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    • 5. 发明授权
    • Method of producing seamless cans
    • 生产无缝罐的方法
    • US5778722A
    • 1998-07-14
    • US871769
    • 1997-06-09
    • Norihito SaikiKatsuhiro ImazuAkira KobayashiTomomi Kobayashi
    • Norihito SaikiKatsuhiro ImazuAkira KobayashiTomomi Kobayashi
    • B21D22/28B21D51/26
    • B21D22/28B21D51/26
    • A method of producing seamless cans wherein a blank holder 2 is inserted in a metal cup 5 coated with an organic film 12, a punch 1 is advanced into a cavity 7 in a die 3 while pushing the bottom 5a of the metal cup onto the flat surface portion 3a of the die by the blank holder 2, so that the side wall 5b of the metal cup 5 is brought into intimate contact with the flat surface portion 3a of the die and with the working corner 3b having a small radius of curvature, thereby to reduce the thickness of the side wall 5b by bend-elongation. Moreover, the portion to be subjected to the necking is ironed at an ironing ratio of not smaller than 5% by the punch 1 in cooperation with the front end 3b.sub.1, of the working corner 3b, or by the front end 3b.sub.1, and an ironing portion of a short cylindrical portion in front thereof, or by the punch 1 in cooperation with the ironing portion 3g of the die 3 by advancing the side wall 5b slightly toward the inside in the cavity 7, thereby to obtain a seamless can 20 having a reduced thickness in the side wall 5b. This method makes it possible to control the thickness distribution in the side wall and, hence, to produce seamless cans having reduced thickness in the side wall permitting the organic film to be least whitened during the necking working.
    • 一种生产无缝罐的方法,其中将坯料夹持器2插入涂覆有机膜12的金属杯5中,冲压机1推进到模具3中的空腔7中,同时将金属杯的底部5a推到平面 金属杯5的侧壁5b与模具的平面部3a紧密接触,并且具有小的曲率半径的工作角部3b, 从而通过弯曲伸长来减小侧壁5b的厚度。 此外,通过与作业拐角3b的前端3b1或前端3b1配合的冲头1以熨烫比为5%以上的部分进行颈缩的部分熨烫,以及熨烫 通过使侧壁5b稍微朝向空腔7内的内侧前进,与冲头3的熨烫部3g配合,通过冲头1与冲头1配合,从而得到具有 减小侧壁5b的厚度。 这种方法使得可以控制侧壁的厚度分布,并且因此在侧壁中产生具有减小的厚度的无缝罐,从而允许有机膜在颈缩加工期间最少白化。
    • 7. 发明授权
    • Process for producing a resin-metal laminate
    • 树脂 - 金属层压板的制造方法
    • US5985080A
    • 1999-11-16
    • US968532
    • 1997-11-12
    • Akira KobayashiNorimasa MaidaKoji YamadaKatsuhiro Imazu
    • Akira KobayashiNorimasa MaidaKoji YamadaKatsuhiro Imazu
    • B32B15/08B32B37/15B05D1/00B32B31/20
    • B32B37/153B32B15/08B32B37/0053B32B2309/02B32B2309/06
    • The process for producing a resin-metal laminate material of the present invention is characterized by comprising providing a heating zone for a metal substrate, a die for feeding a thermoplastic resin in a film form, a pair of temperate laminate rolls for adhering the thermoplastic resin to at least one surface of the metal substrate, and quenching means for quenching the resulting laminate material, along a passage for the metal substrate, supporting and conveying a molten film of the thermoplastic resin from the die with the corresponding temperate laminate rolls and feeding it to a nipping position between the temperate laminate rolls, and fusing the thin film of the thermoplastic resin to at least one surface of the heated metal substrate by means of the temperate laminate rolls. This method can lead to the formation of a uniform and thin-film resin coating on the metal substrate at a high speed, and in addition, the formed resin film has very high intimate adhesiveness and film properties.
