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American Spike Super Automatic Wear Particle Analyzer
Product Introduction: The LNF Q230 automatic wear particle analyzer from the United States follows and meets the ASTM D7596 standard, which can achiev
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Product Introduction

1、 Product Introduction

American Spike Super Automatic Wear Particle AnalyzerLNF Q230 follows and meets the ASTM D7596 standard, which enables rapid qualitative and quantitative analysis of equipment wear (quantitative monitoring of total ferromagnetic particles and counting of large-sized ferromagnetic particles), equipment wear causes (intelligent abrasive identification and classification, i.e. intelligent ferrography technology), and oil contamination level (oil contamination level, ISO, NAS contamination level).

IIAmerican Spike Super Automatic Wear Particle AnalyzerTesting content

1Ferromagnetic particle detection (equipment wear degree detection)
Built in high-sensitivity magnetic sensor can detect the concentration of ferromagnetic particles (ppm) and the total number and size of ferromagnetic particles larger than 25um.

2Automatic classification of abrasive particles (i.e. iron spectrum analysis function, wear traceability analysis)
Automatically classify the abrasive particles in the lubricating oil into metal abrasive particles and non-metal abrasive particles according to the wear reasons of the equipment, and classify the abrasive particles into cutting wear, contact/sliding wear, fatigue wear, etc; Non metallic abrasive particles are mainly divided into fibers, bubbles, water droplets, etc.

3. Particle count (i.e. degree of oil contamination)
By directly capturing the morphological characteristics of various solid mechanical particles, the size and quantity of abrasive particles are automatically calculated, and the pollution level of the oil is automatically calculated according to ISO, NAS, and international mainstream pollution evaluation standards.

IIIFerromagnetic particle detection technology

1. Introduction

The ferromagnetic wear particles in the tested oil can cause changes in the impedance of the inductor coil when they flow into or through it. By detecting the impedance changes of the inductor coil, we can:
1) Total amount of ferromagnetic particles (PPM)
2) Size and quantity of ferromagnetic particles


The classic friction and wear theory indicates that the total amount and size of wear particles generated by equipment are directly proportional to the degree of equipment wear:

2. Detection of the total amount of ferromagnetic particles

3. Detection of size and quantity of ferromagnetic particles

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