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    • 1. 发明授权
    • Reject apparatus for use with slitter mechanism
    • 用于分切机构的拒收装置
    • US06349938B1
    • 2002-02-26
    • US09563044
    • 2000-05-01
    • Ed KubackiRobert C. JackJohn Czarnota
    • Ed KubackiRobert C. JackJohn Czarnota
    • B65H4304
    • B26D7/18B07C5/34B65H29/62B65H43/04B65H2701/173Y10T83/2022Y10T83/2085Y10T83/6476
    • A reject mechanism (10) for use with a slitter (S) which slits a printed metal sheet (B) into segments (s) subsequently used to form containers. The mechanism is mounted at the outlet of the slitter to deflect rejected segments from a collection bin (C) to which acceptable segments are delivered for further use in container manufacture. The mechanism comprises a series of pneumatically actuated reject fingers (14) normally positioned beneath a path over which the segments pass from the slitter to the collection bin. However, when a reject segment approaches the mechanism, a piston (16) is activated to extend the fingers into the path of the segment to deflect the segment off its path into another collection area in which rejected segments are collected. The fingers are then retracted so that succeeding acceptable segments pass freely over the path.
    • 一种用于切割机(S)的拒收机构(10),其将印刷的金属板(B)切割成随后用于形成容器的段。 该机构安装在分切机的出口处,以将被拒绝的分段从收集箱(C)偏转到可接受的分段,以便在容器制造中进一步使用。 该机构包括一系列气动致动的废品指(14),通常位于通道上方,分段从分条穿过该路径到收集箱。 然而,当废料段接近该机构时,活塞(16)被启动以将指状物延伸到该段的路径中,以使该段从其路径偏转到另一收集区域,其中收集被拒绝的段。 然后缩回手指,使得后续的可接受片段自由地在路径上通过。
    • 2. 发明授权
    • Process and apparatus for manufacturing shaped containers
    • 用于制造成形容器的方法和装置
    • US07757527B2
    • 2010-07-20
    • US11683289
    • 2007-03-07
    • Edward F KubackiJohn Czarnota
    • Edward F KubackiJohn Czarnota
    • B21D26/02B21D41/04
    • B21D26/049B21D51/26B21D51/2692B65D83/38Y10S72/715
    • A can shaping process in which container preforms (F) are mounted on a table (16) which is rotated so a preform is moved from an initial loading station (P1) to a molding station (P4). A molding unit (20) includes a two-part mold (20a, 20b) split vertically in half, with inner surfaces (56) of the respective mold halves shaped to produce a desired container profile. Once the preform is in place, a pressurization unit (102) is lowered into place from above the mold onto an open, upper end of the preform. The mold is then closed and pressurized air is introduced into the preform. The air pressure forces the sidewall of the preform outwardly against the inner surface of the mold to conform the shape of the container to a desired profile. After the shaping operation is complete, the pressurized air is withdrawn from the container, the mold halves are moved apart from each other, opening the mold. The pressurization unit is then removed and the table is rotated to an off-loading station (P7) where the shaped container is removed from the table and conveyed to the next operating location. As the table moves the contoured container to the off-loading station, another container preform is loaded into the mold.
    • 一种罐成型工艺,其中容器预制件(F)安装在桌子(16)上,工作台(16)旋转使得预成型件从初始加载站(P1)移动到模制工位(P4)。 模制单元(20)包括一个两部分模具(20a,20b),两个模具分成两半,每个半模的内表面(56)形成一个所需的容器型材。 一旦预成型件就位,加压单元(102)从模具上方就位到预成型件的敞开的上端。 然后关闭模具,并将加压空气引入预制件。 空气压力迫使预制件的侧壁向外抵靠模具的内表面,以使容器的形状符合所需的轮廓。 在成形操作完成之后,加压空气从容器中取出,半模彼此移开,打开模具。 然后取出加压单元并将工作台旋转到卸载站(P7),其中成形容器从工作台上移出并传送到下一个操作位置。 当桌子将轮廓容器移动到卸载站时,将另一个容器预制件装载到模具中。
    • 3. 发明申请
    • PROCESS AND APPARATUS FOR MANUFACTURING SHAPED CONTAINERS
    • 制造形状容器的工艺和装置
    • US20080216538A1
    • 2008-09-11
    • US11683289
    • 2007-03-07
    • Edward F. KubackiJohn Czarnota
    • Edward F. KubackiJohn Czarnota
    • B21D51/26B21D39/20
    • B21D26/049B21D51/26B21D51/2692B65D83/38Y10S72/715
    • A can shaping process in which container preforms (F) are mounted on a table (16) which is rotated so a preform is moved from an initial loading station (P1) to a molding station (P4). A molding unit (20) includes a two-part mold (20a, 20b) split vertically in half, with inner surfaces (56) of the respective mold halves shaped to produce a desired container profile. Once the preform is in place, a pressurization unit (102) is lowered into place from above the mold onto an open, upper end of the preform. The mold is then closed and pressurized air is introduced into the preform. The air pressure forces the sidewall of the preform outwardly against the inner surface of the mold to conform the shape of the container to a desired profile. After the shaping operation is complete, the pressurized air is withdrawn from the container, the mold halves are moved apart from each other, opening the mold. The pressurization unit is then removed and the table is rotated to an off-loading station (P7) where the shaped container is removed from the table and conveyed to the next operating location. As the table moves the contoured container to the off-loading station, another container preform is loaded into the mold.
