MIXEL - Industrial agitators manufacturer » Agitation propellers and impellers https://staging.mixel.fr Tue, 29 Jul 2025 12:06:27 +0000 fr-FR hourly 1 http://wordpress.org/?v=4.2.7 TT Propeller Multiplan – Mixel patent https://staging.mixel.fr/tt-propeller-multiplan-mixel-patent/ https://staging.mixel.fr/tt-propeller-multiplan-mixel-patent/#comments Fri, 26 Sep 2014 12:53:52 +0000 https://mixel.fr/tt-propeller-multiplan-mixel-patent/

TT/TTA propeller MULTIPLAN

Mixel TT/TTA propeller the Multiplan patented one. The TT propeller design allows a high pumping performance, the TTA propeller design allows a high pumping performance flow with powerful axial flow

TT/TTA propeller Multiplan

Hydraulic characteristics

  • Axial flow
  • D/T = 0.15 to 0.7
  • Vp = 1 à 5
  • Nq = 0.65 to 1.1
  • Np = 0.7 to 1

Applications

TT Propeller drawing

  • Homogenization
  • Blending of liquids / miscible liquids
  • Suspending solids
  • Heat transfer
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TTP / TTPA propeller https://staging.mixel.fr/ttp-ttpa-propeller/ https://staging.mixel.fr/ttp-ttpa-propeller/#comments Tue, 26 Aug 2014 13:06:14 +0000 https://mixel.fr/ttp-ttpa-propeller/

The TTP Propeller design allows a high mixing efficiency, The TTPA propeller allows a high mixing efficiency with reinforced axial flow.

Hydraulic characteristics

Helice TTP

  • Axial flow
  • D/T = 0.15 to 0.7
  • Vp = 1.5 to 8
  • Nq = 0.65
  • Np = 0.3 to 0.45

Applications

Helice TTP dessin

  • Homogenization
  • Blending of liquids / miscible liquids
  • Suspending solids
  • Heat transfer
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TTF propeller https://staging.mixel.fr/ttf-propeller/ https://staging.mixel.fr/ttf-propeller/#comments Sat, 26 Jul 2014 13:11:28 +0000 https://mixel.fr/ttf-propeller/ The TTF propeller design allows a self-cleaning - ideal for fibrous products.

Caractéristiques

TTF propeller Mixel

  • Axial flow<
  • D/T = 0.15 to 0.7
  • Vp = 1.5 to 8
  • Nq = 0.65
  • Np = 0.3 to 0.8

Applications

mobile d'agitation Helice TTF

Specially designed for environments where risks are significant attachment (presence of fiber): wastewater treatment, for example.
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Rushton turbine https://staging.mixel.fr/rushton-turbine/ https://staging.mixel.fr/rushton-turbine/#comments Sat, 26 Jul 2014 13:05:49 +0000 https://mixel.fr/en/?p=5495
Rushton turbine is adapted for no-miscibles Liq-gaz or Liq-Liq dispersions.

Hydraulic characteristics

Rushton turbine
  • Radial flow
  • D/T = 0.2 to 0.5
  • Vp = 3 to 6
  • Nq = 0.7
  • Np = 5.5

Applications

Turbine de Rushton pour dispersion des liquides

  • Suspending solids
  • Blending of liquid / liquid
  • Dispersion of liquid / non miscible liquid
  • Dispersion of liquid / gas

 

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4 blade turbine at 45° https://staging.mixel.fr/4-blade-turbine-at-45/ https://staging.mixel.fr/4-blade-turbine-at-45/#comments Sat, 26 Apr 2014 13:36:31 +0000 https://mixel.fr/4-blade-turbine-at-45/
The pumping mixte turbine favours the shearing.

Hydraulic characteristics

4 blade turbine at 45°

  • Radial/axial flow
  • D/T = 0.2 to 0.6
  • Vp = 1 to 6
  • Nq = 0.8
  • Np = 1.5

Applications

4 blade turbine at 45°

  • Simple design for a mixed turbine
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Dispersion turbine https://staging.mixel.fr/dispersion-turbine/ https://staging.mixel.fr/dispersion-turbine/#comments Wed, 26 Mar 2014 13:42:22 +0000 https://mixel.fr/dispersion-turbine/

The dispersion turbine allows a high mixing efficiency with reinforced axial flow.

Hydraulic characteristics

Dispersion turbine

  • Radial flow
  • D/T = 0.1 to 0.5
  • Vp = 10 to 30
  • 0.2 in turbulent operating conditions
  • Np = varies with Re

Applications

Turbine de dispersion dessin

  • Process where very strong shearing is necessary
  • Pasting
  • Dispersion of solids into a liquid
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Anchor with scrappers https://staging.mixel.fr/anchor-with-scrappers/ https://staging.mixel.fr/anchor-with-scrappers/#comments Wed, 26 Feb 2014 13:53:25 +0000 https://mixel.fr/anchor-with-scrappers/  

Anchor is adapted for heat transfer and/or scrapping the tank walls in viscous area.

Hydraulic characteristics

Ancre avec racleurs

  • Tangential flow

Applications

anchor with scrapers viscous environments

  • Homogenization of concentration and temperature in viscous media
  • Heat transfers through walls of the tank
  • Cosmetic industry, food industry
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Ribbon – helicoid https://staging.mixel.fr/ribbon-helicoid/ https://staging.mixel.fr/ribbon-helicoid/#comments Sun, 05 Jan 2014 15:19:57 +0000 https://mixel.fr/ribbon-helicoid/  

Applications

  • Blending of very viscous liquids - Ribbon - helicoid is a specific impeller, which is exclusively a made and designed to measure one"

Ribbon for viscous liquid mixture

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Useful definitions https://staging.mixel.fr/useful-definitions/ https://staging.mixel.fr/useful-definitions/#comments Sat, 04 Jan 2014 13:57:18 +0000 https://mixel.fr/useful-definitions/  

Np = power number

It is an adimensional number that depends on the propeller type. It varies according to the Reynolds' number and to surroundings (position in the tank, propeller diameter/tank diameter...).
Np is invariable in turbulent regime (Re > 10 000)

Nq = pumping number

It is an adimensional number that depends on the propeller type and stays constant in turbulent regime.

The absorbed power depends on the Np of the propeller, on the product voluminal mass, on the rotation speed and on the propeller diameter.
P = Np r N³D5

Qp = pumping flow

It is the liquid flow produced in the section of the agitation propeller. It depends on the Nq, on the rotation speed and on the propeller diameter.
Qp = NqND3

The circulation flow Qc can be calculated from the pumping flow.
Circulation flow Qc = pumping flow Qp carried away flow.
1,5 Qp < Qc < 2 Qp

Vf = flow velocity

It is the medium liquid velocity in the propeller section.
It's calculated only for axial flow impellers (TT, TTP... propellers) and for radial flow ones (Rushton turbine).

Vp = peripheral speed

It is the linear velocity of the propeller at the end of the blade. It is calculated for every kind of impeller. (axial, radial or tangential flow).
Vp = p DN

Heat exchange = calculation of hi transfer coefficient on the side of the reactive fluid.

FORMULAS

ρ = VOLUMIC MASS (kg/m³) μ = VISCOSITY (Pa.s) Cp = SPECIFIC HEAT (Kcal/Kg) K = HEAT CONDUCTIVITY OF THE PRODUCT (Kcal/s.m.°C) D = DIAMETER OF IMPELLER (m) T = DIAMETER OF TANK (m) N = ROTATION SPEED (tr/s) Re = REYNOLDS' NUMBER Adimensional number used to determinate the flow regime (laminar, turbulent and transitory)

 

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