Nova Patents
IL75560A

Ultramicrotome diamond knife

Abstract

This record has no abstract on file.

IL75560A, drawing sheet 1
Sheet 1 of 4

Term

No projected expiry on record.

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

30 claims: 9 independent, 21 dependent

  1. 1
    An ultramicrotome diamond knife comprising a diamond knife blade including first and second surfaces intersecting to define a cutting edge, the first surface being substantially coplanar with a first naturally occurring crystal plane within the crystalline structure of the diamond, and the second surface being substantially coplanar with a second naturally occurring crystal plane within the crystalline structure of the diamond.
  2. 6
    An ultramicrotome tool comprising a diamond blade having a longitudinal axis, the blade including a first substantially planar surface substantially coplanar with a first naturally occurring crystal plane within the crystalline structure of the diamond and a second substantially planar surface substantially coplanar with a second naturally occurring crystal plane within the crystalline structure of the diamond, the first and second surfaces intersecting to define a cutting edge, a shank for holding the blade, the shank having a longitudinal axis, and means for mounting the blade on the shank to orient one of the first and second planar surfaces of the blade to be substantially parallel to the longitudinal axis of the shank.
  3. 11
    An ultramicrotome tool comprising a blade having a longitudinal axis, the blade including a first substantially planar surface at an angle other than zero degrees in respect to the longitudinal axis of the blade and a second substantially planar surface in substantially spaced-apart parallel relation to the longitudinal axis of the blade, the first and second surfaces intersecting to define a cutting edge, a shank for holding the blade, the shank having a longitudinal axis, and means for rigidly mounting the blade on the shank to orient the longitudinal axis of the blade at a predetermined orientation angle other than zero degrees in respect to the longitudinal axis of the shank and simultaneously to orient the second substantially planar surface at said predetermined orientation angle in respect to the longitudinal axis of the shank.
  4. 14
    An ultramicrotome tool for cutting a material specimen having a longitudinal axis, the material specimen being advanced in a direction along its longitudinal axis toward the ultramicrotome tool, the ultramicrotome tool comprising a base, a diamond blade including first and second surfaces intersecting to define a cutting edge, the first surface being substantially coplanar with a first naturally occurring crystal plane within the crystalline structure of the diamond blade, the second surface being substantially coplanar with a second naturally occurring crystal plane within the crystalline structure of the diamond blade, a shank for holding the blade, the shank having a longitudinal axis, and means for mounting the blade-holding shank on the base so that the longitudinal axis of the shank is substantially orthogonal to the longitudinal axis of the material specimen.
  5. 15
    An ultramicrotome tool for cutting a material specimen having a longitudinal axis, the material specimen being advanced in a direction along its longitudinal axis toward the ultramicrotome tool, the ultramicrotome tool comprising a base, a blade, a shank for holding the blade, the shank having a longitudinal axis, and means for mounting the blade-holding shank on the base so that the longitudinal axis of the shank is substantially orthogonal to the longitudinal axis of the material specimen wherein the blade is a diamond and at 7 5 5 6 0 / 1 least one of the surfaces is substantially coplanar with a naturally occurring crystal plane within the crystalline structure of the diamond.
  6. 16
    An ultramicrotome tool comprising a blade having a longitudinal axis, the blade including a first substantially planar surface and a second substantially planar surface, the first and second surfaces intersecting to define a cutting edge, a shank for holding the blade, the shank having a longitudinal axis, and means for mounting the blade on the shank to orient the longitudinal axis of the blade at an angle other than zero degrees in respect to the longitudinal axis of the shank, wherein the blade is a crystalline structure and at least one of the planar surfaces is substantially coplanar with a naturally occurring crystal plane within the crystalline structure.
  7. 17
    A method of machining a hard and brittle material, the method comprising the steps of rotating a platter having surfaces, continuously applying a nonabrasive machining composition to one of the platter surfaces in a vacuum during rotation of the platter, and during the continuously applying step, positioning the hard and brittle material in proximity to the rotating platter to cause the nonabrasive machining composition. whereby the nonabrasive machining composition operates on the positioned material to machine and polish the material.
  8. 25
    A method of machining a hard and brittle material, the method comprising the steps of rotating a platter having surfaces within an enclosure having first and second pressure chambers, continuously applying a nonabrasive machining composition to one of the platter surfaces in the first pressure chamber, and during the continuously applying step, positioning the hard and brittle material in the second pressure chamber in proximity to the rotating platter to cause the material to contact the nonabrasive machining composition, whereby the nonabrasive machining composition operates on the positioned material to machine and polish the material. 7 5 5 6 0 / 1
  9. 28
    A method of nonabrasively machining a hard and brittle material, the method comprising the steps of positioning the hard and brittle material in a fixed predetermined position, providing nonabrasive machining composition, contacting the positioned hard and brittle material with nonabrasive machining composition without interruption during a machining cycle, and during the contacting step, exposing the nonabrasive machining composition and the positioned hard and brittle material to a gas selected from the group consisting essentially of oxygen, argon, and nitrogen oxide, and removing selected carbon atoms that are normally chemically bonded to the crystal structure of the hard and brittle material, thereby providing an atomically smooth surface on the material exhibiting little or no subsurface fatigue. 7 5 5 6 0 / ί