Processes Of Coating Utilizing A Reactive Composition Which Reacts With Metal Substrate Or Composition Therefore Patents (Class 148/240)
  • Patent number: 5156694
    Abstract: A formable thin steel sheet such as hot rolled sheet, cold rolled sheet or surface treated sheet comprises not more than 0.003 wt % of C, not more than 1.0 wt % of Si, not more than 1.0 wt % of Mn, not more than 0.15 wt % of P, not more than 0.020 wt % of S, not more than 0.0045 wt % of O, not more than 0.0020 wt % of N, not more than 0.15 wt % of Al provided that a ratio of Al/N is not less than 30, and the balance being Fe and inevitable impurities, and has not only improved formability for press forming, deep drawing or the like but also improved fatigue resistance as a welded joint.
    Type: Grant
    Filed: May 7, 1991
    Date of Patent: October 20, 1992
    Assignee: Kawasaki Steel Corporation
    Inventors: Yoshio Yamazaki, Susumu Okada, Susumu Satoh, Toshiyuki Kato, Hideo Abe, Keiji Nishimura
  • Patent number: 5133160
    Abstract: The invention relates to an improved method for removing point defects and oint defect clusters from semiconductor discs, which defects impair the quality of electronic components or structural elements made from such discs. According to the invention, prior to polishing, the semiconductor discs are immersed in a bath containing grains moving in a streaming carrier medium of the bath. One side of the discs are then polished and thereafter the discs are subjected to oxidation processes whereby stacking faults are induced in the rear side of the discs. These stacking faults have an excellent gettering effect on the point defects.
    Type: Grant
    Filed: December 10, 1984
    Date of Patent: July 28, 1992
    Assignee: Wacker-Chemitronic Gesellschaft fur Elektronik-Grundstoffe m.b.H.
    Inventors: Ingolf Lampert, Reinhold Wahlich
  • Patent number: 5061328
    Abstract: An element having a diffusion coefficient at a heat treatment temperature which is greater to or equal than that of lithium is deposited on the external surface of an Al-Li alloy part before heat treatment. During heat treatment the diffusion of lithium atoms out of the alloy material is compensated by the opposite diffusion of the deposited element. Thus, the creation of agglomerated vacancies in the nature of interior pores is eliminated so that a treated part may maintain its structural strength. Typical diffusion materials may be selected from Ag, Au, Zn, Ge, In, Sn, and Tl.
    Type: Grant
    Filed: July 5, 1990
    Date of Patent: October 29, 1991
    Assignee: Grummann Aerospace Corporation
    Inventor: John M. Papazian
  • Patent number: 4977303
    Abstract: A method for forming an EDM wire electrode includes coating a copper wire core with zinc, and then heating the coated wire in an oxidizing atmosphere to simultaneously provide a copper-zinc alloy layer over the copper core and a zinc oxide surface on the alloy layer. The oxide- and alloy-coated wire is then reduced in diameter to reduce the thickness of the alloy layer by about one-half of its initial thickness. The resulting electrodes wire permits a greater current density and a greater tractional force to be employed, yielding a significantly greater machining speed in the EDM process.
    Type: Grant
    Filed: June 13, 1988
    Date of Patent: December 11, 1990
    Assignee: Charmilles Technologie S.A.
    Inventor: Jean Briffod
  • Patent number: 4897144
    Abstract: An epoxy-sulfonylazide having the general formula ##STR1## wherein R is lower alkyl and R' is hydrogen or lower alkyl.
    Type: Grant
    Filed: May 2, 1988
    Date of Patent: January 30, 1990
    Assignee: Hercules Incorporated
    Inventor: Anthony B. Clayton
  • Patent number: 4844949
    Abstract: A method of forming a surface layer of carbide, nitride, carbonitride, or solid-solution on the surface of a material to be treated, which comprises disposing in a fluidized bed furnace a treating agent comprising a powder of a refractory material, and a powder of a metal for forming a carbide, nitride, carbonitride or solid-solution or a powder of an alloy thereof, introducing a fluidizing gas into the fluidized bed furnace to fluidize the treating agent and form a fluidized layer, disposing the material to be treated in the fluidized layer, and introducing a predetermined amount of halide into the fluidized layer, and an apparatus for forming the surface layer on the material to be treated, comprising a furnace body for forming the surface layer in the fluidized layer of the treating agent, a heating furnace for heating the fluidized layer, a halide supply pipe in communication with the outside of the furnace body, and a halide gas jetting pipe disposed within the furnace body, which is connected to the hal
    Type: Grant
    Filed: September 23, 1988
    Date of Patent: July 4, 1989
    Assignee: Kabushiki Kaisha Toyota Chuo Kenkyusho
    Inventors: Tohru Arai, Junji Endo, Hiromasa Takeda