Grease Microscope Mechanical Impurity Detector
USD $7800 - $8500 /Piece
Min.Order:1 Piece
Hunan Addition Instruments and Apparatus Co., Ltd.
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Grease Microscope Mechanical Impurity Detector
Product Model: JF0336
Product Introduction
This instrument is designed and manufactured according to the requirements of the People's Republic of China petrochemical industry standard SH/T0336 "Grease mechanical Impurity content test Method". It is suitable for measuring the content of mechanical impurities in lubricating grease.
Technical Parameter
1. Measurement accuracy 0.01, Resolution 0.01
2. Grease is coated on the glass counting plate and observed with a measuring instrument (special microscope). Measure the size and number of impurity particles in grease.
1) Eyepiece (micrometer microscope) : eyepiece magnification: 10 times
2) The eyepiece scale value is: 0.1×100 cells = 10 mm
3) Measurement accuracy: ±0.005 mm.
4) Objective magnification: 10 times; Corresponding working distance; 7.31 mm
5) The total magnification is equal to the magnification of the objective lens × the magnification of the eyepiece: 10×10=100 (times)
6) Mechanical cylinder length: 160 mm
7) Coarse focus range: 15 mm
8) Micromodulation value: 0.002 mm
9) Moving platform: lateral movement range: 76 mm
10) Longitudinal movement range: 50 mm
11) Cursor cell value: 0.1 mm
12) Weight of the instrument: 6 kg
3. HS Code: 9027899090
Performance characteristics
◆ Grease impurity content measuring instrument (microscope method) is a precise structure, simple operation, comfortable observation of the microscope method to measure the content of mechanical impurities in grease optical instrument.
◆ The instrument is mainly composed of measuring instrument (microscope), number board, glass cover piece, micrometer eyepiece, etc.
◆ Laboratory intelligent control module system, realize remote intelligent information management of Internet of things, cloud platform can real-time monitor the running state of the instrument, the use of personnel information, use time, test duration, frequency of use, different use scenarios and other data.
◆ Image acquisition, image processing, geometric measurement, constant times printing, image stitching;
◆ Through the mouse drawing line, circle the particle outline, calculate the particle diameter, perimeter, area, major axis, minor axis of each particle, and analyze the total area of the target, the total number of particles, the number of particles/square millimeters, the percentage of phase area; ◆ Optional particle interval counting;