Factory Low Price H62 C27200 C27000 Thin Wall Small Diameter Brass Capillary Tube /Pipe / Tubing
advantages of Using H62 C27200 C27000 Brass c APIllary tubes in industrial applications Brass capillary tubes are a popular choice in various industrial applications due to their unique properties and advantages. Among the different types of brass Materials available, H62 C27200 and C27000 are widely used for their excellent performance and durability. These thin-walled small diameter…
advantages of Using H62 C27200 C27000 Brass c APIllary tubes in industrial applications
Brass capillary tubes are a popular choice in various industrial applications due to their unique properties and advantages. Among the different types of brass Materials available, H62 C27200 and C27000 are widely used for their excellent performance and durability. These thin-walled small diameter tubes offer a range of benefits that make them ideal for a variety of applications. One of the key advantages of using H62 C27200 and C27000 brass capillary tubes is their high corrosion resistance. Brass is known for its resistance to corrosion, making it a reliable choice for applications where exposure to moisture or harsh chemicals is a concern. This property ensures that the tubes maintain their integrity and performance over time, even in challenging environments. In addition to their corrosion resistance, H62 C27200 and C27000 brass capillary tubes also offer excellent thermal conductivity. This makes them ideal for applications where heat transfer is a critical factor, such as in HVAC systems, heat exchangers, and refrigeration units. The high thermal conductivity of brass allows for efficient heat transfer, helping to improve the overall performance and energy efficiency of the system.Labels a | Calculated mass c | ||||||||||
Nominal linear Mass T& C b,c | Wall Thick- ness | em, Mass Gain or Loss Due to End Finishing d | |||||||||
Outside Diameter | inside Diameter | Drift Diameter | Plain- end | kg | |||||||
round Thread | Buttress Thread | ||||||||||
wpe | |||||||||||
D | kg/m | t | D | mm | kg/m | Short | Long | RC | SCC | ||
mm | mm | mm | |||||||||
1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 |
8 5/8 | 24 | 219.08 | 35.72 | 6.71 | 205.66 | 202.48 | 35.14 | 10.93 | — | — | — |
8 5/8 | 28 | 219.08 | 41.67 | 7.72 | 203.64 | 200.46 | 40.24 | 10.07 | — 12.44 | — 12.57 | — 2.51 |
8 5/8 | 32 | 219.08 | 47.62 | 8.94 | 201.2 | 200.02 e 198.02 195.58 | 46.33 | 9.39 | 12.44 | 12.57 | 2.51 |
8 5/8 | 32 | 219.08 | 47.62 | 8.94 | 201.2 | 193.68 e | 46.33 | 9.39 | 11.6 | 11.68 | 1.62 |
8 5/8 | 36 | 219.08 | 53.57 | 10.16 | 198.76 | 193.04 | 52.35 | 8.72 | 10.73 | 10.77 | 0.71 |
8 5/8 | 40 | 219.08 | 59.53 | 11.43 | 196.22 | 190.5 | 58.53 | — | 10.73 | 10.77 | 0.71 |
8 5/8 | 40 | 219.08 | 59.53 | 11.43 | 196.22 | 187.6 | 58.53 | — | 9.88 | 9.87 | –0.20 |
8 5/8 | 44 | 219.08 | 65.48 | 12.7 | 193.68 | 64.64 | — | 8.88 | 8.85 | –1.21 | |
8 5/8 | 49 | 219.08 | 72.92 | 14.15 | 190.78 | 71.51 | — | ||||
9 5/8 | 32.3 | 244.48 | 48.07 | 7.92 | 228.6 | 224.66 | 46.2 | 11 | — 14.48 | — 13.87 | — 2.74 |
9 5/8 | 36 | 244.48 | 53.57 | 8.94 | 226.6 | 222.63 | 51.93 | 10.36 | 13.59 | 12.97 | 1.84 |
9 5/8 | 40 | 244.48 | 59.53 | 10.03 | 224.4 | 222.25 e 220.45 218.41 218.41 216.54 216.54 | 57.99 | 9.69 | 13.59 | 12.97 | 1.84 |
9 5/8 | 40 | 244.48 | 59.53 | 10.03 | 224.4 | 215.90 e | 57.99 | 9.69 | 12.78 | 12.15 | 1.01 |
