Nova Patents
CA1321663C

Radiation dosimeters

Abstract

Abstract Disclosed are radiation dosimeters and dosimeter badges. The dosimeter badges preferably include first and second partswhich are advantageously constructed to join using a securementwhich produces a sealed area confined within the dosimeter badge. The sealed area is adapted to hold and protect at least onedosimeter mounted therein. The badges are separated into two ormore parts to expose the luminescent dosimeters to a stimulatinglaser beam used to read dose exposure information therefrom. The badges are advantageously shaped to provide unique surfacerecognition to aid in the automated handling of the badges andbadge parts. The badge is adapted to allow automated disassemblyand reassembly of badge parts. The engaging badge parts areshaped to allow assembly in a unique relationship. An electronicmemory is preferably included to provide calibration andidentification information upon the dosimeter for use in reading andinterpreting the dose exposure information obtained during readingof the dosimeters. The badges can be worn using a novel badgeholder. The badges advantageously include dosimeters mounted innovel dosimeter mounting and frame constructions which reducethermal heating requirements while protecting the very finedosimeters. Also disclosed are novel dosimeter constructions usingvery thin substrates which can be either inorganic or organicmaterials of a temperature-resistant nature. Such substrates can beprovided with polymer binder-phosphor layers bound to thesubstrates in novel constructions which are low in thermal capacityand resistant to thermal degradation. Further disclosed aremethods for producing novel dosimeters utilizing mixtures which canbe of phosphor grains and a liquid polymer, or phosphor, polymerand a liquid vehicle. These mixtures are applied to the thindosimeter substrates using a mask having openings adjacent to thedesired dosimeter layer locations.

CA1321663C, drawing sheet 1
Sheet 1 of 30

Term

No projected expiry on record.

