IP Library Granted Patent US 12668035
Granted Patent B2
US 12668035 · App. 19/011,979 · Granted Jun 30, 2026

Method for manufacturing paper container

Inventors: Hou-Ren Chen (Changhua County, TW); Ming-Zhou Chuang (Changhua County, TW); Hsin-Hung Chen (Changhua County, TW)
Assignee: TAIWAN CHEMWELL INDUSTRIAL CO., LTD.
B31B50/64B31B50/14B31B50/747B31B2110/20B31B2120/10
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Quick Facts
Patent No.
US 12668035
App. No.
19/011,979
Granted
Jun 30, 2026
Kind
B2
Abstract

A method for manufacturing a paper container, including following steps: preparing a paper material; applying a covering layer to at least one surface of the paper material to form a base material, wherein a material of the covering layer is selected from a group including acrylic acid; cutting the base material to form a first sheet and a second sheet; bending and connecting the first sheet to form a barrel body; and connecting the second sheet with the barrel body by ultrasonic heating and pressing. The barrel body is circumferentially disposed around the second sheet, and surfaces of the barrel body and the second sheet facing each other respectively have the covering layer applied thereto. The paper container produced by the present invention is easy to recycle and manufacture, and is environmentally friendly and resistant to leakage.

Claims (14)

1 . A method for manufacturing a paper container, including:

preparing a paper material;

applying a covering layer to at least one surface of the paper material to form a base material, wherein a material of the covering layer is selected from a group including acrylic acid;

cutting the base material to form a first sheet and a second sheet;

bending and connecting the first sheet to form a barrel body; and

connecting the second sheet with the barrel body by ultrasonic heating and pressing, wherein the barrel body is circumferentially disposed around the second sheet, and surfaces of the barrel body and the second sheet facing each other respectively have the covering layer applied thereto; said covering layers located between the barrel body and the second sheet are at least partially fused together by ultrasonic heating, while the barrel body and the second sheet are being embossed and pressed together;

wherein a difference between a glass transition temperature (Tg) and a melting temperature (Tm) of the material of the covering layer is less than or equal to 20° C.

2 . The method for manufacturing the paper container of claim 1 , wherein the material of the covering layer further includes at least one of ethylene propylene copolymer (EPP), ethylene acrylic acid copolymer emulsion (EAA), polypropylene carbonate (PPC), polybutylene adipate terephthalate (PBAT), polybutylene succinate polyester (PBS), polylactic acid (PLA), polyurethane (PU), polyhydroxyalkanoate (PHA), polyethylene terephthalate (PET) and polyethylene terephthalate-1, 4-cyclohexanedimethanol ester (PETG).

3 . The method for manufacturing the paper container of claim 1 , wherein the material of the covering layer includes a water-based acrylic acid resin, and the covering layer is distributed on the paper material 1 with a weight of 1 to 20 grams per square meter (GSM).

4 . The method for manufacturing the paper container of claim 1 , further including following steps of: bending and folding the second sheet to form an annular flange, positioning the annular flange on an inner peripheral surface of the barrel body in a predetermined position, and preheating at least one of the barrel body and the annular flange.

5 . The method for manufacturing the paper container of claim 4 , wherein a preheating temperature is between 140° C. and 400° C.

6 . The method for manufacturing the paper container of claim 1 , wherein the first sheet is cut into a fan shape, and the barrel body and the second sheet are connected to form a cup body.

7 . The method for manufacturing the paper container of claim 1 , wherein the first sheet is cut into a rectangular shape, and the barrel body and the second sheet are connected to form a cup lid.

8 . The method for manufacturing the paper container of claim 1 , wherein the glass transition temperature of the material of the covering layer is higher than or equal to 30° C.