This invention relates to a compressive grinder for a bed of materials, usually referred to as a horizontal grinder with roller, as well as a method of grinding that implements such a grinder.
Such a grinder has a particular application for grinding mineral materials, in particular in a dry process, in an unrestricted manner, for the manufacture of cement clinker.
Documents EP-0.486.371 and EP-0.934.120 describe such a type of grinder that comprises a cylinder rotating according to a horizontal axis, and of which the inner wall constitutes a raceway for a grinding roller, with an axis of rotation parallel to the axis of the cylinder, applied under strong pressure on the raceway. The material is supplied at one of the ends of the cylinder and exits at the other end.
Under the effect of the rotation of the cylinder, the material passes several times between the raceway and the grinding roller, and it is known to control the number of passes thanks to devices for advancing materials, such as those described in the documents mentioned hereinabove.
In such a grinder, the material progresses from one end to the other of the cylinder, being subjected to the actions of successive grinding. As such the granulometry of the material is coarser in the portion of the grinder located near the end of the inlet, than in the portion of the grinder located near the end of the outlet.
Conventionally, the material supplied to the grinder has a coarse granulometry, with a maximum grain size able to reach 120 mm. Via the effect of the operation of the handling systems, the flow of material is subject to fluctuations, and the granulometric distribution is heterogeneous. This induces variations in the constitution and the thickness of the bed of materials and, therefore, variations in the reaction of the forces exerted by the grinding roller which result in vibrations of the grinder.
These vibrations create mechanical stresses that participate in reducing the service life of the components of the machine, and even elements in the vicinity in the grinding workshop.
It is also known from WO97/39829 a method for grinding in a wet process implemented in a grinder comprising a circular raceway and a grinding roller, able to roll on the raceway and pressed elastically onto the latter.
In this anteriority, the surface of the bed of materials is made uniform by the adding of water or another liquid sprayed under pressure by nozzles, which makes it possible to improve the distribution of the materials in a layer with a uniform thickness on the raceway.
According to an alternative of this anteriority, the grinder comprises a pre-compression roller, arranged upstream of the grinding roller. This pre-compression roller is, like the grinding roller, pressed elastically onto the circular raceway. The pre-compression roller has for function to dry by pressing the layer of material, and to prevent the water discharged by pressing above the layer of materials from reaching the grinding roller. The grinder in WO97/39829 is not suitable for the grinding of materials in a dry process. Without aspersion of liquid in order to render the surface of the bed of materials uniform, the pre-compression roller of this anteriority, which is not kept separated from the raceway, would not make it possible to render the bed of material uniform in the manner of the smoothing roller of the grinder in accordance with the invention. The purpose of this invention is to propose a horizontal cylinder grinder that overcomes the aforementioned disadvantages, of which the service life is increased in relation to horizontal cylinder grinders of prior art.
Another purpose of this invention is to propose a method for grinding implemented by a grinder in accordance with the invention.
Other purposes and advantages of the invention shall appear when reading the following description which is provided solely for the purposes of information and which does not have the intention to limit it.
As such the invention relates to a compressive grinder for a bed of materials, comprising:
According to the invention, said grinder comprises:
According to the invention, said means for keeping the smoothing roller adjacent to and separated from the raceway of said cylinder, on the one hand, and said means for urging said grinding roller against the raceway of said cylinder, on the other hand, as such that said smoothing roller is able to exert on the bed of materials a pressure that smoothes its surface, said pressure being lower than the pressure exerted by said grinding roller on said bed of materials.
Such a grinder allows for the implementing of a method for compressive grinding of a bed of materials wherein, during each turn of the cylinder, the material consecutively passes under the smoothing roller then under the grinding roller, said smoothing roller exerting on the bed of materials a pressure that smoothes its surface, said pressure being lower than the pressure exerted by said grinding roller on said bed of materials.
According to an embodiment of the method for grinding said means for keeping the smoothing roller guarantees a minimum distance between the raceway and the surface of said smoothing roller, and wherein the grinder is supplied with a determined maximum grain size between 1 mm and 120 mm and said minimum distance greater than or equal to 0.5 times the determined maximum grain size is determined.
According to optional characteristics of the invention, taken individually of in a combination:
According to an embodiment of the method for grinding, said grinder is supplied with a material of a determined maximum grain size and the diameter of said smoothing roller is chosen in the following way:
The method for grinding and the grinder in accordance with the invention have a particular application for the grinding of materials in a dry process.
The invention shall be better understood when reading the following description accompanied with annexed drawings among which:
As such the invention relates to a compressive grinder 1 for a bed of materials 5, comprising:
Said means for rotating the cylinder 2 can include a gear motor of which the outlet axis has a pinion coupled to a ring gear, integral with the outer wall of the cylinder 2.
Said means for urging said grinding roller 3 against the raceway 20 can include sliders that guide the ends of the grinding roller 3, as well as cylinders or springs able to exert on the ends of the grinding roller 3 efforts which are transmitted to the grinding roller 3.
According to an embodiment, said means for urging said grinding roller 3 against the raceway 20 of said cylinder 2 are such that the grinding roller 3 exerts on the bed of materials 5 an average pressure between 10 MPa and 40 MPa.
The supplying of materials at the inlet 7 and/or the removal of materials at the outlet 8 can be obtained my means of a pneumatic handling system.
Preferably, the grinder has means (not shown) to control the displacement of the material over the length of said cylinder 2 in such a way that said material travels only a fraction of the length of the cylinder 2 at each turn of the cylinder 2 and passes several times between the cylinder 2 and the grinding roller 3 from said inlet 7 for supplying material to be ground to said outlet 8 of ground material.