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

34 claims: 8 independent, 26 dependent

  1. 1
    96 The embodiments of the invention in which an exclusive property or privilege is claimed are defined as follows:1. A method for producing a laser readable radiation dosimeter capable of withstanding relatively high temperature gradients and short-term temperatures in the range of 300° to 400°C, comprising: selecting at least one particulate luminescent phosphor composition containing at least some luminescent phosphor material;selecting at least one synthetic polymer binder composition having an ability to withstand short-term heating in the range of 300° to 400°C;mixing the selected phosphor composition and synthetic polymer binder composition to form a phosphor-binder mixture which ranges in consistency from being fluid to plastically deformable;selecting a suitable substrate having a thickness of approximately 1000 microns or less adjacent to luminescent phosphor layer locations;positioning a mask having mask openings therethrough adjacent the substrate with the mask openings located at desired luminescent phosphor layer locations;depositing the phosphor-binder mixture through the mask openings and onto the substrate to form phosphor-binder deposits thereon;97 curing the substrate and deposited phosphor-binder deposits to harden and secure the phosphor-binder deposits upon the substrate.
  2. 11
    A method for producing a laser readable radiation dosimeter, comprising:selecting at least one particulate luminescent phosphor composition containing at least some luminescent phosphor material;selecting at least one fluid binder composition;mixing the selected phosphor composition and binder composition to form a phosphor-binder mixture which ranges in consistency from being fluid to plastically deformable;99 selecting a suitable substrate having a thickness of approximately 1000 microns or less adjacent to luminescent phosphor layer locations;positioning a mask having mask openings therethrough adjacent the substrate with the mask openings located at desired luminescent phosphor layer locations;depositing the phosphor-binder mixture through the mask openings and onto the substrate to form phosphor-binder deposits thereon;curing the deposited phosphor-binder deposits to harden and secure the phosphor-binder deposits upon the substrate.
  3. 12
    A method for producing a laser readable radiation dosimeter, comprising:selecting at least one particulate luminescent phosphor composition containing at least some luminescent phosphor material;selecting at least one binder composition;selecting at least one fluid vehicle composition;mixing the selected phosphor composition, binder composition, and vehicle composition to form a phosphor-binder-vehicle mixture which ranges in consistency from being fluid to plastically deformable;selecting a suitable substrate having a thickness of approximately 1000 microns or less adjacent to luminescent phosphor layer locations;100 positioning a mask having mask openings therethrough adjacent the substrate with the mask openings located at desired luminescent phosphor layer locations;depositing the phosphor-binder-vehicle mixture through the mask openings and onto the substrate to form phosphor-binder deposits thereon;curing the deposited phosphor-binder deposits to harden and secure the phosphor-binder deposits upon the substrate.
  4. 13
    A method for producing a laser readable radiation dosimeter, comprising:selecting at least one particulate luminescent phosphor composition containing at least some luminescent phosphor material;selecting at least one binder composition;selecting at least one fluid vehicle composition;mixing the selected binder composition and vehicle composition to form a binder-vehicle mixture which ranges in consistency from being fluid to plastically deformable;selecting a suitable substrate having a thickness of approximately 1000 microns or less adjacent to luminescent phosphor layer locations;101 positioning a mask having mask openings therethrough adjacent the substrate with the mask openings located at desired luminescent phosphor layer locations;depositing the binder-vehicle mixture through the mask openings and onto the substrate to form binder-vehicle deposits thereon;depositing selected particulate luminescent phosphor composition onto deposited binder-vehicle deposits to form phosphor-binder-vehicle deposits;curing the deposited phosphor-binder-vehicle deposits to harden and secure phosphor-binder deposits upon the substrate.
  5. 18
    A luminescent dosimeter capable of withstanding relatively high temperature gradients and short-term temperatures in the range of 300° to 400°C, made according to the process comprising:selecting at least one particulate luminescent phosphor composition containing at least some luminescent phosphor material;selecting at least one synthetic polymer binder composition having an ability to withstand short-term heating in the range of 300° to 400°C;mixing the selected phosphor composition and synthetic polymer binder composition to form a phosphor-binder mixture which ranges in consistency from being fluid to plastically deformable;selecting a suitable substrate having a thickness of approximately 1000 microns or less adjacent to luminescent phosphor layer locations;positioning a mask having mask openings therethrough adjacent the substrate with the mask openings located at desired luminescent phosphor layer locations;depositing the phosphor-binder mixture through the mask openings and onto the substrate to form phosphor-binder deposits thereon;103 curing the substrate and deposited phosphor-binder deposits to harden and secure the phosphor-binder deposits upon the substrate.
  6. 28
    A luminescent dosimeter made according to the process comprising:selecting at least one particulate luminescent phosphor composition containing at least some luminescent phosphor material;selecting at least one fluid binder composition' 105 mixing the selected phosphor composition and binder composition to form a phosphor-binder mixture which ranges in consistency from being fluid to plastically deformable;selecting a suitable substrate having a thickness of approximately 1000 microns or less adjacent to luminescent phosphor layer locations;positioning a mask having mask openings therethrough adjacent the substrate with the mask openings located at desired luminescent phosphor layer locations;depositing the phosphor-binder mixture through the mask openings and onto the substrate to form phosphor-binder deposits thereon;curing the deposited phosphor-binder deposits to harden and secure the phosphor-binder deposits upon the substrate.
  7. 29
    A luminescent dosimeter made according to the process comprising:selecting at least one particulate luminescent phosphor composition containing at least some luminescent phosphor material;selecting at least one binder composition;selecting at least one fluid vehicle composition;mixing the selected phosphor composition, binder composition, and vehicle composition to form a phosphor-binder-vehicle mixture which ranges in consistency from being fluid to plastically deformable;106 selecting a suitable substrate having a thickness of approximately 1000 microns or less adjacent to luminescent phosphor layer locations;positioning a mask having mask openings therethrough adjacent the substrate with the mask openings located at desired luminescent phosphor layer locations;depositing the phosphor-binder-vehicle mixture through the mask openings and onto the substrate to form phosphor-binder deposits thereon;curing the deposited phosphor-binder deposits to harden and secure the phosphor-binder deposits upon the substrate.
  8. 30
    A luminescent dosimeter made according to the process comprising:selecting at least one particulate luminescent phosphor composition containing at least some luminescent phosphor material;selecting at least one binder composition;selecting at least one fluid vehicle composition;mixing the selected binder composition and vehicle composition to form a binder-vehicle mixture which ranges in consistency from being fluid to plastically deformable;107 selecting a suitable substrate having a thickness of approximately 1000 microns or less adjacent to luminescent phosphor layer locations;positioning a mask having mask openings therethrough adjacent the substrate with the mask openings located at desired luminescent phosphor layer locations;depositing the binder-vehicle mixture through the mask openings and onto the substrate to form binder-vehicle deposits thereon;depositing selected particulate luminescent phosphor composition onto deposited binder-vehicle deposits to form phosphor-binder-vehicle deposits;curing the deposited phosphor-binder-vehicle deposits to harden and secure phosphor-binder deposits upon the substrate.