaned up.
Smooth Copper Tube Type
Seamless copper tubes
Seamless copper tubes are made by processing copper ingots or sheets into tubes at high temperatures in a process called cold drawing or cold rolling. Seamless copper tubes have a smooth surface and good corrosion resistance, and are widely used in coolers, high-temperature equipment, and the chemical industry.
Welded copper tube
Welded copper pipe refers to the copper strip processed through the pipe, the mouth of the pipe using automatic or manual welding process joints, known as welded copper pipe. Welded copper pipe is generally used in low-pressure areas such as water supply and gas, and is characterized by low price and easy processing.
Threaded copper pipe
Threaded copper pipe refers to the surface of the copper pipe after processing the thread, and threaded joints to cooperate with the use of connecting technology and made of pipe material, known as threaded copper pipe. Threaded copper pipe has a wide range of uses, and can be used in air conditioning, heating and other fields.
Flat copper tube
Flat plate copper tube is the copper plate after cutting, bending, molding and other processes later made of pipe, its shape is rectangular. Flat copper tube is usually used in the production of heaters, electronic components and petrochemical field of heat exchange equipment.
Special copper tubes
Special copper tube refers to the traditional tube on the basis of special treatment or processing technology made of tubes, with special materials, special shapes, special sizes and other characteristics. Special copper tubes are mainly used in aviation, aerospace, national defense and other fields.
How To Solder Copper Pipes
● Soldering Torch: Also called a soldering iron, the torch for this project is usually propane. It may also be a MAPP torch, which uses a gas that burns hotter than propane.
● Deburring Tool: This removes tiny jagged and uneven pieces of metal from your pipe and fitting. You can also use a metal file in a pinch.
● Wire Brush: This small brush made of wire is important for cleaning the inside of your pipe fittings.
● Pipe Cutter: Cut your pipe to size. A pipe cutter usually has a deburring tool on it.
● Emery Tape: This is also known as plumber's tape or emery cloth. Plumber's tape has an abrasive surface like a cloth sandpaper. It's made for smoothing rough edges on pipes.
● Steel Wool: This is sometimes presented as a substitute for emery tape. It's not ideal to deburr your pipes with this. It could leave behind tiny metal splinters that could interfere with your soldered bond. Use a scouring pad if you can't find emery cloth.
● Pipe Fittings: Choose the copper fittings that fit your pipe. Make sure they fit before jumping into soldering. If you're using the press-connect method, assure you've got press fittings.
● Copper Pipe: If you're making a repair, you'll need a short stretch of copper pipe. Otherwise, you're working on existing copper pipes that need a fitting soldered on.
● Solder: Also called soldering wire, this is what melts and flows into the joint between two pieces of copper pipe. It comes on a spool.
● Flux: Flux is another term for soldering paste. It protects the pipe fitting from the flame.
● Rag: Clean up extra flux with a rag. Also, dry up water that's leaked from the pipes. Plumbers sometimes use a piece of white bread to sop up excess droplets.
● Bucket: If you need to drain your pipes beforehand, you'll need a bucket.
● Ventilation: If you're especially sensitive to odors or smoke, wear a respirator. Work in a well-ventilated area as well.
● Protective Safety Glasses: Shield your eyes from any sparks or pieces of solder that fly off.
● Gloves: Heat-resistant gloves made for soldering are ideal. They're more flexible than welding gloves but still protect your hands from the flame.
● Heat Shield: Also called a burn blanket or torch blanket, this fireproof fabric is a must. It protects nearby walls, floors or anything else flammable.
● Fire Extinguisher: Keep a fire extinguisher close at hand in case of an accident. Make sure it's pressurized and full.
● Soldering Iron Stand: You'll need a stand for the hot iron. If your torch didn't come with one, make sure you have somewhere to set the iron down that's not flammable.
Preparation is the most important part of the process. If you're working on a pipe that's part of an active water line, make sure the water is shut off and drained. The pipe needs to be dry before you can solder anything. Having clean and smooth pipe fittings helps your soldering adhere well. After you've cleaned the inside of the pipe fitting, make sure the pipe itself is clean too. You'll need to make sure the pipe is free of buildup, dirt and fingerprints.
Clean the pipe by removing any burrs. Deburring a pipe means cleaning off the tiny irregularities and bumps, known as burrs. Reaming and deburring are the same thing.
Don't skip this step. Your fittings and pipes need to fit smoothly together. Any small bumps in the metal means the pieces won't be joined as solidly. It also means the pipes could be noisy when water flows through.
Follow these steps to prepare the inside of the copper pipe:
● Use a deburring tool to ream or deburr the inside of each pipe.
● Run the tool around the inside of the pipe. This removes the burrs.
● Make sure the copper shavings don't go into the pipe or pipe fitting.
● Tap the pipe to get any shavings to fall out.
● Clean the Outside of the Pipe
Once the inside of the pipe is smooth and clean of excess copper shaving, clean the outside too:
● Use a pipe brush, emery cloth or scouring pad to clean the outside of the pipe.
● Polish the pipe clean, so it shines like a new penny.
● Avoid getting fingerprints where the pipes will be joined. If you do, clean them off with plumber's tape or a stripping pad.
● To begin, clean the inside of each fitting with a wire brush.
Once you've prepped the copper pipe and the pipe fitting, it's time to add the flux:
● Using a flux brush, apply a thin layer of lead-free soldering paste (flux) to the portion of the pipe that you cleaned. The paste should cover the depth of the pipe fitting.
