Abstract:
This semi-finished product (31) has a first curved part (35) on one end part side of a flat bridge part (33) and a second curved part (37) on the other end side of the bridge part (33). The second curved part (37) has at an end part thereof a second engaging part (51) for engaging with a first engaging part (41). The interior circumference (31c) of the bridge part (33) as well as the first and second curved parts (35,37) is to be pressure welded and clinched by means of a first and second die (61,62) to the outer circumference of a stabilizer bar (11). In addition to a slippage prevention part (38) being formed on the interior circumference (31c) of the first and second curved parts (35,37) and/or the outer circumference of the stabilizer bar (11) facing the interior circumference (31c), a slippage prevention material (Co) is disposed between the interior circumference (31c) of the first and second curved parts (35,37) and the outer circumference of the stabilizer bar (11).
Abstract:
Provided are an aerosol coating composition excellent in a matte effect and capable of preventing co-rotation from occurring. The aerosol coating composition contains a modified alkyd resin, inorganic microparticles and an organic solvent. Herein, the modified alkyd resin is a non-aqueous dispersion resin which is a copolymer of a vinyl based monomer and an alkyd resin. The inorganic microparticles are made of one selected from silica, titanium oxide, zinc oxide, alumina, calcium carbonate, talc and clay or the like. The inorganic microparticles have a mean particle diameter of 1.0 to 10.0 μm, and a content of 0.1 to 5 mass %. There is also provided a metallic mechanical part coated with the aerosol coating composition.
Abstract:
A semi-finished product (31) includes a first curved portion on one end of a plate-shaped bridge portion (33), and a second curved portion (37) on the other end of the bridge portion (33). The second curved portion (37) includes at the end a second lock portion (51) to lock with a first lock portion (41). The bridge portion (33) and the inner circumferential surfaces of the first and second curved portions (35, 37) are pressure-contacted and caulked on the outer circumferential surface of the stabilizer bar (11) by first and second dies (61, 62). At least one of the inner circumferential surfaces (31c) of the first and second curved portions (35, 37) and the outer circumferential surface of the stabilizer bar opposed to the inner surfaces (31c) is formed with an anti-slippage portion (38). The inner circumferential surfaces (31c) of the first and second curved portions (35, 37) and the outer circumferential surface of the stabilizer bar (11) have an anti-slippage material (Co) therebetween.
Abstract:
A semi-finished product (31) includes a first curved portion on one end of a plate-shaped bridge portion (33), and a second curved portion (37) on the other end of the bridge portion (33). The second curved portion (37) includes at the end a second lock portion (51) to lock with a first lock portion (41). The bridge portion (33) and the inner circumferential surfaces of the first and second curved portions (35, 37) are pressure-contacted and caulked on the outer circumferential surface of the stabilizer bar (11) by first and second dies (61, 62). At least one of the inner circumferential surfaces (31c) of the first and second curved portions (35, 37) and the outer circumferential surface of the stabilizer bar opposed to the inner surfaces (31c) is formed with an anti-slippage portion (38). The inner circumferential surfaces (31c) of the first and second curved portions (35, 37) and the outer circumferential surface of the stabilizer bar (11) have an anti-slippage material (Co) therebetween.
Abstract:
A semimanufactured product of a stopper includes: a plate-shaped bridging portion; a first curved portion extending from one end portion of the bridging portion integrally; and a second curved portion extending from the other end portion of the bridging portion integrally, and an entirety of the semimanufactured product is formed in a C-shape. The first curved portion includes a first locking part at the end portion. The second curved portion includes a second locking part that engages with the first locking part at the end portion. The first locking part includes a convex-shaped convex portion and a pair of receiving portions positioned so as to sandwich the convex portion. The second locking part includes: a concave-shaped concave portion which can accommodate the convex portion; and a pair of projecting portions positioned so as to sandwich the concave portion.
Abstract:
A semimanufactured product of a stopper includes: a plate-shaped bridging portion; a first curved portion extending from one end portion of the bridging portion integrally; and a second curved portion extending from the other end portion of the bridging portion integrally, and an entirety of the semimanufactured product is formed in a C-shape. The first curved portion includes a first locking part at the end portion. The second curved portion includes a second locking part that engages with the first locking part at the end portion. The first locking part includes a convex-shaped convex portion and a pair of receiving portions positioned so as to sandwich the convex portion. The second locking part includes: a concave-shaped concave portion which can accommodate the convex portion; and a pair of projecting portions positioned so as to sandwich the concave portion.
Abstract:
Una estructura de una barra estabilizadora (11) con un elemento de restricción de movimiento (23, 31, 31A, 31B), comprendiendo el elemento de restricción de movimiento (23, 31, 31A, 31B): una porción de puente en forma de placa (33, 33A); una primera porción curvada (35) que se extiende integralmente desde una porción de extremo de la porción de puente (33, 33A); y una segunda porción curvada (37) que se extiende integralmente desde otra porción de extremo de la porción de puente (33, 33A), incluyendo la primera porción curvada (35) una porción de extremo que incluye una primera porción de bloqueo (41), incluyendo la segunda porción curvada (37) una porción de extremo que incluye una segunda porción de bloqueo (51) que se acopla con la primera porción de bloqueo (41), estando la estructura caracterizada por que la porción de puente, y las superficies circunferenciales interiores respectivas de la primera porción curvada (35) y la segunda porción curvada (37) se sujetan en una superficie circunferencial exterior de la barra estabilizadora (11) con la barra estabilizadora (11) colocada en una superficie circunferencial interior de la primera porción curvada (35), el elemento de restricción de movimiento (23, 31, 31A, 31B) incluye una superficie circunferencial interior (31c) formada con una porción antideslizante (38), y se proporciona un material antideslizante (Co) en la superficie circunferencial exterior de la barra estabilizadora (11), y la porción antideslizante (38) se presiona y se une con el material antideslizante (Co).
Abstract:
Se proporciona una composición de recubrimiento en aerosol excelente en un efecto mate y capaz de evitar que ocurra la co-rotación. La composición de recubrimiento en aerosol contiene una resina alquídica modificada, micropartículas inirgánicas y un solvente orgánico. Aquí, la resina alquídica es una resina de dispersión no acuosa la cual es un copolímero de un monómero con base de vinilo y una resina alquídica. Las micropartículas inorgánicas están hechas de uno seleccionado de sílice, óxido de titanio, óxido de zinc, alúmina, carbonato de calcio, talco y arcilla o algo parecido. Las micropartículas inorgánicas tienen un diámetro promedio de partícula de 1.0 a 10.0 um, y un contenido de 0.1 a 5 de masa%. También se proporciona una parte mecánica metálica recubierta con la composición de recubrimiento en aerosol.