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    • 3. 发明授权
    • Method for fabricating press forming die and method for fabricating press forming punch
    • 冲压成型模具的制造方法及冲压成型冲头的制造方法
    • US06521157B2
    • 2003-02-18
    • US09741554
    • 2000-12-19
    • Teiji WatanabeMasafumi NakamuraYoshikazu Nakamura
    • Teiji WatanabeMasafumi NakamuraYoshikazu Nakamura
    • B29C3338
    • B23P15/24B29C33/565Y10T156/1028Y10T156/1054
    • A press forming die is fabricated by initially fabricating a die forming panel, by press forming, which provides a die surface for the press forming die. During fabricating the die forming panel, a shaped panel is obtained by initially press forming a first blank material with a die forming prototype and a punch forming prototype. Next, the shaped panel is mounted onto the punch forming prototype again and, thereafter, a die forming panel is obtained by press forming a second blank material. The die forming panel is then mounted on a frame body and a backup material is formed between a space between the frame body and the die forming panel, thereby fabricating the press forming die. Since the die surface of the press forming die can be shaped by press forming, the press forming die can be simply fabricated.
    • 通过最初制造模具成形板,通过冲压成形来制造冲压成型模具,该冲压成形为冲压成型模具提供模具表面。 在制造模具形成板期间,通过用模具成形原型和冲压成型原型初始地压制成形第一坯料而获得成形板。 接下来,将成形板再次安装在冲压成形原型上,然后通过冲压成形第二坯料获得模具形成板。 然后将模具形成板安装在框架体上,并且在框架体和模具形成板之间的空间之间形成支撑材料,从而制造压制成形模具。 由于压制成型模具的模具表面可以通过压制成形而成形,所以可以简单地制造压制成型模具。
    • 6. 发明授权
    • Support fixture for thermal curing processes
    • 支撑夹具用于热固化工艺
    • US06814565B2
    • 2004-11-09
    • US10612113
    • 2003-07-02
    • Paul W. Kalinowski
    • Paul W. Kalinowski
    • B29C3338
    • B29C31/00B29C35/002B29C35/02
    • A flexible or semi-rigid support fixture is sized and shaped to supportably engage a surface of a polymeric matrix object such as an organic bonded abrasive grinding wheel. The support fixture is utilized to support the object to help prevent slumping and/or expansion during thermal curing operations. The fixture is fabricated from a material, such as silicone rubber, that is capable of withstanding heat commonly associated with thermal curing operations and which provides sufficient resilience to permit use with objects manufactured within a relatively wide range of dimensional tolerances. Suitable materials include silicone rubber or other polymers or copolymers such as PTFE, FEP, Polyimide or blends with or without fillers or substrates.
    • 柔性或半刚性支撑固定件的尺寸和形状被设计成可支撑地接合诸如有机粘结研磨砂轮的聚合物基体物体的表面。 支撑夹具用于支撑物体以帮助防止在热固化操作期间的塌落和/或膨胀。 夹具由诸如硅橡胶的材料制成,其能够耐受通常与热固化操作相关的热量,并且其提供足够的弹性以允许在相对宽的尺寸公差范围内制造的物体使用。 合适的材料包括硅橡胶或其它聚合物或共聚物,例如PTFE,FEP,聚酰亚胺或具有或不具有填料或基材的混合物。
    • 7. 发明授权
    • Method for the manufacturing of a matrix and a matrix manufactured according to the method
    • 根据该方法制造矩阵和矩阵的方法
    • US06733682B1
    • 2004-05-11
    • US10070868
    • 2002-03-11
    • Henrik BjörkmanKlas HjortJoakim AnderssonPatrik Hollman
    • Henrik BjörkmanKlas HjortJoakim AnderssonPatrik Hollman
    • B29C3338
    • C23C4/185B29C33/3842B29C33/424C23C14/568
    • The present invention relates to a method for the manufacture of a matrix and to a matrix (1) thus manufactured, at least one surface section (2) displaying a microstructure, which matrix (3) is suitable for inclusion as a mould insert in a mould cavity or in a cavity, in a unit producing plastic components, in order to assign said plastic components an opposing micostructure in a corresponding surface section. An original (3) with a surface section (4) displaying a microstructure less than 500 &mgr;m is used in order to apply on this original layer upon layer of a material (11, 12, 13, 14) and/or mixtures of material producing a matrix, and thereafter the matrix (1) is removed from said original (3) or the material in the original is removed. A first layer of material (11) applied on the original (3) so that together with a number of additional layers of material, said matrix is formed, is selected having exceptionally good properties as regards the ability of the plastic component to release from the matrix after moulding, curing or polymerisation of the plastic material used, and exceptionally good properties as regards retaining the pattern on the microstructured surface section.
