EP1599744A2

Self-indicating radiation alert dosimeter

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 26 February 2024, 2.6 years ago.

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96 claims: 40 independent, 56 dependent

  1. 1
    Claims of equivalent WO 2004077097 A2 CLAIMS 1. A radiation monitoring device comprising:a substrate;at least one imaging layer comprising a radiochromic material having capability of developing detectable color change when exposed to ionizing radiation having energy higher than 5 eN;a binder;a protective layer;and at least one reference chart comprising at least one color corresponding to said detectable color change at a predetermined level of ionizing radiation.
  2. 12
    A radiation monitoring device comprising a radiation sensitive material comprising a shelf life extender and a radiochromic material having a capability of developing detectable color change when exposed to ionizing radiation.
  3. 13
    The radiation monitoring device of claims 1-12 wherein said device has a shape selected from square, triangular, rectangular, hexagonal and circular.
  4. 14
    A radiation monitoring device of claims 1-12 further comprising a support wherein said radiation sensitive material is coated thereon.
  5. 15
    A radiation monitoring device comprising:a substrate;a radiation sensitive material coated on said substrate wherein said radiation sensitive material comprises a shelf life extender and radiochromic material having capability of developing detectable color change when exposed to ionizing radiation;and a protective layer.
  6. 16
    The radiation monitoring device of any of claims 1-15 wherein said radiochromic material has at least one set of conjugated alkynes.
  7. 28
    The radiation monitoring device of any of claims 17-27 wherein said device comprises diacetylene which is inactive and activated by heating including melting, phase change, dissolution or annealing said diacetylene.
  8. 29
    The radiation monitoring device any of claims 17-27. wherein said device comprises diacetylene made inactive by forming a solid solution or dissolution.
  9. 30
    A process for forming the radiation monitoring device of any of claims 17-27 wherein said diacetylenes are crystallized from amorphous state or solid solution by annealing.
  10. 31
    The radiation monitoring device of any of claims 1-15 wherein said radiochromic material selected from a radiochromic dye, a pH senstivitive dye and a halocarbon.
  11. 40
    The radiation monitoring device of claims, 8, 9, 12, 15 and 38 wherein said color change is selected from colorless-to-red, colorless-to-blue, blue-to-red, red-to- blue, yellow-to-blue, yellow-to-red, green-to-yellow or yellow-green.
  12. 41
    The radiation monitoring device of any of claims 1-11 or 15-40 wherein said protective layer is a transparent plastic film or coating.
  13. 42
    The radiation monitoring device of any of claims 1-11 or 15-40 wherein said protective layer comprises a material selected from photochromic material, moisture resistant material or fluorescent material.
  14. 43
    The radiation monitoring device of any of claims 1-11 or 15-40 wherein said substrate or said protective layer comprises an opaque or metallized layer.
  15. 45
    The radiation monitoring device of any of claims 1-11 or 15-40 wherein said substrate has a thickness from 0.01 to 1 mm.
  16. 46
    The radiation monitoring device of any of claims 1-11 or 15-40 wherein said substrate comprises polyvinylchloride or its copolymers.
  17. 47
    The radiation monitoring device of any of claims 1-11 or 15-40 wherein said protective layer comprises a UV absorber or UV reflector.
  18. 49
    The radiation monitoring device of any of claims 1-11 or 15-40 wherein said protective layer is 0.01 to 1 mm thick.
  19. 50
    The radiation monitoring device of any of claims 1-11 or 15-40 wherein said protective layer is made from at least one material chosen from a group consisting of polycarbonates, polystyrenes, polyolefines, polyacrylates, polyvinyl derivatives, polyester derivatives, cellulose derivatives, polyurethane, polyethylene terephthalate, silicone or siloxane resins, triethylene glycol dimethacrylate, epoxy resins, and mixture thereof.
  20. 51
    The radiation monitoring device of any of claims 12-40 wherein said shelf life extender comprises one or more of a heat stabilizer, a quencher of reactive species, scavengers of radical, scavengers of oxygen, antioxidant, inhibitor of reactive species, preventor of reactive species, thermo-oxidative preventor, photo-oxidative preventor, hydroperoxide decomposer, H-donor, metal destabilizer, UV stabilizer, UV absorber, UV reflector, fluorescent, optical brightener or mixture thereof.
  21. 56
    The radiation monitoring device of any of claims 51 or 54 wherein said H-donor is selected from aromatic amines, phenols, sterically hindered phenols, sterically hindered amine or mixture thereof.
  22. 64
    The radiation monitoring device of any of claims 12-15, 51-63 comprising 1- 30%, by weight, of said shelf life extender.
  23. 65
    The radiation monitoring device of any of claims 1-64 further comprising plasticizers selected from phthalates, glycol ethers, oleates, adipates, gluterates, phosphates, benzoates, chlorinated paraffins, recinoleates, azelates, hydrocarbon oils, sebacates, citrates, isobutyrates, sulfonamides, epoxy, ketones, abietates, trimellatates, polyester or mixture thereof
  24. 67
    The radiation monitoring device of any of claims 1-66 wherein said device is 1 to 10,000 microns thick.
  25. 68
    The radiation monitoring device of any of claims 1 -67 wherein said device is 0.5 mm to 1 meter wide and 1 mm to 1 meter long in size.
  26. 69
    The radiation monitoring device of any of claims 1-68 wherein said device comprises continuously increasing color changes in response to exposure.
  27. 70
    The radiation monitoring device of any of claims 1-69 further comprising a UV protective layer.
  28. 71
    The radiation monitoring device of any of claims 1-70 further comprising a scratch resistance layer.
  29. 72
    A process of forming the radiation monitoring device of any of claims 1-71 comprising cooling a mixture of a diacetylene, a shelf life extender and a binder in a solvent.
  30. 74
    A process of forming the radiation monitoring device of any of claims 1-71 wherein said process comprises cooling a mixture of a diacetylene, a shelf life extnder and a molten polymer.
  31. 76
    A process of forming the radiation monitoring device of any of claims 1-71 wherein said process comprises UV or peroxide curing a mixture of monomer, oligomer and diacetylene.
  32. 77
    A process of forming the self indicating radiation monitoring device of any of claims 1-71 wherein said process comprises heating said mixture at elevated temperature to dissolve diacetylene;heating at further higher temperature to fuse a plastisol;and cooling to a lower temperature.
  33. 79
    The radiation monitoring device of any of claims 1-71 wherein said device is in the form of a sticker or badge.
  34. 81
    The radiation monitoring device of any of claims 1-71 wherein said device is used for monitoring radiation from a radioactive material or radiation source, nuclear power plant or nuclear bomb or radiation dispersing device.
  35. 82
    The radiation monitoring device of any of claims 1-71 further comprising an indicator capable of indicating a false positive or tampering.
  36. 87
    The radiation monitoring device of any of claims 1-71 further comprising a metal foil capable of making sensitive to or blocking UV light, electrons, protons and apha particles.
  37. 88
    The self indicating radiation monitoring device of any of claims 1-71 wherein said element comprises indicia with a predetermined optical density wherein when said device is exposed to radiation said device has an optical density corresponding to said predetermined optical density.
  38. 92
    The radiation monitoring device of any of claims 88-91 comprising multiple indicia.
  39. 95
    The radiation device of any of claims 1-93 as a radiation monitorer is for laser monitoring selected from label marking;curing of materials;crosslinking of materials;and polymerization.
  40. 96
    The radiaton device of any of claims 1-93 as a radation monitor for three- dimensional imaging.
Independent claims40