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Nonslip thermoplastic part and method for the production thereofCM Patents

Índice de la ficha

Updated at
24/07/2026
Numero publicacion
EP.1293334.A1
Fecha publicacion
19/03/2003
Numero solicitud
EP20010929665

En detalle

Resumen

This invention involves one kind by thermo-plastic elastomeric material, especially there is extra-low hardness that is filled with the moulded blade member made of the homopolymers of polypropylene (PP) and rubber. The stated blade member can be used as the label, advertising carrier,etc.. Blade member of this invention and pancake usually, have one smooth surface opposite piece have protruding week (all right dividing it into one by one protruding) edging at the same time. There is the edging inside, a central plane area, it, to the edging dent in above-mentioned week in stated week, above-mentioned central plane area use for, assign, use as label (screen printing, print, print) or flaky corresponding adornment of attachment, keep the non-skid property of the stated blade member at the same time. The blade member utilizes production of the lower submersible injection mold, but does not adopt the toggle-joint lever, chill casting, this enables to mould the physical character that the blade member prevents the material at the same time, especially its higher anisotropism, cause the construction defect, this kind of defect causes and can not stick to and apply the above-mentioned surface adornment or cause the decline after the latter is stuck to and applied properly. The mode of production includes the following steps: Shut off the block press of injection molding; Colour the thermoplastic material the material together with being required to direct into the core barrel device; Heat the cylinder of the core barrel device to the material that is directed into and melt; Rotate the pattern axle device with the low balancing pressure of the high rotational speed; Let the material that directs into the block press shift out cooling; Turn on block press and mould of inside their, start ejector and arrangement propeller system in female mold base, utilize action of gravity sweep, fall, enter in the holding tank blade member; And it is cold to take out and cast the blade member.

Reivindicaciones

1. Non-slipping piece of thermoplastic elastomer or TPE, usable as a label, publicity support or similar, characterised in that the aforementioned piece (1) consists of a flat body, with an approximately rectangular base, with a bevelled edge (4), body that has a larger smooth face and a smaller opposite face having a perimeter border (2) slightly elevated, of constant thickness, that defines a central surface zone (3) slightly lowered with respect to the upper part of the raised perimeter border (2). 2. Non-slipping piece according to claim 1, characterised in that the raised perimeter border (2) is subdivided into a series of independent elevations (2'). 3. Non-slipping piece according to claim 2, characterised in that the central surface (3) is at the same level as the base of the elevations (2'). 4. Non-slipping piece according to any one of the previous claims, characterised in that thermoplastic elastomer (TPE) material has a hardness between 5 and 30 Shore. 5. Non-slipping piece according to claim 1, characterised in that the thermoplastic elastomer (TPE) material has a hardness of 5 Shore. 6. Non-slipping piece according to any one of the previous claims, characterised in that the application surface of the piece is of at least 30% with respect to the total surface of the base of the piece. 7. Non-slipping piece according to claim 6, characterised in that the application surface of the piece is 35% with respect to the total surface of the base of the piece 8. Non-slipping piece according to any one of the previous claims, characterised in that the thickness of the piece is between 1 mm. and 1.5 mm. 9. Non-slipping piece according to claim 8, characterised in that the thickness of the piece is 1.4 mm. 10. A method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to what is claimed in the previous claims, characterised in that it is carried out by means of submarine injection moulding, without using the roller, and includes the stages of: closing the injection machine press with a force between 45 x 10<4> N and 55 x 10<4> N, introducing the thermoplastic material into the spindle device in the form of chippings through a respective feed shoot at a rate between 24 g and 26 g of load per cycle, with the desired coloration material, heating the cylinder of the spindle device between 180 and 230 DEG C to produce the fusion of the introduced material, rotating the spindle device at a high rate between 280rpm and 330 rpm, with a low counter-pressure between 0 bar and 20 bars, to perform the introduction of the material into the press of the injection machine at a flow rate between 170 cm<3>/sec and 190 cm<3>/sec until filling up the corresponding moulds with a load between 1.3 g/imprint and 1.6 g/imprint, leaving the material introduced into the press to cool between 6 and 9 sec, and as a result of the cooling action of the fluid circulating through the interior of the press between 6 DEG C and 10 DEG C, with a flow rate between 30 L/hour and 40 L/hour, opening the press and subsequently the moulds in its interior, and actuating the ejectors in combination with impeller means in the base of the imprint to sweep the pieces by gravity to a corresponding collection shoot, and expelling the cold casting pieces. 11. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to claim 10, characterised in that each imprint of the mould is filled with 1.5 g of load. 12. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any one of claims 10 to 11, characterised in that the force of closure of the press is 49 x 10<4> N. 13. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 12, characterised in that the introduction of material into the feed shoot is carried out at a rate of 25 g of load per cycle. 14. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 13, characterised in that the cylinder is heated to 230 DEG C. 15. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 14, characterised in that the spindle device is made to rotate at a high rate of 300 rpm. 16. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 15, characterised in that the spindle device is made to rotate with a low counter-pressure of 5 bar. 17. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 16, characterised in that the injection rate is 160 cm<3>/sec. 18. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 17, characterised in that the material introduced in the press is left to cool for 7 seconds. 19. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 18, characterised in that the cooling fluid is water that circulates around the interior of the press with an inlet temperature of 8 DEG C and an outlet temperature of 14 DEG C. 20. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 19, characterised in that cooling water circulates around the interior of the press at a flow rate of 38 L/hour. 21. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 20, characterised in that it is carried out with cold castings. 22. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 21, characterised in that on opening the press, and as a result the moulds of its interior, some impeller means are actuated, consisting of male mobile pieces that emerge from the bottom of the imprint until exposing the piece beyond the level of the mould. 23. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 22, characterised in that on opening the press, and as a result the moulds of its interior, some ejection means are actuated which incorporate a rotating roller at their end consisting of a cylindrical brush with an axis of revolution parallel to the plate, to "sweep" the pieces until they fall by gravity into the corresponding collection shoot. 24. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 23, characterised in that the total cycle time is 15 seconds. 25. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to claims 10, 15, 16 or 17, characterised in that the combination of the parameters of rate of rotation of the spindle, the counter-pressure of the spindle and the rate of injection lead to a low mixing level and a high shearing level. 26. Method for producing a non-slipping piece of thermoplastic elastomer (TPE), according to any of claims 10 to 25, characterised in that there is an additional stage of incorporating a layer of material adherent to the smooth surface of the produced piece, and a detachable sheet of coating over said lamina. 27. Method for producing a non-slipping piece o thermoplastic elastomer (TPE), according to any one of claim 10 to 25, characterised in that there is an additional stag of incorporating of a double-layer adherent lamina to the smooth surface of the piece produced, and a detachable shee of coating over said lamina.

Etiquetas

Inventores
Perez Carballo AlfonsoCarballo Alfonso PerezAlfonso Perez CarballoPerez Carballo, Alfonso
Solicitantes
Algotop S LAlgotop SL, MadridPerez Carballo Alfonso
Clasificacion ipc
B29C 45/ 00 A IB29C 45/ 02 A IB29C 45/ 37 A IB29C 59/ 02 A IB29D 7/ 00 A IB29D 99/ 00 A IG09F 3/ 02 A I
Clasificacion cpc
4F206/AF014F206/AG014F206/AG054F206/AG264F206/JA074F206/JB284F206/JD044F206/JL024F206/JM014F206/JM044F206/JN034F206/JN114F206/JN434F206/JQ81B29C45/00B29K101/12B29L7/00G09F3/02&M428/143428/157
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