    • 本发明的树脂 - 金属层叠材料的制造方法的特征在于,提供金属基材用加热区域,将薄膜状的热塑性树脂进行供给的模具,一对温和的层压辊, 到金属基材的至少一个表面,以及淬火装置,用于沿着金属基底的通道淬火所得层压材料,用相应的温和层压辊将模具中的热塑性树脂的熔融薄膜支撑并输送,并将其进料 到温和层压辊之间的夹持位置,并且通过温和的层压辊将热塑性树脂的薄膜熔合到加热的金属基底的至少一个表面上。 该方法可以高速地在金属基板上形成均匀的薄膜树脂涂层,此外,所形成的树脂膜具有非常高的紧密粘合性和膜性能。
    • 9. 发明授权
    • Method of draw-forming a metal sheet having an organic film
    • 拉伸形成具有有机膜的金属片的方法
    • US5433099A
    • 1995-07-18
    • US255808
    • 1994-06-07
    • Imazu KatsuhiroAkira KobayashiTomomi Kobayashi
    • Imazu KatsuhiroAkira KobayashiTomomi Kobayashi
    • B21D22/20B21D24/04B21D24/10B21D24/12B21D51/26B29C51/08B29C51/14B32B15/08B21D22/22
    • B21D24/12
    • A draw-forming method in which a disc-like metal sheet having an organic film or a cup made of a metal sheet having an organic film is held by an annular holder member and a drawing die, and a drawing punch and the drawing die are moved in mesh with each other and relative to each other, the drawing punch being so provided as to move into or cut of the holder member in concentric with the holder member and the drawing die, wherein at least either one of the annular holder member or the drawing die that had been pushing a residual flange portion is so moved as to discontinue the pushing just before the draw forming is finished in said drawing step, and the flange portion is drawn while liberating the rear end of the flange portion. This makes it possible to eliminate the defects inherent in the conventional draw-forming method or the draw/redraw-forming method, and to draw-form a metal sheet having an organic film into a flangeless cup without developing pinching, film hair or enamel hair at the upper portion of the cup, without causing the can barrel or the organic film to be broken during the drawing, and without permitting the tools that are used to be worn out or damaged, but maintaining excellent operation efficiency.
    • 一种拉伸成形方法,其中具有有机膜或由具有有机膜的金属片制成的杯状的盘状金属片由环形夹持构件和拉伸模具保持,并且拉拔冲头和拉拔模具 彼此相对移动并且相对于彼此移动,所述拉伸冲头被设置成与保持器构件和拉伸模具同心地移动进入或切割保持器构件,其中环形保持器构件中的至少一个或 推动残留凸缘部分的拉伸模具被移动,以在拉拔步骤结束之前中止推动,并且在释放凸缘部分的后端的同时拉出凸缘部分。 这使得可以消除传统的拉伸成形方法或拉伸/再拉伸成形方法中固有的缺陷,并且可以将无机膜的金属板拉伸成无凸缘的杯状物,而不会产生夹持,薄膜毛发或搪瓷毛发 在杯子的上部,不会在拉拔期间导致罐筒或有机膜破裂,并且不允许使用过的工具被磨损或损坏,而是保持优异的操作效率。
    • 10. 发明授权
    • Vibration damping bushing and manufacturing method thereof
    • 振动阻尼衬套及其制造方法
    • US08979082B2
    • 2015-03-17
    • US13491271
    • 2012-06-07
    • Takashi MakinoChiharu TanakaAkira Kobayashi
    • Takashi MakinoChiharu TanakaAkira Kobayashi
    • F16F15/08F16F1/38B60G7/00
    • F16F1/3828B60G7/001B60G2204/41F16F1/3863Y10T29/49844
    • A vibration damping bushing including: an inner axial member; an outer cylindrical member through which the inner axial member is inserted; a main rubber elastic body elastically connecting the two members; and a stopper member that is fitted onto the inner axial member as a component of a first stopper mechanism that limits relative displacement of the inner axial member against the outer cylindrical member to one side in an axial direction. The inner axial member is formed with a latching depression that opens toward an outer periphery thereof, and the stopper member is provided with a latching piece that protrudes outward in the axial direction. The latching piece is engaged with the latching depression so as to provide a slipping out prevention mechanism for preventing the stopper member from slipping out from the inner axial member.
    • 一种减震衬套,包括:内轴向构件; 内部轴向构件插入其中的外部圆柱形构件; 弹性地连接两个构件的主橡胶弹性体; 以及止动构件,其配合在作为第一止动机构的部件的内轴构件上,该第一止动机构限制内轴向构件相对于外圆筒构件相对于轴向一侧的相对位移。 内轴向构件形成有朝向其外周开口的卡止凹部,止动构件设置有沿轴向向外突出的卡定片。 闩锁件与闩锁凹部接合,以提供防止止动构件从内轴向构件滑出的防滑机构。