Abstract:
A rim (10) is produced by a production process including a step (A) of bending a workpiece (11) to bring end faces of the workpiece into contact with each other, a step (B) of forming a circular cylinder body (12) by joining the end faces brought to be in contact with each other, a step (C) of inspecting a joint portion (13) of the circular cylinder body (12), a step (D) of forming a drop portion (16), subsiding toward the inner peripheral wall (15) side, in an outer peripheral wall (14) of the circular cylinder body (12), a by bending both end portions of the circular cylinder body (12), a step (F) of forming hump portions (20) by pressing the circular cylinder body (12) from the inner peripheral wall (15) side to raise the outer peripheral wall (14), and a step (G) for forming a valve hole (22) and water drain holes (24) in the drop portion (16) and the curl portions (18). The rim (10) and a disk (102) that is separately produced are welded to form a wheel (122).
Abstract:
A method of manufacturing a wheel rim by bringing end faces of a workpiece into abutment against each other to form a hollow cylindrical body and forming a circumferential recess which is depressed from an outer circumferential wall of said hollow cylindrical body toward an inner circumferential wall thereof, including providing protrusions disposed near ends of a joined area of the hollow cylindrical body and extending in a joining direction, and then pressing the outer circumferential wall of the hollow cylindrical body to form the recess.
Abstract:
The present invention relates to a magnetic resonance medical treatment device for applying magnetism to the body of a patient to thereby treat decease or improve the patient's health condition. The invention also relates to a method for magnetism variation control adapted to control magnetism generated by a magnetism generator such as the magnetic resonance medical treatment device. In order to enable diversified magnetic medical treatments, a magnetic resonance medical treatment device according to the present invention includes a director which contains two magnetism generators—which each include a bar core and a conductor wound on the bar core—and a magnetism regulator connected to the director and adapted to individually regulate the intensities and directions of magnetic forces generated by the magnetism generators. A method for magnetism variation control according to the present invention causes one magnetism generator to resonate with the other magnetism generator.
Abstract:
A temperature compensated oscillator and a temperature detector have a temperature sensor having a single case in which a pair of AT cut crystal resonator having substantially the same natural oscillation frequency and different cut angles from each other are accommodated. The crystal resonators each constitutes the resonance circuit of respective one of two oscillation circuits. A difference in frequency between the output frequencies of the oscillation circuits is representative of a detected temperature.