plastic container

The introduction of tension straps extending into the body and shoulder regions, combined with circumferential grooves, enhances the stability and pressure resistance of thin-walled plastic bottles while reducing material usage and improving grip stability.

DE102012003219B4Active Publication Date: 2025-06-26KRONES AG
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Patent Information

Application Number
DE102012003219
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Filing Date
2012-02-20
Publication Date
2025-06-26
Estimated Expiration
2032-02-20

AI Technical Summary

Technical Problem

Thin-walled plastic bottles used for beverages face challenges in stability, pressure resistance, and material efficiency, particularly when filled with carbonated beverages, as they tend to deform under internal pressure and require increased material for stability.

Method used

The design incorporates at least two tension straps extending from the central region to the side wall of the base, which continue into the body and shoulder regions, enhancing stability and pressure resistance. Additionally, circumferential grooves provide contour reinforcement without increasing wall thickness, improving grip stability.

Benefits of technology

This design significantly increases the stability and pressure resistance of thin-walled plastic bottles, reduces material requirements, and enhances grip stability, effectively addressing the limitations of prior designs.

✦ Generated by Eureka AI based on patent content.

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Abstract

Plastic container (1) consisting of a neck (3), a shoulder (5), a body (4) and a base region (2), wherein the base region (2) has at least two drawstrings (6a) extending from a central region (8) to the side wall of the base (2), wherein the drawstrings (6b, 6c) and / or the function of the drawstrings (6b, 6c) of the base (2) extend at least partially into the body region (4) or into the body (4) and shoulder region (5) of the plastic container (1) characterized in that the drawstrings (6a, 6b, 6c) end immediately before or after a labeling area (11) of the body (4) and / or the shoulder (5) intended to receive at least one label.
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Description

[0001] The present invention relates to a plastic container that can be used in particular for beverages. In the beverage manufacturing industry, plastic containers, especially PET containers, have recently become increasingly popular over glass bottles. A wide variety of basic shapes and cross-sections for such plastic bottles are known.

[0002] The words (plastic) container, bottle or container are used synonymously below.

[0003] Such a plastic container usually consists of the following parts: a base, a body, a shoulder and a neck which merges into a mouth opening.

[0004] The PET bottles initially used were generally relatively heavy and therefore also quite stable.

[0005] However, in recent times, efforts have been made to further reduce material consumption in the manufacture of such containers in order to save costs. This has led to the walls and bases of these containers being made increasingly thinner.

[0006] On the other hand, however, it is important to ensure that the bottle walls, and especially the base of these containers, are sturdy enough to withstand both the weight of a filled bottle and any resulting internal pressure, especially with carbonated beverages. State-of-the-art designs typically use heavily ribbed designs for filling still beverages.

[0007] Such ribs have the advantage that they offer good grip stability and also ensure the necessary top load, which arises, for example, from axial loading during palletizing.

[0008] However, relatively smooth-walled designs are always used for filling carbonated beverages, as heavy ribbing leads to significant height growth when subjected to internal pressure, as the ribs are pulled accordion-like in length by the pressure. This axial elongation leads to the destruction of the design.

[0009] However, such smooth-walled containers require more material and have a moderate grip stability.

[0010] To make the bottom of a container pressure-resistant while maintaining a low weight, it is common practice to provide tension bands running from the injection point to the outside of the bottle. These serve to hold the injection point upright, ensuring the bottle stands on its feet and prevents it from tipping over.

[0011] WO 2006 / 067590 A1 describes such a plastic bottle base. More specifically, reinforcement recesses are provided that extend transversely relative to this bottle base, with a continuous main rib arranged in the base. Said main ribs extend to a gate point of the container. Such a design of the bottle base can achieve increased stability; however, particularly in the area of ​​the gate point, unfavorable stress distributions may arise due to the design of the corresponding reinforcement ribs.

[0012] DE 202008012290 U1 also describes a floor with such tension bands.

[0013] Although the presence of the drawstrings makes the base area significantly more stable, this measure has no effect on the stability of the bottle in the central body or shoulder area.

