Abstract: The object of the present invention is to provide a novel device and method for accurately transporting printable substrates suitable for substrates of various types, sizes and thicknesses. In addition, the invention is suitable for printing machines without contact with the substrate, such as inkjet printing machines.
Type:
Grant
Filed:
March 2, 2021
Date of Patent:
October 10, 2023
Assignee:
MGI Digital Technology
Inventors:
Edmond Abergel, Louis Gautier Le Boulch
Abstract: The present invention relates to a device for transforming by digital processing a substrate and preferably a pre-processed substrate. The present invention also relates to a method for transforming by digital processing a substrate, preferably a pre-processed substrate.
Type:
Grant
Filed:
April 23, 2020
Date of Patent:
September 7, 2021
Assignee:
MGI Digital Technology
Inventors:
Edmond Abergel, Leo Paviotti, Romain Poncet
Abstract: The present invention relates to a printing method comprising a step of printing a pattern on a substrate, preferably by ink jet printing, followed by a gold plating step by means of contact between the pre-printed pattern to be gold plated and a gold plating deposition device, such as a preferably conductive metal sheet, e.g. a multilayer film comprising a preferably conductive metal sheet.
Type:
Application
Filed:
March 8, 2018
Publication date:
October 8, 2020
Applicants:
MGI Digital Technology, InkJet Engine Technology
Inventors:
Edmond ABERGEL, Louis GAUTIER LE BOULCH, Clement BEGES
Abstract: The present invention relates to a device for transforming by digital processing a substrate and preferably a pre-processed substrate. The present invention also relates to a method for transforming by digital processing a substrate, preferably a pre-processed substrate.
Type:
Application
Filed:
April 23, 2020
Publication date:
August 6, 2020
Applicant:
MGI Digital Technology
Inventors:
Edmond ABERGEL, Leo PAVIOTTI, Romain PONCET
Abstract: The present invention relates to a device for transforming by digital processing a substrate and preferably a pre-processed substrate. The present invention also relates to a method for transforming by digital processing a substrate, preferably a pre-processed substrate.
Type:
Grant
Filed:
July 26, 2016
Date of Patent:
June 2, 2020
Assignee:
MGI Digital Technology
Inventors:
Edmond Abergel, Leo Paviotti, Romain Poncet
Abstract: The invention relates to a varnish with low levels of migration for covering the surface of an inkjet-printed and inkjet-deposited substrate, the composition of the varnish comprising at least: a hardenable monofunctional acrylate monomer; a hardenable difunctional diacrylate monomer; a hardenable acrylate monomer and/or oligomer with a sole acrylate functionality, said functionality being between 3 and 6; and a photoinitiator.
Abstract: The object of the present invention is to propose a novel device and a novel method to allow the transportation of printable substrates precisely, suited to substrates of various types, sizes and thicknesses. Furthermore, the invention is suited to printing machines that involve no contact with the substrate, such as inkjet printing machines.
Abstract: The invention relates to a varnish with low levels of migration for covering the surface of an inkjet-printed and inkjet-deposited substrate, the composition of the varnish comprising at least: a hardenable monofunctional acrylate monomer; a hardenable difunctional diacrylate monomer; a hardenable acrylate monomer and/or oligomer with a sole acrylate functionality, said functionality being between 3 and 6; and a photoinitiator.
Abstract: The present invention relates to a device for transforming by digital processing a substrate and preferably a pre-processed substrate. The present invention also relates to a method for transforming by digital processing a substrate, preferably a pre-processed substrate.
Type:
Application
Filed:
July 26, 2016
Publication date:
August 9, 2018
Applicant:
MGI Digital Technology
Inventors:
Edmond ABERGEL, Leo PAVIOTTI, Romain PONCET
Abstract: The invention relates to a method for the gilding of a substrate with the application of pressure between the zones of the substrate to be gilded and a gilding sheet comprising a gilding film and a transfer layer, characterized by the consecutive treatment of the gilded substrate, allowing the adhesion performance of the gilding sheet in relation to the substrate to be optimized while improving the visual quality of the gilding deposit on the substrate.