Three classification methods of 304 stainless steel pipe and use of stainless steel pipe


Three classification methods of 304 stainless steel pipe and the use of stainless steel pipe Three classification methods of stainless steel pipe and the use of stainless steel pipe are divided according to the use: decorative pipe, industrial pipe, food sanitary pipe, nuclear power pipe, etc.; according to the external type: round pipe , square tube, shaped tube, capillary tube, etc.; according to the composition: austenite, ferrite, dual phase steel, super double equal. According to different fields, the required materials are different. For example, if you can use 201 places like decoration, there is no need to use 316L, the price difference is very large, and the nuclear power, chemical industry, food and other industries are required to be stricter. Corrosion resistance and pressure resistance are required. If the composition is not suitable, it will be dangerous.

Rapid prototyping with 3D Printing is the quick, easy, cost effective way to turn great ideas into successful products. Do you need concept modeling to put your newest ideas to the test? What about functional prototyping to gauge performance before committing to costly production tooling? Rapid prototyping solutions from Stratasys will give you the flexibility to create, test and refine in ways you never thought possible so you can go to market faster than ever before.


Everyone knows that 3D printing is an excellent way to produce prototypes for concept review or form-fit-function testing, but the examples listed are evidence that it`s becoming an increasingly popular method for producing [real" parts. This is especially true when volumes are low enough that casting and molding are not cost effective, or where part complexity prohibits processes like machining. Before you begin work on your next medical device or aerospace component, however, consider the following:


Technology: PFMOLD uses three different additive manufacturing processes: direct metal laser sintering (DMLS), selective laser sintering (SLS), and stereolithography (SL). By virtue of its ability to create fully dense metal parts on demand, DMLS is a tested and proven option for end-use applications, although SLS is often an excellent solution for low-volume plastic end-use components. SL has always been a prototype-centric process, although secondary coating technologies exist to add durability to SL`s resin-based parts.


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