GlobeCore / Produk / Sistem laboratorium untuk Sampel Emulsi Aspal / CLM-100.1 Bitumen Emulsion Laboratory System

CLM-100.1 Bitumen Emulsion Laboratory System

GlobeCore / Produk / Sistem laboratorium untuk Sampel Emulsi Aspal / CLM-100.1 Bitumen Emulsion Laboratory System
The CLM-100.1 colloid mill is designed for homogenization and emulsification of liquid materials (thick suspensions with high shear tension) in...
    Benefits
    • processing a variety of materials;
    • the mill can be equipped with various rotor/stator tooling, depending on the material and the required process;
    • the rotor/stator tooling, as well as the number of stages are selected for optimal intensity of mechanical and thermal processing;
    • tooling can be made from a single part or multiple parts, as well as of different steel grades, depending on the purpose of the mill.

The CLM-100.1 colloid mill is designed for homogenization and emulsification of liquid materials (thick suspensions with high shear tension) in laboratory conditions, for such purposes as bitumen emulsion production.

The machine can be used to prepare, dissolve and process a variety of materials in different industrial applications.

Bitumen emulsions — Fields of application

  1. Road construction:
  • surfacing emulsions;
  • pothole patching;
  • bonding of asphalt layers;
  • using in Slurry Seal and Multimac technologies;
  • ground and base stabilization;
  • emulsions intended for reuse of asphalt materials (recycling);
  • long-term storage emulsions (wintertime pothole patching mixtures);
  • tackiness remover emulsions.
  1. Hydraulic engineering facilities:
  • emulsions intended to arrange waterproof membranes for foundations, swimming pools, pipe and pile linings, etc.;
  • emulsions are applied to the surface by jet method, single- or double-component method (to accelerate film formation).
  1. Roofing:
  • emulsions intended to obtain waterproof membranes on the surface of roofs of various complexity. These emulsions are applied to the surface by jet method.