IL107722A

Hydraulically settable compositions, articles of manufacture made therefrom and methods for manufacturing same

Abstract

This record has no abstract on file.

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

136 claims: 16 independent, 120 dependent

  1. 1
    WHAT IS CLAIMED IS:1. An article of manufacture comprising at least a portion of a substantially hardened hydraulically settable sheet, the sheet being formed from a hydraulically settable mixture including a hydraulically settable binder, a rheology-modifying agent, a fibrous material, and water, wherein the fibers are substantially homogeneously dispersed such that the hydraulically settable sheet can be bent, folded or rolled to significantly mechanically deform the sheet after the hydraulically settable sheet has been substantially dried and during formation of the article of manufacture without complete rupture of the hydraulically settable sheet.
  2. 2
    An article of manufacture comprising a sheet having a hydraulically settable matrix formed from a hydraulically settable mixture comprising a hydraulically settable binder, rheology-modifying agent, fibrous material, and water, wherein the fibrous materials are substantially homogeneously dispersed throughout the hydraulically settable matrix of the sheet such that the sheet can be bent, folded or rolled to significantly mechanically deform the sheet after the hydraulically settable matrix has been substantially dried without complete rupture of the hydraulically settable matrix, the hydraulically settable matrix of the sheet having a maximum thickness of about 3 mm.
  3. 3
    An article as defined in claims 1 or 2, wherein the hydraulically settable binder is included in the hydraulically settable mixture within a range from about 5% to about 90% by weight of the hydraulically settable mixture.
  4. 4
    An article as defined in claims 1 or 2, wherein the hydraulically settable matrix of the article has a maximum water content of about 10% by volume of the hydraulically settable matrix.
  5. 5
    An article as defined in claims 1 or 2, wherein the water and the hydraulically settable binder have a ratio within a range from about 0.1 to about 4.
  6. 6
    An article as defined in claims 1 or 2, wherein the hydraulically settable matrix has a tensile strength to bulk density ratio in the range from about 2 MPa-cmVg to about 50 MPa-cm 3 /g.
  7. 7
    An article as defined in claims 1 or 2, wherein the hydraulically settable matrix has a tensile strength to bulk density ratio in the range from about 3 MPa״cm 3 /g about 20 MPa*cm 3 /g.
  8. 8
    An article as defined in claims 1 or 2, wherein the hydraulically settable matrix has an initial water to hydraulically settable binder ratio in the range from about 0.5 to about 4 w/w.
  9. 9
    An article as defined in claims 1 or 2, wherein the hydraulically settable matrix further comprises at least one inorganic aggregate material.
  10. 19
    An article as defined in claims 1 or 2, wherein the fibrous materials are selected from the group consisting of glass, cellulose, hemp, metal, ceramic, and silica, and mixtures or derivatives thereof.
  11. 20
    An article as defined in claims 1 or 2, wherein the fibrous materials have an aspect ratio of at least 100:1.
  12. 21
    An article as defined in claims 1 or 2, wherein the hydraulically settable binder includes individual particles and wherein the fibrous materials have an average length that is at least 100 times the effective diameter of the individual particles of the hydraulically settable binder.
  13. 22
    An article as defined in claims 1 or 2, wherein the fibrous materials are included in an amount up to about 20% by volume of the hydraulically settable mixture.
  14. 23
    An article as defined in claims 1 or 2, wherein the rheology-modifying agent comprises a cellulose-based material.
  15. 25
    An article as defined in claims 1 or 2, wherein the rheology-modifying agent is selected from the group consisting of agar, gum arabic, starch, and synthetic clay.
  16. 26
    An article as defined in claims 1 or 2, wherein the rheology-modifying agent comprises a starch-based material.
  17. 27
    An article as defined in claims 1 or 2, wherein the rheology-modifying agent comprises a protein-based material.
  18. 28
    An article as defined in claims 1 or 2, wherein the rheology-modifying agent comprises polylactic acid.
  19. 29
    An article as defined in claims 1 or 2, wherein the rheology-modifying agent comprises a synthetic organic material.
