The present invention relates to heating of devices of a mineral material processing unit. More precisely, the invention relates to a method and an apparatus for heating by using electric heating means, to a material processing unit equipped with this kind of an apparatus, and to an electric heating element to be used as heating means in said apparatus.
It is known in the art to heat feeding devices of mineral materials or the bottom thereof with different solutions in situations, where it is required by the optimal treatment of the material to be fed to a processing device of mineral materials, like a crusher.
The need for heating occurs especially for example in freezing conditions or in situations, where the feed material—for example clay—becomes viscose when it is moist, and thus sticks to the bottom and sides of the feeder. In that case the heating of the feeding device facilitates loosening of the feed material from the bottom and sides of the feeder, thus preventing agglomeration of the feed material to the forward end of the feeder, where the feed material is fed to.
In freezing or damp conditions, the moist feed material sticks on the surfaces of the devices, forming a very dense and solid mass, that causes blocking of the processing devices of mineral materials like crushers, screens, feeders and other auxiliary devices like conveyors and separation and feed hoppers used in the crushing and screening process. It is extremely difficult to remove this dense and solid mass from the surfaces of the devices. By heating the processing devices of mineral materials, blocking of the devices in freezing and damp conditions can be prevented.
Also starting of the crushers and screening devices, for example, can cause need for heating, because starting problems and increasing risk of defects and damages can be caused by the cold conditions.
Traditionally, the bottom of a feeding device is heated by using electric resistors or hydraulic oil heated when using actuators belonging to the hydraulic system, or by leading hot exhaust gas through pipes mounted to the bottom of the feeder to the open air from the diesel motor used as power source. Various known solutions are discussed on general basis e.g. in the European patent publication EP 0 879 651.
Electric heating resistors or elements used for heating the feeding devices are traditionally attached to the bottom plate of the feeding device for heating the bottom of the device or to the frame of the feeder to heat the whole frame of the feeder. One solution of this type is disclosed in the Korean publication KR 2004-0056931.
A problem with this kind of a solution of prior art is, among others, that the surfaces coming into contact with the feed material are slowly heated, whereby they are not warm until the heating elements and the parts between these surfaces have warmed up and started to transfer heat to the surfaces against the feed material. In addition, the solutions of prior art require much electric energy for the heating, and cause a risk of fire when heating the feeder surfaces up to high temperatures. Also the surface treatment material used for the devices can burn off due to the high temperature, causing corrosion problems.
In the solution in accordance with the present invention, electric heating means like heating resistors and/or elements are positioned substantially in connection with those surfaces of devices of a mineral material processing unit, like for example of a feeder device feeding material to a crusher, like vibration feeder, screen etc, that come into contact with the material to be fed to the processing unit.
In this description, the term processing unit of mineral material refers to any processing unit suitable for processing materials, like a feeder, belt conveyor, crusher, screen or any other corresponding device transferring, refining or sorting materials. Also processing units for recirculation of material are included in this group. Material to be processed can be totally or partly mineral material. Mineral material can be ore, broken rock or gravel, different recirculated construction wastes like concrete, bricks or asphalt.
With this kind of positioning of heating means, the heat can be directed precisely where it is needed, in other words, as close as possible to the material to be fed/crushed, without big consumption of electric power, fire risk or other corresponding problems of solutions of prior art.
The solution in accordance with the invention is advantageously implemented by means of heating panels equipped with a resistor or a resistance mat vulcanized inside an elastic material like silicone rubber. The heating panels are formed of an intermediate plate positioned between an upper plate and a lower plate, in other words a so called washer plate, a recess or cutting being formed within the edges of the washer plate for the silicon vulcanized resistor or resistance mat. This kind of a heating panel can be easily attached e.g. to the lower surface of a wear plate of a feeder, in other words to the surface that is opposite to the surface setting against the feed material. Said silicone resistor can also be advantageously shaped, and especially bent to an arch, whereby the heating panels can be advantageously used in different parts of a mineral material processing unit, where heating is needed e.g. in cold conditions when starting the processing unit and its auxiliary devices. Those are e.g. bearings of crushers, vibration aggregates of vibratory feeders, conveyors and components of driving devices of screening units.
