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    • 2. 发明专利
    • MANUFACTURE OF METALLIC FIBER BY CUTTING METHOD
    • JPH07314260A
    • 1995-12-05
    • JP13254294
    • 1994-05-23
    • YANAGISAWA AKIRA
    • YANAGISAWA AKIRA
    • B23P17/06
    • PURPOSE:To enable the simple manufacture without generating the mutual deposition of a variety of extremely thin metal fibers, by coating tre surface of a metal thin plate with a fusion preventing film, winding the fusion preventing film in an undried state, in a coil shape on a drum, and then drying the fusion preventing film. CONSTITUTION:When the surface of a metal this plate 1 is coated with a deposition preventing film 3 made of a soluble material 30, the deposition preventing film 3 is wound as it is free from drying, on the outer periphery of the shaft part 5a of a drum 5. The deposition preventing film 3 in a wound state on the drum 5 is put into the natural drying or heating drying, and each layer of the thin metal plate 1 is tightly attached by the adhesiveness of the deposition preventing film 3 itself, and integrally formed to a block form, and a cylindrical coil member is formed, and the metal thin plate 1 in the innermost layer is attached with the shaft part 5a of the drum 5 through the film 3. Then, the drum 5 is installed on the rotary shaft of the cutting machine, and after the end surface of the coil member is cut, the deposition preventing film 3 is removed from a fiber bundle having the deposition preventing film 3.
    • 7. 发明专利
    • MANUFACTURE FOR METAL LONG FIBER BY CUTTING
    • JPH03213218A
    • 1991-09-18
    • JP638990
    • 1990-01-17
    • SUZUKI KIYOSHIUEMATSU TETSUTAROMIYAZAKI HIDEJI
    • SUZUKI KIYOSHIUEMATSU TETSUTAROSANPEI KAZUO
    • B23B27/00B23P17/06
    • PURPOSE:To enable mass production of metallic long fiber of desired quality and thickness with less independent dispersion to be carried out simply at a low cost by turning a coil material end face by a cutting tool, whose flank is formed into a circular arc-shaped recessed curved surface, and discharging the fellow cut metallic long fibers in a direction of separating from each other. CONSTITUTION:A cutting tool 5, having a cutting edge part 5a of large width equal to or more than thickness of a coil material 1 in the point of a shank 5b, is provided with a rake face 50 and a flank 51, but the flank 51 is formed into a recessed curved surface of or similar to a circular arc shape of required radius of curvature. In manufacture of a metallic long fiber F, the cutting edge part 5a is attached to the end face of the coil material 1, and a core metal 2 is rotated at a desired peripheral speed while giving a desired feed to the edge part 5a. Then the flow cutting chip type long fiber F, in which its width agrees with thickness of a thin plate 100 for constituting the coil material 1 and the thickness agrees almost with a feed amount per one turn of the core metal 2, is continuously created in each thin plate 100 by continuously thin cutting the end face surface layer of the coil material 1 by the ridge line 53 of the cutting edge part 5a.
    • 8. 发明专利
    • MANUFACTURE OF FIBER
    • JPH03161220A
    • 1991-07-11
    • JP30072589
    • 1989-11-21
    • NIBEX CO LTDYANAGISAWA AKIRA
    • YANAGISAWA AKIRAOKANO TERUO
    • B23P17/06
    • PURPOSE:To manufacture a fiber whose layers are not peeled off with one another at the time of cutting the end surface of a material plate, and which is provided with at least two kinds of material parts in an integrated form, through the use of the material plate for which at least two layers of different quality are connected with one another in an integrated form, as the material plate wound around a turning shaft. CONSTITUTION:A motor is operated, and a rotating shaft 4 is rotated anti-clockwise at a constant speed, so as to operate a small amount feeding mechanism, whereby a blade board 9 is moved along a guide rail 10, at a constant speed in a direction of a material plate 7. When a cutting blade 8 touches the end surface 7c of the material plate 7 that is wound, cutting is started, and after that, a fiber is continuously manufactured as the cutting blade 8 is fed. Metallic layers 7a, 7b of the material plate 7 are connected together in such a way that the second metallic layer 7b made of solder is partially incorporated into the roughened gap on the surface of the first metallic layer 8a made of copper. Namely, since each metallic layer 7a, 7b is solidly connected to one another, each layer of the material plate 7 is not peeled off at the time of cutting, and is cut in a condition that the connection is maintained, whereby a fiber of copper one and soldered one integrated with each other can be manufactured.
    • 10. 发明专利
    • MANUFACTURE OF METALLIC SHORT FIBER
    • JPS63174829A
    • 1988-07-19
    • JP302587
    • 1987-01-09
    • KOBE STEEL LTD
    • SUZUKI AKIOTAKIZAWA KENSABUROGUNDA KAZUHIKOMIZUTA TOKUOKITAZAWA JITSUOTANAKA SHOHEINAWAMA KATSUYUKI
    • B23P17/06
    • PURPOSE:To make cutting work easy as well as to secure a metallic short fiber in an efficient manner, by leaving part of the width direction of a band plate behind, shearing this band plate with a lower blade and an upper blade whose surface is corrugated, and after manufacturing a corrugated plate, cutting the sheared part into the desired product length. CONSTITUTION:Part of the width direction of a band plate 3 to be progressively conveyed in succession is left behind, then the band plate 3 is shorn by a lower blade 2 and an upper blade 1, whose surface has an inclined part 4 and a horizontal part 5 alternately, formed into corrugation in the width direction of the band plate 3, and after producing a corrugated plate consisting of a sheared part and a nonsheared part, the sheared part is cut into the desired product length, thereby securing a metallic short fiber. Therefore, a slit of the band plate 3 and its rewinding process or the like are no longer required, and since the nonsheared part connecting these sheared parts themselves is formed in the corrugated plate, respective sheared parts are in no case scattered. Accordingly, shearing work is made so easy, and the metallic short fiber is manufacturable so efficiently at a small number of processes. In consequence, productivity is improved and, what is more, low-unit cost of production can be done.