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Ribbon Blender

Pioneers in the industry, we offer ribbon blender and double cone blender and stainless steel mixing tank from India.

Ribbon Blender and Double cone blender

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Ribbon Blender and Double cone blender
  • Ribbon Blender and Double cone blender
  • Ribbon Blender and Double cone blender
  • Ribbon Blender and Double cone blender
  • +1 Ribbon Blender and Double cone blender
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Approx. Rs 2,50,000 / PieceGet Latest Price

Product Details:
Minimum Order Quantity1 Piece
Usage/ApplicationIndustrial
MaterialStainless Steel
Capacity500
ColorWhite
ShapeU Shape
Powder MixingDry Powder Mixing
Design TypeCustomized, Standard
Automation GradeSemi-Automatic, Manual, Automatic
Machine TypeSemi-Automatic
Max Loading Capacity300- 5000 kgs

Our Ribbon Blender is designed in such a manner so that even the smallest quantity of ingredient can be blended effi c ientl y with large volumes . We manufacture a vast range of ribbon blenders which are kind of powder blending system, which is used to mix various powders with or without weighing. These are in wide demand among chemical, pharm, animal feed and agro industries. Material of Construction (MOC) Offered: SS316, SS316L, SS304.
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Stainless Steel Mixing Tank

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Stainless Steel Mixing Tank
  • Stainless Steel Mixing Tank
  • Stainless Steel Mixing Tank
  • Stainless Steel Mixing Tank
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Approx. Rs 90,000 / PieceGet Latest Price

Product Details:
Storage Materialany liquid
Materialstainless steel
Capacityany size
Usage/ApplicationIndustrial
Automation GradeAutomatic
Brandown manufacture

The performance of a coaxial mixer in the laminartransitional flow regime was numerically investigated with Newtonian and non-Newtonian fluids. These mixers comprised two shas: a central fast speed sha mounted with an open turbine, and a slow speed sha fitted with a wall scraping anchor arm. To model the complex hydrodynamics inside the vessel, the virtual finite element method (POLY3DTM soware) coupled with a Lagrange multiplier coming from the rheological model was employed. Co-rotation and counter-rotation mode were compared, based on several numerical criteria, namely, mixing time, power consumption and pumping rate. It was found that co-rotating mode is more efficient than counterrotating mode in terms of energy, pumping rate and homogenization time.
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