1. Field of the Invention
The present invention relates to a multilayered molten resin mass, to a multilayered preform compression molded from the multilayered molten resin mass for blow molding, and to a multilayered container.
2. Description of the Related Art
Multilayered stretch-blow molded synthetic resin bottles and other multilayered synthetic resin containers are already in wide use, and functions not achievable with single-layer resin containers can be obtained with multilayered containers such as those having internal resin layers with excellent gas barrier or other properties and those which can include recycled resin layers (see the patent document 1). The intermediate resin layer of such containers which is composed of a gas barrier resin, recycled resin or the like needs to be embedded within the inner and outer resin layers without being exposed on the inner or outer surface of the container. To fulfill this requirement, the inventors have proposed that a multilayered molten resin mass in which the intermediate resin layer (gas barrier resin) is embedded eccentrically towards the bottom within an inner/outer layer resin be manufactured by extrusion molding, and that this multilayered molten resin mass then be supplied to a cavity mold and be compressed with a core mold to manufacture a multilayered preform as a multilayered molded material for blow molding (the patent document 2). Because in a multilayered molten resin mass manufactured by the aforementioned method the interlayer resin is included with deviation towards the bottom in the multilayered molten resin mass, when it is compressed with the core mold only the inner and outer layers are present in the upper part of the multilayered molten resin mass which first engages with the core mold, and the pressure of the core mold causes the inner/outer layer resin to flow up and down along the cavity mold. Finally the part comprising the interlayer resin is compressed by the core mold, forming a preform with no gate portion in which the mouth and neck are formed only of the inner/outer layer resin while in the body and base the interlayer resin is embedded between the inner and outer layers.
Ideally the inner and outer layers and the intermediate resin layer are uniform in thickness around the entire circumference of a preform obtained in this way, but in rare cases it has been observed that parts of the intermediate resin layer are too thin, broken, or too thick, or that parts of the intermediate resin layer are exposed on the outermost or innermost surfaces. As a result, if for example some parts of the intermediate resin layer are too thin or are broken the intermediate resin layer may not adequately fulfill its intended function because the desired gas barrier properties are not obtained for example. If the intermediate resin layer is exposed on the innermost or outermost surface, there is a risk that the intermediate resin layer may come into direct contact with the contents and adversely affect them, or that the intermediate resin layer may absorb water from the contents, detracting from its barrier properties. To resolve such problems, the layers of the multilayered preform must have a uniform circumferential distribution with the intermediate resin layer positioned entirely within the inner and outer resin layers, but no method has yet been established for obtaining such a layer distribution in a conventional perform.
Patent document 1: Japanese Patent Application Laid-open No. 2003-39531
Patent document 2: Japanese Patent Application Laid-open No. 2003-33964
It is an object of the present invention to provide, in a manufacturing method for obtaining a multilayered compression-molded product by compression molding of a multilayered molten resin mass, a multilayered compression-molded product wherein the layers of the multilayered compression-molded product have a uniform circumferential distribution with the intermediate resin layer positioned entirely within the inner and outer resin layers, and more specifically to provide a multilayered molten resin mass from which such a multilayered compression-molded product can be obtained.
To solve the aforementioned problems, the inventors discovered as a result of extensive research that the layer distribution of a multilayered preform for blow molding obtained by compression molding of a resin mass is affected by the shape of the interlayer resin in the multilayered molten resin mass, and arrived at the present invention after further research when they discovered the optimal shape of the interlayer resin for obtaining the aforementioned layer distribution.
That is, the multilayered molten resin mass of the present invention is a multilayered molten resin mass for obtaining a multilayered compression-molded product by means of compression molding, wherein the interlayer resin which makes up the intermediate resin layer of the multilayered molten resin mass is embedded eccentrically towards the bottom within the inner/outer layer resin making up the inner and outer layers, and wherein the aforementioned interlayer resin is concave in shape.
The distance from the lower end of the aforementioned interlayer resin to the lower end of the multilayered molten resin mass is preferably 10% or less of the entire length of the multilayered molten resin mass. Moreover, the shape of the aforementioned interlayer resin should more specifically be such that y (length of umbrella part of interlayer resin)≧L (length of central part of interlayer resin) and 1>do (maximum outer diameter of interlayer resin in direction of circumference)/D (outer diameter of multilayered molten resin mass in direction of circumference)≧0.5. A multilayered molded product and multilayered preform for blow molding with approximately uniform circumferential layer distributions can be obtained by compression molding a multilayered molten resin mass with such a form. Moreover, a high-quality multilayered bottle or other blow-molded multilayered container wherein the layers of the multilayered compression-molded product have an approximately uniform circumferential distribution with the intermediate resin layer positioned entirely within the inner and outer resin layers, with no exposure of the intermediate resin layer on the inner circumferential surface, can be obtained by biaxial stretch molding of this multilayered preform for blow molding. The aforementioned terms “bottom” and “lower end” are based on a case in which a molten resin mass is inserted into a female mold (cavity mold), and are used as a matter of convenience but may not always signify the physical bottom and lower end since the convex portion may be at the top if the female mold is arranged above a male mold (core mold).
