The present application for industrial invention relates to a shoe with ventilation or transpiration system obtained with direct injection process on upper.
As it is known, a shoe is mainly made of an upper around the foot and an outsole glued to the upper that acts as tread. In traditional shoes the two parts are manufactured separately and then glued. Before gluing the outsole on the upper, various mechanisms can be inserted in the outsole to obtain a transpiration system. Transpiration systems applied to this type of shoe are available on the market.
In the direct injection process on upper, instead, the outsole is molded inside a mould and directly injected on the upper, filling all empty spaces between upper and outsole, without the possibility of leaving any space to insert the various mechanisms of the ventilation system.
GB 2 317 089 discloses a ventilated shoe, an injection mould and a method to obtain a ventilated shoe.
WO99/2650 discloses a method to obtain a ventilated shoe by means of injection molding.
The purpose of the present invention is to eliminate the drawbacks of the known art by devising a shoe with ventilation or transpiration system obtained with direction injection process on upper.
This purpose has been achieved according to embodiment(s) of the present invention.
Advantageous embodiments are disclosed in the dependent claims.
The shoe of the invention comprises:
upper,
insole fixed to upper,
ventilation system disposed under insole, and
outsole obtained by directly injecting expandable material in a mould, in such a way to cover ventilation system, insole and lower part of the upper.
Advantageously, the insole comprises a slot or projection in the heel area and a plurality of holes in the plantar surface area.
The ventilation system comprises:
a pump disposed in said slot or projection of the insole to form an air chamber,
a membrane fixed in the lower surface of the insole under said holes, in such a way to generate at least one space in communication with said holes,
a connection pipe that connects the chamber of the pump to the spaces of the membrane, and
an inlet or outlet conduit that connects the chamber of the pump with the outside to extract or exhaust air.
The advantages of the shoe of the invention are clear, since it allows for foot ventilation and has been studied in such a way that the outsole is obtained by molding expandable material directly on the upper of the shoe.
Additional characteristics of the invention will appear evident from the detailed description below, which refers to merely illustrative, not limiting embodiments, illustrated in the enclosed drawings, wherein:
Referring to
The last (F), of known type, reproduces the shoe to be made. Although the last (F) is diagrammatically shown as one piece, it can be made of multiple articulated pieces in order to simplify the insertion and removal of the shoe. In particular, the last (F) is provided with recessed seat (F1) in the lower part of the heel.
The upper (T) is of known type and can be made of fabric, imitation leather, leather, and similar materials.
Also the insole (T) is of known type and can be made of fabric, imitation leather, leather, and similar materials. Preferably, the insole (1) is made of perspiring fabric, such as Kevlar.
As shown in
Referring to
The ventilation system (2) comprises a membrane (3) disposed under the surface of the insole (1), under the holes (11), and a pump (4) that is disposed in the slot (10) of the heel of the insole.
The membrane (3) is provided with a peripheral frame (30) that is fixed to the insole. Deformable spacers (31) are situated between the membrane (3) and the insole. The spacers (31) are shaped as internally empty spherical segments, facing the membrane (3). Between the spacers (31) a plurality of spaces (32) is generated in mutual communication and in communication with the holes (11) provided in the insole (1).
The pump (4) forms a pumping chamber (40) that communicates with the spaces (32) of the membrane (3) by means of a connection pipe (20). The upper wall of the pump (4) is provided with deformable spacers (41) shaped as pins that extend in the chamber (40) of the pump.
The chamber (40) of the pump communicates with an inlet pipe (21) that extends behind the insole (1). Between the inlet pipe (21) and the chamber of the pump (4) a non-return (monodirectional) valve (5) is disposed, allowing for air flow from the inlet pipe (21) to the chamber (40) of the pump and not vice versa.
For illustrative purposes, the non-return valve (5) comprises a spherical shutter (50) stressed by a spring (51) to maintain the valve normally closed.
As shown in
Referring to
Referring to
The piston (P) has an upper surface (P1) shaped in accordance with the tread to be obtained. The half rings (6, 6′) have internal lateral surface (60) shaped in accordance with the lateral surface of the outsole to be obtained. The half rings (6, 6′) have an upper border (65) that protrudes inwards and is stopped against the upper (T).
The back part of the half rings (6, 6′) is provided with a hole (61) to insert the air inlet pipe (21). Moreover, the half rings (6, 6′) have a channel (62) for injection of outsole material, such as polyurethane (PU).
Corresponding guide plates (7, 7′) are mounted in the back of the half rings (6, 6′). As shown in
As shown in
Referring to
Referring to
Referring to
Air passes in the spaces (32) of the membrane and comes out of the holes (11) of the insole, ventilating the plantar surface of the foot, which is raised with respect to the insole (1).
By moving the centre of gravity of the body forward, the user completes the step, making the foot rotate in such a way that the plantar surface of the foot closes the holes (11) of the insole. Simultaneously, the heel of the foot is raised, freeing the pump (4). The non-return valve (5) opens and the chamber (40) of the pump is filled with air through the inlet pipe (21). In this way the chamber of the pump is filled with air and is ready for another pumping cycle.
In the following text identical elements or elements that correspond to elements that have already been described are indicated with the same reference numerals, omitting their detailed description.
The chamber (40) of the pump is not provided with deformable spacers (41).
The first valve (5′) is configured in such a way to allow for air flow from the chamber (40) of the pump outwards, therefore the conduit (21) becomes an air outlet pipe to exhaust air outside the shoe.
Between the connection pipe (20) and the chamber of the pump (4) a second non-return (monodirectional) valve (105) is disposed, allowing for air flow from the connection pipe (20) to the chamber (40) of the pump and not vice versa.
For illustrative purposes, the second non-return valve (105) comprises a spherical shutter (150) stressed by a spring (151) to maintain the valve normally closed.
Said embodiment further reduces the thickness of the ventilation system in the front part of the foot. In this way a plate (I) can be drowned in the outsole (9) and disposed under the ventilation system. The plate (I) can be made of metal or Kevlar or other anti-perforation material, in such a way to use the shoe as accident-prevention shoe.
Numerous variations and modifications can be made to the present embodiments of the invention by an expert of the field, while still falling within the scope of the invention as claimed in the enclosed claims.
Number | Date | Country | Kind |
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MC2009A0077 | Apr 2009 | IT | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2010/054040 | 3/26/2010 | WO | 00 | 3/18/2011 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2010/115737 | 10/14/2010 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
5044096 | Polegato | Sep 1991 | A |
5400526 | Sessa | Mar 1995 | A |
5655314 | Petracci | Aug 1997 | A |
5826349 | Goss | Oct 1998 | A |
6085444 | Cho | Jul 2000 | A |
6670029 | Norton et al. | Dec 2003 | B2 |
7028418 | Huang | Apr 2006 | B1 |
7930839 | Litchfield et al. | Apr 2011 | B2 |
8037623 | Passke et al. | Oct 2011 | B2 |
20070000151 | Su | Jan 2007 | A1 |
20090019727 | Fenzi | Jan 2009 | A1 |
Number | Date | Country | |
---|---|---|---|
20110167679 A1 | Jul 2011 | US |