[0014] The present invention is therefore based on the object of increasing the stability of thin-walled plastic bottles above the base and, in particular, increasing their pressure resistance. In addition, the material required for the production of these plastic containers should be further reduced. Furthermore, increased grip stability should be achieved.

[0015] This is achieved according to the invention by a plastic container according to claim 1.

[0016] Advantageous forms of training and further education are the subject of the subclaims.

[0017] A plastic container according to the invention has a neck, a shoulder, a central body, and a base region, wherein the base region has at least two drawstrings extending from a central region to the side wall of the base. The drawstrings and / or the function of the drawstrings of the base extend at least partially into the body region (4) or into the body (4) and shoulder region (5) of the plastic container (1).

[0018] A tension zone always extends from the floor area into the body area. In advantageous designs, the tension band can even extend into the shoulder area.

[0019] In the context of the invention, a tension band is understood to mean a reinforcing groove that extends radially from the central region of a container base, i.e., from the injection point located centrally on the longitudinal axis of the container, to increase the stability of the base. Unlike in the prior art, the tension bands of the base do not end at the outer edge of the base, but rather extend beyond it into the outer surface, running essentially axially, in particular approximately parallel to the longitudinal extent of the container, resulting in a very advantageous extension of the tension bands.

[0020] In a preferred embodiment, grooves are provided between the tension bands and / or above and / or below the tension bands in the shoulder and / or body area, at least in some areas, in the circumferential direction.

[0021] In the following, grooves are understood to mean, in particular, recesses that advantageously extend in a straight line or in a wave-like manner in some areas, preferably extending toward the interior of the container. These grooves achieve contour reinforcement without requiring a significant increase in wall thickness. This significantly increases the grip stability of the bottles.

[0022] Alternatively, other structural elements, such as wedges, can be provided to increase grip stability.

[0023] Preferably, the drawstrings and / or the drawstring function are configured to extend substantially longitudinally along the circumference of the container from the base toward the neck or mouth of the container (1). The longitudinal direction refers to the extension of the container from the base toward the mouth. When the container is in an upright position, the longitudinal direction is substantially perpendicular to the horizontal, but can also deviate from the vertical by up to 30°.

[0024] The drawstrings in the body area serve to significantly increase the pressure resistance of the container.

[0025] In a further advantageous embodiment, the base has at least two, advantageously at least three feet and the number of feet is a multiple of the number of tension straps.

[0026] Preferably, two drawstrings have 2, 4, 6, 8, 10, or 12 feet, and three drawstrings have 3, 6, 9, or 12 feet. Two or three drawstrings are preferred, but four, five, six, or more drawstrings are also conceivable according to the invention.

[0027] With just one drawstring, the bottle would expand under internal pressure and become crooked. With four or more drawstrings, the ribbed structure would be interrupted too often, significantly reducing grip stability.

[0028] It's particularly preferred that the drawstrings run between two feet. This means that there is always at least one foot on each side of the drawstring.

[0029] In a further advantageous embodiment, the drawstrings extend over certain areas of the bottle, in particular over the body area up to the shoulder area, or only over the body area, or only over parts of the body or shoulder. These different configurations allow for design flexibility and also enable different designs, depending on the bottle's required pressure resistance.

[0030] Preferably, the drawstrings end immediately before or after a labeling area of ​​the body and / or shoulder intended to receive at least one label.

[0031] Depending on the label, different requirements apply to the area where the label is to be applied. For example, applying adhesive can be difficult if a drawstring protrudes at the desired location.

[0032] Furthermore, it can also be advantageous to apply adhesive to the area created by the drawstring to secure the label there. If the area of ​​the outer surface intended for receiving a label lies in the plane of a drawstring along the length of the container, it functionally forms a continuation of the drawstring, even if there is no circumferential ribbing in the labeling area. The wall thickness can then be limited to the thickness of the drawstring.

[0033] In a further advantageous embodiment, the tension bands run radially inwardly transversely, in particular perpendicularly, to the circumferential grooves.

