Claims
- 1. A method of making magnetizable microparticles, comprising the steps of:
providing an electrically conductive base medium; depositing a layer of photoresist on said base medium to yield a composite comprising said base medium and a surface layer of photoresist; exposing portions of said surface layer to an ultraviolet light source; etching said surface layer with photoresist solvent, thereby producing microcavities of a predominantly lengthwise dimension in said surface layer; contacting said surface layer with an electrolytic bath, said bath being in a container and comprising metallic salts or alkaline combined ions, such that upon the application of voltage to said bath, said composite acts as a cathode and said container acts as an anode; applying voltage to said bath, whereby metal ions in said bath move toward said surface layer and are therein deposited in said microcavities wherein they form magnetizable microparticles; freeing said magnetizable microparticles from said surface layer; and collecting said microparticles.
- 2. A method according to claim 1, wherein said electrically conductive base medium comprises at least one electrically conductive metal.
- 3. A method according to claim 2, wherein said electrically conductive base medium comprises at least one metal selected from the group consisting of copper, magnesium, aluminum, gold, silver, platinum, and palladium.
- 4. The method according to claim 3, wherein said metal is selected from the group consisting of copper, magnesium, and aluminum.
- 5. The method according to claim 1, wherein said ultraviolet light source is selected from the group consisting of an electron beam and a laser beam.
- 6. A method according to claim 1, wherein said electrically conductive base medium comprises an electrically conductive, chemically dissolvable release layer disposed beneath said surface layer.
- 7. A method according to claim 1, wherein said freeing step is accomplished by dissolving said photoresist.
- 8. A method according to claim 1, wherein said electrically conductive base medium is an endless medium selected from the group consisting of an electrically conductive belt and an electrically conductive drum.
- 9. A method according to claim 1, further comprising the step of applying a mask to said photoresist surface layer, said mask having perforations therein through which ultraviolet light can pass to expose those portions of said photoresist surface layer not covered by the unperforated portions of said mask.
- 10. A method according to claim 9, wherein said perforations are of substantially uniform dimension.
- 11. A method according to claim 10, wherein said microcavities are of substantially uniform dimension, thereby yielding a uniform assemblage of microparticles.
- 12. A method according to claim 1, further comprising the step of disassociating said surface layer from said base medium.
- 13. A method of making hollow or grooved magnetizable microparticles, comprising the steps of:
providing a microfiber comprising a chemically dissolvable compound; applying a magnetizable metal layer to at least a portion of the surface of said fiber; cutting said fiber into microsegments of desired length; dissolving said fiber, thereby leaving behind magnetizable microparticles; and collecting said magnetizable microparticles.
- 14. The method according to claim 13, wherein said fiber comprises at least one compound selected from the group consisting of plastics and copper.
- 15. A method according to claim 13, wherein said applying step is accomplished by vapor deposition of metal.
- 16. A method according to claim 13, wherein said applying step is accomplished by electroplating.
- 17. A method according to claim 16, further comprising the step of rendering said fiber electrically conductive.
- 18. A method according to claim 17, further comprising the step of placing said electrically conductive fiber in an electrolytic bath.
- 19. A method of making composite water-dissolvable magnetizable particles, comprising the steps of:
providing a mold comprising a plurality of microcavities of a predominantly lengthwise dimension; providing a moldable composition comprising microscopic magnetizable particles and a water-dissolvable binder; forcing said composite into said microdepressions of said mold; allowing said composite to harden in said mold; and removing said hardened composite from said mold, whereby water-dissolvable magnetizable particles are obtained.
- 20. A method according to claim 19, wherein said microscopic particles comprise ferrite.
- 21. A method according to claim 19, wherein said water-dissolvable binder comprises glucose.
- 22. An acicular, magnetizable microparticle of from 2 microns to 1,000 microns in length, and having a length to width ratio of from 4:1 to 500:1.
- 23. A microparticle according to claim 22, having a length of from 2 microns to 500 microns.
- 24. A microparticle according to claim 22, having a length of from 2 microns to 100 microns.
- 25. A microparticle according to claim 22, having a length to width ratio of from 4:1 to 300:1.
- 26. A microparticle according to claim 22, having a length to width ratio of from 4:1 to 200:1.
- 27. A microparticle according to claim 22, having a length to width ratio of from 4:1 to 25:1.
- 28. A microparticle according to claim 22, having a length to width ratio of from 5:1 to 500:1.
- 29. A microparticle according to claim 22, having a length to width ratio of from 5:1 to 300:1.
- 30. A microparticle according to claim 22, having a length to width ratio of from 5:1 to 200:1.
- 31. A microparticle according to claim 22, having a length to width ratio of from 5:1 to 25:1.
- 32. A microparticle according to claim 22, having a length to width ratio of from 7:1 to 500:1.
- 33. A microparticle according to claim 22, having a length to width ratio of from 7:1 to 300:1.
- 34. A microparticle according to claim 22, having a length to width ratio of from 7:1 to 200:1.
- 35. A microparticle according to claim 22, having a length to width ratio of from 7:1 to 25:1.
- 36. A microparticle according to claim 22, having a length to width ratio of from 10:1 to 500:1.
- 37. A microparticle according to claim 22, having a length to width ratio of from 10:1 to 300:1.
- 38. A microparticle according to claim 22, having a length to width ratio of from 10:1 to 200:1.
- 39. A microparticle according to claim 22, having a length to width ratio of from 10:1 to 25:1.
- 40. A microparticle according to claim 23, having a length to width ratio of from 4:1 to 300:1.
- 41. A microparticle according to claim 23, having a length to width ratio of from 4:1 to 200:1.
