CA2289200C

Tough-coated hard powders and sintered articles thereof

Abstract

A sintered material and the tough-coated hard powder (TCHP) to make such a material is comprised of core particles that consist essentially of a first metal compound having the formula M aX b. M is a metal selected from the group consisting of titanium, zirconium, hafnium, vanadium, niobium, tantalum, chromium, molybdenum, tungsten, aluminum, boron and silicon while X represents one ormore elements selected from the group consisting of nitrogen, carbon, boron and oxygen.The letters a and b represent numbers greater than zero up to and including four. The core particles are surrounded by an intermediate layer consisting essentially of a second metal compound, different in composition from the first metal compound thereby forming coated particles. The material of the intermediate layer has a higher relative fracture toughness than the material comprising the core particles and is capable of bonding with the metal compound(s) forming the core particles and also being capable of bonding with iron, cobalt or nickel. The coated particles are surrounded by an outer layer of iron, cobalt, nickel, their alloys, their mixtures and their intermetallic compounds. The intimate liaison of multiproperty alloys within the TCHP grains allows the combination of normally conflicting sintered article performance characteristics (e.g., strength and hardness) at levels heretofore unseen in the powder metallurgical art.

CA2289200C, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Expired 13 May 2018, 8.4 years ago.

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

42 claims: 5 independent, 37 dependent

  1. 1
    CA 02289200 2005-10-31 What is claimed is:1. A sintered material comprising: a plurality of core particles, said core particles consisting essentially of a first metal compound having the formula MaX b where M is a metal selected from the group consisting of titanium, zirconium, hafnium, vanadium, niobium, tantalum, chromium, molybdenum, tungsten, boron, aluminum and silicon, X represents one or more elements selected from the group consisting of nitrogen, carbon, boron and oxygen, and a and b are numbers greater than zero up to and including four;an intermediate layer on each of said core particles, said layer consisting essentially of a second metal compound, different in composition from said first metal compound and having a higher relative fracture toughness, said second metal compound being capable of bonding with said first metal compound and being capable of bonding with a metal selected from the group consisting of iron, cobalt and nickel, thereby forming coated particles;and a binder overlaying said intermediate layer on said coated particles, said binder comprising iron, cobalt, nickel, their mixtures, their alloys or their intermetallic compounds.
  2. 19
    The sintered material of. claim 15, said intermediate layer having a thickness such that strain fields associated with dislocations in one coated particle are transmitted through said intermediate layer to the immediately adjacent core particle.
  3. 27
    A sintered material comprising:a plurality of core particles consisting essentially of cubic boron nitride;an intermediate layer on each of said core particles, said layer consisting essentially of WC, said intermediate layer having a thickness, after sintering, in the range of from 5% to 25% of the diameter of said core particles;and a binder comprising iron, cobalt, nickel, their mixtures, their alloys or intermetallic compounds overlaying said intermediate layer, said binder having a thickness after sintering in the range of from 3% to 12% of the diameter of said core particles, the combination of said core particles, said intermediate layer and said binder forming a coated particle.
  4. 29
    A powder consisting essentially of a plurality of coated particles, the majority of said coated particles having:CA 02289200 2005-10-31 core particles consisting essentially of a first metal compound having the formula MaX b where M is a metal selected from the group consisting of titanium, zirconium, hafnium, vanadium, niobium, tantalum, chromium, molybdenum, tungsten, boron, aluminum and silicon, X represents one or more elements selected from the group consisting of nitrogen, carbon, boron and oxygen and a and b are numbers greater than zero up to and including four;and a layer on each of said core particles, said layer consisting essentially of a second metal compound, different in composition from said first metal compound and having a higher relative fracture toughness, said second metal compound being capable of bonding with said first metal compound and being capable of bonding with a metal selected from the group consisting of iron, cobalt and nickel.
  5. 41
    A sintered material comprising:a plurality of core particles comprising at least one of diamond and cubic boron nitride;an intermediate layer on said core particles, said layer consisting essentially of a metal compound having a higher relative fracture toughness than said core particles, said intermediate layer having a thickness, after sintering, in the range of from 5% to 25% of the diameter of said core particles, the combination of said core particles, said intermediate layer forming a coated particle and a binder comprising iron, cobalt, nickel, their mixtures, their alloys or intermetallic compounds overlaying said coated particle, said binder having a thickness after sintering in the range of from 3% to 12% of the diameter of said coated particles.