9 5/8 | 43.5 | 244.48 | 64.74 | 11.05 | 222.4 | 215.90 e 212.83 212.83 | 63.61 | — | 12.84 f | 12.15 | 1.01 |
9 5/8 | 43.5 | 244.48 | 64.74 | 11.05 | 222.4 | 212.72 e | 63.61 | — | 12.03 | 11.39 | 0.25 |
9 5/8 | 47 | 244.48 | 69.94 | 11.99 | 220.5 | 212.72 e 210.29 210.29 209.58 206.38 203.23 200.02 | 68.75 | — | 12.09 f | 11.39 | 0.25 |
9 5/8 | 47 | 244.48 | 69.94 | 11.99 | 222.5 | 68.75 | — | 10.57 | 9.92 | –1.22 | |
9 5/8 | 53.5 | 244.48 | 79.62 | 13.84 | 216.8 | 78.72 | — | 10.63 f | 9.92 | –1.22 | |
9 5/8 | 53.5 | 244.48 | 79.62 | 13.84 | 216.8 | 78.72 | — | 10.57 | 9.92 | –1.22 | |
9 5/8 | 53.5 | 244.48 | 79.62 | 13.84 | 216.8 | 78.72 | — | 10.63 f | 9.92 | –1.22 | |
9 5/8 | 53.5 | 244.48 | 79.62 | 13.84 | 216.8 | 78.72 | — | 9.58 | 8.92 | –2.22 | |
9 5/8 | 58.4 | 244.48 | 86.91 | 15.11 | 214.25 | 85.47 | — | 9.65 f | 8.92 | –2.22 | |
9 5/8 | 58.4 | 244.48 | 86.91 | 15.11 | 214.25 | 85.47 | — | 9.58 | 8.92 | –2.22 | |
9 5/8 | 58.4 | 244.48 | 86.91 | 15.11 | 214.25 | 85.47 | — | 9.65 f | 8.92 | –2.22 | |
9 5/8 | 58.4 | 244.48 | 86.91 | 15.11 | 214.25 | 85.47 | — | — | — | — | |
9 5/8 | 59.4 | 244.48 | 88.4 | 15.47 | 213.5 | 87.37 | — | — | — | — | |
9 5/8 | 64.9 | 244.48 | 96.58 | 17.07 | 210.3 | 95.73 | — | — | — | — | |
9 5/8 | 70.3 | 244.48 | 104.62 | 18.64 | 207.2 | 103.82 | — | — | — | — | |
9 5/8 | 75.6 | 244.48 | 112.51 | 20.24 | 204 | 111.93 | — |
How to choose the Right size and Wall thickness for Brass Capillary Tubes
When it comes to choosing the right size and wall thickness for brass capillary tubes, there are several factors to consider. Brass capillary tubes are commonly used in a variety of industries, including medical, automotive, and HVAC. They are known for their high corrosion resistance, excellent thermal conductivity, and malleability. However, selecting the correct size and wall thickness is crucial to ensure optimal performance and longevity of the tubing. One of the first things to consider when choosing the right size for brass capillary tubes is the application in which they will be used. Different applications may require different sizes of tubing to accommodate specific flow rates or pressure requirements. For example, in medical applications, smaller diameter tubes may be preferred for precise fluid delivery, while larger diameter tubes may be needed for industrial applications that require higher flow rates. In addition to considering the application, it is important to take into account the material properties of the brass capillary tube. Brass is a versatile material that can be easily manipulated to achieve different sizes and wall thicknesses. The size of the tube is typically measured by its outer diameter, while the wall thickness is measured by the difference between the outer and inner diameters. It is important to choose a size and wall thickness that will provide the necessary strength and durability for the intended use. Another factor to consider when choosing the right size and wall thickness for brass capillary tubes is the pressure and temperature requirements of the application. Higher pressure and temperature environments may require thicker walls to withstand the increased stress and prevent Leakage. It is important to consult with a knowledgeable Supplier or engineer to determine the appropriate size and wall thickness for your specific application.