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Description R 1312 Turbine stirrer IKA

R 1312 Turbine stirrer For drawing the material to be mixed from above. Generates axial flow in the vessel. Minimum danger of injury when contact is made with vessel. Minimum shearing forces. Used at medium to* high speeds. Stirrer Ø: 50 mm Shaft Ø: 8 mm

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Axial flow turbine RVT

Standard design. Circumferential speed vu: 3 6 m/s. Viscosity range ƞ:< 10,000 mPa*s. Primary conveying direction: axial. Flow: turbulent. Blade angle: 45°. Installation: centred with 3 baffles;

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DESIGN PROCESS OF CSTR FOR PRODUCTION OF

2019-4-21 · 3.8 Mechanical Design Equations 3.8.1 Stirrer Design For this work, radial turbine stirrer with 6 blades is used for the two reactors. Length of stirrer st L: st L R C (32) Stirrer clearance C : C to D R 6 1 2 1 (33) Stirrer Diameter D st D: D st to R 4 1 2 1 (34) Substituting (38) into (37 Stirrer blade-width W : W to D st 6 1 4 1 (35) Wall baffles B : B to D R 12 1 10 1 (36)

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Impeller design for mixing of suspensions

2006-10-5 · • Standard pitched six-blade turbine with pitch angle α = 45° • Pitched blade turbine with diagonally folded blades with various blade number iL = 3, 4 and 6, blade shape of this impeller type according to Czech standard CVS 69 1043 (see Figs. 4c and 8)

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Types of Agitators, Agitators Design and Usages for

2021-4-1 · The Agitator Stirrer is basically designed to agitate and mix several types of viscose liquids. We offer a variety types of Agitators Stirrer. We design and manufacture a wide range of liquid agitators and slurries for all processes in the pharmaceutical, chemical, food, cosmetic and similar industries.

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CHAPTER 21 Mechanical Design of Mixing Equipment

2011-6-20 · 21-2.1.3 Turbine Mixers. Turbine mixer is another industry designation that typically refers to more robust mixer designs that may have a variety of impeller and seal types and may have motors from 1 hp (746 W) to 1000 hp (746 000 W) or larger.The varioussizesforturbine mixersaredepictedinFigure 21

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Propeller Turbine Mixer Design Calculator Mixing

Propeller turbine mixer design calculator solving for Reynolds number given impeller diameter, fluid dynamic viscosity, revolution per second and liquid mass density Propeller Turbine Mixer Design Calculator Mixing Reynolds Number

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(PDF) Mixing: Impeller performance in stirred tanks

2017-8-1 · work for agitator design provided that it is based on the maximum energy-dissipation rate in the trailing vortex — not the vessel averaged power per volume.

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MIXER MECHANICAL DESIGN—FLUID FORCES

2016-1-10 · design, the impact of decisions made at the process design step on the mechanical design requirements must be understood. The second step in the design sequence is the mechanical design of the mixer components. The fundamental approach is straight-forward, design for power (torque and speed), then shaft loads, and finally mixer dynamics.

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Types of Agitators, Agitator's Design and Significance

2021-6-4 · Basic Design Equations for a Vertical Vessel and Agitator: Vessel Volume = (pi x vessel dia x vessel dia x vessel length) / 4.0 Agitator Shaft length = vessel length

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3D design Magnetic Stirrer Turbine Tinkercad

3D design Magnetic Stirrer Turbine created by Mhtsosdesirez with Tinkercad

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DESIGN PROCESS OF CSTR FOR PRODUCTION OF

2019-4-21 · 3.8.1 Stirrer Design For this work, radial turbine stirrer with 6 blades is used for the two reactors. Length of stirrer st L: st L R C (32) Stirrer clearance C : C to D R 6 1 2 1 (33) Stirrer Diameter D st D: D st to R 4 1 2 1 (34) Substituting (38) into (37 Stirrer blade-width W : W to D st 6 1 4 1 (35) Wall baffles B : B to D R 12 1 10 1 (36

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Axial flow turbine RVT

RVT Rühr- und Verfahrenstechnik Maier & Richter GmbH . Alzstrasse 1 84513 Töging am Inn Germany Tel: + 49-(0)8631-3989-0 Fax: + 49-(0)8631-3989-40

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IKA R 1311 Turbine Stirrer IKA 2332900

Buy new IKA Turbine Stirrer R 1311 Used for Medium to High Speeds IKA model 2332900 EUROSTAR Accessory On sale at M2 Scientifics.

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Propeller Turbine Mixer Design Calculator Mixing

Propeller Turbine Mixer Design Calculator Wastewater Treatment Mixing Equations. Solving for Reynolds number. Inputs: impeller diameter (D) revolution per second (n) unitless. liquid mass density (ρ) fluid dynamic viscosity (μ) Conversions: impeller diameter (D) = 0 = 0. meter . revolution per second (n) = 0 = 0. liquid mass density (ρ

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CHAPTER 21 Mechanical Design of Mixing Equipment

2011-6-20 · Essentially all turbine mixers have a motor, speed reducer, shaft, and impeller(s). Seals are used when containment is required. In this chapter we discuss motor and speed-reducer char-acteristics that commonly apply to turbine-style mixers. The shaft and impeller design characteristics are also typical for turbine mixers. A subset of these com-

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Pitch Blade Turbine Mixing Impeller

2021-6-1 · The Pitch Blade Turbine impeller is one of the most widely used impellers and one of the oldest designs of the mixing industry. The design of the PBT impeller provides a combination of both radial and axial flow, generates higher shear levels for reactions, and provides excellent mixing ability while providing easy cleanup.

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Types of Agitators, Agitator's Design and Significance

2021-6-4 · Axial Flow Turbine, Turbo Propeller and Flat Blade Turbine have blades ranging from 3 to 6. These have tip speeds between 200 to 300 meters per minute. The diameter of impeller is 25% to 60% of tank diameter. Basic Design Equations for a

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Impeller Design an overview ScienceDirect Topics

Whenever an impeller design is “modeled” for computer analysis, the analyst will generally make a number of assumptions, and the validity of these assumptions must be ascertained. Common sense tells us that there are four possibilities and corresponding definite conclusions, as follows: Analysis says “ok,” but blade fails: model or analysis technique is flawed.

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HOW TO CHOOSE A MIXING IMPELLER Mixer Direct

2019-6-27 · In many cases, a hydrofoil impeller blade is well-suited for lower viscosities, while an axial flow or turbine pitched blade is better for mixing highly viscous substances. Furthermore, density of a substance is an important characteristic related to viscosity. Tank Design and Placement. The size and dimensions of the mixing tank must be

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