摘要:
A separable laminated container (A) of the present invention comprises an outer layer (1) made of synthetic resin and having an air suction hole (10) and an inner layer (2) made of synthetic resin and separably laminated on the inside of the outer layer, the inner layer having a portion previously separated from the outer layer just around the air suction hole. The air suction hole can be formed by driving a punch into the outer layer at a neck (4) of the separable laminated container from the outside, and punching just the outer layer leaving the inner layer behind. The portion of the inner layer previously separated from the outer layer may be left in the inwardly extended state. The inner layer is preferably made of synthetic resin having flexural modules of less than 10,000 kg/cm2.
摘要翻译:本发明的可分离层压容器(A)包括由合成树脂制成的外层(1),具有吸气孔(10)和由合成树脂制成的内层(2),并且可分离地层压在 外层,内层具有预先与空气抽吸孔周围的外层隔开的部分。 空气吸入孔可以通过在外侧的可分离层压容器的颈部(4)处将冲头驱动到外层中,并且仅将离开内层的外层冲压而形成。 预先从外层分离的内层的部分可以保持在向内延伸的状态。 内层优选由具有小于10,000kg / cm 2的弯曲模块的合成树脂制成。
摘要:
A separable laminated container (A) of the present invention comprises an outer layer (1) made of synthetic resin and having an air suction hole (10) and an inner layer (2) made of synthetic resin and separably laminated on the inside of the outer layer, the inner layer having a portion previously separated from the outer layer just around the air suction hole. The air suction hole can be formed by driving a punch into the outer layer at a neck (4) of the separable laminated container from the outside, and punching just the outer layer leaving the inner layer behind. The portion of the inner layer previously separated from the outer layer may be left in the inwardly extended state. The inner layer is preferably made of synthetic resin having flexural modules of less than 10,000 kg/cm2.
摘要:
Cylindrical plastic pieces (i.e., preforms) each with a bottom are supplied one by one to jigs circulated through the heating and blowing mold of a biaxial-orientation blow-molding machine. The pieces are formed of polyethylene terephthalate material to obtain transparent thin-walled bottle-shaped containers, and are formed in cylindrical shape each with a semispherical bottom and a prefinished neck portion molded simultaneously in large number by an injection molding machine. The device for supplying the pieces has a piece aligning unit for temporarily retaining the pieces molded simultaneously by the injection molding machine and accumulated in various orientations at random and exhausting the pieces one by one therefrom to meet the molding velocity of a blow-molding machine, a rope conveyor for sequentially conveying the pieces exhausted from the piece aligning unit in a neck portion upward position as suspended therefrom, a piece inverting mechanism for attracting and holding the pieces conveyed via the rope conveyor and inverting the pieces to neck portion downward position during the turning operation of the pieces at substantially 180.degree. in a horizontal plane, a jig feeding mechanism for feeding jigs circulated at the heating and blowing mold of the blow-molding machine at predetermined pitch to the vicinity of the piece inverting mechanism, and a piece inserting mechanism for clamping the piece attracted and held by the piece inverting mechanism via a pair of clamp pawls and downwardly moving the piece while stepwisely rotating the piece substantially at 90.degree. in a horizontal plane thereby to insert the piece into the jig of the jig feeding mechanism.
摘要:
A device for obliquely conveying pieces of cylindrical hollow shape with a bottom for forming a thin, transparent, bottle-shaped container from the floor level to the height for supplying the pieces to the mold of a blow-molding machine. The numerous pieces are simultaneously injection-molded from a polyethylene terephthalate resin via an injection molding machine, and are supplied to the mold of the blow-molding machine after being cooled to room temperature. Each of the pieces thus formed is conveyed via a rope conveyor in a vertically neck portion upward position as lifted from the conveyor, and is further conveyed obliquely upwardly by an oblique conveyor having a plurality of attachments attached to the conveyor's chain for supporting the pieces at the bottoms to exactly convey the pieces one by one to meet the molding speed of the blow-molding machine.
摘要:
A molten resin is prevented from entering between a surface of a sheet-shaped insert such as a label including a printed film or the like and a surface of an outer mold unit and the insert is prevented from being downwardly pushed, when a synthetic article in which the insert is bonded to the outer peripheral surface of the thin cylindrical molded body is injection molded by the insertion molding.The insert such as a label is fitted, closely attached and held along an inner peripheral surface of the outer molding unit in a cavity 7 defined between the outer mold unit 11 and the core 6, a molten resin is injected, through plural injection gate openings 9a provided in the core, toward an inner peripheral surface of the molded body at a position inwardly apart from an end of the insert in an axial direction and corresponding to an inner portion as viewed in width directions from opposite sides of the insert, the cavity is filled with the molten resin while the insert is being pushed to the surface of the outer mold unit with the molten resin, and the molten resin is integrated with the insert, thereby molding the label-attached cylindrical article 10.
摘要:
A separable laminated container (A) of the present invention comprises an outer layer (1) made of synthetic resin and having an air suction hole (10) and an inner layer (2) made of synthetic resin and separably laminated on the inside of the outer layer, the inner layer having a portion previously separated from the outer layer just around the air suction hole. The air suction hole can be formed by driving a punch into the outer layer at a neck (4) of the separable laminated container from the outside, and punching just the outer layer leaving the inner layer behind. The portion of the inner layer previously separated from the outer layer may be left in the inwardly extended state. The inner layer is preferably made of synthetic resin having flextural modules of less than 10,000 kg/cm2.
摘要翻译:本发明的可分离层压容器(A)包括由合成树脂制成的外层(1),具有吸气孔(10)和由合成树脂制成的内层(2),并且可分离地层压在 外层,内层具有预先与空气抽吸孔周围的外层隔开的部分。 空气吸入孔可以通过在外侧的可分离层压容器的颈部(4)处将冲头驱动到外层中,并且仅将离开内层的外层冲压而形成。 预先从外层分离的内层的部分可以保持在向内延伸的状态。 内层优选由具有小于10,000kg / cm 2的挠曲模块的合成树脂制成。
摘要:
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.
摘要:
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.
摘要:
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.
摘要:
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.