EP4410751A2

Coated microcrystalline glass with improved water-repellent and oil-repellent property, preparation method and application thereof

Abstract

The invention relates to a microcrystalline glass containing a water-repellent and oil-repellent composite coating layer on the surface, a preparation method and application thereof. The coated glass is a microcrystalline glass or a glass ceramic containing a water-repellent and oil-repellent composite coating layer on the surface, which is characterized in that from the outmost surface of the glass, it includes: a water-repellent and oil-repellent layer, an intermediate layer, a bottom layer and a microcrystalline glass or a glass ceramic, wherein, the intermediate layer is the intermediate layer containing ionic crystals with a lattice energy of 700-3000kJ/mol and formed by the same, the bottom layer includes compounds containing Si-O bonds or a mixed silicon oxide layer. The present invention can form a firm, durable and excellent water-repellent and oil-repellent coating film even if the coating interface of microcrystalline glass has very few Si-O structure, and can achieve excellent water-repellent and oil-repellent property regardless of whether the high-crystallinity glass has done ion exchange or not.

EP4410751A2, drawing sheet 1
Sheet 1 of 6

Term

15.3 yearsto projected expiry

Projected expiry 25 January 2042, counted from filing; an application has no term until it is granted.

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15 claims: 10 independent, 5 dependent

  1. 1
    A microcrystalline glass containing a water-repellent and oil-repellent composite coating layer on the surface, characterized in that from the outermost surface of the microcrystalline glass, it includes:a water-repellent and oil-repellent layer, an intermediate layer and a bottom layer, wherein, the intermediate layer is the intermediate layer formed by ionic crystals with a lattice energy of 700-3000kJ/mol as the original coating material;moreover,the intermediate layer is a crystal formed by at least one ionic crystal of LiF, NaF and/or KF as the original coating material;or an intermediate layer formed by at least one of MgF 2 , CaF 2 , SrF 2 or BaF 2 as the original coating material;;the bottom layer includes compounds containing Si-O bonds or a mixed silicon oxide layer. wherein, the thickness of the bottom layer is 3-15nm, the thickness of the intermediate layer is 1-5nm, its crystallinity can be greater than 60% and contains coloring additives.
  2. 4
    The microcrystalline glass according to any one of claims 1-3, characterized in that the intermediate layer is an intermediate layer formed by the ionic crystal with a lattice energy of 725-3000kJ/mol, and preferably 770-3000kJ/mol as the original coating material;preferably, the intermediate layer is an ionic crystal intermediate layer with a lattice energy less than 1050KJ/mol.
  3. 5
    The microcrystalline glass according to any one of claims 1-4, characterized in that the thickness of the intermediate layer is 1-2nm;and/or the thickness of the bottom layer is 5-10nm;and/or the thickness of the water-repellent oil-repellent layer is not less than 10nm, preferably not less than 15nm, which can be 10nm-25nm
  4. 6
    The microcrystalline glass according to any one of claims 1-5, characterized in that when the bottom layer is a multilayer bottom layer, the compound containing Si-O bond or the mixed silicon oxide layer is as the outermost bottom layer, the mixed silicon oxide is a mixture of silicon oxide SiO x and oxides of at least one other element other than silicon and/or magnesium fluoride, wherein x is less than or equal to 2;preferably, the other element is element(s) of aluminum, tin, magnesium, phosphorus, cerium, zirconium, titanium, cesium, barium, strontium, niobium, zinc or boron;the compound containing Si-O bond is SiO x , wherein x is less than or equal to 2;or any one of SiOC, SiON, SiOCN and/or Si 3 N 4 , or a compound with hydrogen bond bonded to any of SiO x , SiOC, SiON and/or SiOCN in any proportion, wherein x is less than or equal to 2.
  5. 7
    The microcrystalline glass according to any one of claims 1-6, the water-repellent oil-repellent layer is a fluorine-based polymer layer, more preferably, a fluorine-containing polyether silicon oxide layer with a molecular weight not less than 2000.
  6. 8
    The microcrystalline glass according to any one of claims 1-7, characterized in that the microcrystalline glass contains oxides in the following mol%:SiO 2 : 40-75%, preferably 45-72%;Al 2 O 3 : 2-20%, preferably 4-15%;B 2 O 3 : 0-20%, preferably 0.4-1.6%;P 2 O 5 : 0-10%, preferably 0.8-1.5%;ZrO 2 +TiO 2 : 0-15%, preferably 0.9-4%;MgO:0-5%, preferably 0.1-2%;ZnO: 0-4%, preferably 0.9-3.0%;rare earth oxide: 0-5%, preferably 0.01-1%;Na 2 O: 0-5.5%;K 2 O: 0-4%;Li 2 O: 2-34%, preferably 10-34%;and Na 2 O+K 2 O+Li 2 O: 4-40%, preferably 15-40%;the microcrystalline glass is a glass with or without ion exchange.
  7. 10
    The microcrystalline glass according to any one of claims 1-9, characterized in that the coloring additive is one or more selected from Nd 2 O 3 , Fe 2 O 3 , CoO, NiO, V 2 O 5 , MnO 2 , TiO 2 , CuO and Cr 2 O 3 .
  8. 11
    The microcrystalline glass according to any one of claims 1-10, characterized in that ,in the molar content relative to the overall composition of the glass, the coloring additive contains 0.5mol% or more CoO and/or Cr 2 O 3 , preferably, the coloring additive contains 1mol% or more any one selected from Fe 2 O 3 , NiO or MnO 2 .
  9. 12
    The microcrystalline glass according to any one of claims 1-11, characterized in that the primary crystal phase of the microstalline glass is one or more selected from beta quartz solid solution, beta spodumene solid solution, beta lithium nepheline, spinel, rutile, mullite, olivine, enstatite, cordierite, petalite, lithium silicate, lithium disilicate, silica, zirconia, magnetite.
  10. 14
    The preparation method of the microcrystalline glass according to any one of claims 1-13, including the following steps:1) coating microcrystalline glass with a layer containing Si-O oxide or mixed silicon oxide, to form a bottom layer on the surface of the microcrystalline glass;2) an intermediate layer is coated on the surface of the bottom layer obtained in Step 1);3) a water-repellent and oil-repellent layer is coated on the surface of the intermediate layer obtained in Step 2).