- 42. A microparticle according to claim 23, having a length to width ratio of from 4:1 to 25:1.
- 43. A microparticle according to claim 23, having a length to width ratio of from 5:1 to 500:1.
- 44. A microparticle according to claim 23, having a length to width ratio of from 5:1 to 300:1.
- 45. A microparticle according to claim 23, having a length to width ratio of from 5:1 to 200:1.
- 46. A microparticle according to claim 23, having a length to width ratio of from 5:1 to 25:1.
- 47. A microparticle according to claim 23, having a length to width ratio of from 7:1 to 500:1.
- 48. A microparticle according to claim 23, having a length to width ratio of from 7:1 to 300:1.
- 49. A microparticle according to claim 23, having a length to width ratio of from 7:1 to 200:1.
- 50. A microparticle according to claim 23, having a length to width ratio of from 7:1 to 25:1.
- 51. A microparticle according to claim 23, having a length to width ratio of from 10:1 to 500:1.
- 52. A microparticle according to claim 23, having a length to width ratio of from 10:1 to 300:1.
- 53. A microparticle according to claim 23, having a length to width ratio of from 10:1 to 200:1.
- 54. A microparticle according to claim 23, having a length to width ratio of from 10:1 to 25:1.
- 55. A microparticle according to claim 24, having a length to width ratio of from 4:1 to 300:1.
- 56. A microparticle according to claim 24, having a length to width ratio of from 4:1 to 200:1.
- 57. A microparticle according to claim 24, having a length to width ratio of from 4:1 to 25:1.
- 58. A microparticle according to claim 24, having a length to width ratio of from 5:1 to 500:1.
- 59. A microparticle according to claim 24, having a length to width ratio of from 5:1 to 300: 1.
- 60. A microparticle according to claim 24, having a length to width ratio of from 5:1 to 200:1.
- 61. A microparticle according to claim 24, having a length to width ratio of from 5:1 to 25:1.
- 62. A microparticle according to claim 24, having a length to width ratio of from 7:1 to 500:1.
- 63. A microparticle according to claim 24, having a length to width ratio of from 7:1 to 300:1.
- 64. A microparticle according to claim 24, having a length to width ratio of from 7:1 to 200:1.
- 65. A microparticle according to claim 24, having a length to width ratio of from 7:1 to 25:1.
- 66. A microparticle according to claim 24, having a length to width ratio of from 10:1 to 500:1.
- 67. A microparticle according to claim 24, having a length to width ratio of from 10:1 to 300:1.
- 68. A microparticle according to claim 24, having a length to width ratio of from 10:1 to 200:1.
- 69. A microparticle according to claim 24, having a length to width ratio of from 10:1 to 25:1.
- 70. A uniform assemblage of microparticles, said microparticles being from 2 microns to 1,000 microns in length, and having a length to width ratio of from 4:1 to 500:1.
- 71. A uniform assemblage of microparticles according to claim 70, having a length of from 2 microns to 500 microns.
- 72. A uniform assemblage of microparticles according to claim 70, having a length of from 2 microns to 100 microns.
- 73. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 4:1 to 300:1.
- 74. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 4:1 to 200:1.
- 75. A uniform assemblage of microp articles according to claim 70, having a length to width ratio of from 4:1 to 25:1.
- 76. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 5:1 to 500:1.
- 77. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 5:1 to 300:1.
- 78. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 5:1 to 200:1.
- 79. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 5:1 to 25:1.
- 80. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 7:1 to 500:1.
- 81. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 7:1 to 300:1.
- 82. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 7:1 to 200:1.
- 83. A uniform assemblage of microp articles according to claim 70, having a length to width ratio of from 7:1 to 25:1.
- 84. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 10:1 to 500: 1.
- 85. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 10:1 to 300:1.
- 86. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 10:1 to 200:1.
- 87. A uniform assemblage of microparticles according to claim 70, having a length to width ratio of from 10:1 to 25:1.
- 88. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 4:1 to 300:1.
- 89. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 4:1 to 200:1.
- 90. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 4:1 to 25:1.
- 91. A uniform assemblage of microparticles according to claim 71, microparticle according to claim 23, having a length to width ratio of from 5:1 to 500:1.
- 92. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 5:1 to 300:1.
- 93. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 5:1 to 200:1.
- 94. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 5:1 to 25:1.
- 95. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 7:1 to 500:1.
- 96. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 7:1 to 300:1.
- 97. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 7:1 to 200:1.
- 98. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 7:1 to 25:1.
- 99. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 10:1 to 500:1.
- 100. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 10:1 to 300:1.
- 101. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 10:1 to 200:1.
- 102. A uniform assemblage of microparticles according to claim 71, having a length to width ratio of from 10:1 to 25:1.
- 103. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 4:1 to 300:1.
- 104. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 4:1 to 200:1.
- 105. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 4:1 to 25:1.
- 106. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 5:1 to 500:1.
- 107. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 5:1 to 300:1.
- 108. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 5:1 to 200:1.
- 109. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 5:1 to 25:1.
- 110. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 7:1 to 500:1.
- 111. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 7:1 to 300: 1.
- 112. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 7:1 to 200:1.
- 113. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 7:1 to 25:1.
- 114. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 10:1 to 500:1.
- 115. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 10:1 to 300:1.
- 116. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 10:1 to 200:1.
- 117. A uniform assemblage of microparticles according to claim 72, having a length to width ratio of from 10:1 to 25:1.
CROSS-REFERENCE TO A RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional application Ser. No. 60/201,088, filed May 2, 2000.
Provisional Applications (1)
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Number |
Date |
Country |
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60201088 |
May 2000 |
US |