  20. 30
    An article as defined in claims 1 or 2, wherein the rheology-modifying agent has a concentration in the range of about 0.2% to about 5% by weight of the hydraulically settable matrix.
  21. 31
    An article as defined in claims 1 or 2, wherein the hydraulically settable matrix further comprises a discontinuous, nonagglomerated phase including finely dispersed voids.
  22. 34
    An article as defined in claims 1 or 2, wherein the article is a container.
  23. 35
    An article as defined in claims 1 or 2, wherein the article is in the shape of a box for the dispensing of food products.
  24. 38
    An article as defined in claims 1 or 2, wherein the article is disposable.
  25. 39
    An article as defined in claims 1 or 2, wherein the article is in the shape of a straw through which liquid can pass.
  26. 40
    An article as defined in claims 1 or 2, wherein the article is in the shape of a hingedly closable box.
  27. 41
    An article as defined in claims 1 or 2, wherein the article is in the shape of an egg carton.
  28. 42
    An article as defined in claims 1 or 2, wherein the article is in the shape of a container selected from the group consisting of a jar, bottle, carton, case, clam shell, crate, and eating dish.
  29. 43
    An article as defined in claims 1 or 2, wherein the article is in the shape of a plate.
  30. 44
    An article as defined in claims 1 or 2, wherein the article is in the shape of utensils selected from the group consisting of a fork, spoon and knife.
  31. 45
    An article as defined in claims 1 or 2, wherein the hydraulically settable matrix is a foam-like product.
  32. 46
    An article as defined in claims 1 or 2, wherein the hydraulically settable matrix is a clay-like product
  33. 50
    An article as defined in claims 1 or 2, further comprising an air entraining agent.
  34. 51
    An article as defined in claims 1 or 2, further comprising a material which reacts with the components ofthe hydraulically settable mixture to produce a gas in order to incorporate voids into the hydraulically settable matrix.
  35. 56
    An article as defined in claims 1 or 2, further comprising a coating on at least a portion of the surface of the hydraulically settable matrix of the container.
  36. 58
    An article as defined in claims 1 or 2, the hydraulically settable matrix further including printed indicia.
  37. 59
    An article as defined in claims 1 or 2, wherein the density of the hydraulically settable matrix is less than about 1.5 g/cm 3 .
  38. 60
    A method of manufacturing an article of manufacture as defined in claims 1 or 2, substantially or described in the specification.
  39. 61
    An article of manufacture comprising a food or beverage container with at least a portion formed from a hydraulically settable sheet having a coating thereon, the sheet formed from a hydraulically settable mixture including a hydraulically settable binder, water, fibers, and a rheology-modifying agent, wherein the hydraulically settable sheet is characterized in that it may be bent, folded or rolled with significant mechanical deformation after the sheet has been substantially dried without complete rupture of the sheet, said hydraulically settable sheet having a maximum thickness of about 5 mm.
  40. 64
    An article of manufacture comprising a food or beverage container, at least a substantial portion of said container being formed from a hydraulically settable sheet including the chemical reaction products of a hydraulically settable mixture comprising a hydraulically settable binder selected from the group consisting of portland cement, slag cement calcium aluminate cement, sfiicate cement, phosphate cement, high alumina cement and magnesium oxychloride cement, water, and a rheology-modifying agent, the hydraulically settable mixture being characterized in that the portion of the container formed from the hydraulically settable mixture achieves form stability while in a green state in about 10 minutes or less after the hydraulically settable mixture is first formed into a desired configuration, the hydraulically settable mixture in the desired configuration hardening into a hydraulically settable matrix having a thickness of up to about 1 cm and a density less than about 1.5 g/cm 3 .
  41. 67
    An article of manufacture as defined in claims 61 or 64, wherein the hydraulically settable matrix of the container is form stable within a period of time less than about 1 minute after being positioned into the desired shape.
  42. 68
    An article of manufacture as defined in claims 61 or 64, wherein the hydraulically settable matrix of the container is form stable within a period of time less than about 10 seconds after being positioned into the desired shape.
  43. 69
    An article of manufacture as defined in claims 61 or 64, wherein the hydraulically settable matrix of the container is form stable within a period of time less than about 3 seconds after being positioned into the desired shape.
