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    • 58. 发明授权
    • Laminated metal plate for drawn can, and drawn can prepared therefrom
    • 层压金属板,可以制作,可以制作
    • US5137762A
    • 1992-08-11
    • US584022
    • 1990-09-18
    • Masanori AizawaKatsuhiro ImazuTetsuo MiyazawaNobuyuki Satoh
    • Masanori AizawaKatsuhiro ImazuTetsuo MiyazawaNobuyuki Satoh
    • B65D1/12B21D22/20B32B15/08B32B15/09B65D1/28C08J5/12C08J7/04C09J163/00
    • C08J7/047B32B15/08B65D1/28C08J5/125C09J163/00C08J2367/02C08J2463/00Y10T428/1355Y10T428/31515Y10T428/31529Y10T428/31681Y10T428/31786Y10T428/31797
    • Disclosed is a laminated metal plate for a drawn can, which comprises a laminate comprising a base metal, a layer of a film of a polyester composed mainly of ethylene terephthalate units and, if desried, an adhesive primer layer interposed between the base metal and the polyester film layer, wherein the X-ray diffraction intensity ratio, defined by the following formula (I), of the polyester film layer is in the range of from 0.5 to 15:R.sub.X =I.sub.A /I.sub.B (I)wherein R.sub.X represents the X-ray diffraction intensity ratio, I.sub.A represents the X-ray diffraction intensity by the diffraction plane parallel to the surface of the polyester film, which has a spacing of about 0.34 nm (CuK.alpha. X-ray diffraction angle is 24.degree. to 28.degree.), and I.sub.B represents the X-ray diffraction intensity by the diffraction plane parallel to the polyester film surface, which has a spacing of about 0.39 nm (CuK.alpha. X-ray diffraction angle is 21.5.degree. to 24.degree. ).and the in-plane anisotropy index of the crystal of the film layer is less than 30.When this laminated metal plate is subjected to the drawing, cracking or formation of pinholes is prevented, and the laminated metal plate shows excellent formability and corrosion resistance. An excellent drawn can is prepared from this laminated metal plate.
    • 公开了一种用于拉制罐的层压金属板,其包括层压体,其包含基体金属,主要由对苯二甲酸乙二醇酯单元组成的聚酯膜层,如果需要,则介于基体金属和基体金属之间的粘合底漆层 聚酯薄膜层,其中聚酯薄膜层由下式(I)定义的X射线衍射强度比在0.5至15的范围内:RX = IA / IB(I)其中RX表示X 射线衍射强度比,IA表示平行于聚酯膜的表面的衍射面的X射线衍射强度,其间隔为约0.34nm(CuKαX射线衍射角为24°至28°) ,IB表示与聚酯膜表面平行的衍射面的X射线衍射强度,其间隔为约0.39nm(CuKαX射线衍射角为21.5°〜24°)。 并且膜层的晶体的面内各向异性指数小于30.当该层压金属板经受拉伸时,防止了针孔的开裂或形成,并且层压金属板显示出优异的成形性和耐腐蚀性。 从该层压金属板制备出优良的拉伸罐。
    • 60. 发明授权
    • Method of forming containers
    • 成型容器的方法
    • US4885924A
    • 1989-12-12
    • US541346
    • 1983-09-26
    • Paul C. ClaydonMartin F. Ball
    • Paul C. ClaydonMartin F. Ball
    • B65D1/12B21D22/30B21D51/26B65D1/02B65D1/16
    • B65D1/165B21D51/26
    • In a method of reshaping a container (1) having side wall (2) and a bottom wall (3), the container is rotated by support means (11, 12) while a roll (13) is applied thereto and moved towards the container axis. The bottom wall (3) comprises a central panel (4), an annular wall (5) depending from the periphery of the central panel, an outwardly convex bead (6) of arcuate cross-section on which the container stands and a transition wall (7) extending radially and axially from the convex bead to the side wall (2), and the roll is applied to the transition wall (7) to reshape it and to tighten the curvature of the convex bead. The method permits the formation of bottom wall profiles which resist eversion under the influence of pressure within the container so that thinner metals, such as tinplate or aluminum alloys, may be used.
    • PCT No.PCT / GB83 / 00017 Sec。 371日期1983年9月26日 102(e)1983年9月26日PCT提交1983年1月28日PCT公布。 出版物WO83 / 02577 日期:1983年8月4日。在重新形成具有侧壁(2)和底壁(3)的容器(1)的方法中,容器通过支撑装置(11,12)旋转,而辊(13) 施加到其上并朝向容器轴线移动。 底壁(3)包括中心板(4),从中心板的周边悬垂的环形壁(5),容器所在的弧形横截面的向外凸出的凸缘(6)和过渡壁 (7),其从凸起凸缘径向和轴向地延伸到侧壁(2),并且将辊施加到过渡壁(7)以重新形成并收紧凸起凸起的曲率。 该方法允许在容器内的压力影响下形成抵抗外翻的底壁型材,使得可以使用更薄的金属,例如马口铁或铝合金。