POWDER METAL FINE MESH SCREENING CUSTOMIZATIONS
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The HK Dual Drive Shaker Series is designed using a three-dimensional sieving motion which allows the sample material to move equally and quickly over the complete sieving surface
3”, 8”, 12”, and 17” sieve diameters available.
Engineered to cut and separate particles to the size you need, it is designed to allow sample material to move equally over the complete sieving surface, resulting in accurate and reliable analysis of your material.
The unit offers capabilities for high load capacities processed with shorter sieving times, while achieving higher separation efficiency.
Units can be air powered or electrically operated for any wet or dry application.
It is supplied with casters for tabletop operations.
The dual drive design provides for maximum throughput of product for difficult to screen materials.
It provides advanced ultrasonic sieving technology combined with electromechanical or electromagnetic vibration that virtually eliminates screen binding or clogging during the sieve test analysis process.
This is achieved by transmitting the high frequency, low amplitude ultrasonic vibration through the HK ultrasonic vibration transfer ring to the adjacent sieves.
The technology allows for a drastic and much more reliable analysis of your hard-to-sieve sample material.
3”, 8”, 12”, and 17” sieve diameters available
Two (2) high speed rotary electric drive
Drive can handle 8 full size test frames or up to 16 half frames
Stainless steel construction, non-metallic construction designs available
Wing nuts accommodate for ergonomic design
Suitable for dry or wet sieving
Low noise levels
Unique Ultrasonic Transducer design allows for 100% utilization of the screen surface
Ultrasonic vibration use reduces throughput on very fine materials such as diamond dust from hours to minutes
Screen frames designed for quick and low-cost screen replacement
Screens down to 20 micron (625 mesh) or 5 micron with electro-formed sieve frames
The HK Dual Drive Shaker Series is designed using a three-dimensional sieving motion which allows the sample material to move equally and quickly over the complete sieving surfaceDownload
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