IL257511A

Support material formulation and additive manufacturing processes employing same

Abstract

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IL257511A, drawing sheet 1
Sheet 1 of 9

Term

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  1. Priority and filed
  2. Published
  3. Today

46 claims: 30 independent, 16 dependent

  1. 1
    A support material formulation comprising:a non-curable water-miscible polymer;a first water-miscible, curable material;and at least one second water-miscible curable material, wherein said second curable material is selected capable of interfering with intermolecular interactions between polymeric chains formed upon exposing the first water-miscible curable material to curing energy, said second curable material featuring at least two hydrogen bond-forming chemical moieties and is capable of forming hydrogen bonds with said polymeric chains.
  2. 4
    The formulation of claims 2 or 3, wherein said second curable material is capable of reducing a degree of a chemical cross-linking between said polymeric chains, said chemical cross-linking being imparted by said multi-functional curable material.
  3. 5
    The formulation of any one of claims 1-4, wherein each of said at least two hydrogen bond-forming chemical moieties independently comprises at least one atom selected from oxygen and nitrogen.
  4. 7
    The formulation of any one of claims 1-6, wherein at least two of said hydrogen bond-forming chemical moieties are separated by 2-10, or by 2-8, or by 2-6 atoms.
  5. 8
    The formulation of any one of claims 1-7, wherein each of said first and second curable materials is a UV-curable material.
  6. 9
    The formulation of any one of claims 1-8, wherein each of said first and second curable materials independently comprises an acrylate, a methacrylate, an acrylamide or a methacrylamide curable moiety.
  7. 10
    The formulation of any one of claims 1-9, wherein said first curable material comprises a poly(alkylene glycol) acrylate.
  8. 11
    The formulation of any one of claims 1-9, wherein said first curable material comprises a mono-functional poly(alkylene glycol) acrylate.
  9. 12
    The formulation of any one of claims 1-11, wherein said first curable material comprises a mixture of a mono-functional poly(alkylene glycol) acrylate and a multi-functional poly(alkylene glycol) acrylate.
  10. 13
    The formulation of any one of claims 1-12, wherein said first curable material comprises a mixture of a poly(alkylene glycol) acrylate and a poly(alkylene glycol) diacrylate.
  11. 14
    The formulation of claims 12 or 13, wherein a weight ratio between said mono-functional poly(alkylene glycol) acrylate and said multi-functional poly(alkylene glycol) acrylate in said first curable material ranges from 70:30 to 95:5.
  12. 15
    The formulation of any one of claims 1-14, wherein said second curable material is selected from an acrylate, a methacrylate, an acrylamide or a methacrylamide.
  13. 16
    The formulation of any one of claims 1-15, wherein said second curable material is represented by Formula I:O A יRa Formula I wherein: Ra is selected from H, C(l-4) alkyl and a hydrophilic group;k is an integers ranging from 2 to 10, or from 2 to 8, or from 2 to 6, or from 2 to 4, or is 2 or 3;and X and Y are each independently a hydrogen bond-forming moiety that comprises at least one nitrogen and/or oxygen atom.
  14. 18
    The formulation of claims 16 or 17, wherein X is -O-.
  15. 20
    The formulation of claims 16 or 18, wherein X is -NRc-, wherein Rc is hydrogen, alkyl, cycloalkyl or aryl.
  16. 22
    The formulation of any one of claims 1-17, 19 and 20, wherein said second curable material is an acrylamide substituted by at least one hydrogen bondforming chemical moiety.
  17. 24
    The formulation of any one of claims 1-23, wherein a concentration of said second curable material ranges from 5 to 40 weight percents of the total weight of the formulation.
  18. 25
    The formulation of any one of claims 1-24, wherein a concentration of said first curable material ranges from 5 to 40, or from 5 to 30, or from 5 to 25, or from 5 to 20, or from 10 to 20, or from 5 to 15, or from 10 to 15, weight percents of the total weight of the formulation.
  19. 26
    The formulation of any one of claims 1-25, wherein a concentration of said first curable material is lower than 30 weight percents, or lower than 20 weight percents, or lower than 15 weight percents of the total weight of the formulation.
  20. 27
    The formulation of any one of claims 1-26, wherein a concentration of said second curable monomer ranges from 1 to 40, or from 1 to 30, or from 1 to 20, or from 5 to 20, or from 5 to 15, or from 5 to 10, weight percents of the total weight of the formulation.
  21. 28
    The formulation of any one of claims 1-27, wherein said water-miscible polymer comprises a polyol.
  22. 30
    The formulation of any one of claims 1-29, wherein a concentration of said water-miscible polymer ranges from 30 % to 80 % by weight of the total weight of the formulation.
  23. 31
    The formulation of any one of claims 1-30, further comprising an initiator.
  24. 32
    The formulation of any one of claims 1-31, further comprising an additional agent, such as a surface active agent and/or an inhibitor.
  25. 33
    The formulation of any one of claims 1-32, wherein a cured support material formed upon exposing the formulation to a curing energy is dissolvable in an alkaline solution.
  26. 36
    The formulation of any one of claims 33-35, wherein said alkaline solution comprises an alkali metal hydroxide.
  27. 38
    The formulation of any one of claims 1-37, wherein a 20 mm x 20 mm x 20 mm object made of the support material formulation and formed upon exposing the formulation to a curing energy is characterized by a mechanical strength of at least 100 N.
  28. 39
    The formulation of any one of claims 1-38, wherein a cured support material formed upon exposing the formulation to a curing energy is characterized by a mechanical strength that is lower than a mechanical strength of a cured support material made of a comparable support material formulation that is absent said second curable material and comprises substantially the same total concentration of curable materials as the formulation, by no more than 50 % or by no more than 40 %, or by no more than 30 %.
  29. 40
    A method of fabricating a three-dimensional model object, the method comprising dispensing a building material so as to sequentially form a plurality of layers in a configured pattern corresponding to the shape of the object, wherein said building material comprises a modeling material formulation and a support material formulation, and wherein said support material formulation comprises the formulation of any one of claims 1-39.
  30. 46
    A three-dimensional object fabricated by the method of any one of claims 40-45.
Independent claims30