Irradiating conveyance apparatus
    1.
    发明授权
    Irradiating conveyance apparatus 失效
    辐射输送装置

    公开(公告)号:US5081360A

    公开(公告)日:1992-01-14

    申请号:US478464

    申请日:1990-02-12

    Abstract: An irradiating apparatus comprises a bucket group consisting a plurality of buckets spaced equally from each other and connected to a first endless chain, and a roller group consisting of a plurality of roller located under the bucket group. Each bucket comprises a barrel shaped body having a bottom which has a plurality of openings. Moreover, the bucket receives an article to be transferred such as preform and transfers it in a horizontal position therein. The rollers are connected to second endless chains. A pair of rollers are arranged parallel to each other in the transfer direction. The roller has a plurality of lands which intrude in the openings of the bucket. A pair of rollers are rotated in the same direction to rotate the article to be transferred. The roller group travels at the same speed in the same direction as those of the bucket.

    Mechanism for inverting carrier
    2.
    发明授权
    Mechanism for inverting carrier 失效
    反转载体的机理

    公开(公告)号:US5056649A

    公开(公告)日:1991-10-15

    申请号:US655280

    申请日:1991-02-14

    CPC classification number: B65G47/252 B65G47/38

    Abstract: An inverting mechanism according to the present invention comprises an inverting body for inverting which includes a plate member fixed to each of a plurality of carriers connected to an endless chain and four inverting elements rotatably supported on each plate member at circumferential positions spaced equidistant from each other, and an inverting cam provided on a rack rail on which the inverting elements roll. The inverting element on the body traveling on the rail drops into a groove formed in the inverting cam to rotate the body about the dropped inverting element as another inverting element rolls along a projection on the reversing cam to downwardly direct the top opening of the carrier and thereby an article to be transferred can be taken out of the carrier.

    Abstract translation: 根据本发明的反转机构包括翻转体,其包括固定到连接到环形链的多个载体中的每一个的板构件和在每个板构件上可旋转地支撑在彼此间隔等间隔的圆周位置处的四个翻转元件 以及设置在反转元件滚动的齿条导轨上的翻转凸轮。 在轨道上行驶的轨道上的反转元件掉入形成在反转凸轮中的凹槽中,以使主体围绕下落的反转元件旋转,因为另一反转元件沿着反转凸轮上的凸起滚动以向下引导载体的顶部开口, 因此,可以将要传送的物品从承运人中取出。

    Device for removing and conveying injection-molded piece
    3.
    发明授权
    Device for removing and conveying injection-molded piece 失效
    拆卸和输送注塑件的装置

    公开(公告)号:US4586892A

    公开(公告)日:1986-05-06

    申请号:US647541

    申请日:1984-09-05

    Abstract: A tranparent thin bottle-shaped container is produced by means of a technology for biaxial orientation blow molding a cylindrical piece with a bottom from polyethylene terephthalate material. The pieces are molded in large number in each injection molding process of an injection molding machine. The pieces thus formed immediately after the injection molding are held simultaneously in large number at the gates integrally projected therefrom by a base plate moved forward at the front of the mold in the injection molding machine. They are then conveyed to a gate cutting unit provided near the injection molding machine. The gates are cut from the pieces sequentially by the gate cutting unit and are conveyed onto a conveyor. The pieces are gradually cooled from the hot molded temperature during the conveyance and are additionally cooled while being conveyed on an oblique conveyor installed with a cooler to room temperature or lower predetermined temperature. The cooled pieces are then supplied to a heater immediately before entering a biaxial orientation blow molding process.