Thus, with the present invention it is possible to obtain a multilayered molten resin mass which can be molded into a multilayered molded product and multilayered preform for blow molding which have approximately uniform layer thickness distributions with the thickness of the innermost layer maintained. Consequently, a multilayered preform for blow molding obtained from a multilayered molten resin mass obtained in the present invention has an approximately uniform layer distribution in the direction of circumference, and a high-quality multilayered bottle or other blow-molded multilayered container in which the intermediate resin layer is entirely positioned within the inner and outer resin layers, with an approximately uniform circumferential distribution and no exposure of the intermediate resin layer on the inner circumferential surface, can be obtained by biaxial stretch molding of this multilayered preform for blow molding.
1, 30, 34: multilayered molten resin mass
2: inner/outer layer resin
3, 31: interlayer resin
10, 20: extrusion device
11
a-11c: extruder
13: die
14
a, 21a: inner/outer layer resin passage
14
b, 21b: interlayer resin passage
14
c, 21c: interlayer cut-off resin passage
15, 22: extrusion passage
16
b, 16c: intermittent pressurizing mechanism
23
b, 23c: valve mechanism
33: multilayered molten resin mass
The present invention is explained in more detail below using the embodiment shown in
More specifically, the shape and position of the aforementioned interlayer resin 3 within inner/outer resin layer 2 have to fulfill the following conditions in
A multilayered molded product and multilayered preform for blow molding having approximately uniform layer distributions of the body and base in the direction of circumference can be obtained by compression molding a multilayered molten resin mass with such a shape. Moreover, a high-quality multilayered bottle or other blow-molded multilayered container wherein the layers of the multilayered compression molded product have a uniform circumferential distribution with the intermediate resin layer positioned entirely within the inner and outer resin layers, with no exposure of the intermediate resin layer on the inner circumferential surface, can be obtained by biaxial stretch molding of this multilayered preform for blow molding. Of the aforementioned conditions, condition (D) is not absolutely required but is a desirable condition. Of the aforementioned conditions, if t/Z>0.1 the interlayer will spread upwards and it will be difficult to ensure a uniform interlayer, while outside the range of 1>do/D≧0.5 and 1>di/D≧0.5, the thickness of the interlayer will be unstable during compression molding, and a molded product with a uniform layer distribution will not be achieved.
The aforementioned multilayered molten resin mass can be formed as follows using an extrusion device such as those shown in
Like the extrusion device shown in
In the respective extrusion devices shown in
By the extrusion device shown in
Materials of the Multilayered Molten Resin Mass
Multilayered molten resin mass 34 with a convex interlayer resin as shown in
As a result, as shown in
Although in the thickness distribution of the innermost, intermediate and outermost layers at intervals of 10 mm in the axial direction below the neck of the preform, there was some variation in thickness at each level in the example, there was little variation in the most important layers, the intermediate and innermost layers, and since both layers were maintained at a thickness of 0.6 mm or more there was little risk of the aforementioned problems occurring. In the comparative example, by contrast, there was considerable variation in the intermediate and innermost layers as shown in
Consequently, since there is no risk that the interlayer of a bottle or other container blow molded from a preform obtained by compression molding of the multilayered molten resin mass of the present invention will be exposed on the inner surface of the container, there is no risk that the contents of the bottle will be adversely effected by contact with the interlayer, or that the interlayer will absorb water from the contents, detracting from its barrier properties.
As described above, the multilayered molten resin mass of the present invention is useful in the molding of various multilayered resin molded products such as bottles and other multilayered resin containers, multilayered resin caps and the like because it can provide a multilayered preform for blow molding which has an approximately uniform layer distribution with the thickness of the interlayer maintained without exposure of the intermediate resin layer on the outside of the preform, and can also provide, by means of biaxial stretch molding of the multilayered preform for blow molding, a multilayered resin product wherein the intermediate resin layer is located within the inner and outer resin layers and has a uniform circumferential distribution.
Number | Date | Country | Kind |
---|---|---|---|
2003-361584 | Oct 2003 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP04/15506 | 10/20/2004 | WO | 4/19/2006 |