The present invention relates to the field of tubular containers made from plastics material, which consist of three distinct elements, namely a flexible tubular body, a rigid base and a top part including a neck.
More specifically, the invention relates to a device and a method for producing these containers.
There are various known devices for producing containers as described in the preceding section.
Briefly, such a device comprises a first type of mandrel which supports the tubular body and on which the top part which contains the neck is fixed. The assembly consisting of these two elements is then directed to a second type of mandrel on which the base is fixed.
However, the prior art devices are relatively complicated in respect of their structure. Furthermore, the transfer of a container during its formation from one type of mandrel to the other considerably lengthens the container fabrication time. The positioning of the base and/or top part is also difficult to achieve.
Thus there is a need to simplify the prior art devices and to decrease the container fabrication time.
The problem to be resolved by the present invention consists of the relative complexity of the prior art devices and the relatively long container fabrication times.
In the invention, the solution of the aforesaid problem consists in using only one type of mandrel for simultaneously fixing the top part and the base to the tubular body.
More precisely, the device according to the invention comprises a mandrel and means for fixing a top part, including a neck, and a base to a flexible tubular body. The device is characterized in that it consists of at least one fabrication unit comprising a support shaft having a free end provided with a retaining member adapted to prevent the movement of a container base in one direction, a tubular sleeve mounted slidably around the support shaft and having a free end located on the same side as the free end of the support shaft, a member for driving the tubular sleeve in a linear way, and a space adapted for the relative movement of a tubular body around the tubular sleeve, the said tubular sleeve additionally comprising a top part grip member located near the free end of the sleeve, the said top part grip member comprising means for the instantaneous fixing and retention of an assembly consisting of a top part and a base of a container.
The top part grip member can be of any type. In one embodiment of the invention, the fixing and retaining means consist of a screw thread.
Advantageously, the member for driving the tubular sleeve is of the pneumatic type, but any other appropriate type of drive can be used.
The device preferably comprises a plurality of fabrication units.
In one embodiment, the fabrication units are positioned along a circle.
In a variant of the invention, the top part and the base are initially fixed to each other, enabling them to be introduced into the device in a single operation.
The initial fixing of the base to the top part also provides other advantages. The assembly formed in this way is more rigid than the base on its own, and this increases the stability of the base when it is welded to the tubular body.
On the other hand, if the base were not initially fixed to the top part, it would have to be reinforced, for example by adding lateral fins. This would make the base heavier, more difficult to produce and therefore more costly.
The invention is described more fully below with the aid of examples illustrated by the following figures:
On the rotating plate 17, a top part fixing element 6 comprising a heating system, of the HF type for example, surrounds the assembly consisting of the support shaft 9 and the sleeve 12.
In a first step (see
In a second step (see
In a third step (
In a fourth step (
In a variant of the invention (not shown), the fourth step takes place before the third step.
In a fifth step (
In a sixth step (
Finally (
In the illustrated example, two tubular bodies 2 are loaded simultaneously on to the rotating plate 17.
In
A Loading of top part/rigid base
B Loading of tubular body
C Positioning of tubular body
D Pre-treatment of the base with hot air
E High-frequency welding of the base
F High-frequency welding of the top part
G High-frequency welding of the top part
H High-frequency welding of the top part
I Discharge of the container
J Free station (discharge monitoring)
Number | Date | Country | Kind |
---|---|---|---|
05108285.7 | Sep 2005 | EP | regional |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/IB2006/052833 | 8/16/2006 | WO | 00 | 4/22/2008 |