Shanghai Ranchao Optoelectronics Technology Co., Ltd
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Portable iron meter
Product Introduction: The portable FerroCheck 2100 can be used on site, making it easy to carry. The detection time only takes 30 seconds.
Product details

Product Introduction

Brief introduction

Portable iron meterFerroCheck 2100 can be used on-site, is easy to carry, and the detection time only takes 30 seconds. The required sample volume is also very small, only 2ml is needed each time. This instrument complies with ASTM D 8120 standard,Standard Test Method for Ferrous Debris Quantification.

2、 Characteristics

Portable iron meterThe main feature is generated through ferromagnetic coilsElectromagnetic induction, the difference between this instrument and other instruments is that it performs two limit tests, one before sample addition and another after sample addition. By conducting two extreme measurements, it is ensured that the test results will not be affected by the environment. The instrument can be tested in the field and will not be affected by external large electrical or ferromagnetic equipment.

3、 The relationship with the oil spectrometer

The detection principle of ferromagnetic particles is the same as that of oil spectrometers. As wear intensifies, the particle size becomes larger and the concentration of wear increases. It complements elemental analysis, which can detect particles below 15 microns. However, as equipment wear intensifies, not only do large-sized abrasive particles increase, but small-sized abrasive particles also increase. Elemental analysis is used to detect the concentration of small-sized particles. The iron meter detects large sizes, which is also the significance of the existence of the iron meter. Elemental analysis is complementary to each other,

As the size of large particles increases, the likelihood of being detected by the oil spectrometer gradually decreases. Oil spectrometer requires the gasification and atomization of substances or particles. The larger the particles, the lower the possibility of gasification and atomization. Therefore, ferromagnetic particles compensate for the defect of large-sized particles in elemental analysis, and the two complement and confirm each other. In most cases, as the concentration of elemental analysis increases, the concentration of ferromagnetic particles also increases. In rare cases, in the case of corrosion and wear (i.e. rust), the concentration of elemental analysis is extremely high, and the concentration of ferromagnetic particles does not change much. In the case of low-speed overload, the concentration of ferromagnetic particles is extremely high, and the elemental analysis concentration does not change much. So the two are mutually reinforcing and complementary.

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