Beijing Hako Experimental Instrument Factory
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    No. 19, Sanlitun East District Middle, Chaoyang District, Beijing
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XR-14 high-speed mechanical stability tester
Brief description: The high-speed mechanical stability tester is mainly suitable for latex production units and research institutes to conduct mechani
Product details

Main technologiesParameters:

1)Usage conditions: Temperature1040Humidity<85%RH

2)Mixing speed:14000rpm±200rpm

3)Indication error: ≤0.1%

4)Measurement resolution:1rpm

5)Display mode:LEDDisplay;

7)Zui High Speed:20000rpm; Zui low speed:2000rpm

8Volume:400mm×350mm×720mm

9Net weight: approximately30Kg

10Specification of mixing disc:

Natural rubber latex: diameter20.83±0.03mm thick1.57±0.05mm

Synthetic latex: diameter36.12±0.03mm thick1.58±0.05mm

11Latex container: high130±2mm, inner diameter58±2mm

12Capable of continuous operation1hour.

Structure and working principle

Speed regulation sectionAdopting advanced variable frequency speed control mode and utilizing negative feedback technology, it can accurately control the speed, meet the setting and adjustment of speed in a wide range, and has multiple display modes, which can directly display the speed.

Mixing disc and mixing shaftInterference fit and compression assembly ensure that the mixing disc and rotating shaft are concentric. The motor has undergone dynamic balance testing to ensure that it is in good working condition14000rpmIn the case where the swing of the shaft is not greater than0.25mm.

Latex containerFlexible connection method and bracket are used for connection. The latex container is fixed by lifting or lowering the cup holder. The fixed position of the limit sleeve along the column direction determines the distance between the bottom of the latex container and the bottom of the mixing disc. The position of this instrument has been adjusted, and users do not need to adjust the position of the limit sleeve.

The overall center of gravity of the instrument is stable, firmly supported, and not easily deformed. The positioning of the container is achieved by the upper positioning block.



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