More precisely, the method according to the present invention is characterized by what is stated in the characterizing part of Claim 1, the apparatus according to the invention is characterized by what is stated in the characterizing part of Claim 5, and the processing unit of mineral materials according to the invention is characterized by what is stated in the characterizing part of Claim 11.
The invention will be described by way of example in more detail in the following with reference to the enclosed drawings, wherein
The vibratory feeder usually also comprises side walls 21, 22 shown in
In the example shown in
Positioning of the heating panels 3 in the frame 1 of the vibratory feeder is in more detail illustrated in
In the example of
The quantity and form of the projections 3c, 3d is not limited to the case described by the above mentioned example. Their form and quantity can be freely chosen based on the respective purpose of use. In addition or alternatively, the projections can also be located e.g. as separate patch-like areas 3f surrounded by the resistor mat.
With this kind of a heating panel of the invention, the silicone resistor mat 3b inside the panel can be efficiently protected, thus preventing the heating resistor from damaging in demanding conditions of processing units of different materials.
In the solution in accordance with the invention, the heating panel 3 can advantageously be attached to the part of the mineral material processing unit to be heated by means of a glued surface formed on top of the upper surface of the heating panel. This kind of a glued surface provides a solid attachment of the heating element 3 e.g. to the wear plate 2, which improves transmission of heat from the element to the wear plate. Alternatively, the heating panel 3 can be attached to the part to be heated by means of fixing bolts mounted through the fixing holes 3e.
The solution in accordance with the invention can also be carried out so, that the upper plate of the heating panel 3 can be replaced with a part of the mineral material processing unit to be heated, for example with the wear plate 2. In this way the heating element of the heating panel 3 is directly attached to the part to be heated, which further enhances the heating.
In
Heating panels 6 can be correspondingly attached in connection with other operating devices of the mineral material processing unit for heating them prior to starting the processing unit in cold conditions. Examples of other similar applications in the processing unit include, among others, heating of hydraulic pipes. In that case the heating panel can have a form of a pipe or a half pipe. An advantage of this application is that a viscose liquid in the pipe installation can be quickly heated, and the circulation in the pipes is accelerated. Also a loading point of a conveyor, hatches, oil tanks, control devices, safety devices like stairs, working platforms and footbridges, can be heated by using a heating panel in accordance with the invention.
These mobile crushing plants 7 are very often used in cold and freezing conditions, whereby the problems mentioned in the beginning of the description part often are very familiar to these aggregates.
The solution in accordance with the invention is not limited to the solution shown in the example of the figures, where the electric heating means are attached to the wear plate of feeding device of the mineral material processing unit, or essentially in the immediate vicinity thereof. The solution in accordance with the invention can also be implemented to any device of a mineral material processing unit, the parts of which get into contact with the material to be fed to the processing unit. An example of this is an excavator bucket, to which heating elements in accordance with the invention can be attached. Essential from the point of view of the invention is that the electric heating means are attached to or in close vicinity of those parts that get into contact with the material to be fed into the processing unit.
In addition to the feeding devices described in the figures, examples of other most essential applications of the solution in accordance with the invention include, among others, side edges of screen deck constructions, discharge cams, surfaces of lower hoppers and feed boxes of screen units. One potential application is also locating the heating means between wear parts and control devices of a crusher and support surfaces thereof.
The silicone resistor of the heating panel used in the solution in accordance with the invention is formed by setting a resistance cord or a glass-fibre insulated resistance wire between two silicone mat layers. The material of the silicone mat can be silicone rubber or some other elastic and heating resistant material, like for example natural rubber. Operation voltage of a heating panel equipped with such a silicone resistor ranges usually from 12V to 460V, and a maximum surface power is abt. 5 kW/m2. The thickness of the heating panel ranges from abt. 0.7 to 3 mm, and it can be bent with max. bending radius of abt. 50 mm. Maximum achievable operation temperature with the heating panel depends on the materials to be used. It is preferably abt. +220° C. Electrically conductive materials like copper, nickel-chrome or copper-nickel compound can be used as resistor element. As insulating and surrounding materials for the heating conductor of the resistor element also other materials with corresponding properties can be used, like PTFE coated grating, glass yarn fabric or quartz fiber fabric can be used.
Number | Date | Country | Kind |
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20085163 | Feb 2008 | FI | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/FI09/50140 | 2/20/2009 | WO | 00 | 9/8/2010 |