    Abstract translation: 通过用聚对苯二甲酸乙二醇酯材料制造具有底部的圆柱形件的​​双轴取向吹塑技术制造了一种透明的薄瓶形容器。 在注射成型机的每个注射成型过程中,这些件大量模制。 在注射成型后立即形成的片材通过在注塑机中在模具前部向前移动的基板一体地突出在其上的同时大量​​地保持。 然后将它们输送到设置在注射成型机附近的浇口切割单元。 门通过门切割单元顺序切割并输送到输送机上。 在输送过程中,从热成型温度逐渐冷却,并在安装有冷却器的倾斜输送机输送到室温或更低的预定温度的同时进行冷却。 然后在进入双轴取向吹塑工艺之前将冷却的片材提供给加热器。

    Device for removing and conveying injection-molded piece

    公开(公告)号:US4586891A

    公开(公告)日:1986-05-06

    申请号:US647542

    申请日:1984-09-05

    Abstract: A transparent thin bottle-shaped container is produced by means of a technology for biaxial orientation blow molding a cylindrical piece with a bottom from polyethylene terephthalate material. The pieces are molded in large number in each injection molding process of an injection molding machine. The pieces thus formed immediately after the injection molding are held simultaneously in large number at the gates integrally projected therefrom by a base plate moved forward at the front of the mold in the injection molding machine. They are then conveyed to a gate cutting unit provided near the injection molding machine. The gates are cut from the pieces sequentially by the gate cutting unit and are conveyed onto a conveyor. The pieces are gradually cooled from the hot molded temperature during the conveyance and are additionally cooled while being conveyed on an oblique conveyor installed with a cooler to room temperature or lower predetermined temperature. The cooled pieces are then supplied to a heater immediately before entering a biaxial orientation blow molding process.

    Hollow container of biaxially oriented synthetic resin engaged with base
cap on bottom and method of engaging the cap with the container
    5.
    发明授权
    Hollow container of biaxially oriented synthetic resin engaged with base cap on bottom and method of engaging the cap with the container 失效
    双轴取向合成树脂的底部与底盖接合的中空容器和与容器接合的方法

    公开(公告)号:US4609418A

    公开(公告)日:1986-09-02

    申请号:US755781

    申请日:1985-07-17

    CPC classification number: B29C66/5452 B29C65/7858 B65D23/001

    Abstract: A hollow container of biaxially oriented synthetic resin engaged at the bottom portion thereof with a base cap, in which a bottom portion and a body portion are biaxially oriented, said bottom portion is formed in a regular circular shape of cross section and in a spherical shape swelled downwardly, comprising a base cap having a bottom wall for supporting the lower surface of the bottom portion of said container and a peripheral wall erected upwardly from the peripheral wall of said bottom wall and capable of elastically deforming; and said base cap being watertightly engaged at the inner surface of the peripheral wall thereof with the outer surface of the peripheral wall of the lower end portion of said container and engaged with said container. This container is manufactured by a method of engaging the container with a base cap having no air vent hole. Thus, the air can be readily exhausted in case of press-fitting the bottom of the container into the cap.

    Abstract translation: 双轴取向合成树脂的中空容器在其底部与底盖接合,底盖部分和主体部分双轴取向,所述底部部分形成为规则的圆形截面和球形 包括底盖,底盖具有用于支撑所述容器的底部的下表面的底壁和从所述底壁的周壁向上竖立并能够弹性变形的周壁; 并且所述基座盖在其周壁的内表面与所述容器的下端部的周壁的外表面水密地接合并与所述容器接合。 该容器通过使容器与不具有通气孔的底盖接合的方法来制造。 因此,在将容器的底部压入盖中的情况下,空气可以容易地排出。

    Molding method and cooling apparatus for pressure resisting bottles of
synthetic resin
    6.
    发明授权
    Molding method and cooling apparatus for pressure resisting bottles of synthetic resin 失效
    用于耐压合成树脂瓶的成型方法和冷却装置

    公开(公告)号:US5585125A

    公开(公告)日:1996-12-17

    申请号:US211165

    申请日:1994-06-21

    Abstract: In order to improve the productivity of pressure-resisting bottles by reducing the blow time from 4-5 seconds in a conventional bottle molding method to not more than 3 seconds, and mold pressure resisting bottles free from the occurrence of crazing and bottom-breakage, a biaxially stretched blow molded bottle (1) of a synthetic resin having a big foot type petaloid bottom is produced in a blow time of not more than 3 seconds, and after the product has been released from the mold, the bottom portion (3) has become not higher than 70.degree. C., whereby the shortage of the capability of the metal mold of cooling the bottom portion (3) is supplemented. This allows both the prevention of the irregular deformation of the central part (6) of the bottom portion, and the molding of the bottom portion (3) of high pressure resisting strength and mechanical strength with a sufficient height H of the central part (6) of the bottom portion ensured.

