Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
Inorganic heat preservation vitrified microbead mixer
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Product Introduction
Characteristics of inorganic thermal insulation vitrified microbead mixer:
High mixing uniformity, short mixing time, low material damage rate.
Inorganic heat preservation vitrified microbead mixer Structure:
The glass bead mixer is mainly composed of a frame, a transmission device, a cylinder, a ventilation device, a positioning device, and a discharge device. The cylinder is composed of two cones at both ends and a cylinder in the middle, and the main shaft is hollow structure, which is suitable for vacuum negative pressure feeding to reduce material damage. Inorganic heat preservation vitrified microbead mixer working principle:
When the transmission device drives the drive shaft to rotate, the cone cylinder rotates, and the material in the cylinder body forms an up and down tumbling movement. At the same time, due to the cone structure in the cylinder body, the material is forced to move between the axes during the up and down movement, repeatedly overlapping, resulting in a vertical and horizontal uniform mixing. The mixing time of the glass glass bead mixer is short, the uniformity is high, and the mixing time of the inorganic glass glass bead insulation mortar is generally not more than two minutes.