A dividing device, comprising at least one vane-type rotor comprising a hub provided with continuous vanes which are slidable through the hub along their longitudinal axis and almost perpendicular to the axis of the hub, the hub being provided with axial grooves for holding the continuous vanes whic
A dividing device, comprising at least one vane-type rotor comprising a hub provided with continuous vanes which are slidable through the hub along their longitudinal axis and almost perpendicular to the axis of the hub, the hub being provided with axial grooves for holding the continuous vanes which grooves partially divide the hub in sections, a part of the sections being provided with an aperture axially through the hub, for providing a means for connecting several vane-type rotors to each other, the apertures being unround.
대표청구항▼
The invention claimed is: 1. A dividing device, comprising at least one vane-type rotor comprising a hub provided with continuous vanes which are slidable through the hub along their longitudinal axis and almost perpendicular to the axis of the hub, the hub being provided with axial grooves for hol
The invention claimed is: 1. A dividing device, comprising at least one vane-type rotor comprising a hub provided with continuous vanes which are slidable through the hub along their longitudinal axis and almost perpendicular to the axis of the hub, the hub being provided with axial grooves for holding the continuous vanes, which grooves partially divide the hub in sections, a part of the sections being provided with an aperture axially through the hub for providing a means for connecting several vane-type rotors to each other, the apertures being unround, wherein at least one connection element is engageable through the apertures, the cross-section of the connection element being substantially identical to the shape of the apertures. 2. The dividing device according to claim 1, wherein the apertures at the inside comprise at least one flat surface plane. 3. The dividing device according to claim 1, wherein the apertures have a polygonal cross-section. 4. The dividing device according to claim 1, wherein the hub is provided with a metal hood at the side opposite the grooves. 5. The dividing device according to claim 1, wherein the vane-type rotor is provided with six vanes. 6. The dividing device according to claim 5, wherein the vanes are built from three continuous vane elements which are slidable in the hub in the grooves perpendicular to the longitudinal axis of the hub. 7. The dividing device according to claim 6, wherein two vane elements in the centre thereof are provided with a recess on at least one longitudinal side and a third vane element is provided with recesses on both longitudinal sides, with the addition sum of the depth of the recesses at least equal to the width of a vane element. 8. The dividing device according to claim 7, wherein the smallest width of the recesses is equal to the minimal protrusion of the vanes. 9. The dividing device according to claim 7, wherein the largest width of the recesses is smaller or equal to the radius of the hub increased by the thickness of the vane elements. 10. A dividing device comprising at least one inlet and at least two outlets and a housing provided with a chamber connected to the inlets and the outlets, and with at least two vane-type rotors rotatably arranged thereon, with the vane-type rotors provided with axial, unround apertures for connecting the vane-type rotors one to the others by connectors or connection elements, which have a cross-section substantially identical to the shape of the apertures, so that the vane-type rotors form one rotatable unity. 11. The dividing device according to claim 10, wherein the vane-type rotors are provided with vane elements running through the hub, which elements are slidable longitudinally along their axis and perpendicular to the axis of the hub through the hub. 12. A dividing device comprising at least one inlet and at least two outlets and a housing provided with a chamber connected to the inlet or inlets and to outlets, and with at least one vane-type rotor rotatably arranged thereon, with the vane-type rotor provided with a synthetic hub and vane elements running through the synthetic hub, which elements are slidable longitudinally along their axis and perpendicular to the axis of the synthetic hub, and with the synthetic hub provided with a metal hood, wherein the vane-type rotor is provided with at least one axial, unround aperture for connection to other rotors by connectors or connection elements, which have a cross-section substantially identical to the shape of the aperture.
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