The present application claims priority to European Patent Application No. 20176317.4 filed on May 25, 2020. The entire contents of the above-listed application is hereby incorporated by reference for all purposes.
The invention relates to a method and a device for packaging fresh products.
In the production of fresh products, such as ground meat, burgers, patties, fresh sausages, etc., moisture-absorbing absorbent bases, e.g. so-called nonwoven materials, are placed into the packaging so that excess moisture is bound. This prevents, firstly, liquid from becoming visible in the packaging and, secondly, the inner side of the packaging from fogging up and thus the packaged food no longer being clearly visible.
After the production of packaging trays (trays) in a separate step, such absorbent bases are loosely inserted or glued or welded into the former (e.g. by way of ultrasonic welding). The trays are then stacked and delivered to future customers (e.g. ground meat production companies, etc.). There, the trays are then unstacked again, filled, and closed.
Absorbent bases have hitherto always been introduced into the tray or the packaging in a separate production step (not simultaneously with the product). The introduction of the absorbent base cuttings into the tray and the subsequent stacking, storage, transportation and unstacking again can result in hygienic problems because surfaces in contact with food can be contaminated. The existing solution is inflexible because the absorbent base, i.e., e.g. the nonwoven material, is introduced into the tray in advance. In the event that a producer packs different products into one tray format and would like to use the absorbent base that is appropriate for the respective product (different sizes, thicknesses, absorption capacities/absorption properties), then he would have to stock identical trays with different inserts. This entails higher expenditure for storage space, the risk of mix-up, and higher unit costs, since lower respective quantities are required for each. In practice, therefore, nonwoven inserts which actually do not ideally fit the respective product are often used today. Inserts with too little or too much absorption capacity are possibly used (as a result of which an absorbent base that is more expensive than is actually necessary is often used).
Starting out from there, the present disclosure is based on the object of providing a method and a device for packaging fresh products which bring about improved hygiene and, moreover, are less expensive to manufacture and store.
According the present disclosure, a method for packaging fresh products, in particular meat and sausage products, is therefore provided, where the fresh product is introduced into a container simultaneously with an absorbent base. Simultaneously is presently understood to mean in one step, i.e. that the fresh product is already disposed above the absorbent base when the fresh product is placed into the container. In prior art, there were always at least two separate process steps for this.
The disclosure has the advantage that containers, such as bowls, trays, etc., no longer have to be stored together with the absorbent bases. This also entails the further advantage that an ideally suitable absorbent base can always be selected for a specific product. The containers can then be purchased and stored in larger quantities independently of the respective absorbent bases, which entails economic advantages. Furthermore, there are also hygienic advantages, since the absorbent base does not have to be stored together with the container, in particular surfaces that contact the food are not contaminated. This also means that containers and absorbent bases can be purchased independently of each other.
An absorbent base in this application is understood to be a base that can absorb moisture and has an absorbent body, e.g. a nonwoven material, e.g. made of cellulose. The absorbent base can be formed by the absorbent body or comprise such. In this application, a container is understood to be a tray, a deep-drawn packaging, a flow wrap packaging (tubular bag), a cardboard box, etc.
A further advantage of the present disclosure is that a production step can be saved over prior art, since the absorbent base can be introduced together with the product.
According to an example embodiment, an intermediate layer can be arranged between the absorbent base and the fresh product, in particular paper, e.g. wax paper having a smooth surface or film material, in particular a plastic film, e.g. a PE film. For example, a fresh product can then be produced on the intermediate layer, e.g. a strand of ground meat. If the intermediate layer is further disposed between the absorbent base and the fresh product, then the product can be prevented from drying out due to being in direct contact with the absorbent base, e.g. the absorbent nonwoven material. This is particularly advantageous if the absorbent base comprises an absorbent body, in particular in the form of nonwoven material, the surface of which facing the fresh product absorbs moisture. An intermediate layer additionally entails the further advantage that the absorbent base disposed therebeneath, which may have already absorbed liquid, e.g. blood, is not visible, which leads to an improved appearance. Furthermore, if the absorbent base has a rough surface, then the fresh product can more easily be removed from the intermediate layer, which can have a smooth surface, and does not stick. The intermediate layer is advantageously made from a material that does not absorb liquid.
Alternatively, the absorbent base can also be configured such that plastic material is applied, in particular laminated, onto the absorbent body on at least on one side.
The absorbent base may be configured such that the contact surface facing the fresh product cannot absorb any moisture via the absorbent body. This means that, if a plastic film is applied onto the absorbent body, then the plastic material is also not perforated on the side of the contact surface. If both sides of the absorbent body are provided with plastic material, then the underside facing away from the fresh product may be perforated in such a way that liquid can be absorbed via the absorbent body.
