Patent classifications
B29C49/0064
METHOD FOR PRODUCING RESIN CONTAINER AND APPARATUS FOR PRODUCING RESIN CONTAINER
Provided is a resin container manufacturing method including: an injection molding process of injection molding a plurality of preforms along a predetermined arrangement direction; a temperature adjustment process of adjusting a temperature of the preform; and a blow molding process of molding a resin container from the preform. After the injection molding process, the preform and the container are conveyed along a conveying direction intersecting the arrangement direction over the temperature adjustment process and the blow molding process. The temperature adjustment process includes a first temperature adjustment process of adjusting the temperature of the preform, a second temperature adjustment process of adjusting the temperature of the preform under a condition different from that of the first temperature adjustment process, and a fine adjustment process of finely adjusting the temperature of the preform.
Injection moulding machine for continuous production
Apparatus for producing plastic material preforms, includes at least two preform manufacturing devices configured for producing the plastic material preforms from a plastic material, wherein the preform manufacturing devices each having preform transport devices. The apparatus includes a main transport device which is configured for transporting the plastic material preforms produced by the preform manufacturing devices and transported by the preform transport devices continuously along a predetermined main transport path, wherein the plastic material preforms are transferred to the main transport device by the production devices after their production.
Blow molding apparatus
A configuration including: a primary blow molding station including: an injection molding part configured to injection-mold a plurality of preforms simultaneously; a primary blow molding part configured to blow-mold the preform to form a first blow-molded article; and a first transport device including a first transport path and configured to intermittently circulate and transport a plurality of the preforms and the first blow-molded article along the first transport path at a predetermined interval; and a secondary blow molding station installed independently of the primary blow molding station, the secondary blow molding station including: a secondary blow molding part configured to blow-mold the first blow-molded article to form a resin container; and a second transport device configured to hold the first blow-molded article at a downstream side of the primary blow molding part in the first transport path and transport the first blow-molded article to the secondary blow molding part.
BLOW MOLDING APPARATUS
A configuration including: a primary blow molding station including: an injection molding part configured to injection-mold a plurality of preforms simultaneously; a primary blow molding part configured to blow-mold the preform to form a first blow-molded article; and a first transport device including a first transport path and configured to intermittently circulate and transport a plurality of the preforms and the first blow-molded article along the first transport path at a predetermined interval; and a secondary blow molding station installed independently of the primary blow molding station, the secondary blow molding station including: a secondary blow molding part configured to blow-mold the first blow-molded article to form a resin container; and a second transport device configured to hold the first blow-molded article at a downstream side of the primary blow molding part in the first transport path and transport the first blow-molded article 40 to the secondary blow molding part.
INJECTION MOULDING MACHINE FOR CONTINUOUS PRODUCTION
Apparatus for producing plastic material preforms, includes at least two perform manufacturing devices configured for producing the plastic material preforms from a plastic material, wherein the preform manufacturing devices each having preform transport devices. The apparatus includes a main transport device which is configured for transporting the plastic material preforms produced by the preform manufacturing devices and transported by the preform transport devices continuously along a predetermined main transport path, wherein the plastic material preforms are transferred to the main transport device by the production devices after their production.
Dehydration circuit for an electromagnetic processing unit of hollow bodies
Disclosed is a processing unit for an electromagnetic processing of plastic parisons and including a series of processing modules, each including a hollow housing, a light emitting assembly and a dehydration circuit for preventing each hollow housing from moisture via a dehydrated fluid. The dehydration circuit extends outside the main body, where the circuit can be in fluid communication with a source of pressurized fluid, on which are disposed a fluid dehydration unit and fluid circulation unit for forcing the dehydrated fluid to feed the respective hollow housings.
DEHYDRATION CIRCUIT FOR AN ELECTROMAGNETIC PROCESSING UNIT OF HOLLOW BODIES
Disclosed is a processing unit for an electromagnetic processing of plastic parisons and including a series of processing modules, each including a hollow housing, a light emitting assembly and a dehydration circuit for preventing each hollow housing from moisture via a dehydrated fluid. The dehydration circuit extends outside the main body, where the circuit can be in fluid communication with a source of pressurized fluid, on which are disposed a fluid dehydration unit and fluid circulation unit for forcing the dehydrated fluid to feed the respective hollow housings.
Blow molding tooling for high cavitation applications
An injection station of an injection blow molding machine and a method for forming parisons and molded articles. The injection station includes a die plate with a keyway formed through a least a portion of a surface of the die plate. The keyway separates front and back portions of the surface of the die plate. The injection station further includes a resin injection tooling comprising a draw bar, with at least a portion of the draw bar operable to be positioned within the keyway of the die plate, a base plate secured to a back side of the draw bar and operable to be secured to the back portion of the surface of the die plate and, and a manifold secured to a top of the base plate, with the manifold being configured to discharge resin into cavities to form the parisons.