Ss 304 16 Gauge Pipe
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Ss 304 16 Gauge Pipe

SS 304 16 gauge pipe is a high-quality stainless steel pipe that is widely used in many different industries and applications. With its excellent resistance to corrosion, high temperature resistance, and superior strength, SS 304 16 gauge pipe is a popular choice for many different applications.
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One of the key benefits of SS 304 16 gauge pipe is its durability. This pipe is built to last, and it can withstand even the most challenging environmental conditions. Whether you need a pipe that can handle high pressures, extreme temperatures, or harsh chemicals, SS 304 16 gauge pipe is capable of delivering exceptional performance.

Another advantage of SS 304 16 gauge pipe is its versatility. This pipe is suitable for use in a wide range of applications, from industrial processes to household plumbing. Whether you need a pipe for chemical processing, food processing, or water distribution, SS 304 16 gauge pipe is up to the task.

Overall, SS 304 16 gauge pipe is an excellent choice for anyone in need of a high-quality, reliable pipe. With its outstanding durability, versatility, and resistance to corrosion, this pipe is sure to deliver the performance and longevity you need. So if you're in need of a pipe for your business or home, consider SS 304 16 gauge pipe and enjoy the benefits it can provide.

steel 304

304H trait

Alloy 304/304H (UNS S30400/S30409) is a modification of the most widely used "18-8" chromium-nickel austenitic stainless steel.
Carbon content is controlled in the range of 0.04-0.10% to increase strength at temperatures above 800°F (427°C).
It is an economical and versatile corrosion resistant alloy suitable for a wide range of general purpose applications.
It is common practice for 304H to be double authenticated as 304 and 304H.
The high carbon chemistry of 304H allows 304 to meet the mechanical properties and grain size requirements of 304H.
Alloy 304/304H has general corrosion resistance similar to 304/304L.
It resists atmospheric corrosion, and moderately oxidizing and reducing environments.
However, due to its high carbon content, alloy 304/304H is prone to carbide precipitation in the heat-affected zone of the weld.
Alloy 304/304H is nonmagnetic in the annealed condition but becomes slightly magnetic when cold worked or welded.
It can be easily welded and machined with standard shop fabrication practices.

decay resistance

Alloy 304/304H has good resistance to atmospheric corrosion, food and beverages, and many organic and inorganic chemicals in moderately oxidizing to moderately reducing environments.
The alloy's high chromium content resists oxidizing solutions such as nitric acid up to 55% by weight and temperatures up to 176°F (80°C).
Alloy 304/304H is also resistant to moderately aggressive organic acids such as acetic acid.
The nickel present in the alloy is resistant to moderately reducing solutions such as pure phosphoric acid, regardless of concentration, in cold solutions and up to 10% diluted hot solutions.
The alloy also operates successfully at moderate temperatures in caustic solutions that do not contain chlorides or fluorides.
Alloy 304/304H does not perform well in more reducing environments, such as those containing chlorides and sulfuric acid.
Alloy 304/304H performs well in freshwater service where chloride levels are low (less than 100 ppm).
At higher chloride contents, this grade is prone to crevice and pitting corrosion.
To be successful in these harsher conditions, a higher molybdenum content such as 316/316L is required.
Alloy 304/304H is not recommended for use in marine environments.
The corrosion resistance of alloys 304, 304L and 30H is about the same in most corrosive environments.
In environments that are sufficiently corrosive to cause intergranular corrosion in welds and heat-affected zones, alloy 304L should be used because of its low carbon content.

 

corrosion environment 304/304H Type 316L 2205(UNS S32205) 2507
0.2% hydrochloric acid >boiling >boiling >boiling >boiling
1% hydrochloric acid 86p 86 185 >boiling
10% sulfuric acid ~ 122 140 167
60% sulfuric acid ~ <54 <59 <57
96% sulfuric acid ~ 113 77 86
85% phosphoric acid 176 203 194 203
10% nitric acid >boiling >boiling >boiling >boiling
65% nitric acid 212 212 221 230
80% acetic acid 212p >boiling >boiling >boiling
50% formic acid ≤50 104 194 194
50% sodium hydride 185 194 194 230
83% phosphoric acid+2% hydrofluoric acid 113 149 122 140

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