[0034] In the context of the invention, transverse means that, if the circumferential grooves run horizontally at least in some areas when the container is in a standing position, the tension bands run in a direction approximately perpendicular to this, i.e. in particular in the longitudinal direction of the container.

[0035] Radially inward means that the bottom of the grooves is closer to the bottle axis.

[0036] In a further preferred embodiment, the tension bands form at least one longitudinal bar that projects radially outward and, at least in some areas, runs through circumferential grooves. The term "longitudinal bar" is understood to mean the reverse case, namely, that a groove extends radially outward from the inside of the container. This longitudinal bar can also be extended further toward the neck area, so that circumferential transverse grooves are simultaneously formed between them.

[0037] These circumferential grooves preferably have varying depths in the circumferential direction. Particularly preferably, the circumferential grooves have a significantly shallower depth at the points where they function as a tension band than in the areas in between. This is particularly advantageous because shallow grooves are very pressure-resistant. At greater depths, the pressure resistance decreases, and the bottle elongates under the influence of pressure.

[0038] In a further preferred embodiment, the drawstrings in the labeling area are shaped to allow for the application of a label. Advantageously, the drawstring is wider in the labeling area, for example, to allow for the application of adhesive. Although the drawstring is thus extended further in the axial direction of the container, the geometry can be changed in this area.

[0039] Preferably, a blow mold for producing a plastic container from a plastic preform is also provided, with which a plastic container according to the invention can be produced.

[0040] In a further advantageous embodiment, a device for producing a plastic container from a plastic preform by blow molding is provided, which device has blow molds for producing a plastic container according to the invention.

[0041] Blow molding, particularly stretch blow molding or extrusion blow molding, is a process for introducing compressed air into a preform, thereby transforming it into a plastic container, particularly with the aid of a stretching rod. The blow mold, which has a negative of the plastic container, is suitable for giving the plastic container the desired shape. Blow molding can be carried out either on rotating carousels or on stationary linear machines.

[0042] Further advantages and embodiments can be seen in the attached drawings: Showing: Fig. 1A is a view of a container according to the invention from below onto the base; Fig. 1B is an alternative view of a container according to the invention from below onto the base; Fig. 2A a side view of a container according to the invention; Fig. 2B an alternative side view of a container according to the invention; Fig. 2C an alternative side view of a container according to the invention; Fig. 3A is a side view of another embodiment of a container according to the invention; Fig. 3B is an alternative side view of another embodiment of a container according to the invention; Fig. 3C an alternative side view of another embodiment of a container according to the invention; Fig. 4A is a plan view of the container according to the invention; Fig. 4B is a plan view of an alternative embodiment of the container according to the invention.

[0043] The Fig. 1A and Fig. 1B show two embodiments of the base 2 of a container 1 according to the invention. The base 2 has a gate 8 in a central region. The tension bands 6a extend from this into the outer wall region of the base and serve to pull the gate toward the container cavity, thus preventing the container from tipping over.

[0044] These tension bands 6a, which are arranged in the base area 2, increase the pressure stability of the base so that carbonated drinks can be easily filled in without deforming the base outwards.

[0045] In Fig. Figure 1A shows an advantageous embodiment of a base according to the invention, in which exactly two drawstrings 6a are extended into the body region 4 of the container 1 (schematically shown by the thick black marked points 6b). Each drawstring 6a is arranged exactly in the space between two feet 7. In the Fig. 1A shows a total of 12 feet. The number of feet is advantageously a multiple of the number of tension bands. Thus, with two tension bands, 2, 4, 6, 8, 10, 12, etc. feet are provided according to the invention.

[0046] In Fig. 1B shows an alternative, advantageous embodiment of the invention. Three drawstrings are provided in the base area, which are extended into the body 4 and / or shoulder area 5. With three drawstrings, it is advantageous to provide 3, 6, 9, 12, etc. feet. In the embodiment shown in Fig. In the embodiment shown in Figure 1B, 9 feet are provided.

