IP Library Granted Patent US 9,346,057
Granted Patent B2
US 9,346,057 · App. 14/154,230 · Granted May 24, 2016

Top supported mainshaft suspension system

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Quick Facts
Patent No.
US 9,346,057
App. No.
14/154,230
Granted
May 24, 2016
Kind
B2
Abstract

An adjustment and suspension system for supporting the mainshaft of a gyratory crusher within a stationary spider hub. The system includes a piston movable within the spider hub to adjust the vertical position of the mainshaft. A stop member positioned within the spider hub controls the maximum vertical movement of the piston within the spider hub. A drive assembly is used to adjust the vertical position of the stop member to limit the vertical position of the mainshaft. The mainshaft is supported by a vertical support bearing and a radial support bearing that are located separate from each other. The vertical position of the drive shaft is controlled by a supply of pressurized hydraulic fluid introduced into the spider hub to control the vertical position of the movable piston.

Claims (30)

1. A gyratory crusher comprising:

a spider hub;

a suspension bushing mounted within the spider hub;

a mainshaft having an upper end supported within the spider hub;

a movable piston positioned within the spider hub for receiving and supporting the upper end of the mainshaft;

a hydraulic fluid chamber that receives a supply of pressurized hydraulic fluid, wherein the hydraulic fluid chamber is formed between the piston and the suspension bushing such that the receipt of the supply of pressurized hydraulic fluid within the hydraulic fluid chamber moves the piston relative to the spider hub; and

a stop member movable along the suspension bushing, wherein the stop member physically contacts the piston to limit the movement of the piston.

2. The gyratory crusher of claim 1 wherein the stop member is a stop nut selectively movable along a portion of the suspension bushing to selectively limit the upward movement of the piston within the spider hub.

3. The gyratory crusher of claim 2 wherein the stop nut includes a series of threads that engage a mating series of threads formed on the suspension bushing such that the rotation of the stop nut within the suspension bushing moves the stop nut relative to the spider hub.

4. The gyratory crusher of claim 3 further comprising a drive member coupled to the stop nut, wherein the drive member is operable to rotate the stop nut within the suspension bushing.

5. The gyratory crusher of claim 4 wherein the drive member includes a drive ring coupled to the stop nut and a drive gear mounted to a drive shaft, wherein rotation of the drive shaft rotates the stop nut through the drive ring and the drive gear.

6. The gyratory crusher of claim 1 further comprising:

a vertical support bearing positioned within the piston to vertically support the upper end of the mainshaft; and

a radial support bearing mounted between an outer surface of the mainshaft and the spider hub, wherein the radial support bearing defines a fixed pivot point for the mainshaft.

7. The gyratory crusher of claim 6 wherein the radial support bearing is stationary relative to the vertical movement of the mainshaft.

8. The gyratory crusher of claim 1 wherein the stop member is a stop nut having a series of external threads that engage a series of mating threads formed on the suspension bushing such that rotation of the stop nut relative to the suspension bushing moves the stop nut vertically relative to the suspension bushing.

9. A gyratory crusher, comprising:

a stationary spider hub;

a suspension bushing mounted within the spider hub;

a piston movably positioned within the suspension bushing mounted within the stationary spider hub;

a mainshaft having an upper end supported by the piston such that the mainshaft is vertically movable with the piston;

a hydraulic fluid chamber formed between the suspension bushing and the piston, wherein the hydraulic fluid chamber receives a supply of pressurized hydraulic fluid to selectively move the piston relative to the stationary spider hub;

a stop member movable along the suspension bushing, wherein the stop member physically contacts the piston to limit the vertical movement of the piston;

a vertical support bearing positioned within the piston to vertically support the upper end of the mainshaft; and

a radial support bearing mounted between an outer surface of the mainshaft and the spider hub.

10. The gyratory crusher of claim 9 wherein the radial support bearing is stationary relative to the vertical movement of the mainshaft.

11. The gyratory crusher of claim 9 wherein the vertical support bearing and the radial support bearing are separate from each other.

12. The gyratory crusher of claim 9 wherein the vertical support bearing is movable with the piston.

13. The gyratory crusher of claim 9 wherein the stop member is a stop nut having a series of external threads that engage a series of mating threads formed on the suspension bushing such that rotation of the stop nut relative to the suspension bushing moves the stop nut vertically relative to the suspension bushing.

14. The gyratory crusher of claim 13 further comprising a drive member coupled to the stop nut, wherein the drive member is operable to rotate the stop nut within the spider hub.

Assignments (3)
CHANGE OF NAME Recorded May 15, 2025
From: METSO OUTOTEC USA INC.
To: METSO USA INC.
Reel/Frame 071291/0842 →
MERGER Recorded Nov 17, 2022
From: METSO MINERALS INDUSTRIES INC.
To: METSO OUTOTEC USA INC.
Reel/Frame 061817/0432 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2014
From: URBINATTI, VICTOR G.; POLINSKI, DONALD J.
To: METSO MINERALS INDUSTRIES, INC.
Reel/Frame 032171/0491 →