摘要:
An electric power steering apparatus for a vehicle comprises a steering shaft (12), an electric motor (5) operable to generate an auxiliary steering force having a magnitude corresponding to a value of electric current supplied thereto, a steering torque sensor (8) for detecting a steering torque applied to the steering shaft (12), a vehicle weight sensor (9) for detecting a vehicle weight, and a control device (10). The control device is constituted to increase and decrease the value of electric current to be supplied to the electric motor in accordance with not only the increase and decrease of the value detected by the steering torque sensor but also the increase and decrease of the value detected by the vehicle weight sensor.
摘要:
Ceramics material are not resistant to tensile force, though they are resistant to compression force. Therefore, ceramics materials, when used as the material of a commutator of an electric rotary machine, tends to be cracked and broken due to tensile stress generated in the inner peripheral portion of the commutator when the latter is press-fitted on the rotor shaft of the machine. the invention is aimed at obviating the above-described problem, so as to make it possible to produce a sliding current collector of an electric rotary machine from a ceramics material. To this end, according to the invention, an annular gap is formed between the inner peripheral surface of the ceramics commutator and the other peripheral surface of the rotary shaft and the gap is filled with a resin such as a thermosetting resin which is then thermally set to form a resin layer by which the commutator is bonded to the rotor shaft. The resin layer effectively absorbs any tensile stress which may otherwise be caused in the inner peripheral portion of the commutator due to, for example, thermal expansion of the rotor shaft. It is thus possible to securely fix the commutator to the rotor shaft without risk of cracking or damaging of the commutator.
摘要:
A novel DC rotary electric machine of permanent magnet field type is disclosed, in which each of a plurality of permanent field magnets (30, 30a) having an auxiliary pole (8) of magnetic material are arranged alternately with each of a plurality of field magnets (40, 40a) including only a magnetic material along the peripheral direction on the inner periphery of a stator yoke (7). The field magnets (30, 30a) with the auxiliary poles are arranged adjacent to the field magnets (40, 40a) of magnetic material with through bolts extending therebetween.
摘要:
This invention relates to a miniature electric rotating machine having a stator equipped with a field pole on a peripheral circle of a rotor and the field pole is constituted by a permanent magnet (8). Each permanent magnet of a conventional miniature electric rotating machine of this type can be divided into a portion on a magnetizing side and a portion on a demagnetizing side with respect to armature reaction. In the permanent magnet (8) of the present invention, an end portion (ll) on the demagnetizing side, which has directivity different from the magnetizing directions on the magnetizing and demagnetizing sides, is disposed adjacent to the portion on the demagnetizing side.
摘要:
Relating to a direct-current machine having a rotor which includes a commutator (2), an armature core (3) and an armature winding and is sustained rotatably in a field system constituted by a cylindrical housing and permanent magnets (8,9) disposed inside the same, the aim of the invention is to reduce a demagnetizing force of an armature reaction due to an armature current by attaching a magnetic plate (10) made of high saturation magnetic flux density material to a part of the pole-face of said field system of permanent magnets (8,9) which is in the demagnetizing field.
摘要:
Ceramics material are not resistant to tensile force, though they are resistant to compression force. Therefore, ceramics materials, when used as the material of a commutator of an electric rotary machine, tends to be cracked and broken due to tensile stress generated in the inner peripheral portion of the commutator when the latter is press-fitted on the rotor shaft of the machine. the invention is aimed at obviating the above-described problem, so as to make it possible to produce a sliding current collector of an electric rotary machine from a ceramics material. To this end, according to the invention, an annular gap is formed between the inner peripheral surface of the ceramics commutator and the other peripheral surface of the rotary shaft and the gap is filled with a resin such as a thermosetting resin which is then thermally set to form a resin layer by which the commutator is bonded to the rotor shaft. The resin layer effectively absorbs any tensile stress which may otherwise be caused in the inner peripheral portion of the commutator due to, for example, thermal expansion of the rotor shaft. It is thus possible to securely fix the commutator to the rotor shaft without risk of cracking or damaging of the commutator.
摘要:
Disclosed is a method of manufacturing an electromagnetic member (6) having properties of magnetic anisotropy as well as electrical conductivity, comprising the steps of coating an outer circumferential surface of each of a plurality of magnetic strips (4) with a first electrically conductive material (5a) to a predetermined thickness to thereby form a plurality of composite magnetic strips (7), binding the plurality of composite magnetic strips (7), and filling spaces among the plurality of composite magnetic strips (7) in the bundle with a second electrically conductive material (5b) substantially the same as the first electrically conductive material (5a). By this method, a mechanically strong electromagnetic member (6) can be obtained in which adjusting the thickness of the first electrically conductive material (5a), the ratio between the magnetic property and the electrically conductive property can be easily adjusted by adjusting the thickness of the first electrically conductive material (5a) and blow-holes can be prevented from being generated.