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    Since the development of stainless steel over hundred years ago, it has become world’s most used and popular material.

    Since stainless steel has the notable corrosion resistance that helps in increasing features with chromium content. The

    resistance can be shown in reducing acids as well as against pitting attacks such as in chloride solutions. It requires low

    maintenance, and is familiar to luster thus making it an ideal and best material for SS pipes.

    This versatile material is indispensible in wide industries. This may contain number of application especially for SS

    pipes that benefit user with positive properties.

    Iron-containing alloys made from more than two chemical elements are known as stainless steel. It is widely been used in

    comprehensive range of applications. Stainless steel alloy is basically steel alloy with iron, nickel, and chromium

    percentage contents in abundance.

    The stainless steel has been in presence for centuries, since it is vulnerable toward corrosion and works better in tough

    condition. The stainless steel gets recognized late in year 1800’s with a combination of iron-chromium with offered rust

    resistance. Since, then it is mold into stainless steel pipes so that it gets used for number of industrial applications.

    In 1912, a researcher of brown-firth laboratory founded a martensitic SS alloy finally. The new material got labeled as

    Staybrite. The stainless steel alloy comprises of iron alloy with minimum amount of chromium up to 10.5%. You can see

    tremendous variety of alloys in the market, the only thing they differ is in chemical composition. The alloying elements are

    titanium, nickel, carbon, copper, nitrogen that can boost formability, strength, and other SS properties.

    The stainless steel pipe is available in different product type such as welded pipes and seamless pipes. The composition

    may vary and this makes it possible to use it in respective industries. Generic industrial company use stainless steel pipe

    for regular use.

    Different Types of Steel Tubing and Stainless Steel Piping

    Pipes and tubes are sometimes difficult to classify, and tend to be distinguished based on function. In addition to these

    classifications, stainless steel is also distinguished by type and grade.

    304 Stainless Steel Pipe

    For tubing and piping applications, type 304 stainless steel is a common selection because it is highly chemical- and

    corrosion-resistant. However, type 304 stainless steel is not compatible with applications where temperatures fall between

    800 and 1640 degrees Fahrenheit (F) because it is prone to carbide precipitation, a result of the material’s .08 percent

    carbon content limit. Stainless steel type 304L circumvents this problem because it has a lower carbon content limit, and

    therefore can be subjected to welding and higher temperature applications. Other types of stainless steel often possess

    additives (such as nickel or molybdenum) which strengthen traits that are desirable in particular applications.

    Stainless Steel Tubing for General Corrosion-Resistance

    Stainless tube general category of steel is

    appropriate for applications that require corrosion resistance above other traits. Ferritic or martensitic types of steel

    (those made with the most chromium) are manufactured to be either heat-treated or annealed. Austenitic Stainless steels

    (those with high chromium and nickel contents) offer even more resistance, and can be used under the same general conditions

    as ferritic and martensitic types.

    Stainless Steel Pressure Pipe

    This type of stainless steel pipe is made from either solid chromium or a chromium and nickel combination. Types of

    stainless steel pressure pipe include seamless and welded pipe, electric fusion welded pipe for high-pressure applications,

    large diameter welded pipe for corrosive or high-temperature applications, and seamless and welded ferritic and austenitic

    stainless steel pipe.

    Stainless Steel Sanitary Tubing

    For applications where stainless steel tubing or piping must come into contact with food and other sensitive products,

    sanitation is a high priority. Stainless steel sanitary tubing is used in such applications because it has high corrosion-

    resistance, doesn’t tarnish, and is easy to keep clean. For specific applications, different tolerances can be achieved. The

    grade typically used for these applications is ASTMA270.

    Stainless Steel Mechanical Tubing

    In applications such as cylinders, bearings, and other hollow formed parts, stainless steel mechanical tubing is

    typically used. Tubing can manipulated to have a variety of cross-sectional shapes, such as square and rectangular, in

    addition to the more traditional, round tubing cross-section. Typically, ASTMA 511 and A554 grades are employed for

    mechanical tubing applications.

    Stainless Steel Aircraft Tubing

    In highly-specific aircraft applications, chromium and nickel type stainless steel is used because of their heat and

    corrosion-resistance. Found in applications that require high-strength, stainless steel aircraft tubing can be work-hardened

    or welded, although work-hardened pieces shouldn’t be used with some kinds of corrosive substances. Low-carbon types of

    stainless steel are a common choice for welded parts.

    For applications that require seamless and welded tubing in larger sizes (1.6 to 125 mm in outside diameter), aircraft

    structural tubing is used—this type of stainless steel is manufactured according to Aerospace Material Specifications (AMS)

    or Military Specifications (MIL Specs).

    Aircraft Hydraulic-Line Tubing

    Another type of aircraft tubing, aircraft hydraulic-line tubing is used in aerospace applications as fuel-injection lines

    and hydraulic systems, and tends to be small. It is often manufactured from types 304 or 304 L stainless steel because of the

    steel’s high-strength, corrosion-resistance, and ductility.

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