● Apply a thin layer of flux to the mating surface of the fitting.
● Insert the pipe into the fitting, making sure it is tight against the bottom of the fitting.
Soldering comes on a spool and looks like wire. You'll need 8 to 10 inches of the solder extended from the spool.
To prep the solder, follow these steps:
● Unwind the solder.
● Snip off as much as you need.
● Bend the amount of solder you want to use to a 90-degree angle.
The amount of solder should be roughly equal to the diameter of the pipe. A 1/2-inch pipe needs about 1/2 inch of solder. A 1-inch pipe needs about one inch of solder, and so forth.
When you've prepped yourself and your workspace, it's time to turn up the heat. Soldering produces fumes, so be ready with safety equipment:
● Light the propane torch.
● Put the tip of the flame against the middle of the fitting. Hold it there for 4 or 5 seconds or until the soldering paste begins to sizzle.
● Heat the opposite side of the fitting to ensure the heat is evenly distributed.
● Use the flame to heat the fitting. Allow the heated fitting to melt the solder.
● As soon as the solder melts, remove the flame.
If you're using a brand-new soldering iron, you'll need to "tin the iron" first. That means you put a bit of solder on the tip of the heated iron before using it.
Tip: Don't heat the solder itself. That will just melt it and make it break off. Heat the middle of your fitting instead.
Heat the pipe fitting opposite where you're applying the solder. Once the solder moves, the whole joint is hot enough to solder. There's no need to heat the pipe more than that. Don't burn off the flux, as it's protecting the pipe and allowing your solder to flow smoothly.
● Touch the solder to the pipe to see if it melts.
● If it doesn't, pull the solder away for moment, then try again.
● As soon as the solder melts, the pipe is ready for soldering.
When you've used up the bent part of the solder, you've got enough solder in the joint. Try to keep it from dripping into the pipe or leaking down the side.
● As the solder melts, it will flow into the fitting. Solder flows toward the hottest part of the metal.
● Allow 1/2 to 3/4 inches of solder to flow into the joint. This will likely match your pipe diameter.
● The second joint will likely go quicker than the first one. The pipe fitting is already hot, so the solder is ready to move.
Now the pipe and fitting are joined, clean them up a bit. Drips and extra flux are unsightly. It can even cause pipe damage.
Leftover flux can produce verdigris, a common green copper discoloration. That green hue, like what you see on old pennies, isn't harmless. It actually eats away at copper pipes. Luckily, flux cleanup is easy if you do it immediately:
● Wipe away the excess flux with a rag.
● After the pipe and fitting have cooled, install the pipe.
● Turn on the water and check for leaks.
● If the joint leaks, take it apart and re-solder it.
If you'd rather not use a torch or flame, you have two options of soldering copper pipe without it: copper bonding and press fittings.
● Copper bonding is like glue, but it's made specifically for copper pipes.
● Press fittings need a special tool to fasten properly. They also cost more than regular copper fittings.
Join Copper Tubing with Copper Bonding
● Clean and deburr your pipe and fitting as you would for regular copper pipe soldering.
● Apply the solderless copper bonding to the pipe. Squiggle a line like you would with glue.
● Insert the pipe into the fitting.
● Rotate the pipe 360 degrees, or one full turn, to spread the substance evenly.
● Let dry per the manufacturer's instructions.
Join Copper Pipe with Press Fittings
This process is also called crimping or press-connect joining. Make sure the pipes you have work with press fittings. You'll need a specific press tool to clamp the pieces together. A perk is your pipe doesn't have to be as spotlessly clean as it does for solder.
● Deburr your pipe, inside and out.
● Insert pipe into copper press fitting.
● Use a marker to note the end of the fitting on the pipe. Sometimes it can shift.
● Assure your pipe and fitting are still aligned.
● Use your press tool to crimp the fitting onto the pipe.
Soldering vertical copper pipe shouldn't be too different from working horizontally. If the joint and tip are hot enough, the solder should flow right in.
● Heat the middle of the fitting and apply the solder as soon as it starts to melt.
● Remove the heat once the solder starts moving.
● If the solder drips out, it's done.
● Wipe away the excess flux and clean the joint.
Repairing a hole in a copper pipe is a temporary fix. The solder for this is often 50/50 solder and contains lead. It's always best to replace a section of pipe instead of patching a pinhole.
Safety Tip: Never use leaded solder on copper pipes that carry potable water.
If you must solder a hole in copper pipe as a repair, here's how:
● Follow the steps above to clean and prep your pipe.
● Apply flux around the hole.
● Heat the pipe and melt the solder.
● Clean off any drips.
● Let the patched pinhole cool before you turn on the water again.
● Replace the entire section of pipe as soon as possible.
Our factory
Shandong YEXIANG Metal Tech Co., Ltd. is located in Binhai High-tech Industrial Park, Linshu County, Linyi City, Shandong Province. Relying on its strong financial strength and advanced high-efficiency heat exchange tube processing technology, YEXIANG Metal has a consistently stable and pragmatic style to gain a foothold in the fierce market competition. With high market share, high-value brand, high-tech content, high quality has established the company's influence in the copper processing industry and has become an excellent supplier to many listed group companies. It has now developed into a complete industrial chain integrating smelting, extrusion, finishing rolling, drawing and annealing. It has been rated as "Top Ten Copper Tube Enterprises" and "Top Taxpayer in the Copper Tube Industry" for many times.

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