A corresponding configuration in which the contact surface facing the fresh product is not moisture-absorbing entails the advantage that the fresh product does not dry out, and then no intermediate layer may be necessary.
Advantageously, the absorbent base is drawn from a roll, e.g. in the form of a web, and conveyed in the direction of transport by a transport device, e.g. a conveyor belt. The fresh product that has been applied onto the absorbent base is also conveyed in direction of transport T together with the absorbent base. If an intermediate layer is present, it is also possible for the absorbent base and the intermediate layer to be drawn from a common roll or else from two different rolls. If the absorbent base and the intermediate layer are drawn off from different rolls, then they do not have to have the same length (when viewed in the direction of transport) if they are cut at different points. The absorbent base drawn off and the intermediate layer are conveyed in the direction of transport, where the fresh product is then applied onto the intermediate layer.
The fresh product can advantageously first be applied onto the intermediate layer and thereafter the absorbent base can be introduced under the intermediate layer, or the intermediate layer and the absorbent base have already been placed on top of one another and moved in the direction of transport when the fresh product is deposited thereonto.
The absorbent base and/or the intermediate layer can be severed into individual cuttings before being introduced into the container, optionally also together with the product, e.g. a strand of ground meat. It is therefore possible to sever the absorbent base and/or the intermediate layer, i.e. the web, before or after the fresh product has been applied.
According to an example embodiment, the method according to the disclosure enables the cut absorbent base to have a smaller area than the cut intermediate layer, in particular a shorter length, such that the amount of expensive absorbent base can be reduced. In addition, the absorbent base under the intermediate layer cannot be seen from above, which can lead to an improved appearance. An intermediate layer is particularly advantageous because the fresh product, e.g. ground meat, can be removed more easily from the smooth intermediate layer by the end consumer than from the absorbent base which has a rough surface.
It is also possible that the absorbent base and the intermediate layer are connected to one another, i.e. attached to one another, e.g. glued, welded, etc., prior to the application of the fresh product. The absorbent base and the intermediate layer can be connected to one another in advance and wound onto a common roll, or the absorbent base and the intermediate layer are joined and connected to one another after being drawn off.
The device according to the disclosure comprises at least one feed device for an absorbent base which in particular comprises a roll, and a feed device for the fresh product, e.g. an ejector device for ground meat, a conveyor belt for a strand of fresh product or portioned fresh products, etc.
The device is configured in such a way that the fresh product, i.e. the portioned fresh product, can be introduced into a container together with the absorbent base.
The device can also have a feed device for an intermediate layer, which comprises in particular a roll.
According to an example embodiment, the device comprises a transport device with which the fresh product lying on the absorbent base or on the absorbent base and the intermediate layer can be transported prior to being introduced into the container.
Furthermore, the device comprises at least one separating device for separating the absorbent base web and the intermediate layer web into respective cuttings. The device is configured for the simultaneous introduction of the fresh product with the absorbent base and for this purpose advantageously comprises a transport device for transporting the containers which is disposed lower than the transport device on which the fresh product is conveyed together with the absorbent base or the absorbent base and the intermediate layer, such that the fresh product together with the absorbent base or the absorbent base and the intermediate layer can be dropped or introduced into the container (e.g. into a tubular bag). The fresh product can simply run off the belt at the end of the transport device, in particular a conveyor belt, and drop or slide into the container or can be pushed off by use of a pusher. For this purpose, the container wall can run at an angle to the container base. It is also possible to arrange a slide at the end of the transport device, e.g. at the rear end of a conveyor belt when viewed in the direction of transport, over which the fresh product and the absorbent base can slide into the container.
The present disclosure shall be explained hereafter in more detail with reference to the following figures.
Furthermore, device 10 comprises a feed device, which presently comprises a roll 5a, via which an absorbent base 1, presently in the form of an absorbent base web, can be drawn off. The absorbent base or the absorbent base web can presently be led, e.g. by way of a guide that can comprise e.g. a deflection roller 11 and a pair of rollers 12a, to the leading end of a transport device 6a, presently, conveyor belt 6a. A drive can be provided which, for example, drives at least one roller of pair of rollers 12a and/or roll 5a for conveying the absorbent base web. Absorbent base 1 is there led over the leading end of the conveyor belt, where fresh product 2 is produced onto conveyor belt 6a and absorbent base 1 is carried along between the conveyor belt and fresh product 2. A control device, not shown, controls the drives of the feed device for the absorbent base and the drive of the conveyor belt, for example, synchronously. Disposed at the end of conveyor 6a is a conveyor 6b, presently likewise in the form of a circulating conveyor belt. In at least one example, the control device may comprise instructions stored in non-transitory memory that are executable to control the drives of the feed device.
