The invention relates to a wear part, a processing apparatus and a processing plant. The invention relates particularly, though not exclusively, to a wear part of a crusher, a crusher and a crushing plant which are suitable for crushing mineral material.
Cone and gyratory crushers, among others, are used for crushing of mineral materials. The material which is crushed can be any mineral material such as ore, mined rock or gravel, different recyclable construction waste such as concrete, brick or asphalt. The material can also be waste collected in households such as wood, glass or small metal.
Gyratory and cone type crushers comprise typically an outer crushing blade and an inner crushing blade which is, for example, a crushing blade casted of manganese steel, a crushing chamber being formed there between. Crushing takes place when the inner crushing blade is put in an eccentric rotation movement in relation to the outer crushing blade.
Crushing causes wear of crushing blades and changes the form of a crushing chamber. When the crushing blades wear they are altering more and more parallel so that power intake and crushing force of the crusher decrease resulting to reduction of crushing work made by the crusher which in turn affects negatively to a stability of the total process.
Poor performance of the crushing blades in the end period of the lifetime weakens an average performance of the total lifetime.
A wear part for a crusher has now been invented by means of which drawbacks in prior art as described above can be eliminated or at least reduced.
According to a first aspect of the invention there is provided a wear part for a mineral material processing apparatus, which wear part comprises an outer wear surface which comprises an initial phase wear surface to be put in crushing contact with an opposite wear surface, and an end phase wear surface to be taken vertically into use in the crushing process from under the initial wear surface when the wear is progressing. The wear part comprises an end phase wear surface with a protrusion to be put in use when the wear of the outer wear surface is progressing.
Preferably the protrusion is forming a limitation to limit a flow-through of material between the outer and inner wear surfaces.
Preferably the protrusion comprises a step-like surface which is forming an angle with the end phase wear surface, which end phase wear surface is continuing under the initial phase wear surface.
Preferably the step-like surface of the protrusion is directed along the horizontal plane or the step-like surface of the protrusion is inclined in relation to the horizontal plane.
Preferably the wear part comprises two or more successive protrusions.
Preferably the end phase wear surface with the protrusion is formed of a material which is more wear resistant than a base material of the wear part, which material is forming the protrusion in the end phase wear surface when the wear is progressing.
Preferably the material which is forming the protrusion and is more wear resistant than the base material of the wear part is embedded at least partly inside the wear part.
Preferably the wear part comprises a separate skirt part which is located vertically under the initial phase wear surface, which skirt part comprises the end phase wear surface with the protrusion.
According to a second aspect of the invention there is provided a mineral material processing apparatus which processing apparatus comprises an outer crushing blade and an inner crushing blade which are forming a crushing chamber and which inner crushing blade is arranged to be moved along an eccentric rotation movement in relation to the outer crushing blade. The processing apparatus comprises a wear part according to the first aspect or according to any preferable embodiment.
According to a third aspect of the invention there is provided a mineral material processing plant which comprises a frame, a base which is attached to the frame for enabling an independent movement, a feeder for feeding material to be crushed and a crusher for crushing the material to be fed. The crusher comprises a wear part according to the first aspect or according to any preferable embodiment.
Advantages of the invention in relation to prior art solutions are, among others,
The invention is suitable to be used particularly for wear parts of cone and gyratory type crushers.
The invention will be described in more detail with reference to the accompanying principled figures, in which:
For the sake of clarity only such details are shown in the figures which are necessary for understanding the invention. Structures and details which are not necessary for understanding the invention but are self-evident for a skilled person are ignored in the figure in order to highlight the characteristics of the invention.
In the following description, like numbers denote like elements. It should be appreciated that the illustrated drawings are not entirely in scale, and that the drawings mainly serve the purpose of illustrating embodiments of the invention.
A crusher in this description means a processing unit of cone and gyratory type which is suitable for material processing.
The crushing surfaces of the inner 101 and outer 102 crushing blades are forming a nip angle/a jaw angle due to which crushing efficiency of the crusher is maintained on an acceptable level until an end of working life of the wear part. The angle is illustrated with contact points between circles 103 and 104 and crushing surfaces 106 and 107. As can be seen in the figures, in an initial situation the jaw angle increases substantially when moving from a bottom part to an upper part of the crushing chamber.