    Abstract translation: PCT No.PCT / JP93 / 01011 Sec。 371日期:1969年6月21日 102(e)日期1994年6月21日PCT提交1992年7月20日PCT公布。 公开号WO94 / 02304 日期1994年2月3日为了通过将传统的瓶成型方法中的吹扫时间从4-5秒减少到不超过3秒钟来提高耐压瓶的生产率,并且模具耐压瓶没有发生龟裂 并且底部破裂时,制造具有大脚型花瓣状底部的合成树脂的双轴拉伸吹塑成型瓶(1),吹塑时间不超过3秒,并且在产品从模具中释放后, 底部(3)已经变得不高于70℃,从而补充了冷却底部(3)的金属模具的能力不足。 这允许防止底部中心部分(6)的不规则变形,以及具有高中心部分(6)的足够高度H的高耐压强度和机械强度的底部(3)的模制 )确保了底部。

    Device for removing and conveying injection-molded piece
    7.
    发明授权
    Device for removing and conveying injection-molded piece 失效
    拆卸和输送注塑件的装置

    公开(公告)号:US4588370A

    公开(公告)日:1986-05-13

    申请号:US647540

    申请日:1984-09-05

    Abstract: A transparent thin bottle-shaped container is produced by means of a technology for biaxial orientation blow molding a cylindrical piece with a bottom from polyethylene terephthalate material. The pieces are molded in large number in each injection molding process of an injection molding machine. The pieces thus formed immediately after the injection molding are held simultaneously in large number at the gates integrally projected therefrom by a base plate moved forward at the front of the mold in the injection molding machine. They are then conveyed to a gate cutting unit provided near the injection molding machine. The gates are cut from the pieces sequentially by the gate cutting unit and are conveyed onto a conveyor. The pieces are gradually cooled from the hot molded temperature during the conveyance and are additionally cooled while being conveyed on an oblique conveyor installed with a cooler to room temperature or lower predetermined temperature. The cooled pieces are then supplied to a heater immediately before entering a biaxial orientation blow molding process.

    Abstract translation: 通过双轴取向吹塑成型具有底部的圆柱形件的​​技术制造透明薄瓶形容器。 在注射成型机的每个注射成型过程中,这些件大量模制。 在注射成型后立即形成的片材通过在注塑机中在模具前部向前移动的基板一体地突出在其上的同时大量​​地保持。 然后将它们输送到设置在注射成型机附近的浇口切割单元。 门通过门切割单元顺序切割并输送到输送机上。 在输送过程中,从热成型温度逐渐冷却,并在安装有冷却器的倾斜输送机输送到室温或更低的预定温度的同时进行冷却。 然后在进入双轴取向吹塑工艺之前将冷却的片材提供给加热器。

    Device for removing and conveying injection-molded piece
    8.
    发明授权
    Device for removing and conveying injection-molded piece 失效
    拆卸和输送注塑件的装置

    公开(公告)号:US4514166A

    公开(公告)日:1985-04-30

    申请号:US32970

    申请日:1979-04-24

    Abstract: A transparent thin bottle-shaped container is produced by means of a technology for biaxial orientation blow molding a cylindrical piece with a bottom from polyethylene terephthalate material. The pieces are molded in numerous large number in each injection molding process of an injection molding machine. The pieces thus formed immediately after the injection molding are held simultaneously in large number at the gates integrally projected therefrom by a base plate moved forward at the front of the mold in the injection molding machine. They are then conveyed to a gate cutting unit provided near the injection molding machine. The gates are cut from the pieces sequentially by the gate cutting unit and are conveyed onto a conveyor. The pieces are gradually cooled from the hot molded temperature during the conveyance and are additionally cooled while being conveyed on an oblique conveyor installed with a cooler to room temperature or lower predetermined temperature. The cooled pieces are then supplied to a heater immediately before entering a biaxial orientation blow molding process.

