Extruding Discharge Sigma Blade Mixer For Silicone

Extruding Discharge Sigma Blade Mixer For Silicone

A Extruding Discharge Sigma Blade Mixer (also known as a double-arm kneader, Z-blade mixer, or sigma kneader) is a heavy-duty machine designed for mixing, kneading, and dispersing high-viscosity materials. It features two counter-rotating sigma-shaped (Z-shaped) blades in a U- or W-shaped trough, providing intense shearing, folding, and stretching action for uniform homogenization.

The extruding discharge variant (also called a kneader extruder or sigma mixer extruder) integrates a bottom-mounted extrusion screw. This screw serves dual purposes:

  • During mixing: It rotates in reverse to feed material back to the blades, enhancing kneading and preventing settling.

  • During discharge: It reverses direction to push the mixed product out through a die, often shaping it (e.g., into strips, pellets, or sheets) for downstream processing.

This design is particularly suited for silicone rubber (and similar materials like sealants, hot melts, adhesives, putties, chewing gum bases, and butyl rubber), where the material is extremely sticky, thick, and difficult to handle manually.

Extruder Sigma Blade Mixer Video

Key Advantages for Silicone Processing

  • Efficient discharge: Eliminates manual scraping of sticky residues, reducing cleanup time and operator exposure.

  • Continuous-like operation: Allows direct extrusion into molds, cutters, or packaging, improving efficiency in production lines.

  • Better mixing: The screw intensifies kneading for ultra-high viscosities common in silicone compounds.

  • Options: Often includes jackets for heating/cooling, vacuum for deaeration, and customizable dies for shaping.

Compared to standard discharge methods:

  • Tilt discharge: Faster emptying by hydraulically tipping the trough.

  • Bottom valve: Simple but less effective for ultra-viscous products.

  • Extruding is preferred for silicone due to complete, controlled discharge.

Salient Features of Sigma Mixer Machine

  • Available in Stainless Steel 316, Stainless Steel 304 and Mild Steel materials.

  • Stainless Steel polish to matt & mirror finish as per customer’s requirements.

  • Mild Steel finish with one coat of red oxide and two coats of epoxy paint.

  • Discharge option of hand wheel operated (manual) or hydraulic operated (automatic) offered.

  • Jacket for heating or cooling application can be offered.

  • Mineral wool insulation with cladding on jacket.

  • Tangential designed ‘Z’ blades offered for uniform mixing.

  • PTFE made shaft sealing provided for food grade compatibility.

  • Minimum gap between trough inner shell & blades removes possibility of sticking product.

  • On demand Spray system, vacuum system

Optional Features/Accessories of Sigma Mixer

  • Liquid Spray System

  • Vacuum System

  • Blades Cooling Arrangement

  • Screw System

  • Automatic Valve Discharge System

Process Operation of Extruder Sigma Mixer

In Sigma mixer tangential action of mixing and kneading obtained by ‘Z’ type (SIGMA) shaped kneading blades, which rotates very accurately at different speed towards each other causing product to be transferred from one end to another end. Discharge of the finished product is achieved by tilting the container or through the valves at the bottom or by means of an extrusion screw beside the container.

The mixing action is a combination of bulk movement, stretching, folding, dividing, and recombining of the material. The shearing & tearing action of the material against blades and the side walls causes size reduction of the solids. After the time period required for sterilizing the batch has elapsed, the heating circuit shuts of the pneumatics damper (exhaust) opens and cooling operation commences.

In the tangential design, the blades rotate in the trough meeting tangentially. The front blade generally rotates faster than the rear blade usually in the ratio of 3:2. Tangential blades are generally used for material of higher viscosities such as adhesives, rubber compounds, flush colors, dyes, and pigments.

In the overlapping design, the blades overlap above the saddle of the container. Due to the overlapping action, it is necessary that the relative position of the two blades is unchanged, and as a result, both the blades rotate at the same speed. Materials that flow freely or creep down into the blades are mixed using the overlapping blade action. This design offers a faster interchange of material from one blade compartment of the mixer to the other. Overlapping blade action is used for materials of lighter viscosities such as carbon pastes, clay coating, creams, and ointments. The overlapping blade produces a lower kneading and shearing compared to the tangential blade action.

Technical Specification of Sigma Mixer Kneader

Model Capacity – Liters Motor (H.P.)
Working Capacity approx. Gross Capacity approx. General Heavy Duty
ASM – 50 50 Liters 80 Liters 5 H.P. 7.5 H.P.
ASM – 75 75 Liters 110 Liters 7.5 H.P. 10 H.P.
ASM – 100 100 Liters 150 Liters 10 H.P. 15 H.P.
ASM – 150 150 Liters 200 Liters 15 H.P. 20 H.P.
ASM – 200 200 Liters 300 Liters 20 H.P. 25 H.P.
ASM – 400 400 Liters 550 Liters 30 H.P. 40 H.P.
ASM – 500 500 Liters 750 Liters 40 H.P. 50 H.P.
ASM – 750 750 Liters 1150 Liters 50 H.P. 60 H.P.
ASM – 1000 1000 Liters 1500 Liters 60 H.P. 70 H.P.
ASM – 1500 1500 Liters 2100 Liters 75 H.P. 80 H.P.
ASM – 2000 2000 Liters 2600 Liters 80 H.P. 90 H.P.
ASM – 3000 3000 Liters 3800 Liters 100 H.P. 120 H.P.

* Power voltage can be adjusted as per customer’s domestic power voltage requirements.
* Rights of technical improvements & modification reserved.
* Illustrations & dimensions are shown for information purpose only.


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