US2017001787A1PendingUtilityA1

Packaging container and packaged product contained in said packaging container, and manufacturing method and manufacturing apparatus for said packaging container

Assignee: INAGAKI HIROMICHIPriority: Sep 14, 2012Filed: Sep 15, 2016Published: Jan 5, 2017
Est. expirySep 14, 2032(~6.1 yrs left)· nominal 20-yr term from priority
B65D 51/1638B65B 7/164B65D 1/34B65D 21/0233B65B 51/10B65D 81/2076B65B 31/028B65D 11/10B65D 81/3453B65D 81/34B65B 61/065B65D 21/023B65D 81/3446B65D 43/0233B65D 77/2024
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Claims

Abstract

The purpose of the present invention is to provide: a packaging container that can be industrially mass-produced, that can be used as Modified Atmosphere Packaging (MAP) while ensuring sealing performance, and that allows contents to be displayed in a three-dimensional manner; a packaged product contained in the packaging container; and a manufacturing method and manufacturing apparatus for the packaging container. This packaging container has: a container main body having a bottom face part and sidewall parts, and having a flange at the upper end part periphery of the sidewall parts; and a lid material heat-sealed to the flange. The lid material is made of a film or sheet. A pair of opposing sidewall parts has the same shape, and upper end parts of the pair of side wall parts are at least positioned higher than the upper end parts of another pair of opposing sidewall parts.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A manufacturing method for a packaging container, comprising the steps of arranging and conveying a plurality of container main bodies, each of which has a bottom face part, sidewall parts, and a flange formed at an upper end part periphery of the sidewall parts, and serially heat-sealing a lid material to the flanges of the container main bodies, wherein
 in each of the container main bodies, a pair of opposing sidewall parts have an identical shape, and upper end parts of the pair of sidewall parts are at least partly positioned higher than another pair of opposing sidewall parts;   the container main bodies are arranged and conveyed in such a manner that the pair of opposing sidewall parts of each of the container main bodies are positioned perpendicular to a conveyance direction of the container main bodies;   the lid material formed of a flat film or sheet is reeled out from a reel roll and forwarded through a dancer roll; and   a plate having substantially the same shape as an upper end contour shape of the pair of opposing sidewall parts is brought into abutment with the lid material and the lid material is heat-sealed to the flange of each of the container main bodies by using a heat-seal block.   
     
     
         2 . The manufacturing method for a packaging container according to  claim 1 , wherein:
 the flange of each of the container main bodies and the lid material are heat-sealed to each other in a vacuum chamber, the vacuum chamber having a chamber main body and a chamber lid abutting therewith, and the upper end contour shape of the pair of opposing sidewall parts of each of the container main bodies being similar to an upper end contour shape of sidewall parts of the chamber main body corresponding to the pair of opposing sidewall parts;   a support base for the container main bodies is provided at the chamber main body side;   the lid material has a width greater than a width of the container main body and narrower than a width of the vacuum chamber;   the container main bodies are mounted on the support base;   the vacuum chamber is tightly sealed by sandwiching the lid material between the chamber lid and the chamber main body, the lid material being brought into contact with the plate and deformed into the upper end contour shape of the pair of opposing sidewall parts;   after deaerating the vacuum chamber, the vacuum chamber is filled with filler gas, and a pressure in the vacuum chamber is adjusted; then   the flange of each of the container main bodies and the lid material are heat-sealed to each other by means of a heat-seal block provided at the chamber lid side; and   the lid material on the outside of the flange of each of the packaging containers is removed.   
     
     
         3 . A manufacturing method for a packaging container, comprising the steps of arranging and conveying a plurality of container main bodies, each of which has a bottom face part, sidewall parts, and a flange formed at an upper end part periphery of the sidewall parts, and serially heat-sealing a lid material to the flanges of the container main bodies, wherein
 in each of the container main bodies, a pair of opposing sidewall parts have an identical shape, and upper end parts of the pair of sidewall parts are at least partly positioned higher than another pair of opposing sidewall parts:   the container main bodies are arranged and conveyed in such a manner that the pair of opposing sidewall parts of each of the container main bodies are positioned parallel to a conveyance direction of the container main bodies;   the lid material formed of a flat film or sheet is reeled out from a reel roll and forwarded through a dancer roll; and   the lid material is heat-sealed to the flange of each of the container main bodies by using a heat-seal block while correcting and adjusting a sag of the lid material that occurs between reeling out the lid material and heat-sealing the lid material to the flange of each of the container main bodies by using the dancer roll or another dancer roll different from that dancer roll, so that the lid material follows the contour shape of the upper end parts of the pair of opposing sidewall parts.   
     
     
         4 . The manufacturing method for a packaging container according to  claim 3 , wherein:
 the flange of each of the container main bodies and the lid material are heat-sealed to each other in a vacuum chamber, the vacuum chamber having a chamber main body and a chamber lid abutting therewith, and an abutment face between the chamber lid and the chamber main body being a horizontal plane;   a support base for the container main bodies is provided at the chamber main body side;   the lid material has a width greater than a width of the container main body and narrower than a width of the vacuum chamber;   the container main bodies are mounted on the support base;   the vacuum chamber is tightly sealed by sandwiching the lid material between the chamber lid and the chamber main body;   after deaerating the vacuum chamber, the vacuum chamber is filled with filler gas, and a pressure in the vacuum chamber is adjusted; then   the flange of each of the container main bodies and the lid material are heat-sealed to each other by means of a heat-seal block provided at the chamber lid side; and   the lid material on the outside of the flange of each of the packaging containers is removed.   
     
     
         5 . The manufacturing method for a packaging container according to  claim 1 , wherein the heat-seal block is capable of being divided and joined. 
     
     
         6 . The manufacturing method for a packaging container according to  claim 3 , wherein the heat-seal block is capable of being divided and joined.

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