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    • 3. 发明授权
    • Compact case forming machine
    • 小型成型机
    • US06669616B1
    • 2003-12-30
    • US09669935
    • 2000-09-26
    • Wojciech BierenackiWilliam Menta
    • Wojciech BierenackiWilliam Menta
    • B31B180
    • B31B50/00B31B50/0044B31B50/802B31B2100/00B31B2120/30
    • A case forming machine for assembling erected cases from blanks including a stacking means configured for receiving a supply of blanks, an opening and forming means for erecting the blanks and ejecting erected cases, and the machine is constructed and arranged so that the stacking means is configured for biasing the supply of blanks in a first direction and the forming means is configured so that the blanks are ejected in a second direction. The machine also includes a frame, a stacking apparatus for holding a supply of blanks, an opening and forming apparatus, a vertical blank guide configured to advance the supply of blanks in a first direction, a vertical blank mover for transporting blanks from the stacking apparatus to the opening and forming apparatus, a first minor flap folder and a second minor flap folder, a first major flap folder and a second major flap folder; and a case advancement mechanism attached to the opening and forming apparatus, the case advancement mechanism configured to advance cases in a second direction along the opening and forming apparatus.
    • 一种用于组装来自坯料的竖立壳体的壳体成形机,包括用于接收坯料供应的堆叠装置,用于竖立坯料和排出竖立壳体的开口和成形装置,并且机器被构造和布置成使得堆叠装置被配置 用于偏压坯料在第一方向上的供应,并且所述成形装置被构造成使坯料沿第二方向被排出。 机器还包括框架,用于保持坯料供应的堆垛装置,开口和成形装置,构造成推进坯料在第一方向上的垂直坯料引导件,用于从堆垛装置输送坯料的垂直坯料移动器 至所述开口和成形设备,第一小折翼折叠器和第二小折翼折叠器,第一主瓣片折叠器和第二主瓣片折叠器; 以及安装在开口和成形装置上的壳体推进机构,所述壳体前进机构构造成沿着开口和成形装置沿第二方向推进壳体。
    • 4. 发明授权
    • Method and apparatus for forming an apertured pad
    • US06220999B1
    • 2001-04-24
    • US09272119
    • 1999-03-19
    • Joseph Michael KuglerMichael Barth Venturino
    • Joseph Michael KuglerMichael Barth Venturino
    • B31B180
    • A61F13/15707A61F13/15626A61F13/15658A61F13/15764A61F13/533
    • An apparatus and method for manufacturing a pad wherein a rotatable forming screen which has a generally cylindrical surface and at least one outwardly projecting nob is employed. The nob is positioned on the forming screen whereby the nob is circumscribed by the material, e.g., cellulosic fluff, deposited on the forming screen to form the pad. The pad is transferred from the forming screen to a moveable transfer surface. The transfer surface may be either flat or round and moves at a velocity which is at least as great as the velocity of the forming screen. The nob located on the forming screen includes a thrust surface disposed on a trailing edge of the nob. The thrust surface imparts a compressive force on the pad during the release of the pad from the forming screen. The compressive force is at least partially directed towards the transfer surface and thereby assists in the release and transfer of the pad. A vacuum may also be used to attract the pad to the transfer surface. When the transfer surface is a cylindrical surface, the forming screen may have a diameter which is smaller than, substantially equivalent to, or greater than the diameter of the transfer surface. The nobs disposed on the forming screen can have many different shapes and, for example, may define a frustum. The sidewalls of the nob may taper inwardly by about 5 degrees. Threaded fasteners may be utilized to make the nobs reattachable and exchangeable.
    • 5. 发明授权
    • Method and apparatus for forming an apertured pad
    • 用于形成孔径垫的方法和装置
    • US06454690B2
    • 2002-09-24
    • US09772740
    • 2001-01-30
    • Joseph Michael KuglerMichael Barth Venturino
    • Joseph Michael KuglerMichael Barth Venturino
    • B31B180
    • A61F13/15707A61F13/15626A61F13/15658A61F13/15764A61F13/533
    • An apparatus and method for manufacturing a pad wherein a rotatable forming screen which has a generally cylindrical surface and at least one outwardly projecting nob is employed. The nob is positioned on the forming screen whereby the nob is circumscribed by the material, e.g., cellulosic fluff, deposited on the forming screen to form the pad. The pad is transferred from the forming screen to a moveable transfer surface. The transfer surface may be either flat or round and moves at a velocity which is at least as great as the velocity of the forming screen. The nob located on the forming screen includes a thrust surface disposed on a trailing edge of the nob. The thrust surface imparts a compressive force on the pad during the release of the pad from the forming screen. The compressive force is at least partially directed towards the transfer surface and thereby assists in the release and transfer of the pad. A vacuum may also be used to attract the pad to the transfer surface. When the transfer surface is a cylindrical surface, the forming screen may have a diameter which is smaller than, substantially equivalent to, or greater than the diameter of the transfer surface. The nobs disposed on the forming screen can have many different shapes and, for example, may define a frustum. The sidewalls of the nob may taper inwardly by about 5 degrees. Threaded fasteners may be utilized to make the nobs reattachable and exchangeable.
    • 一种用于制造垫的装置和方法,其中采用具有大致圆柱形表面和至少一个向外突出的nob的可旋转成形筛网。 nob位于成形屏幕上,由此nob被沉积在成形屏幕上的材料(例如纤维素绒毛)外接以形成垫。 垫从成形网转移到可移动的转印表面。 转印表面可以是平的或圆形的,并且以至少与成形筛的速度一样大的速度移动。 位于成型屏幕上的nob包括设置在nob的后缘上的推力表面。 在将垫从成形筛中释放期间,推力表面在垫上赋予压缩力。 压缩力至少部分地指向转移表面,从而有助于垫的释放和转移。 还可以使用真空来将垫吸引到转印表面。 当转印表面是圆柱形表面时,成形筛可具有小于,基本等于或大于转印表面直径的直径。 设置在成形屏幕上的间隙可以具有许多不同的形状,并且例如可以限定平截头体。 nob的侧壁可能向内倾斜约5度。 可以使用螺纹紧固件来使得可重新连接和可交换。