The ZFM-700 series drop emission modified asphalt microscope is developed based on the technology of bioluminescence microscopy, which has been improved and tested for many years. It is used to investigate the various characteristics of SBS substances added to asphalt. It adopts fluorescence microscopy technology and is equipped with B and G groups of excitation light. The system used to observe the fluorescence reaction of the sample on the microscope has high sensitivity. The drop emission fluorescence microscope can clearly observe and identify fluorescent stained samples that are difficult to observe with ordinary microscopes. On this basis, a temperature controlled radio station is configured to more deeply reveal the changes in the microstructure and chemical reactions of asphalt and other organic compounds during heat treatment. As a research method and experimental tool. The falling shot modified asphalt detection microscope is widely used in various modified asphalt production and testing institutions.
The modified asphalt detection microscope can accurately observe and measure parameters such as the shape, area, fluorescence intensity, area ratio, perimeter, and particle size of modifier particles in SBS modified asphalt. It is a precision instrument commonly used by modified asphalt production enterprises and research institutions for quality control and scientific research.



Standard configuration
Technical Specifications | |||||
eyepiece |
Large field of view WF10X (field of view size Φ 22mm) |
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centering telescope | |||||
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Infinite flat field achromatic objective lens
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objective lens |
PLL 10X0.25 working distance: 4.3 mm, cover glass thickness: 1.2mm |
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PLL 20X0.40 working distance: 8.0 mm, cover glass thickness: 1.2mm | |||||
PLL 40X0.60 working distance: 3.5 mm, cover glass thickness: 1.2mm | |||||
Phase contrast objective lens |
PLL 10X0.25 PHP2 working distance: 4.3 mm, cover glass thickness: 1.2mm |
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PLL 20X0.40 PHP2 working distance: 8.0 mm, cover glass thickness: 1.2mm | |||||
PLL 40X0.60 PHP2 working distance: 3.5 mm, cover glass thickness: 1.2 mm | |||||
Eyepieces tube |
Tilt at 45 degrees, with an adjustment range of 53-75mm for pupillary distance |
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Falling fluorescent lighting system
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Power box 110V/230V selectable |
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Mercury lamp 100W/DC | |||||
Fluorescent filter group | |||||
group |
type |
Excitation plate wavelength |
Transmitting film wavelength |
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UV+V |
Ultraviolet (UV) |
330nm~400nm |
425nm |
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Purple (V) |
395nm~415nm |
455nm |
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Blue+Green (B+G) |
Blue (B) |
420nm~485nm |
515nm |
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Green (G) |
460nm~550nm |
590nm |
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focusing system |
Coarse micro coaxial, with locking and limiting devices, micro grid value: 2 μ m |
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Converter |
Five hole converter |
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Carrier Stage |
Fixed stage size: 227mmX208mm |
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The size of the glass circular loading platform is Ø 118mm | |||||
Mechanical movement size, movement range: longitudinal 77mm, transverse 114mm, | |||||
Culture dish tray one |
Inner groove size: 86mm (width) X129.5mm (length), suitable for circular culture dishes with a diameter of 87.5mm
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Cultivation dish tray 2 |
Inner groove size: 34mm (width) X 77.5mm (length), suitable for circular culture dishes with a diameter of Ø 68.5mm
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Petri dish tray three |
Inner groove size: 57mm (W) X82mm (L) |
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Transmissive lighting system Transmitted illumination system |
Rotary phase contrast spotlight with a working distance of 55mm, |
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6V30W halogen lamp, adjustable brightness | |||||
Frosted glass, blue and green color filters | |||||
Optional accessories | |||||
eyepiece |
10X division wide-angle eyepiece (Φ 22mm), grid value 0.1mm/grid |
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objective lens |
Infinite flat field achromatic PL 5X/0.12 W.D26.1 |
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converter |
Six hole (internal positioning with inward facing ball) |
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CCD connector |
0.4X |
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0.5X | |||||
1X | |||||
0.5X with dividing ruler, grid value 0.1mm/grid | |||||
Camera equipment |
DV-1 (with USB and Video output) |
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DV-2 (with USB output) | |||||
DV-3 (with video output) | |||||
Digital camera connector |
CANON(EF), NIKON(F) |
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