grauer hintergrund schmalconveyor technology for special sawing machines

Project 09

türkise pfleile nach rechts

Project 09

türkise pfleile nach rechts

Project 09

türkise pfleile nach rechts

Conveying technology for special sawing machine

Delivery period: May 2015

The company Riexinger
The Eugen Riexinger GmbH & Co. KG is a globally operating mechanical engineering company based in Bad Liebenzell near Stuttgart in Baden-Württemberg. For more than 50 years it has been developing, producing and supplying equipment, plants and large-scale machines for processing all kinds of plastics.

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Clients

Features

  • Conveying Elements: Roller conveyor
  • Convey Goods: Plastic pipes Ø 400 mm - 1200 mm
  • Industry: Special mechanical engineering

The special sawing machine BSM 1200 / 1200 S-V

The BSM 1200 S-V (right) is used for sawing plastic pipes with a diameter of 400 – 1200 mm and a length of 3000 – 6000 mm. It allows angle cuts from 0 – 45 degrees. In the original basic version, the BSM 1200 is equipped with a simple V-table (left).

conveyor technology for special sawing machines

The challenge

Because the BSM 1200 is equipped with a simple V-table, the plastic pipe must be manually positioned and fixed for cutting.
Riexinger asked us to develop and implement a robust and cost effective solution, using a sketch designed by the company, in custom-made form, to increase the efficiency and throughput time of the machine saw.

The solution

The V-table was equipped with a v-shaped roller conveyor without drive and a chain conveyor placed in between including a driver. On the one hand, these technical modifications make it possible to automate the feed of the plastic pipe to be sawn. The incremental encoder installed on the motor allows the end position of the pipe to be precisely controlled. On the other hand, the v-shaped roller conveyor ensures that the plastic tube is centered on the elements. This ensures that the manually set cutting angle is maintained exactly at the end. A short film by our client Riexinger, which you can find above, illustrates how our solution works in practice.

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