Provided between conveying devices 6a and 6b, which are spaced apart, is a separating unit in the form of a knife 8 which severs product 2 as well as absorbent base 1. Conveyor belt 6b then conveys fresh product 2 onward on the absorbent base in the direction of transport. Arranged in a region below transport device 6b is a transport device 9, presently likewise configured e.g. as a circulating conveyor belt. Conveying device 9 for transporting containers 3 is arranged in such a way that conveying devices 9 overlap in direction of transport T such that fresh product 2 can drop or slide together with absorbent base 1 into a container 3 at the end of conveying device 6b. As shown in
The fresh product can also be pushed with the absorbent base into the respective container.
In the embodiment shown in
Guided containers 3 can then be transported, e.g. onward in direction of transport T and subsequently closed.
Absorbent base 1 comprises an absorbent body, for example, a material that can absorb moisture, such as. B. nonwoven material, in particular cellulose. The absorbent body has, for example, an absorbency of up to 4000 ml/m2.
The absorbent base is e.g. 0.2 mm-4 mm thick and can also have a cushioning effect when appropriately thick.
It is also possible that the absorbent base is configured such that it is not formed exclusively by a moisture-absorbing absorbent body, but that, e.g. plastic material e.g. a PE film (polyethylene) having a thickness of 0.05-0.5 mm is applied on at least one side, in particular laminated thereonto. At least the contact surface on which fresh product 2 rests on absorbent base 1 may be configured such that no liquid can be absorbed in order to prevent the fresh product from drying out. If the absorbent base comprises plastic material on the side facing fresh product 2 and on the underside, then the plastic material can be perforated on the underside in such a way that liquid can be absorbed by the underside. The speeds of individual transport devices 6a, 6b, 9 as well as the drive of the feed of the absorbent base web and the speed of ejection of the fresh product can be adjusted by way of a control device (not shown). In at least one example, the control device may comprise instructions stored in non-transitory memory that are executable to control the speeds of the individual transport devices, the drive of the feed of the absorbent base web and the speed of ejection of the fresh product.
Intermediate layer 4 is, for example, paper, waxed paper, or film material, e.g. a PE film or a PS film (polystyrene). The intermediate layer may be configured such that it does not absorb any moisture. The remainder of the device corresponds to the device described in
In the embodiments shown in
In the embodiment shown in
In order to prevent a relative motion between the intermediate layer and the absorbent base on the way into the packaging, i.e. container 3, both layers can be connected to one another after being drawn off from rolls 5a and b and before they are placed under the fresh product. The connection can be established by applying adhesive, in particular one or more points of adhesive on the intermediate layer and/or absorbent base 1 on the respective sides facing each other or by adhesive bonding using self-adhesive strips on the intermediate layer or the absorbent base. A connection can also be established by way of ultrasonic welding in a stationary manner or in a continuous flow or by way of an embossed connection in a stationary manner or in a continuous flow.
Absorbent base web 1 is there fed between transport devices 6a1 and 6a2 and introduced beneath fresh product 2 and intermediate layer 4.
In
This embodiment has the advantage that the length (when viewed in direction of transport T) of intermediate layer 4 and absorbent base 1 can differ. Therefore, not only can the width of intermediate layer 4 and absorbent base 1 be selected differently, but also their length. The size of the absorbent base can then be adapted to the needs of the product.
In the method according to the disclosure, a strand of fresh product 2 or an already divided fresh product is supplied and at least one absorbent base 1 is placed underneath, or an intermediate layer as well as an absorbent base. Absorbent base 1 or the absorbent base and intermediate layer 4 are cut to a desired length by a cutting device 8, 13 during the ongoing process. Absorbent base 1 and intermediate layer 4 can either be cut together and then have the same length or are supplied separately by separate devices such that they differ in length. The length can then be adapted to specific requirements. A corresponding drive for conveying absorbent base 1 can then also be driven independently of a drive for conveying intermediate layer 4. In the event that the product is present in the form of a product strand, the latter can be separated either together with the absorbent base and/or optionally with intermediate layer 4. The fresh product can then be introduced into a container 3 together with the absorbent base or the absorbent base and intermediate layer 4 and transported onward and finally closed or welded shut, for example, by use of a lid or film material. In the case of a tubular bag or flow wrap packaging, the bag is sealed without additional film material. In at least one example, one or more of the devices discussed herein may comprise a control device, wherein the control device includes instructions stored in non-transitory memory that are executable to carry out the method of the present disclosure.
Number | Date | Country | Kind |
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20176317.4 | May 2020 | EP | regional |