Securing the shaft in a cone crusher
View Patent ↗A cone crusher may include a crushing cone held on a driven eccentric bushing. The eccentric bushing may rotate in a radial direction about a spindle. The spindle may be fixedly clamped in a spindle receptacle provided in a housing lower part. The spindle may comprise a cylindrical upper bearing portion that is braced in a bore that forms the spindle receptacle by way of an upper mechanical clamping device.
1. A cone crusher comprising:
a housing lower part having a spindle receptacle configured as a bore;
a spindle that is fixedly clamped in the spindle receptacle of the housing lower part;
a driven eccentric bushing that is disposed about the spindle and rotates radially;
a crushing cone held on the driven eccentric bushing;
an upper mechanical clamping device that braces a cylindrical upper bearing portion of the spindle in the bore, wherein the cylindrical upper bearing portion has a constant diameter; and
a lower mechanical clamping device that braces a cylindrical lower bearing portion of the spindle in a lower region of the bore, wherein the cylindrical lower bearing portion has a constant diameter,
wherein the spindle receptacle comprises a stop wherein a larger bore diameter at the cylindrical upper bearing portion transitions to a smaller bore diameter at the cylindrical lower bearing portion, wherein the spindle includes a transition from a larger bore diameter at the cylindrical upper bearing portion to a smaller bore diameter at the cylindrical lower bearing portion.
2. The cone crusher of claim 1 wherein each of the upper and lower mechanical clamping devices comprises a clamping set that includes a conical inner ring and a conical outer ring that acts as a pressure ring, wherein the conical inner and outer rings are closed rings.
3. The cone crusher of claim 2 wherein the clamping set of the upper mechanical clamping device is received in an annular space of the spindle receptacle, wherein the clamping set of the lower mechanical clamping device is received in an annular space of the cylindrical lower bearing portion of the spindle.
4. The cone crusher of claim 2 wherein dimensions of the spindle and the spindle receptacle correspond to dimensions of the clamping sets.
5. The cone crusher of claim 4 wherein the conical outer ring of each clamping set that acts as the pressure ring is a first pressure ring, wherein each of the clamping sets further comprises a second closed pressure ring, wherein the first and second pressure rings lie one behind the other, wherein each of the pressure rings is braced via a separate screw assembly.
6. The cone crusher of claim 2 wherein the clamping set of the upper mechanical clamping device is oriented so that the conical inner ring lying against the cylindrical upper bearing portion tapers downward toward the cylindrical lower bearing portion, wherein the clamping set of the lower mechanical clamping device is oriented so that the conical inner ring lying against the cylindrical lower bearing portion tapers upward toward the cylindrical upper bearing portion.
7. The cone crusher of claim 6 wherein the clamping set of the upper mechanical clamping device is configured to be braced by fasteners, wherein heads of the fasteners are accessible from above when the eccentric bushing is removed, wherein the clamping set of the lower mechanical clamping device is configured to be braced by fasteners, wherein heads of the fasteners configured to brace the lower mechanical clamping device are accessible from below.
8. The cone crusher of claim 1 wherein the stop of the spindle receptacle is a first seat disposed between the upper and lower mechanical clamping devices, wherein the transition of the spindle is a second seat that engages with and is supported by the first seat of the spindle receptacle.
9. The cone crusher of claim 8 wherein the first and second seats are horizontal.
10. The cone crusher of claim 9 wherein the lower mechanical clamping device is adjacent to the first and second horizontal seats.