Abstract:
First and second FPC fixing members 12, 13 are fixed within a boss 6 on a second axis Y, and one end of the second member 13 projects to the back of a hinge base 8. An FPC wiring fixing section 26 is fixed on the back of the base 8 on a first axis X. The fixing members pass an FPC 25 from the base 8 side to the side of a monitor 3 to hold the FPC linearly on the axis Y, and are turned integrally with a monitor mounting base 14. The fixing members curve outside the axis Y the FPC 25 that is led out in the direction orthogonal to the axis Y from the one end on the base 8 side of the second member 13 to have a deflection allowance, and fix the FPC to the base 8.
Abstract:
A sintered composite comprises capsule-like powder composite particles composed of core particles and an electrically conductive covering material which covers said core particles. The capsule-like powder composite particles are sintered in a sintering mold while pulsed voltages are being applied to the powder composite particles.
Abstract:
A partially hardened sintered body such as a rocker arm comprises powder forming a main body and a capsule-like powder composite disposed adjacent to the powder and composed of core particles made of a material harder than the powder and covering particles covering the core particles and made of the same material as the powder. The powder and the capsule-like powder composite are solidified into the partially hardened sintered body.
Abstract:
A method of modifying qualities of a metallic article at a particular surface of the article comprises the step of melting the surface by imparting a flux of high density energy to the surface to form a molten metal layer and the step of adding heat resisting element to the molten metal layer by performing overlay welding to the molten metal layer.
Abstract:
A cast product made from metallic material and ceramic material with the ceramic material being an insert, comprises an aggregated body of capsule particles, the capsule particle including a ceramic particle coated with metallic particles, and metallic material cast over the aggregated body.
Abstract:
A production method of a forged component made of a composite material in accordance with the present invention comprises packing pellet or powdery plastic particles, plastic particles coated on the surface with a metallic material or molten plastic material into a cylinder member made of a metallic material, fixing the cylinder member having the plastic material packed thereinto under the closed state by a sheet member made of a metallic material and equipped with an air vent or air vents so as to form an assembly, setting the assembly into a first mold and pressuring a second mold to the assembly so as to forge and mold the assembly into a predetermined shape.The forged component made of a composite material and producedin accordance with the present invention is light in weight and can be used preferably for producing engage components having high heat-resistance such as a piston. Moveover, if this forged component is a reciprocating component such as a piston, the number of revolutions of an engine can be increased, the striking noise during the engine operation can be reduced and engine performance can be improved.
Abstract:
First and second FPC fixing members 12, 13 are fixed within a boss 6 on a second axis Y, and one end of the second member 13 projects to the back of a hinge base 8. An FPC wiring fixing section 26 is fixed on the back of the base 8 on a first axis X. The fixing members pass an FPC 25 from the base 8 side to the side of a monitor 3 to hold the FPC linearly on the axis Y, and are turned integrally with a monitor mounting base 14. The fixing members curve outside the axis Y the FPC 25 that is led out in the direction orthogonal to the axis Y from the one end on the base 8 side of the second member 13 to have a deflection allowance, and fix the FPC to the base 8.
Abstract:
The present invention is applicable to composite particles for composite dispersion plating used for forming a self-lubricating composite dispersion coating and a method of plating using such composite particles as well as a plating (coating) using the same. The purpose of the invention is to obtain a composite particle for composite dispersion plating which is comprised of a particle with an excellent capability of reducing the friction and a low or very low specific gravity, and a method of plating using such composite particles. In this invention, each of the composite particles includes a friction-reducing mother or core particle (1) encapsulated with shell particles (2) comprised of the same components as a base metal of a composite dispersion plating bath (5). This provides a composite particle for composite dispersion plating which is comprised of a particle with an excellent capability of reducing the friction and a low or very low specific gravity. As a result, the composite particles can form an eutectic system in a plating layer without addition of any surfactant.
Abstract:
A method of strengthening an aluminum casting by modifying qualities of a specified part thereof comprises the steps of forming a weld overlay on the specified part using powders made of heat resisting element and remelting the specified part, now overlaid with the layer of heat resisting alloy layer, using high density energy.
Abstract:
In a method of modifying qualities of materials at their local parts, the method comprises the steps of: making capsule particle by encapsulating a core particle with covering particles; making a wire by filling a sheath member with the capsule particle; and making weld cladding on the material whose qualities are to be modified with the wire.