[0047] The Fig. 2A, Fig. 2B and Fig. 2C show side views of an advantageous embodiment of the invention. A container 1 is shown, which consists of a neck region 3, a body region 4, a shoulder region 5, and a base region 2.

[0048] In the area of ​​the central body 4, grooves 9, 10 are provided, which enable increased grip stability of the container 1. Furthermore, the drawstrings 6a of the base 2 extend into the body area 4 of the container 1. Reference numeral 6b indicates this extended drawstring. The extension of the drawstring 6b in the body area also enables the container to be designed with greater pressure resistance there. Thus, the functions of grip stability and pressure resistance are combined in one container 1 by the two different elements of the grooves 9, 10 and the drawstrings 6b.

[0049] The illustrated drawstring 6b can be designed either as a groove extending at least partially in the longitudinal direction L, i.e., essentially perpendicular to the circumferential direction U of the container 1, or in the form of a beam or rib projecting radially outward. It makes no difference whether the drawstrings 6b are visibly extended or merely their function is extended toward the neck area.

[0050] To extend the function, as in Fig. 2B, it is possible to provide the grooves 10 located in the labeling area 11 of the container with a depth varying in the circumferential direction U. Particularly preferably, the grooves 10 have a smaller depth in the extension of the drawstring 6b than in the areas between the drawstrings 6b in order to create increased stability there.

[0051] Fig. Figure 2B shows a very similar alternative embodiment of the Fig. 2A, with the difference that the tension band 6b in Fig. 2B extends into the shoulder area 5 (see drawstring 6c).

[0052] Another alternative embodiment is shown in Fig. 2C. There, the drawstring 6b itself and not only the function of the drawstring 6b is guided through the labeling area 11. The entire drawstring 6 extends in Fig. 2 C thus from the injection point 8 via the tension band 6a in the base area 2, as well as the tension band 6b in the body area 4 to the shoulder area 5, in which the tension band 6c is shown.

[0053] All three designs are containers with two drawstrings 6a, 6b, (6c) and six feet 7.

[0054] The Fig. 3A, Fig. 3B and Fig. 3C show side views of an alternative embodiment of the invention.

[0055] In contrast to Fig. 2A, Fig. 2B and Fig. 3C shows a container 1 with three drawstrings 6b and nine feet 7. The two embodiments shown, with two and three drawstrings 6b, are therefore useful because polygons (the triangle is created when the drawstrings inside the bottle are notionally connected by straight lines) are only geometrically defined up to a number of three corners. However, four, five, six, or more drawstrings would also be conceivable, although this would reduce stability.

[0056] In Fig. 3A is one with the Fig. A comparable representation is shown in Figure 2B. Fig. 3C, in turn, is Fig. Very similar to 2C.

[0057] In Fig. However, Figure 3B shows an alternative embodiment in which the drawstring 6b is only partially visible in the labeling area 11. Here, too, however, the function of the drawstring 6 is extended into the shoulder area 5; this is merely a further design modification of the drawstring 6.

[0058] Furthermore, it is also conceivable to design the Fig. 3B with a bottle 1 as in Fig. 2A / B / C shown, or the design of the Fig. 2A with a bottle 1 as in Fig. 3A / B / C.

[0059] In the Fig. 4A and Fig. 4B also shows a top view of the container 1 according to the invention.

[0060] Fig. Figure 4A shows a top view of a container 1 with three drawstrings 6. The drawstrings are arranged at the same distance from each other around the circumference. By conceptually connecting one drawstring 6 with the other two, an isosceles, angularly symmetrical triangle is created. The angular symmetry is represented by the axes A1, A2, and A3, each of which runs from a drawstring 6 through the central axis of the container 1. Such a polygon is geometrically defined and particularly well suited to absorbing pressure without deforming.

[0061] Fig. 4B shows a top view of a container with two drawstrings 6. The two drawstrings are arranged symmetrically with respect to the symmetry line A4.

