Graphite particles and process for production thereof
View Patent ↗Graphite particles having a bent laminate structure inside each particle are produced by feeding, into an impact grinder, graphite particles having an average particle diameter of 5 mm or less together with a gas current to apply an impact to the graphite particles to form, by a compression force, a bent laminate structure inside each graphite particle. The resulting graphite particles have an average particle diameter of 100 μm or less, are low in anisotropy, have a nearly spherical shape, and are highly crystalline.
1. Graphite comprising graphite particles wherein
(i) said graphite particles have an average particle diameter of 5 to 50 μm,
(ii) said graphite particles have a nearly spherical shape having a length-to-breadth ratio of 2 or less, and
wherein each particle consists essentially of one nearly spherically bent laminate structure which is curved along the circumference of the surface of said particles and the crystal plane at each surface of said particles is approximately an AB plane.
2. Graphite according to claim 1 , wherein the graphite particles have a lattice constant Co (002) of 0.670 to 0.672 nm as measured by an X-ray diffractometer.
3. Graphite according to claim 1 , having a tap density of 0.6 to 1.4 g/cm 3 .
4. A mixture which comprises the graphite as claimed in claim 1 , in amount of 10% by mass or more, wherein the mixture has an average particle diameter of 100 μm or less.
5. A mixture comprising the graphite as claimed in claim 2 , in amount of 10% by mass or more, wherein the mixture has an average particle diameter of 100 μm or less.
6. A mixture comprising the graphite as claimed in claim 3 , in amount of 10% by mass or more, wherein the mixture has an average particle diameter of 100 μm or less.
7. A process for producing graphite comprising graphite particles, said process comprising:
feeding, into an impact grinder having a linear speed of rotating hammers or pins of 50-200 m/sec, graphite particles having an average particle diameter of 5 mm or less together with a gas current to apply an impact to said graphite particles
allowing said graphite particles to be accompanied by gas current to form, by a compression force, one nearly spherically bent laminate structure inside each graphite particle to obtain said graphite,
wherein said graphite particles have an average particle diameter of 100 μm or less,
said graphite particles have a nearly spherical shape having a length-to-breadth ratio of 2 or less, and
wherein each particle consists essentially of one nearly spherically bent laminate structure which is curved alone the circumference of the surface of said particles and the crystal plane at each surface of said particles is approximately an AB plane.