    • 本发明涉及一种用于制造基体和由此制造的基体(1)的方法,至少一个显示微结构的表面部分(2),该基体(3)适于作为模具插入物包含在 模腔或在腔中,在产生塑料部件的单元中,以便在对应的表面部分中分配所述塑料部件相对的微结构。 使用具有显示小于500μm的显微组织的表面部分(4)的原件(3),以便在材料层(11,12,13,14)和/或产生材料的混合物上施加在该原始层上 矩阵,然后从所述原稿(3)中移除矩阵(1),或者移除原稿中的材料。 选择施加在原件(3)上的第一层材料(11),使得与形成所述基质的多个附加材料层一起被选择为具有特别良好的性能,关于塑料部件从 在使用塑料材料的成型,固化或聚合之后的基质,以及关于在微结构化表面部分上保持图案的特别好的性质。
    • 9. 发明授权
    • Method for molding the hull of a vessel
    • 用于模制船体的方法
    • US06517760B1
    • 2003-02-11
    • US09549773
    • 2000-04-14
    • Richard C. Lazzara
    • Richard C. Lazzara
    • B29C3338
    • B63B5/24Y10T29/49904
    • A method and apparatus for molding the hulls of vessels comprises a plurality of individual starboard base panels, starboard side panels, port base panels and port side panels, interconnected in a number of respective first panel groups and second panel groups, which groups are then connected side-by-side along the length of the vessel hull to be formed. The first panel groups are longitudinally spaced from one another and carried by adjustable vertical supports, whereas the second panel groups are removably mounted in between adjacent first panel groups to form a continuous negative mold surface against which the vessel hull can be constructed. After the hull has been formed, the second panel groups are removed while the first panel groups remain in place, a number of trolley devices are positioned beneath the hull in the spaces vacated by the second panel groups, and then the vertical supports are operated to lower the hull onto the trolley devices at which time the first panel groups can be disassembled thus allowing the hull to be transported on the trolley devices.
    • 用于模制船体船体的方法和装置包括多个独立的右舷基板,右舷侧板,端口基板和端口侧板,它们连接在多个相应的第一面板组和第二面板组中,然后这些组连接 沿着要形成的船体的长度并排。 第一面板组彼此纵向间隔开并由可调节的垂直支撑件承载,而第二面板组可移除地安装在相邻的第一面板组之间,以形成连续的负模具表面,可以构造容器船体。 在船体已经形成之后,在第一面板组保持就位的同时移除第二面板组,在由第二面板组空出的空间中的多个台车装置位于船体的下方,然后垂直支撑件被操作 将船体降低到手推车装置上,此时可以拆卸第一组面板组,从而允许船体在手推车装置上运输。
    • 10. 发明授权
    • Matrix, method of producing and using the matrix and machine including the matrix
    • 矩阵,生产和使用包括矩阵在内的矩阵和机器的方法
    • US06454970B1
    • 2002-09-24
    • US09554530
    • 2000-07-19
    • Per Ove ÖhmanLars Rune Lundbladh
    • Per Ove ÖhmanLars Rune Lundbladh
    • B29C3338
    • B29C33/565B29C33/02B29C33/424B29C45/2632B29C2045/2634B29L2017/005G11B7/263Y10S425/81
    • The invention relates to a method of producing a matrix suitable for use in a plastic element-producing machine, a matrix produced in accordance with the method and use of such a matrix to form a plastic element. One side of the matrix is provided with a negative microstructure which is replicated in plastic material to form a positive microstructure on a plastic element, wherewith the matrix can be produced by applying a layer of material to the positive microstructure side of a master. The positive microstructure side of the master has a thin wear-resistant layer which serves as a first wear surface, wherewith said layer will present irregularities which correspond essentially to the microstructure, and wherein at least said irregularities are filled-in with a plastic composite so as to form a carrier element for supporting the first wear layer. The layer can further be provided with means for supplying heat energy to said matrix.
    • 本发明涉及一种生产适用于塑料元件生产机器的基质的方法,根据该方法生产的基体和用于形成塑料元件的方法。 该基体的一侧设置有负极微观结构,其在塑料材料中复制以在塑料元件上形成正的微结构,通过在基体的正微结构侧施加一层材料可以制备该基体。 主体的正极微观结构侧具有薄的耐磨层,其用作第一耐磨表面,其中所述层将呈现基本上与微结构相对应的不规则性,并且其中至少所述不规则性用塑料复合材料填充,因此 以形成用于支撑第一耐磨层的载体元件。 该层还可以设置有用于向所述基质提供热能的装置。