

A Metal Powder Moulding Preparation Kneader is a specialized industrial kneader machine designed for the critical preparation of feedstock used in Metal Injection Moulding (MIM). This advanced powder metallurgy process enables the production of complex, high-precision metal parts with excellent surface finish and tight tolerances. The kneader plays a vital role in uniformly mixing fine metal powders with thermoplastic binders to create a homogeneous, moldable feedstock that is essential for successful MIM manufacturing.
Also known as a MIM Feedstock Mixer, Metal Powder Sigma Kneader, or Double Arm Kneader for MIM, this heavy-duty machine ensures optimal dispersion of metal particles within the binder system. It is widely used by manufacturers in automotive, medical, aerospace, electronics, and consumer goods industries where intricate metal components are required.
In MIM, fine metal powders (typically <25 microns) are mixed with a thermoplastic binder (e.g., wax or polymers) to create a homogeneous, moldable feedstock. This mixing requires high shear and heat to evenly coat the powder particles with binder, ensuring good flowability for injection molding and consistent part quality after debinding and sintering.
A kneader (often a sigma blade, Z-blade, or double-arm kneader) is commonly used for this step. It applies intensive mixing through counter-rotating blades in a heated trough, ideal for viscous, high-powder-loading mixtures (60-70% metal powder by volume). Alternatives include shear roll extruders or twin-screw extruders for larger-scale production.
Operating Mechanics & Homogenization Process
Product Extraction Solutions
Tangential Agitator Arrangement
Overlapping Agitator Arrangement
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.
These features make the Metal Powder Moulding Preparation Kneader far superior to standard mixers for high-precision powder metallurgy applications.
It is a specialized industrial kneader (also called a MIM Feedstock Mixer, Metal Powder Sigma Kneader, or Double Arm Kneader) designed to prepare homogeneous feedstock for Metal Injection Moulding (MIM). It uniformly mixes fine metal powders with thermoplastic binders under high shear and controlled heat.
In MIM, fine metal powders (typically <25 microns) are blended with thermoplastic binders (such as wax or polymers) to create a moldable feedstock. The kneader applies intensive mixing and heat so the binder coats the powder particles evenly, ensuring good flowability for injection molding and consistent quality after debinding and sintering.
It is widely used by manufacturers in the automotive, medical, aerospace, electronics, and consumer goods sectors that require complex, high-precision metal components with excellent surface finish and tight tolerances.
The machine is fabricated from Mild Steel, Stainless Steel 304, or Stainless Steel 316. Polishing options include a low-sheen matte finish or high-luster mirror finish. Mild Steel models receive a red-oxide primer coat plus dual-layer epoxy paint. PTFE shaft seals are fitted for sanitary operation.
It uses precisely synchronized, counter-rotating ‘Z’-profile (sigma) agitators that move at differential speeds (typically a 3:2 ratio in tangential arrangement). This creates intense multidirectional shear, stretching, folding, splitting, and re-merging of the material while transferring it axially across the trough, resulting in homogeneous dispersion of metal powders in the binder.
Models range from ASM-50 (approx. 50 L working / 80 L gross) up to ASM-3000 (approx. 3000 L working / 3800 L gross). Motor sizes vary by model and duty (general or heavy-duty), for example 5–7.5 HP for the smallest unit and up to 100–120 HP for the largest. Voltage can be customized.
It is equipped with thermal jackets for efficient heating and cooling, wrapped in high-grade mineral wool insulation and sealed with protective outer cladding. This supports optimal viscosity management during the mixing of high-powder-loading mixtures.
Unloading can be performed via manual hand-wheel tilting, automated hydraulic systems, lower drain valves, vessel tipping, or a lateral extrusion screw positioned next to the mixing chamber.
Optional upgrades include vacuum processing equipment (to remove air pockets and moisture for denser feedstock) and fluid injection spray systems. Other common enhancements support automation, safety interlocks, and specialized process needs.
It delivers uniform metal-to-binder ratios for dimensional accuracy, reduces defects and material waste, improves sintering results and part density, offers scalability from lab/pilot to full production, and provides long-term cost-effectiveness through a robust, low-maintenance design suited to abrasive metal powders.
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Connect with our engineering team to discuss your specific production requirements. We provide customized, cGMP-compliant machinery solutions designed to optimize your manufacturing facility and maximize output.
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Connect with our engineering team to discuss your specific production requirements. We provide customized, cGMP-compliant machinery solutions designed to optimize your manufacturing facility and maximize output.
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