摘要:
A method for manufacturing a powder for a magnetic core including at least a process of performing a siliconizing treatment on a surface of an iron powder (Ha) containing elemental carbon. In the process of siliconizing treatment, a powder (21a) containing at least a silicon dioxide is brought into contact with the surface of the iron powder (Ha), elemental silicon is detached from the silicon dioxide by heating the powder (21a) of silicon dioxide, and the siliconizing treatment is performed by causing the detached elemental silicon to permeate and diffuse into a surface layer of the iron powder (21a). The invention provides a method for manufacturing a powder for a magnetic core, by which loss reduction is achieved.
摘要:
A core (10) comprises a plurality of core split members (11) having yoke portions (22) and tooth portions (21) and arranged in such a circumferential shape that the yoke portions (22) contact with each other while the tooth portions (21) being directed inward. The core (10) further comprises a ring (12) contacting with the yoke portions (22), and stoppers (13) mounted on the outer face sides of the yoke portions (22) for fixing the ring (12) on the yoke portions (22). The yoke portions (22) and the ring (12) are formed in corrugated shape to mesh with each other, and the stoppers (13) are formed with projections that engage with the inner side of the ring (12). This structure provides both the rotating electrical machine core having the core split members arranged in the circumferential shape and fastened to each other while preventing occurrence of a stress and a positional displacement between the core split members, and a rotating electrical machine.
摘要:
Since a surface of an iron powder is covered with an oxide film composed of a Si-based oxide in which the ratio of Si to Fe satisfies Si/Fe≥0.8 on an atomic number basis, an iron powder for dust cores is provided which can be formed into a dust core having a high resistivity and hence having a low iron loss without degrading the mechanical strength.
摘要:
A stator core is composed of two molded powder magnetic cores joined in the axial direction. A yoke includes projections projecting axially outward from end surfaces in the axial direction of a tooth section. The length in the axial direction of the tooth section is gradually reduced toward radially outside_of the stator core, and the length in the circumferential direction of the tooth is gradually increased toward radially outside of the stator core. A molding is formed by pressing magnetic powder placed in a die by a single punch placed at one side in the axial direction and two punches parallelly placed on the other side in the axial direction. The stator core for a rotary electric machine is thus produced.
摘要:
A core (10) comprises a plurality of core split members (11) having yoke portions (22) and tooth portions (21) and arranged in such a circumferential shape that the yoke portions (22) contact with each other while the tooth portions (21) being directed inward. The core (10) further comprises a ring (12) contacting with the yoke portions (22), and stoppers (13) mounted on the outer face sides of the yoke portions (22) for fixing the ring (12) on the yoke portions (22). The yoke portions (22) and the ring (12) are formed in corrugated shape to mesh with each other, and the stoppers (13) are formed with projections that engage with the inner side of the ring (12). This structure provides both the rotating electrical machine core having the core split members arranged in the circumferential shape and fastened to each other while preventing occurrence of a stress and a positional displacement between the core split members, and a rotating electrical machine.
摘要:
A production method includes producing a rare-earth magnet precursor (S′) by performing first hot working in which, in two side surfaces of a sintered body, which are parallel to a pressing direction and are opposite to each other, one side surface is brought to a constrained state to suppress deformation, and the other side surface is brought to an unconstrained state to permit deformation; and producing a rare-earth magnet by performing second hot working in which, in two side surfaces (S′1, S′2) of the rare-earth magnet precursor (S′), which are parallel to the pressing direction, a side surface (S′2), which is in the unconstrained state in the first hot working, is brought to the constrained state to suppress deformation, and a side surface (S′1), which is in the constrained state in the first hot working, is brought to the unconstrained state to permit deformation.
摘要:
A production method includes producing a rare-earth magnet precursor (S′) by performing first hot working in which, in two side surfaces of a sintered body, which are parallel to a pressing direction and are opposite to each other, one side surface is brought to a constrained state to suppress deformation, and the other side surface is brought to an unconstrained state to permit deformation; and producing a rare-earth magnet by performing second hot working in which, in two side surfaces (S′1, S′2) of the rare-earth magnet precursor (S′), which are parallel to the pressing direction, a side surface (S′2), which is in the unconstrained state in the first hot working, is brought to the constrained state to suppress deformation, and a side surface (S′1), which is in the constrained state in the first hot working, is brought to the unconstrained state to permit deformation.