MLchartDataset catalogue

Patent · US2020122456A1 · A1 · US

Machine and method for single-pass digital printing on glass

(11) Publication number
US2020122456A1
(21) Application number
16/581,707
(22) Filing date
2019-09-24
(30) Priority date
2018-05-17
(43) Publication date
2020-04-23
(52) CPC
  • B41J Typewriters; selective printing mechanisms, i.e. mechanisms printing otherwise than from a forme; correction of typographical errors: 2/0451, 2/04586, 2/155, 2/2054, 2/2139, 2/2146, 2/515, 2202/20, 25/001, 3/28, 3/407
  • C03C Chemical composition of glasses, glazes or vitreous enamels; surface treatment of glass; surface treatment of fibres or filaments made from glass, minerals or slags; joining glass to glass or other materials: 17/002, 2218/119
(73) Assignee
TECGLASS SL
(54) Title
Machine and method for single-pass digital printing on glass
(57) Abstract

The invention relates to a machine and method for single-pass digital printing on glass (1). The machine comprises: a support structure (2) for securing the sheet of glass (1); and a printing bridge (3) which, during printing, can move along the longitudinal “X” axis of the support structure (2), said bridge supporting digital printing means (33) with print bars (100, 100′, 100 ″) comprising successive printing heads (10, 10′, 10 ″), as well as supporting a scanner (32) for capturing data relating to the positions of defects (X″, Y″).

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Claims (1)

  1. Machine for single-pass digital printing on glass (1) characterised in that it comprises: a. a support structure (2) comprising means configured for the positioning and automatic securing of a glass sheet (1) during printing, and means configured for the transport (4) of said glass sheet, b. a printing bridge (3) configured to move along the longitudinal “X” axis of the support structure (2) and located on said supporting structure, and c. digital printing means (33) of the glass sheet, supported by said bridge (3) configured to perform the printing on the glass sheet (1) when said bridge (3) moves on the glass sheet secured to said structure support (2); said printing means comprising at least one printing bar (100), said printing bar comprising successive printing heads (10), and said successive printing heads (10) of each printing bar (100) being fed by ink of the same colour. 2. Method for single-passed digital printing on glass executed by the machine of claim 1, characterised in that it comprises: a. A step of feeding, positioning and securing the glass sheet (1) in the printing plane, and b. A step of complete and continuous movement of the printing bridge (3) on the statically secured glass sheet, with simultaneous printing of the printing heads (10, 10 ′, 10 ″) that print a selected pattern on the glass, printing only the heads of the printing bars that are placed on the glass (1) as a function of the position data (X′, Y′) of the figure to be printed and colour data (C(X′,Y′)). 3. Method for digital printing according to claim 1 characterised in that it further comprises: a. a step of detecting the position data of the printing defects (X″, Y″) on the glass sheet (1), and b. at least one step of complete and continuous movement of the printing bridge on the fixed glass, with simultaneous and selective printing of the printing heads that print on the defect positions (X″, Y″) detected on the glass. 4. Method for digital printing according to claim 2, characterised in that said digital printing step occurs simultaneously with a step of drying the ink by emitting radiation for drying the ink. 5. Method for digital printing on glass, according to claim 2, characterised in that it further comprises a step of final tempering for the vitrification of the ink. 6. Method for digital printing according to claim 3, characterised in that said digital printing step occurs simultaneously with a step of drying the ink by emitting radiation for drying the ink.

Citations (2)

  • US2005219291A1
  • US2006008591A1
Record as JSON
{
  "publication_number": "US2020122456A1",
  "country": "US",
  "kind": "A1",
  "title": "Machine and method for single-pass digital printing on glass",
  "abstract": "The invention relates to a machine and method for single-pass digital printing on glass (1). The machine comprises: a support structure (2) for securing the sheet of glass (1); and a printing bridge (3) which, during printing, can move along the longitudinal “X” axis of the support structure (2), said bridge supporting digital printing means (33) with print bars (100, 100′, 100 ″) comprising successive printing heads (10, 10′, 10 ″), as well as supporting a scanner (32) for capturing data relating to the positions of defects (X″, Y″).",
  "claims": [
    "1. Machine for single-pass digital printing on glass (1) characterised in that it comprises: a. a support structure (2) comprising means configured for the positioning and automatic securing of a glass sheet (1) during printing, and means configured for the transport (4) of said glass sheet, b. a printing bridge (3) configured to move along the longitudinal “X” axis of the support structure (2) and located on said supporting structure, and c. digital printing means (33) of the glass sheet, supported by said bridge (3) configured to perform the printing on the glass sheet (1) when said bridge (3) moves on the glass sheet secured to said structure support (2); said printing means comprising at least one printing bar (100), said printing bar comprising successive printing heads (10), and said successive printing heads (10) of each printing bar (100) being fed by ink of the same colour. 2. Method for single-passed digital printing on glass executed by the machine of claim 1, characterised in that it comprises: a. A step of feeding, positioning and securing the glass sheet (1) in the printing plane, and b. A step of complete and continuous movement of the printing bridge (3) on the statically secured glass sheet, with simultaneous printing of the printing heads (10, 10 ′, 10 ″) that print a selected pattern on the glass, printing only the heads of the printing bars that are placed on the glass (1) as a function of the position data (X′, Y′) of the figure to be printed and colour data (C(X′,Y′)). 3. Method for digital printing according to claim 1 characterised in that it further comprises: a. a step of detecting the position data of the printing defects (X″, Y″) on the glass sheet (1), and b. at least one step of complete and continuous movement of the printing bridge on the fixed glass, with simultaneous and selective printing of the printing heads that print on the defect positions (X″, Y″) detected on the glass. 4. Method for digital printing according to claim 2, characterised in that said digital printing step occurs simultaneously with a step of drying the ink by emitting radiation for drying the ink. 5. Method for digital printing on glass, according to claim 2, characterised in that it further comprises a step of final tempering for the vitrification of the ink. 6. Method for digital printing according to claim 3, characterised in that said digital printing step occurs simultaneously with a step of drying the ink by emitting radiation for drying the ink."
  ],
  "cpc": [
    "B41J 2/0451",
    "B41J 2/04586",
    "B41J 2/155",
    "B41J 2/2054",
    "B41J 2/2139",
    "B41J 2/2146",
    "B41J 2/515",
    "B41J 2202/20",
    "B41J 25/001",
    "B41J 3/28",
    "B41J 3/407",
    "C03C 17/002",
    "C03C 2218/119"
  ],
  "assignees": [
    "TECGLASS SL"
  ],
  "filing_date": "2019-09-24",
  "publication_date": "2020-04-23",
  "priority_date": "2018-05-17",
  "application_number": "US-201916581707-A",
  "family_id": "70281394",
  "citations": [
    "US2005219291A1",
    "US2006008591A1"
  ]
}

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