摘要:
Each steel element for a V-belt of a continuously variable transmission has a flank (4a) that comprises a plurality of equally spaced raised portions (41) each being placed between two fine grooves (42). A flat flatness ratio (FR) given by the equation (1) is set to the highest one of values that are capable of practically machining the flank (4a) of the steel element (4) and capable of causing the flank (4a) to exhibit a given and satisfied lubrication oil discharging effect, and a groove pitch (GP) that is a distance between the two fine grooves (42) is set to a value that is capable of practically machining the flank of the steel element and capable of causing the flank to exhibit a given and satisfied lubrication oil discharging effect. The groove pitch thus set is a value that is permitted by the higher value of the flatness ratio thus set. FR (%)=WRP/(WRP+WG)×100 (1) wherein: FR: Flatness ratio WRP: Width of the raised portion (41) WG: Width of the groove (42).
摘要:
A bonding structure for a container member is disclosed. The container member has an opening and a covering member for covering the opening. The container member and covering member are abutted with each other and bonded by a friction stir welding operation. The bonding structure for the container and covering members comprises a bonding portion and a backing member. The bonding portion of the container member and the covering member is formed by inserting a friction stir welding tool into an abutting portion of the container member and the covering member. The backing member is provided for obstructing a plastic flow of materials for the container member and the covering member when the friction stir welding operation is performed. The backing member is disposed adjacent to the bonding portion, at a side of the abutting portion that is opposite to an inserting side of the friction stir welding tool.
摘要:
A continuously variable transmission configured to transmit a rotational driving force of one pulley to another pulley by a driving-force transmitting means wound between the two pulleys, wherein each of the two pulleys is configured to vary a groove width thereof, the continuously variable transmission including: an engagement-receiving portion provided to the driving-force transmitting means, in a side of the driving-force transmitting means on which the driving-force transmitting means is wound on the pulleys; and a movable engaging portion provided to a shaft portion of at least one of the two pulleys, wherein the movable engaging portion is movable in a radial direction of the shaft portion to protrude from and escape into the shaft portion, wherein the movable engaging portion is configured to protrude from the shaft portion so as to engage with the engagement-receiving portion at least one of when a pulley-ratio region is in a setting for highest speed and when the pulley-ratio region is in a setting for lowest speed.
摘要:
A continuously variable transmission belt, including a metal ring assembly including a plurality of metal rings, and a plurality of metal elements which are retained by the metal ring assembly and each has a saddle surface contacted with an inner circumferential surface of the metal ring assembly. The saddle surface includes opposed end peripheries spaced from each other in a traveling direction of the belt and a curved portion located at each of the opposed end peripheries. The curved portion has a range length extending in the traveling direction of the belt and a radius of curvature larger than the range length. The metal element is produced by a method including subjecting a metal sheet to presswork to form a workpiece, subjecting the workpiece to heat treatment and deburring and then to preliminary beveling and subsequent beveling.
摘要:
A gear structure comprising: a reinforcement member fixed onto a side surface of a gear; and a fixation section configured to fix the reinforcement member onto the side surface of the gear, the fixation section being provided on a line of contact action of the gear.
摘要:
A distributing board for electrical connection with an instrument having a tab terminal is provided. The distributing board includes a baseplate with recesses and a guide groove, a cover for covering the baseplate, female terminal metal fittings accommodated in the recesses and an electrical wire accommodated in the guide groove to connect the female terminal metal fittings with each other electrically. Each female terminal metal fitting includes a terminal fitting part for fitting the tab terminal and a pressure welding part. Under condition that the electrical wire is accommodated in the guide groove, the baseplate is covered with the cover. Since the female terminal metal fittings can be electrically connected with each other by welding the electrical wires on the individual female terminal metal fittings with pressure, it is possible to cope with changes in circuit easily.
摘要:
Each steel element for a V-belt of a continuously variable transmission has a flank (4a) that comprises a plurality of equally spaced raised portions (41) each being placed between two fine grooves (42). A flat flatness ratio (FR) given by the equation (1) is set to the highest one of values that are capable of practically machining the flank (4a) of the steel element (4) and capable of causing the flank (4a) to exhibit a given and satisfied lubrication oil discharging effect, and a groove pitch (GP) that is a distance between the two fine grooves (42) is set to a value that is capable of practically machining the flank of the steel element and capable of causing the flank to exhibit a given and satisfied lubrication oil discharging effect. The groove pitch thus set is a value that is permitted by the higher value of the flatness ratio thus set. FR (%)=WRP/(WRP+WG)×100 (1) wherein: FR: Flatness ratio WRP: Width of the raised portion (41) WG: Width of the groove (42)
摘要:
A motor/generator (1) comprises a cylindrical stator core (5) facing the outer periphery of a rotor (3) on the inner side of a case (2). Base plates (8) constituted by an electrical insulation material are laminated on both ends of the stator core (5). A plurality of coils (7) are wound on the laminated body comprising the stator core (5) and the base plates (8). A cooling jacket (6) is attached to each of the base plate (8) using engagement members (6F, 6G, 8D, 8E, 10, 15) in order to envelope the projection of the coil (7). The end planks (2B, 2C) of the case (2) hold and press the cooling jacket (6) toward the stator core (5). Consequently, without forming a flange in order to fix the cooling jacket (6), the cooling jackets (6) are secured at a predetermined position within the case (2).
摘要:
A bonding structure for a container member is disclosed. The container member has an opening and a covering member for covering the opening. The container member and covering member are abutted with each other and bonded by a friction stir welding operation. The bonding structure for the container and covering members comprises a bonding portion and a backing member. The bonding portion of the container member and the covering member is formed by inserting a friction stir welding tool into an abutting portion of the container member and the covering member. The backing member is provided for obstructing a plastic flow of materials for the container member and the covering member when the friction stir welding operation is performed. The backing member is disposed adjacent to the bonding portion, at a side of the abutting portion that is opposite to an inserting side of the friction stir welding tool.
摘要:
A bonding structure for a container member is disclosed. The container member has an opening and a covering member for covering the opening. The container member and covering member are abutted with each other and bonded by a friction stir welding operation. The bonding structure for the container and covering members comprises a bonding portion and a backing member. The bonding portion of the container member and the covering member is formed by inserting a friction stir welding tool into an abutting portion of the container member and the covering member. The backing member is provided for obstructing a plastic flow of materials for the container member and the covering member when the friction stir welding operation is performed. The backing member is disposed adjacent to the bonding portion, at a side of the abutting portion that is opposite to an inserting side of the friction stir welding tool.