The present invention is comprised in the field of the ice production industry. More specifically, the invention relates to a system for making compacted ice from crushed or flake ice.
Various processes for making compacted ice on an industrial level are known today. Said processes can generally be divided into two groups. The first group is based on a direct method for obtaining the compacted ice, which consists of generating ice blocks directly, through a thermodynamic cycle, in which cold is generated and the water gradually freezes. These methods have the drawback that thermal processes are slow, and the production of compacted ice from notable dimensions, such as the typical dimensions of ice cubes, is relatively low.
The second known group of processes is based on an indirect method in which compacted ice is obtained by compression from crushed or flake ice. Said flakes are obtained by applying the direct method, explained above, with the advantage that since the flakes are of a smaller size and since they do not require being produced in a specific manner, it is a much faster process than the process of forming ice cubes or blocks of compacted ice having larger dimensions. Among these processes, compaction of crushed ice known is performed from shipments processed in lots discontinuously. Therefore, the productivity of these processes is also low. An example of processes of this type is described in patent ES 2402968 B1.
Said patent discloses a system which has an upper hopper or receptacle where the crushed ice is stored. It is fed into a mould through an opening in the lower part of said hopper where, by the compression action of two linear and horizontal pistons, the ice is compressed and compacted ice cubes are formed. Finally, the pistons separate from one another and the cubes are removed. The described system, therefore, is a linear and discreet compression system which does not allow for high productivity rates.
The present invention aims to solve the problem of the low productivity rates present in the methods of the state of the art through a novel system for the production of compacted ice, based on rotary means for compacting crushed ice capable of operating continuously, thereby achieving productivity rates that are substantially higher than those of the known technologies.
As described in the preceding section, the object of the invention relates to a system for producing compacted ice from crushed and/or flake ice, intended for significantly increase the rate of production compared to the alternatives of the state of the art.
Said system preferably comprises:
Although reference will mainly be made in the present description to the compaction of crushed ice, this term must also be understood to comprise flake ice as a possible base material for compaction, without altering the main object of the invention.
Advantageously, the compaction sub-system of the invention also comprises one or more rotary platforms for moulding the crushed ice, arranged between the press module and the compression module, such that the rotary movement thereof is used to convey the crushed ice and the compacted ice during production. Additionally, the actuation sub-system is provided with means for rotating the rotary platforms while the crushed ice is being compacted.
In a preferred embodiment of the invention, the receiving sub-system comprises an upper receiving hopper, provided with manual or automatic ice feeding means.
In another preferred embodiment of the invention, the moulding rotary platforms comprise one or more interchangeable templates provided with one or more moulding openings.
In another preferred embodiment of the invention, the compression module comprises a plurality of wheels connected with the compression rollers, and guided by one or more corresponding guiding tracks, such that the passage of the wheels over the guiding tracks generates the linear movements of said compression rollers.
In another preferred embodiment of the invention, the wheels are distributed as a group of outer wheels and a group of inner wheels in the compression module.
In another preferred embodiment of the invention, the guiding tracks have paths of travel of different heights on which slide the wheels.
In another preferred embodiment of the invention, the compression module also comprises an assembly of lower press pistons, and an assembly of lower wheel-carrying arms and of corresponding upper pushing arms, which accompany the linear movement of the wheels, to exert compression of the crushed ice against the press module.
In another preferred embodiment of the invention, the compression module comprises at least one divisional rotary platform, configured for isolating against water the part of the compaction sub-system that is located between the inner wheels and the moulding rotary platforms. More preferably, the module comprises, between said divisional rotary platform and the moulding rotary platform, a plurality of substantially vertical structural arms.
In another preferred embodiment of the invention, the moulding rotary platform is connected to one or more connecting rollers. More preferably, said connecting arms are located radially in relation to the moulding rotary platforms.
In another preferred embodiment of the invention, the actuation sub-system comprises a ring gear fixed integrally to the moulding rotary platforms, engaged with a pinion and a motor.
In another preferred embodiment of the invention, the actuation sub-system comprises one or more secondary motors for providing movement to respective impellers, located on the moulding rotary platform.
In another preferred embodiment of the invention, the system comprises a bed sub-system configured for supporting the assembly of said system. More preferably, said bed sub-system comprises a platform and a bed base with a plurality of supporting legs, and/or an inspection window with lower access to the system.
To better understand that described herein, eight figures depicting a preferred embodiment of the invention, as well as of the different sub-systems integrating same are appended hereto.
For the purpose of helping to better understand the technical features of the invention, the mentioned figures include a series of reference numbers where the following is depicted in an illustrative and non-limiting manner:
As described in the preceding sections, the present invention relates to a system for the production of compacted ice from crushed ice. A detailed description of the invention in reference to a preferred embodiment thereof shown in
As shown in said figures, the system for compacting ice of the present invention, in said preferred embodiment, generally comprises a plurality of sub-systems which define the main functions thereof: a receiving sub-system (1) (
The receiving sub-system (1) (
In said preferred embodiment, the moulding rotary platform (2) is connected by means of one or more connecting rollers (21) located on the outer diameter and/or on the inner diameter of the interchangeable templates (10). Said connecting rollers (21) thereby serve as an attachment element for the elements of the compression module (5).
Preferably, the connecting rollers (21) are connected to the upper pushing arms (18). More preferably, said arms (18) are located radially with respect to the divisional rotary platforms (19), in the free space between the lower part of the moulding rotary platform (2) and the upper part of the divisional rotary platform (19). Said divisional platform (19) consists of openings for housing and serving as a guide for both the vertical structural arms (20) and for the lower pistons (16). In turn, in addition to serving as a guide and as reinforcement for the vertical structural arms (20), the upper pushing arms (18) are for carrying and exerting pressure on the press rollers (6), as the latter are pushed linearly by the upper pushing arms (18), obtaining as a result compaction against the press module (4) of the crushed ice, located inside the moulding openings (11). Likewise, the upper pushing arms (18) will be raised by the lower pistons (16), each of them being supported at its lower end on the lower wheel-carrying arms (17) which will move linearly, guided by the movement of the outer wheels (12) and inner wheels (13), when sliding over the guiding tracks of the outer wheels (14) and inner wheels (15) having a variable section.
Additionally, the lower wheel-carrying arms (17) have a dual function. On one hand, in a preferred embodiment each arm carries an outer wheel (12) and another inner wheel (13), guiding the assembly of the compression module (5). On the other hand, they act as a support for the lower pistons (16). Said lower wheel-carrying arms (17) are distributed radially in the space between the divisional rotary platform (19) and the inner guiding track (15) and outer guiding track (14).
In this manner and as described, the invention provides a system for compacting crushed ice capable of forming compacted ice by means of a continuous process, thereby improving the limitations of the state of the art.
Number | Date | Country | Kind |
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P201730688 | May 2017 | ES | national |
Filing Document | Filing Date | Country | Kind |
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PCT/ES18/70353 | 5/11/2018 | WO | 00 |