    Abstract translation: 通过双轴取向吹塑成型具有底部的圆柱形件的​​技术制造透明薄瓶形容器。 在注射成型机的每个注射成型过程中,这些件都是大量成型的。 在注射成型后立即形成的片材通过在注塑机中在模具前部向前移动的基板一体地突出在其上的同时大量​​地保持。 然后将它们输送到设置在注射成型机附近的浇口切割单元。 门通过门切割单元顺序切割并输送到输送机上。 在输送过程中,从热成型温度逐渐冷却,并在安装有冷却器的倾斜输送机输送到室温或更低的预定温度的同时进行冷却。 然后在进入双轴取向吹塑工艺之前将冷却的片材提供给加热器。

    Molding method and cooling apparatus for pressure resisting bottles of
synthetic resin
    9.
    发明授权
    Molding method and cooling apparatus for pressure resisting bottles of synthetic resin 失效
    用于耐压合成树脂瓶的成型方法和冷却装置

    公开(公告)号:US5851478A

    公开(公告)日:1998-12-22

    申请号:US690803

    申请日:1996-08-01

    Abstract: A biaxially stretched blow molded bottle of a synthetic resin having a big foot type petaloid bottom is produced in a blow time of not more than 3 seconds, and after the bottle has been released from the mold, the temperature of the bottom portion of the bottom does not rise higher than 70.degree. C., thereby supplementing the capability of the metal mold for cooling the bottom portion. Thus, irregular deformation of the central part of the bottom portion is prevented, molding of the bottom portion with high pressure resisting and mechanical strength is achieved to avoid breakage, and a sufficient height of the central part of the bottom portion is ensured. Additionally, productivity of pressure resisting bottles is improved by reducing the blow time from 4-5 seconds to not more than 3 seconds.

    Abstract translation: 制造具有大脚型花瓣状底部的合成树脂的双轴拉伸吹塑成型瓶,其吹塑时间不超过3秒,瓶子从模具中脱模后,底部底部的温度 不升高高于70℃,从而补充金属模具冷却底部的能力。 因此,防止了底部中心部分的不规则变形,实现了高耐压和机械强度的底部成型,以避免破损,并且确保了底部中心部分的足够的高度。 另外,耐压瓶的生产率通过将喷吹时间从4-5秒减少到不超过3秒来提高。

    Conveyor chain apparatus
    10.
    发明授权
    Conveyor chain apparatus 失效
    输送链设备

    公开(公告)号:US6131724A

    公开(公告)日:2000-10-17

    申请号:US43299

    申请日:1998-03-18

    Abstract: A conveyor chain includes chain links connected by connecting pins. Each chain link is provided with a bottle conveyor member attached to a main offset link member having a pin link, a bushing, and a conveyor member attachment plate of a synthetic resin or plastics. The conveyor chain is supported by sprocket wheels and chain guidance members to configure a conveyor chain apparatus. The arrangement is such that a pair of the conveyor chain apparatuses are disposed on each side of a conveyor path for bottles and also a holder ring provided at a mouth portion of a bottle is held from both sides by the bottle conveyor members. The conveyor chain apparatus is configured so that bottles are conveyed thereby in a state suspended from neck portions thereof.

    Abstract translation: PCT No.PCT / JP97 / 02466 Sec。 371日期1998年3月18日 102(e)1998年3月18日PCT 1997年7月16日PCT公布。 公开号WO98 / 04483 日期1998年2月5日传送链包括通过连接销连接的链节。 每个链节设置有连接到具有销链节,衬套和合成树脂或塑料的传送构件附接板的主偏移连接构件的瓶传送构件。 输送链由链轮和链条引导构件支撑,以配置输送链设备。 这种布置使得一对输送链装置设置在用于瓶子的输送路径的每一侧上,并且设置在瓶口部的保持环也由瓶传送构件从两侧保持。 输送链设备被构造成使得瓶子从其颈部悬挂的状态被输送。

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