Abstract:
A saw wire and various methods of use and manufacture are provided. The saw wire includes a metal wire containing at least one of tungsten and a tungsten alloy. A nickel plating layer is provided over the metal wire. An adhesion layer is provided at an interface between the metal wire and the nickel plating layer. The adhesion layer contains nickel and tungsten. A plurality of abrasive particles are provided at a surface of the nickel plating layer.
Abstract:
A saw wire includes a metal wire containing rhenium-tungsten alloy. A rhenium content of the metal wire is at least 0.1 wt % and at most 10 wt % with respect to a total weight of rhenium and tungsten, an elastic modulus of the metal wire is at least 350 GPa and at most 450 GPa, a tensile strength of the metal wire is at least 3500 MPa, and a diameter of the metal wire is at most 60 μm.
Abstract:
An aerogel molded body includes a plurality of aerogel particles and adhesive bonding the plurality of aerogel particles. The adhesive includes layers of layer-foaming adhesive covering the plurality of aerogel particles, and particles of particle-forming adhesive adhering to the plurality of aerogel particles. The layer-forming adhesive is preferably water-soluble adhesive. The particle-forming adhesive is preferably powdery adhesive. It is possible to obtain thermal insulators with increased strength and excellent thermal insulating properties.
Abstract:
A metal wire containing tungsten is provided. A tungsten content of the metal wire is at least 90 wt %. A tensile strength of the metal wire is at least 4000 MPa. An elastic modulus of the metal wire is at least 350 GPa and at most 450 GPa. A diameter of the metal wire is at most 60 μm. An average crystal grain size of the metal wire in a cross-section orthogonal to an axis of the metal wire is at most 0.20 μm.
Abstract:
Provided is a thermal insulator B formed by bonding a plurality of aerogel particles A with adhesive 2 and a method for producing the same. The aerogel particles A have an average particle size of 500 μm or more. The adhesive 2 exists as particles on surfaces of the aerogel particles A. A ratio (adhesive/aerogel particle) of an average particle size of the adhesive 2 to the average particle size of the aerogel particles A falls within a range of 1/200 to 1/10. For producing the thermal insulator B, the adhesive 2 is made of an adhesive powder including thermosetting resin or thermoplastic resin. Obtained thermal insulator B has an improved strength and is excellent in thermal insulating properties.
Abstract:
A tungsten wire according one aspect of the present disclosure includes: a metal wire containing one of tungsten and a tungsten alloy; and a plating layer which covers a surface of the metal wire. The plating layer contains copper.
Abstract:
An object of the present invention is to propose heat insulating structure which is excellent in thermal insulating properties and higher in strength. The heat insulating structure includes: an aerogel layer including aerogel particles, adhesive, and fibers; and a retainer which is provided to at least one face of the aerogel layer and includes fiber materials and binder resin. Each of the fibers is part of one of the fiber materials included in the retainer.
Abstract:
This connector for electrical connection for electrically driven vehicle includes: a contact portion configured to electrically connect an electric cable, electrically connected with one of an electrically driven vehicle or a power apparatus, with the other; and a main body. Main body houses therein the contact portion, a power cutoff portion and a first abnormality detector. Power cutoff portion is configured to switch opening/closing of a feed line between the electrically driven vehicle and the power apparatus. First abnormality detector is configured to detect an abnormality that occurs in the feed line, or externally receive an abnormal signal. Power cutoff portion is configured to open the feed line, when first abnormality detector detects the abnormality or receives the abnormal signal. First abnormality detector is configured to detect, as the abnormality, at least one of a short-circuit current in the feed line or an overload current in the feed line.