Showing posts with label Corrosion. Show all posts
Showing posts with label Corrosion. Show all posts

ES1 Stainless Steel Resists Corrosion And Fatigue

NSK has developed ES1 stainless steel for use in high-humidity chemical and hygienic environments, where corrosion can impair the reliable long-term operating life of rolling bearings. ES1 provides superior corrosion resistance and rolling contact fatigue life to conventional AISI 440C steel in wet and aggressive environments; this helps to reduce maintenance, downtime and replacement-bearing costs.

Until the development of ES1, AISI 440C had been the general choice for use in bearing applications where corrosion resistance was a primary concern. Because the steel contains coarse eutectic carbides that act as crack initiators under rolling contact stress, the performance of AISI 440C had not always proven satisfactory. ES1 steel has no eutectic carbides but consists of fine carbides, nitrides and strong martensite, resulting in improved resistance to corrosion and fatigue. ES1 also has optimum nitrogen content and lower carbon content to suppress the eutectic carbides generated in conventional steel-making processes.

The operating benefits of this new material specification have been proven following extensive testing by NSK. ES1 outperformed other stainless steels in a five per cent aqueous sodium-chloride immersion test, a salt-water spray test, 5-N sulphuric acid and 5-N hydrochloride solution immersion tests and during life tests in water. In the aqueous sodium-chloride immersion test, test pieces of ES1, 13Cr stainless steel and AISI 440C were immersed in a five per cent aqueous sodium-chloride solution at room temperature for eight hours.

Before immersion in the solution, all surfaces of the test pieces were polished, then passivation treatment was applied. The test revealed that the conventional AISI 440C and 13Cr stainless steels rusted, whereas ES1 did not. Similar results were also recorded in the saltwater spray test, with both AISI 440C and 13Cr rusting considerably, while ES1 did not. Additional performance advantages were recorded for ES1 in the water-immersion test. The test bearings were 51305 thrust ball bearings with fluororesin cages and silicon-nitride balls.

They were subjected to a load of 980N (maximum contact pressure: 1470MPa) and rotating speed of 1,000rev/min, until the bearing vibration level reached about five times its initial value. Under these conditions the test results revealed that ES1 provides approximately five times longer life than AISI 440C. Because bearings manufactured from stainless steel are routinely exposed to cleaning solutions of sulphuric acid and hydrochloric acid, a further corrosion test was undertaken.

This evaluated the corrosion resistance of ES1, 13Cr stainless steel and AISI 440C in a 5-N aqueous sulphuric-acid solution and 5-N hydrochloric-acid solution. In the test, samples of each type of steel were immersed in the solutions at room temperature for 20 hours. The amount of corrosion was then measured. This revealed that ES1 is superior to both conventional stainless steels in its resistance to both sulphuric and hydrochloric acids.

Pepperl+Fuchs Offers Corrosion Monitoring System

Pepperl+Fuchs has introduced the CorrTran Corrosion Data Logging System. This Division 2/Zone 2 system complements the CorrTran MV online corrosion monitoring transmitter, allowing users to access real-time corrosion data via Ethernet, USB, SD card, or locally via videographic chart recorder. The corrosion data logging system is packaged in a portable, stainless steel enclosure weighing less than 20lbs
The transmitter outputs a 4-20mA HART signal that is used to scale the corrosion rate in a PLC or DCS system.

The rate of corrosion can now be evaluated with all other relevant process signals. The corrosion data logging system includes Pepperl+Fuchs' KFD2-HLC-EX1.D HART loop converter. This device receives HART data from the CorrTran MV corrosion monitor and delivers three distinct 4-20mA outputs that represent general corrosion, localised corrosion and conductance. These three variables can then be recorded and displayed on a paperless data recorder that features a full-colour touch-screen display, up to 16 analogue inputs, multiple types of media retrieval, and a Class I/Div 2, Zone 2 Ex-hazardous rating.

A Type 4X stainless steel enclosure allows for the most severe of installations. The lightweight construction also permits easy mobility for the system to be moved from one location to another, where a PLC/DCS might not be available.

Alloy Resists Heat And Corrosion

Etching is a controlled corrosive process and Inconel has been developed with a high nickel and chromium content, specifically to resist corrosion. The Inconel 617 nickel-chromium-cobalt-molybdenum superalloy offers excellent high-temperature strength and oxidation resistance It also exhibits excellent resistance to a wide range of corrosive environments, which to date have largely prevented the material being photo etched

Etching is a controlled corrosive process and Inconel has been developed with a high nickel and chromium content, specifically to resist corrosion.

Processing thin sheet Inconel by conventional means (punching and slitting) has always given cause for concern as parts tend to come out wavy and the material has a tendency to roll at the edges after processing. Now, thanks to this by the Precision Micro Technical Team, perfectly flat, precision parts can be produced from 0.006in Inconel sheet, economically and with outstanding repeatability.