A protrusion 250 according to the invention does not affect the efficiency of the crusher at this stage. An efficient region of the crushing chamber profile is limited at its lower part to a minimum gap which is a minimum distance between the inner and outer crushing blades or a setting of the crusher. The crushing chamber profile is, due to the protrusion, designed so that the efficiency of the crusher is maximized for the whole working life of the wear part. The efficiency means capacity of the crusher [ton/h], grain distribution of crushed material and quality of grains. In the embodiment shown in
Initially, at the time point T=0 the crushing blades have a wear shape of
In
The crushing plant can be implemented also as a so called stationary plant, additionally to what is said above. The track base may be replaced alternatively by legs, runners or wheels.
The wear part according to the invention may be produced preferably directly to its form by casting to a mould wherein the production is simple and cost-effective. The surfaces need not necessarily to be machined at all. Alternatively or additionally, the protrusion may be made to the surface of the crushing blade by removing material, for example, by machining the wear surface such that a portion having a form of the protrusion 250 is forming in the surface of the wear surface. Alternatively or additionally, material may be added to the wear surface, for example, by welding so that the protrusion 250 is forming in the wear surface. The material to be added may be a more wear resistant material than the base material of the wear part. Alternatively or additionally, the protrusion 250 may be made as a separate skirt part under the conical wear part. Then, the skirt forming the protrusion is forming a portion of the end phase wear surface to be put in crushing contact with the opposite crushing blade when the wear is progressing. Alternatively or additionally, the protrusion 250 and, if desired, the wear part under it may be made of a more wear resistant material than the base material of the wear part, for example, by casting the wear part of two different materials. The separate skirt part may be made of a more wear resistant material than the base material of the wear part. When the wear is progressing, the base material wears faster than the material at the location of the protrusion wherein the protrusion according to the invention is formed in the end phase wear surface. The material forming the protrusion 250 which is more wear resistant than the base material is preferably embedded at least partly inside the wear part. The material which is more wear resistant than the base material may be embedded totally inside the wear part under the end phase wear surface.
The foregoing description provides non-limiting examples of some embodiments of the invention. It is clear to a person skilled in the art that the invention is not restricted to details presented, but that the invention can be implemented in other equivalent means.
Some of the features of the above-disclosed embodiments may be used to advantage without the use of other features. As such, the foregoing description shall be considered as merely illustrative of the principles of the invention, and not in limitation thereof. Hence, the scope of the invention is only restricted by the appended patent claims.
Number | Date | Country | Kind |
---|---|---|---|
20100169 | Apr 2010 | FI | national |
This application is a continuation application of prior U.S. patent application Ser. No. 13/642,049, filed on Oct. 18, 2012, which is a U.S. National Stage application of PCT/FI2011/050351, filed on Apr. 19, 2011, and claiming priority from FI 20100169, filed on Apr. 23, 2010 entitled WEAR PART, PROCESSING APPARATUS AND PROCESSING PLANT FOR MINERAL MATERIAL.
Number | Name | Date | Kind |
---|---|---|---|
8333338 | Pallmann | Dec 2012 | B2 |
Number | Date | Country |
---|---|---|
2381401 | Jun 2000 | CN |
1655871 | Aug 2005 | CN |
1280640 | Oct 1968 | DE |
62-160655 | Oct 1987 | JP |
2748997 | Feb 1998 | JP |
2005-526609 | Sep 2005 | JP |
791421 | Dec 1980 | SU |
03099443 | Dec 2003 | WO |
Entry |
---|
Russian Office Action issued on Russian Application No. 2012147728 dated Apr. 13, 2015, including English translation. |
Chinese Office Action dated Feb. 8, 2014. |
Translation of Chinese Office Action dated Feb. 8, 2014. |
Japanese Office Action issued in Application No. 2013-505510 and English Translation, dated Jan. 21, 2015. |
Number | Date | Country | |
---|---|---|---|
20160114329 A1 | Apr 2016 | US |
Number | Date | Country | |
---|---|---|---|
Parent | 13642049 | US | |
Child | 14940587 | US |