  44. 70
    An article of manufacture as defined in claims 61 or 64, wherein the hydraulically settable matrix of the container has a tensile strength to bulk density ratio in the range from about 3MPa-cm 3 /g to about 30 MPa-cm 3 /g.
  45. 72
    An article of manufacture as defined in claims 61, wherein the hydraulically settable binder includes a microfine cement.
  46. 73
    An article of manufacture as defined in claims 61 or 64, wherein the hydraulically settable matrix has an initial water to hydraulically settable binder ratio in the range from about 0.1 to about 4 w/w.
  47. 74
    An article of manufacture as defined in claims 61 or 64, wherein the hydraulically settable mixture further comprises at least one aggregate material.
  48. 75
    An article of manufacture as defined in claims 61 or 64, wherein the hydraulically settable mixture further comprises at least one aggregate material selected from the group consisting of perlite and hollow glass spheres.
  49. 76
    An article of manufacture as defined in claims 61 or 64, wherein the hydraulically settable mixture further-comprises at least one aggregate material, wherein the aggregate material comprises individual particles having a plurality of effective diameters selected to maximize the particle packing density of the aggregate material.
  50. 78
    An article of manufacture as defined in claims 61 or 64, wherein the hydraulically settable mixture includes fibers.
  51. 81
    An article of manufacture as defined in claims 61 or 64, wherein the rheology-modifying agent has a concentration up to about 50% by weight of the mixture.
  52. 82
    An article of manufacture as defined in claims 61 or 64, wherein the rheology-modifying agent has a concentration in the range from about 0.2% to about 5% by volume of the hydraulically settable matrix.
  53. 83
    An article of manufacture as defined in claims 61 or 64, wherein the rheology-modifying agent comprises a cellulose-based material selected from the group consisting of methylhydroxyethylcellulose, carboxymethylcellulose, hydroxyethylcellulose and mixtures or derivatives thereof.
  54. 84
    An article of manufacture as defined in claims 61 or 64, wherein the rheology-modifying agent is selected from the group consisting of agar, gum arabic, starch, synthetic clay, and mixtures or derivatives thereof.
  55. 85
    An article of manufacture as defined in claims 61 or 64, wherein the rheology-modifying agent comprises־a starch-based material.
  56. 86
    An article of manufacture as defined in claims 61 or 64, wherein the rheology-modifying agent comprises a protein-based material.
  57. 87
    An article of manufacture as defined in claims 61 or 64, wherein the rheology-modifying comprises polylactic acid.
  58. 88
    An article of manufacture as defined in claims 61 or 64, wherein the rheology-modifying agent comprises a synthetic organic material.
  59. 89
    An article of manufacture as defined in claims 61 or 64, wherein the container is in the shape of a drinking cup.
  60. 90
    An article of manufacture as defined in claims 61 or 64, wherein the container is in the shape of a box for the dispensing of food products.
  61. 91
    An article of manufacture as defined in claims 61 or 64, wherein the density of said container is less than about 1.2 g/cm 3
  62. 92
    A method for manufacturing an article having a hydraulically settable matrix, the method comprising the steps of:mixing together a hydraulically settable binder, a rheology-modifying agent, an inert inorganic aggregate filler and water in order to form a hydraulically settable mixture that is capable of being passed between a pair of counter-rotating reduction rollers while in a green state to form a sheet having a thickness less than 3 mm, the inert inorganic aggregate filler having a concentration greater than about 50% by weight of the hydraulically settable binder;passing the hydraulically settable mixture between a pair of counterrotating reduction rollers while in a green state to form a cohesive and coherent sheet having a thickness less than about 3 mm, the sheet having sufficient cohesive strength while still in the green state and prior to fashioning and hardening such that the sheet does not rupture as the sheet exits the reduction rollers, thereby forming a coherent sheet;molding at least a portion of the sheet while in the green state into a desired shape of the article, the article gaining form stability in less than about one minute after first being fashioned into the desired shape;and allowing the molded portion of the sheet to harden into the desired shape of the article.