These means can include a device intended to provide for the advancing of the material, from one end to the other of the cylinder 2 such as in particular described in EP-0.486.371 or EP-0.934.120.
Such a device comprises a scraper (or knife) placed inside the cylinder, in the descending upper portion, in such a way as to detach the material from the raceway and one, or more preferably, several deflective plates arranged under the scraper in such a way as to intercept the material detached by the latter and divert it towards the outlet of the grinder.
According to the invention, the grinder comprises:
The means 4, 6 are such that, at each turn of the cylinder 2, the material consecutively passes under the smoothing roller 4 the under the grinding roller 3, said smoothing roller 4 exerting on the bed of materials 5 a pressure that smoothes its surface, said pressure being lower than the pressure P exerted by said grinding roller 3 on said bed of materials 5.
Preferably, during operation the pressure of the smoothing roller on the bed of materials 5 is lower than the pressure required to grind the particles of material. To this effect, said means for keeping 60 the smoothing roller 4 are such that the smoothing roller 4 exerts on the bed of materials 5 a pressure lower than 10 MPa, more preferably lower than 1 MPa.
Preferably, the length of said smoothing roller 4 can be greater than or equal to the length of said grinding roller 3, said smoothing roller 4 being arranged in correspondence with said grinding roller 3 according to the length of the cylinder 2.
According to the invention, said means for keeping 6 the smoothing roller 4 guarantee a minimum distance between the raceway 20 and the surface of said smoothing roller 4, prohibiting any contact between said smoothing roller 4 and the raceway 20.
This minimum distance makes it possible to ensure that the grainy materials of the bed of materials can be flushed laterally, according to the axis of the roller, under the action of said smoothing roller 4, and as such obtain a bed of materials with a constant thickness over the length of the smoothing roller 4. This minimum distance can be determined according to the maximum grain size supplying the grinder which can be between 1 mm and 120 mm. According to an embodiment, the minimum distance is greater than or equal to 0.5 times the determined maximum grain size.
According to an embodiment, the smoothing roller 4 can freely rotate, able to be driven in rotation about its axis thanks to the friction with the bed of materials 5.
Alternatively, the grinder can have motor means for driving in rotation the smoothing roller 4 in such a way that its peripheral speed is equal to the average speed of the bed of materials 5 whereon said smoothing roller 4 is intended to be applied.
According to an embodiment, the grinder 1 is intended to grind grains with a maximum size between 1 mm and 120 mm, with the diameter of the smoothing roller 4 being then between 100 mm and 660 mm.
Preferably, said grinder 1 is supplied with a material with a determined maximum grain size and the diameter of said smoothing roller 4 is chosen in the following way:
Said means of keeping 6 the smoothing roller 4 can include means of articulation, able to allow for the displacement of said smoothing roller 4 according to a substantially radial direction to the axis A of said cylinder 2 and elastic means (not shown) forcing said smoothing roller 4 in the opposite direction, towards the raceway (20).
According to an embodiment, said means of keeping 6 said smoothing roller 4 provide for the maintaining of said smoothing roller 4 by its two ends, said means of articulation of said means for keeping 6 comprising two arms 60, each one articulated, on the one hand, at one of the ends of said arm 60 to said smoothing roller 4, according to the axis of said smoothing roller 4 and, on the other hand, at the other end of said arm 60 to a frame of said grinder 1, according to an axis of rotation B, in particular parallel to the axis A of said cylinder 2.
Preferably, the course of displacement of the smoothing roller 4 is limited by said means of keeping 6.
Advantageously, said grinder 1 is supplied with a material of a determined maximum grain size and the course of displacement of said smoothing roller 4 is adjusted in such a way as to keep the surface of the smoothing roller 4 separated from the raceway 20 between 0.5 times and 3 times the maximum size of the grains to be ground. The course of displacement of the smoothing roller 4 can be such that the smoothing roller 4 sweeps this entire value range.
According to an embodiment, the grinder 1 has said means to control the displacement of the material over the length of said cylinder 2 in such a way that said material travels only a fraction of the length of the cylinder 2 at each turn of the cylinder 2 and passes several times between the cylinder 2 and the grinding roller 3 from said inlet 7 for supplying material to be ground to said outlet 8 of ground material.
Advantageously, according to this latter embodiment, the distance ādā between the surface of said smoothing roller 4 and the raceway 20 can be variable according to the length of said cylinder 2, decreasing from said inlet 7 to said outlet 8. To this effect and according the example shown in
This arrangement makes it possible to take into account the fact that the granulometry of the material is coarser in the portion of the grinder located near the end of the inlet 7 than in the portion of the grinder located near the end of the outlet 8.
As such the distance between the surface of the smoothing roller 4 and the raceway 20 at the end of the roller on the side of the inlet 7 is greater than the distance between the surface of the smoothing roller 4 and the raceway 20 at the end of the roller on the side of the outlet 8. The ratio between the two distances can be between 1 and 2.
Alternatively the axis of rotation of the smoothing roller 4 is parallel to the axis A of said cylinder 2.
The grinder and the methods for grinding in accordance with the invention have a particular application for the grinding of mineral materials and/or the grinding of materials in the manufacture of cement clinker, in particular in a dry process.
Naturally, other embodiments could have been considered by those skilled in the art without however leaving the scope of the invention such as defined by the claims hereinafter.
Number | Date | Country | Kind |
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11 03689 | Dec 2011 | FR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/FR2012/052768 | 11/30/2012 | WO | 00 | 5/20/2014 |