    • 一种罐成形工艺,其中容器预成型件(F)安装在桌子(16)上,工作台(16)旋转使得预成型件从初始装载站(P 1)移动到成型台(P 4)。 模制单元(20)包括垂直分成两半的两部分模具(20a,20b),各半模的内表面(56)成形以形成所需的容器型材。 一旦预成型件就位,加压单元(102)从模具上方就位到预成型件的敞开的上端。 然后关闭模具,并将加压空气引入预制件。 空气压力迫使预制件的侧壁向外抵靠模具的内表面,以使容器的形状符合所需的轮廓。 在成形操作完成之后,加压空气从容器中取出,半模彼此移开,打开模具。 然后取出加压单元并将工作台旋转到卸载站(P7),在此卸载站(P 7),其中成形容器从工作台上取下并传送到下一个操作位置。 当桌子将轮廓容器移动到卸载站时,将另一个容器预制件装载到模具中。
    • 4. 发明授权
    • Mold construction for a process and apparatus for manufacturing shaped containers
    • 用于制造成形容器的工艺和设备的模具结构
    • US07568369B2
    • 2009-08-04
    • US11683201
    • 2007-03-07
    • Edward F. KubackiJohn Czarnota
    • Edward F. KubackiJohn Czarnota
    • B21D26/02
    • B21D51/26B21D26/049B65D83/38Y10S72/715
    • A molding unit (20) for use in a can shaping process. Container preforms (F) are mounted on a table (16) which is rotated so a blank is moved from an initial loading station (P1) to a molding station (P4). The molding unit includes a two-part mold (20a, 20b) split vertically in half, and an inner surface (56) of each mold half is shaped to produce a desired can profile. Once the preform is in place, a pressurization unit (102) is lowered into place from above the mold onto an open, upper end of the preform. The mold is then closed and pressurized air is introduced into the preform and forces the sidewall of the preform outwardly against the inner surface of the mold to conform the preform into a desired container profile. The height of the preform tries to contract as its sidewall expands, but a force imparted to the preform by the pressurization unit controls the direction of any contraction so to prevent distortion of the container. After the shaping operation is complete, the pressurized air is withdrawn from the container, the mold is opened, and the pressurization unit is removed. The table is rotated to an off-loading station (P7) where the shaped container is removed from the table and conveyed to the next operating location. As the table moves the contoured container to the off-loading station, another container preform is loaded into the mold.
    • 一种用于罐成形过程的成型单元(20)。 容器预制件(F)安装在桌子(16)上,桌子(16)被旋转,使得坯件从初始装载站(P1)移动到模制台(P4)。 模制单元包括垂直分成两半的两部分模具(20a,20b),并且每个半模的内表面(56)成形为产生期望的罐型材。 一旦预成型件就位,加压单元(102)从模具上方就位到预成型件的敞开的上端。 然后将模具关闭,并将加压空气引入预成型件中,并将预成型件的侧壁向外压靠在模具的内表面上,以使预成型件符合所需的容器型材。 预制件的高度随着其侧壁膨胀而收缩,但是通过加压单元赋予预成型件的力控制任何收缩的方向,从而防止容器变形。 成形操作完成后,从容器中取出加压空气,打开模具,并且移除加压单元。 工作台旋转到卸载站(P7),其中成形容器从工作台上取下并传送到下一个操作位置。 当桌子将轮廓容器移动到卸载站时,将另一个容器预制件装载到模具中。
    • 5. 发明申请
    • MOLD CONSTRUCTION FOR A PROCESS AND APPARATUS FOR MANUFACTURING SHAPED CONTAINERS
    • 用于制造形状容器的工艺的模具结构和装置
    • US20080217823A1
    • 2008-09-11
    • US11683201
    • 2007-03-07
    • Edward F. KubackiJohn Czarnota
    • Edward F. KubackiJohn Czarnota
    • B29C43/02
    • B21D51/26B21D26/049B65D83/38Y10S72/715
    • A molding unit (20) for use in a can shaping process. Container preforms (F) are mounted on a table (16) which is rotated so a blank is moved from an initial loading station (P1) to a molding station (P4). The molding unit includes a two-part mold (20a, 20b) split vertically in half, and an inner surface (56) of each mold half is shaped to produce a desired can profile. Once the preform is in place, a pressurization unit (102) is lowered into place from above the mold onto an open, upper end of the preform. The mold is then closed and pressurized air is introduced into the preform and forces the sidewall of the preform outwardly against the inner surface of the mold to conform the preform into a desired container profile. The height of the preform tries to contract as its sidewall expands, but a force imparted to the preform by the pressurization unit controls the direction of any contraction so to prevent distortion of the container. After the shaping operation is complete, the pressurized air is withdrawn from the container, the mold is opened, and the pressurization unit is removed. The table is rotated to an off-loading station (P7) where the shaped container is removed from the table and conveyed to the next operating location. As the table moves the contoured container to the off-loading station, another container preform is loaded into the mold.
    • 一种用于罐成形过程的成型单元(20)。 容器预制件(F)安装在桌子(16)上,桌子(16)被旋转,使得坯件从初始装载站(P 1)移动到模制站(P 4)。 模制单元包括垂直分成两半的两部分模具(20a,20b),并且每个半模的内表面(56)成形为产生期望的罐型材。 一旦预成型件就位,加压单元(102)从模具上方就位到预成型件的敞开的上端。 然后将模具关闭,并将加压空气引入预成型件中,并将预成型件的侧壁向外压靠在模具的内表面上,以使预成型件符合所需的容器型材。 预制件的高度随着其侧壁膨胀而收缩,但是通过加压单元赋予预成型件的力控制任何收缩的方向,从而防止容器变形。 成形操作完成后,从容器中取出加压空气,打开模具,并且移除加压单元。 工作台旋转到卸载站(P 7),其中成形容器从工作台上取下并传送到下一个操作位置。 当桌子将轮廓容器移动到卸载站时,将另一个容器预制件装载到模具中。