  63. 93
    A method for manufacturing an article comprising a sheet having a substantially dried hydraulically settable matrix, the method comprising the steps of:(a) mixing together a hydraulically settable binder, a fibrous material, a rheology-modifying agent, an inorganic aggregate filler, and water in order to form a hydraulically settable mixture that is capable of being passed between a pair of counter-rotating reduction rollers while in a green state to form a cohesive sheet, the fibrous material and inert inorganic aggregate filler together having a concentration greater than about 50% by weight of the hydraulically settable binder;(b) passing the hydraulically settable mixture between a pair of counter-rotating reduction rollers while in the green state to form a sheet having sufficient cohesive strength while still in the green state and prior to drying such that the sheet does not rupture as the sheet exits the reduction rollers;and (c) drying the sheet to a significant degree in an accelerated manner by passing the sheet obtained in step (b) around a portion of at least one substantially cylindrical roller in order to form the substantially dried hydraulically settable matrix of the sheet in less than about 10 minutes after forming the sheet.
  64. 94
    A method for manufacturing an article from a sheet having a substantially dried hydraulically settable matrix, the method comprising the steps of:(a) mixing together a hydraulically settable binder, a substantial quantity of an inert inorganic aggregate filler, and water in order to form a hydraulically settable mixture that is capable of being passed between a pair of counter-rotating reduction rollers while in a green state to form a cohesive sheet;(b) passing the hydraulically settable mixture between a pair of counter-rotating reduction rollers to form a sheet having sufficient cohesive strength while still in the green state and prior to drying such that the sheet does not rupture as the sheet exits the reduction rollers;and (c) drying the sheet in an accelerated manner to form the substantially dried hydraulically settable matrix of the sheet such that the sheet is substantially dried in less than about 10 minutes after the hydraulically settable mixture is formed into the sheet;and (d) fashioning at least a portion of the substantially dried sheet obtained in step (c) into a desired shape of the article of manufacture.
  65. 95
    A method for manufacturing an article as defined in claims 92,93 or 94, wherein the aggregate material includes individual particles having of a plurality of different sizes so as to increase the particle packing efficiency of the aggregate material.
  66. 96
    A method of manufacturing an article as defined in claims 92 or 94, further comprising the step of adding a fibrous material to the hydraulically settable mixture.
  67. 97
    A method for manufacturing an article as defined in claims 92, 93 or 94, wherein at least a portion of the mixing of the hydraulically settable paste is performed in a high energy mixer.
  68. 100
    A method for manufacturing an article as defined in claims 92,93 or 94, further comprising the steps of:adding an adsorbing material to the mixture;exposing a blowing agent to the mixture under pressure so that the blowing agent is adsorbed into the adsorbing material;and releasing the pressure on the mixture so that the blowing agent expands forming air voids in the mixture.
  69. 112
    113. A method for manufacturing an article as defined in claim 112wherein the rollers are heated in order to reduce the adhesion of the moldable mixture to the rollers. 1 1 4 . a method for manufacturing an article as defined in claim 113, wherein heating the rollers significantly reduces the amount of water within the mixture.
  70. 113
    115. A method for manufacturing an article as defined in claim 113, wherein the rollers are heated to a temperature in a range from about 50״C to about 140״C.
  71. 118
    120. A method for manufacturing an article as defined in claims 92, further comprising the step of extruding the mixture through a die having a die slit before passing the mixture between a pair of reduction rollers.
  72. 120
    122. A method for manufacturing an article as defined in claim 120 wherein the moldable mixture is extruded under a pressure in a range from about 350 kPa to about 3.5 MPa.
  73. 133
    135. A method for manufacturing an article as defined in claims 92,93 or 94, further comprising the step of fixing print to the dried article.
  74. 134
    136. A method for manufacturing an article as defined in claims 92,93 or 94, further comprising the step of applying a coating material to at least one surface of the article. 13 7, A method for manufacturing an article as defined in claims 92,93 or 94, wherein the article has a thickness in a range between about 0.5 mm to about 1 mm.
  75. 135
    138. A method for manufacturing an article as defined in claims 92,93 or 94״ wherein the article obtains form stability in a time period sufficiently short for the article to be mass produced.
  76. 136
    139. A product manufactured according to a method as defined in claims 92, 93 or 94.
Independent claims76