The present invention provides a resin-mixed nonflammable calcium silicate molded article containing: a raw material formulation containing a xonotlite-based calcium silicate, a latex, inorganic fibrous particles, and glass fibers; and a flocculant. The raw material formulation contains 65-90 mass% of the xonotlite-based calcium silicate, not less than 1 mass% but less than 5 mass% of the latex, 8-20 mass% of the inorganic fibrous particles, and 1-10 mass% of the glass fibers with respect to the total amount of the raw material formulation. The flocculant is contained in an amount of 0.5-3 parts by mass with respect to 100 parts by mass of the raw material formulation. The present invention also provides an artificial wood material comprising the resin-mixed nonflammable calcium silicate molded article.
C04B 28/18 - Compositions pour mortiers, béton ou pierre artificielle, contenant des liants inorganiques ou contenant le produit de réaction d'un liant inorganique et d'un liant organique, p. ex. contenant des ciments de polycarboxylates contenant des mélanges du type chaux et silice
A fire-resistant sheath structure of a power cable is provided with a power cable, a housing, and a plurality of layers of fire-resistant sheaths for covering the housing. Each of the fire-resistant sheaths is provided with a heat absorbing pack, a fire-resistant heat insulation material, and a cover material for covering the heat absorbing pack and fire-resistant heat insulation material. In each of the fire-resistant sheaths, the heat absorbing pack is positioned on the housing side, the fire-resistant heat insulation material is provided on the outside of the heat absorbing pack, and the cover material is an inorganic fiber cloth with metal foil. The thickness of the fire-resistant heat insulation material of the outermost fire-resistant sheath is thicker than the thicknesses of the fire-resistant heat insulation materials of each of the fire-resistant sheaths further inward from the outermost fire-resistant sheath.
H02G 1/06 - Méthodes ou appareils spécialement adaptés à l'installation, entretien, réparation, ou démontage des câbles ou lignes électriques pour poser les câbles, p. ex. appareils de pose sur véhicule
E04B 1/94 - Protection contre d'autres agents indésirables ou dangers contre le feu
H02G 9/00 - Installations de lignes ou de câbles électriques dans ou sur la terre ou sur l'eau
3.
CONSTRUCTION MATERIAL WITH ATTACHED SOLAR POWER SHEET, AND STRUCTURE FOR ATTACHING A SOLAR POWER SHEET
Disclosed is a structure for attaching a solar power sheet. Said structure can attach a solar power sheet to a roof comparatively easily. In said structure, a plurality of hook bolts are used to affix a plurality of roof slates to a roof purlin, and a solar power sheet is attached to the roof. The disclosed structure is provided with: a support member attached to the aforementioned plurality of hook bolts; and a plurality of fixed members (10), affixed to the support member by means of an affixing means, on which the solar power panel (1) is mounted. The fixed members (10) are made from a glass-fiber-reinforced plastic, and recesses (11, 12) are provided at at least both ends (10a, 10b) of each fixed member (10). The fixed members are arranged such that the recesses (11, 12) of adjacent fixed members (10, 10) overlap.
E04D 13/18 - Aspects de la couverture de toit relatifs aux dispositifs collecteurs d'énergie, p. ex. contenant des panneaux solaires
E04D 3/40 - Plaques ou feuilles en partie modifiées dans des buts particuliers, p. ex. destinées à être posées sur le mur comme gouttièresÉléments pour usages particuliers, p. ex. éléments de faîtage conçus spécialement pour être utilisés en liaison avec les plaques ou les feuilles
4.
POROUS CLAY MATERIAL AND METHOD FOR PRODUCING SAME
NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGY (Japon)
A&A MATERIAL CORPORATION (Japon)
Inventeur(s)
Kawasaki, Eiji
Omi, Takeshi
Sakiyama, Masato
Ebina, Takeo
Mizukami, Fujio
Abrégé
Provided is a novel porous clay material which has a high flexibility, a heat resistance, a porous nature, no electrical conductivity, excellent heat insulating properties and an adsorption ability and in which various chemicals can be enclosed. A porous clay material having a high porosity and a large specific surface area, which is obtained by: dispersing a clay serving as the main component, optionally together with an additive or together with an additive and a small amount of a reinforcing agent, in water or a solvent comprising water as the main component to give a clay paste; casting the clay paste into a mold equipped with a metallic bottom plate and a resin frame; and freezing the same followed by sublimation via freeze-drying to thereby form through-holes in the thickness direction.