[0062] In the two Fig. 4A and Fig. 4B shows that the drawstrings 6c have been extended into the shoulder area 5. The design of the drawstrings 6b in the body area 4 cannot be determined from this illustration. However, all the Fig. 2A, Fig. 2B, Fig. 2C, Fig. 3A, Fig. 3B, Fig. 3C shown embodiments are conceivable.

[0063] All features disclosed in the application documents are claimed as essential to the invention, provided that they are new, individually or in combination, compared to the prior art. List of reference symbols 1 container 2 floor 3 neck 4 bodies 5 Shoulder 6 Drawstring a. Drawstring in the floor area b. Drawstring in the body area c. Drawstring in the shoulder area 7 feet 8 Injection point 9 groove 10 grooves with varying depth 11 Labeling area A1 axis A2 axis A3 axis A4 axis U circumferential direction L longitudinal direction

Claims

[1] Plastic container (1) consisting of a neck (3), a shoulder (5), a body (4) and a base region (2), wherein the base region (2) has at least two drawstrings (6a) extending from a central region (8) to the side wall of the base (2), wherein the drawstrings (6b, 6c) and / or the function of the drawstrings (6b, 6c) of the base (2) extend at least partially into the body region (4) or into the body (4) and shoulder region (5) of the plastic container (1) characterized by , that the drawstrings (6a, 6b, 6c) end immediately before or after a labeling area (11) of the body (4) and / or the shoulder (5) intended to receive at least one label. [2] Plastic container (1) according to claim 1, characterized bythat between the tension bands (6b, 6c) and / or above and / or below the tension bands (6b, 6c) in the body (4) and / or shoulder area (5) there are circumferential grooves (9, 10) at least in some areas in the circumferential direction (U). [3] Plastic container (1) according to at least one of the preceding claims, characterized by that the drawstrings (6b, 6c) and / or the drawstring function are designed to run substantially in the longitudinal direction (L) on the circumference of the container (1) from the bottom (2) towards the neck (3) of the container (1). [4] Plastic container (1) according to at least one of the preceding claims, characterized by that the base (2) has at least two, advantageously at least three feet (7) and the number of feet (7) is a multiple of the number of tension bands (6a, 6b, 6c). [5] Plastic container (1) according to claim 4, characterized bythat with two tension bands (6a, 6b, 6c) there are 2, 4, 6, 8, 10 or 12 feet (7) and with three tension bands (6a, 6b, 6c) there are 3, 6, 9 or 12 feet (7). [6] Plastic container (1) according to at least one of the preceding claims, characterized by that the tension bands (6a, 6b, 6c) each run in an area between two feet (7). [7] Plastic container (1) according to at least one of the preceding claims, characterized by that the drawstrings (6a, 6b, 6c) extend over certain areas of the bottle (1), in particular over the body area (4) or over the body area and the shoulder area (5) or only over partial areas of the body (4) or the shoulder (5). [8] Plastic container (1) according to at least one of the preceding claims, characterized by that the tension bands (6a, 6b, 6c) extend radially inwardly transversely, in particular perpendicularly, to the circumferential grooves (9, 10). [9] Plastic container (1) according to at least one of the preceding claims, characterized by that the tension bands (6a, 6b, 6c) form at least one longitudinal beam which projects radially outwards and runs at least partially through the circumferential grooves (9, 10). [10] Plastic container (1) according to at least one of the preceding claims, characterized by that the circumferential grooves (9, 10) have varying depths in the circumferential direction (U). [11] Plastic container (1) according to claim 10, characterized by that the circumferential grooves (9, 10) have a significantly smaller depth at the points where they have the function of a tension band (6b, 6c) than in the areas in between. [12] Plastic container (1) according to at least one of the preceding claims, characterized by that the drawstrings (6b) in the labeling area (11) are shaped to enable the attachment of a label. [13] Blow mold for producing a plastic container from a plastic preform characterized by that the blow mold is suitable for producing a plastic container according to at least one of the preceding claims. [14] Device for producing a plastic container from a plastic preform by blow moulding, characterized by that the device comprises blow molds for producing a plastic container according to claim 13.

Citation Information

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