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Guangdong Wanmu Instrument Co., Ltd
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    No. 315, 3rd Floor, No. 19 Shenzhou Road, Huangpu District, Guangzhou City, Guangdong Province (Headquarters)
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Iron meter WM-TTL3
Product Overview: WM-TTL3 Iron Gauge is mainly used in the fields of mechanical equipment failure, including wear, corrosion, and fracture
Product details

Product Overview:

WM-TTL3 Iron GaugeMain application areas: The main ways of mechanical equipment failure include wear, corrosion, and fracture. The impact of wear and tear failure on mechanical equipment failures accounts for as much as 60% -80%. Lubricating oil is the blood of mechanical equipment, playing a role in sealing, lubricating, cleaning, cooling, and anti-corrosion in mechanical equipment. Lubricating oil contains mechanical wear information, namely the friction and wear characteristics of the surface materials of the friction pair. By monitoring the lubricating oil, not only can the contamination of the lubricating oil itself be detected, but also the wear status of the machine can be analyzed.

The WM-TTL3 iron analyzer can analyze the content of iron abrasive particles in various samples such as mineral oil, synthetic oil, hydraulic oil, gear oil, and lubricating grease in use. With the iron analyzer, mechanical wear parts can be detected in the early stages of wear, and serious losses can be avoided by replacement. The iron analyzer is a specialized oil quality analysis instrument that measures the PQ index, which is a quantitative number without a unit and has a good linear relationship with the content and particle size of iron filings in the sample.

Product Features:


1The WM-TTL3 iron meter adopts patented sensors and signal processing circuits, with good stability, high sensitivity, and a resolution of up to ppm

2Oil sample transfer and measurement are automatically performed, and one data can be measured in 10 seconds.

3. The accompanying PC data management software allows measurement data to be directly imported into the computer for data management, trend analysis, curve printing, and more.

4. The oil sample does not require processing and can be directly injected into the oil bottle for measurement.

5. Chinese and graphical interface, user-friendly operation.

6. Using micro switch buttons and coding knobs for input, any number and letter can be entered, and users can name files accordingly.

7. Easy to operate, can be directly tested without any processing, and does not require any testing consumables

8. Fast detection speed, it only takes 1 minute to get results for detecting a single oil product;

9. High detection accuracy and large amount of stored data.

10. By using electromagnetic induction technology, the content of abrasive particles in the oil sample is detected with an accuracy of ppm, and the Yateks wear spectrum analysis software accurately reflects the wear status of the equipment, constantly reflecting changes in equipment wear and whether the equipment wear is abnormal.

11. The sensor adopts a unique excitation coil and two symmetrically arranged induction coils technology, which makes the instrument more stable than a pair of mutual inductance coils.

Product Technical Data:


1measurement range0~15000PQ

2Detect the range of abrasive particles>1 μ m ferromagnetic abrasive particles

3Minimum detection value: 5PQ

4Strong magnetic field at the center of the air gapdegree ≥1.5T

5magnetic field gradient≥5.0T/cm

6Resolution: ± 1% (>500PQ) or ± 4PQ, take the maximum value

7Test time: 7 seconds

8Display screen: LCD128 × 64

9Environmental temperature: 10 ℃~30 ℃

10Relative humidity: (20~80)%

11Weight: 8KG

12Length x Width x Height: 380 * 430 * 170mm

13USB : 母口

14Power supply voltage: 220V AC ± 10%, 50Hz ± 10%

15Notes:

The instrument workplace should prevent vibration. If there is significant vibration in the surrounding area, it is advisable to take shock absorption measures;

Keep the test bench clean and avoid contact with corrosive substances such as acid and alkali as much as possible;

◆ To prevent electromagnetic interference, the laboratory should take shielding measures when there is a strong electromagnetic field in the environment;


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